281 resultados para Épaississement myo-intimal
Resumo:
In order to develop an efficient and reliable biolistics transformation system for pineapples parameters need to be optimised for growth, survival and development of explants pre- and post transformation. We have optimised in vitro conditions for culture media for the various stages of plant and callus initiation and development, and for effective selection of putative transgenic material. Shoot multiplication and proliferation is best on medium containing MS basic nutrients and vitamins with the addition of 0.1 mg/L myo-inositol, 20 g/L sucrose, 2.5 mg/L BAP and 3 g/L Phytagel, followed by transfer to basic MS medium for further development. Callus production on leaf base explants is best on MS nutrients and vitamins, to which 10 mg/L of BAP and NAA each was added. Optimum explant age for bombardment is 17-35 week old callus, while a pre-bombardment osmoticum treatment in the medium is not required. By comparing several antibiotics as selective agent, it has been established that a two-step selection of 2 fortnightly sub-cultures on 50 μg/mL of geneticin in the culture medium, followed by monthly sub-cultures on 100 μg/mL geneticin is optimal for survival of transgenic callus. Shoot regeneration from callus cultures is optimal on medium containing MS nutrients and vitamins, 5% coconut water and 400 mg/L casein hydrolysate. Plants can be readily regenerated and multiplied from transgenic callus through organogenesis. Rooting of shoots does not require any additional plant hormones to the medium. A transformation efficiency of 1 – 3.5% can be achieved, depending on the gene construct applied.
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More than 40% of all deaths in Finland are caused by atherosclerosis. The complications of atherosclerosis are due to either detachment of the luminal endothelium (erosion) or rupture of the fibrous cap of an atherosclerotic plaque (rupture). As a result, a thrombus is formed at the site of the intimal lesion. Indeed, erosions cause roughly 40% of sudden atherothrombotic deaths and 25% of all atherothrombotic deaths. Erosions are overrepresented in young subjects, diabetics, smokers and women. This dissertation focuses on endothelial erosion. Endothelial erosions were studied in the context of arterial grafting and vascular inflammation. Special attention was given to the role of intimal mast cells and the methodological viewpoints of reliable identification of endothelial erosions. Mast cells are inflammatory cells mostly known for their ability to cause allergic symptoms. In addition to occurring in skin and mucosal surfaces, mast cells are abundant in arterial intima and adventitia. In this study, mast cells were found to associate with endothelial erosions in non-lesional and atherosclerotic human coronary arteries. Thus, mast cells may participate in atherogenesis at the initial phases of the disease process already. We also showed that the mast cell proteases tryptase, chymase, and cathepsin G are all capable of cleaving molecules essential for endothelial cell-to-cell and cell-to-extracellular matrix interactions, such as VE-cadherin and fibronectin. Symptom-causing carotid plaques were found to contain more inflammatory cells, especially mast cells, than non-symptom-causing plaques. Furthermore, the atherogenic serum lipid profile and the degree of carotid stenosis turned out to correlate with the density of carotid plaque mast cells. Apoptotic and proliferating cells were more abundant in non-symptom causing plaques (active renewal of endothelial cells), but erosions were larger in symptom-causing plaques (capacity of endothelial regeneration exceeded). The process of identifying endothelial erosions with immunostainings has been ambiguous, since both endothelial cells and platelets express largely the same antigens. This may have caused inaccurate interpretations of the presence of endothelial erosion. In the last substudy of this thesis we developed a double immunostaining method for simultaneous identification of endothelial cells and platelets. This method enables more reliable identification of endothelial erosions.
Resumo:
Vascular intimal hyperplasia is a major complication following angioplasty. The hallmark feature of this disorder is accumulation of dedifferentiated smooth muscle cells (SMCs) to the luminal side of the injured artery, cellular proliferation, migration, and synthesis of extracellular matrix. This finally results in intimal hyperplasia, which is currently considered an untreatable condition. According to current knowledge, a major part of neointimal cells derive from circulating precursor cells. This has outdated the traditional in vitro cell culture methods of studying neointimal cell migration and proliferation using cultured medial SMCs. Somatostatin and some of its analogs with different selectivity for the five somatostatin receptors (sst1 through sst5) have been shown to have vasculoprotective properties in animal studies. However, clinical trials using analogs selective for sst2/sst3/sst5 to prevent restenosis after percutaneous transluminal coronary angioplasty (PTCA) have failed to show any major benefits. Sirolimus is a cell cycle inhibitor that has been suggested to act synergistically with the protein-tyrosine kinase inhibitor imatinib to inhibit intimal hyperplasia in rat already at well-tolerated submaximal oral doses. The mechanisms behind this synergy and its long-term efficacy are not known. The aim of this study was to set up an ex vivo vascular explant culture model to measure neointimal cell activity without excluding the participation of circulating progenitor cells. Furthermore, two novel potential vasculoprotective treatment strategies were evaluated in detail in rat models of intimal hyperplasia and in the ex vivo explant model: sst1/sst4-selective somatostatin receptor analogs and combination treatment with sirolimus and imatinib. This study shows how whole vessel explants can be used to study the kinetics of neointimal cells and their progenitors, and to evaluate the anti-migratory and anti-proliferative properties of potential vasculoprotective compounds. It also shows how the influx of neointimal progenitor cells occurs already during the first days after vascular injury, how the contribution of cell migration is more important in the injury response than cell proliferation, and how the adventitia actively contribute in vascular repair. The vasculoprotective effect of somatostatin is mediated preferentially through sst4, and through inhibition of cell migration rather than of proliferation, which may explain why sst2/sst3/sst5-selective analogs have failed in clinical trials. Furthermore, a brief early oral treatment with the combination of sirolimus and imatinib at submaximal doses results in long-term synergistic suppression of intimal hyperplasia. The synergy is a result of inhibition of post-operative thrombocytosis and leukocytosis, inhibition of neointimal cell migration to the injury-site, and maintenance of cell integrity by inhibition of apoptosis and SMC dedifferentiation. In conclusion, the influx of progenitor cells already during the first days after injury and the high neointimal cell migratory activity underlines the importance of early therapeutic intervention with anti-migratory compounds to prevent neointimal hyperplasia. Sst4-selective analogs and the combination therapy with sirolimus and imatinib represent potential targets for the development of such vasculoprotective therapies.
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Heart transplantation is the only therapeutic modality for many end-stage heart diseases but poor long-term survival remains a challenging problem. This is mainly due to the development of cardiac allograft arteriosclerosis (TxCAD) that is an accelerated form of coronary artery disease. Both traditional cardiovascular and transplantation-related risk factors for TxCAD have been identified but options for therapy are limited. TxCAD involves dysfunction of cardiac allograft vascular cells. Activated endothelial cells (EC) regulate allograft inflammation and secrete smooth muscle cell (SMC) growth factors. In turn, SMC and their progenitors invade the intima of the injured vessels and occlude the affected coronary arteries. Different vascular growth factors have to be delicately regulated in normal vascular development. In the present study, experimental heterotopic transplantation models were used to study the role of angiogenic and pro-inflammatory vascular endothelial growth factor (VEGF), EC growth factor angiopoietin (Ang), and SMC mitogen platelet-derived growth factor (PDGF) in the development of TxCAD. Pharmacological and gene transfer approaches were used to target these growth factors and to assess their therapeutic potential. This study shows that alloimmune response in heart transplants upregulates VEGF expression, and induces allograft angiogenesis that involves donor-derived primitive EC. Intracoronary adenoviral VEGF gene transfer increased macrophage infiltration, intimal angiogenesis and TxCAD. VEGF inhibition with PTK787 decreased allograft inflammation and TxCAD, and simultaneous PDGF inhibition with imatinib further decreased TxCAD. Specific inhibition of two VEGF-receptors (VEGFR) decreased allograft inflammation and TxCAD, and VEGFR-2 inhibition normalized the density of primitive and mature capillaries in the allografts. Adenovirus-mediated transient Ang1 expression in the allograft had anti-inflammatory and anti-arteriosclerotic effects. Adeno-associated virus (AAV)-mediated prolonged Ang1 or Ang2 expression had similar anti-inflammatory effects. However, AAV-Ang1 activated allograft SMC whereas AAV-Ang2 had no effects on SMC activation and decreased the development of TxCAD. These studies indicate an interplay of inflammation, angiogenesis and arteriosclerosis in cardiac allografts, and show that vascular growth factors are important regulators in the process. Also, VEGF inhibition, PDGF inhibition and angiopoietin therapy with clinically-relevant pharmacological agents or novel gene therapy approaches may counteract vascular dysfunction in cardiac allografts, and have beneficial effects on the survival of heart transplant patients in the future.
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Initiation of proinflammatory host immunity in response to infection represents as a key event in effective control and containment of the pathogen at the site of infection as well as in elicitation of robust immune memory responses. In the current investigation, we demonstrate that an integral cell wall antigen of the mycobacterial envelope, Phosphatidyl-myo-inositol dimannosides (PIM2) triggers Suppressor of cytokine signaling (SOCS) 3 expression in macrophages in a Toll-like receptor 2 (TLR2)-MyD88 dependent manner. Data derived from signaling perturbations suggest the involvement of phosphoinositide-3 kinase (PI3K) and protein kinase C (PKC) signaling pathways during PIM2 induced SOCS3 expression. Further, pharmacological inhibition of ERK1/2, but not of p38 MAP kinase or JNK abrogated the induced expression of SOCS3. The PIM2 induced activation of ERK1/2 was dependent on the activation of PI3K or PKC signaling which in turn regulated p65 nuclear factor -kappa B (NF-kappa B) nuclear translocation. Overall, current study delineates the role for PI3K-PKC axis and ERK1/2 signaling as key signaling events during PIM2 induced SOCS3 expression in macrophages.
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Activation of inflammatory immune responses during granuloma formation by the host upon infection of mycobacteria is one of the crucial steps that is often associated with tissue remodeling and breakdown of the extracellular matrix. In these complex processes, cyclooxygenase-2 (COX-2) plays a major role in chronic inflammation and matrix metalloproteinase-9 (MMP-9) significantly in tissue remodeling. In this study, we investigated the molecular mechanisms underlying Phosphatidyl-myo-inositol dimannosides (PIM2), an integral component of the mycobacterial envelope, triggered COX-2 and MMP-9 expression in macrophages. PIM2 triggers the activation of Phosphoinositide-3 Kinase (PI3K) and Notch1 signaling leading to COX-2 and MMP-9 expression in a Toll-like receptor 2 (TLR2)-MyD88 dependent manner. Notch1 signaling perturbations data demonstrate the involvement of the cross-talk with members of PI3K and Mitogen activated protein kinase pathway. Enforced expression of the cleaved Notch1 in macrophages induces the expression of COX-2 and MMP-9. PIM2 triggered significant p65 nuclear factor-kappa B (NF-kappa B) nuclear translocation that was dependent on activation of PI3K or Notch1 signaling. Furthermore, COX-2 and MMP-9 expression requires Notch1 mediated recruitment of uppressor of Hairless (CSL) and NF-kappa B to respective promoters. Inhibition of PIM2 induced COX-2 resulted in marked reduction in MMP-9 expression clearly implicating the role of COX-2 dependent signaling events in driving the MMP-9 expression. Taken together, these data implicate PI3K and Notch1 signaling as obligatory early proximal signaling events during PIM2 induced COX-2 and MMP-9 expression in macrophages.
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Atherosclerosis is an inflammatory disease characterized by accumulation of lipids in the inner layer of the arterial wall. During atherogenesis, various structures that are recognized as non-self by the immune system, such as modified lipoproteins, are deposited in the arterial wall. Accordingly, atherosclerotic lesions and blood of humans and animals with atherosclerotic lesions show signs of activation of both innate and adaptive immune responses. Although immune attack is initially a self-protective reaction, which is meant to destroy or remove harmful agents, a chronic inflammatory state in the arterial wall accelerates atherosclerosis. Indeed, various modulations of the immune system of atherosclerosis-prone animals have provided us with convincing evidence that immunological mechanisms play an important role in the pathogenesis of atherosclerosis. This thesis focuses on the role of complement system, a player of the innate immunity, in atherosclerosis. Complement activation via any of the three different pathways (classical, alternative, lectin) proceeds as a self-amplifying cascade, which leads to the generation of opsonins, anaphylatoxins C3a and C5a, and terminal membrane-attack complex (MAC, C5b-9), all of which regulate the inflammatory response and act in concert to destroy their target structures. To prevent uncontrolled complement activation or its attack against normal host cells, complement needs to be under strict control by regulatory proteins. The complement system has been shown to be activated in atherosclerotic lesions, modified lipoproteins and immune complexes containing oxLDL, for instance, being its activators. First, we investigated the presence and role of complement regulators in human atherosclerotic lesions. We found that inhibitors of the classical and alternative pathways, C4b-binding protein and factor H, respectively, were present in atherosclerotic lesions, where they localized in the superficial proteoglycan-rich layer. In addition, both inhibitors were found to bind to arterial proteoglycans in vitro. Immunohistochemical stainings revealed that, in the superficial layer of the intima, complement activation had been limited to the C3 level, whereas in the deeper intimal layers, complement activation had proceeded to the terminal C5b-9 level. We were also able to show that arterial proteoglycans inhibit complement activation in vitro. These findings suggested to us that the proteoglycan-rich layer of the arterial intima contains matrix-bound complement inhibitors and forms a protective zone, in which complement activation is restricted to the C3 level. Thus, complement activation is regulated in atherosclerotic lesions, and the extracellular matrix is involved in this process. Next, we studied whether the receptors for the two complement derived effectors, anaphylatoxins C3a and C5a, are expressed in human coronary atherosclerotic lesions. Our results of immunohistochemistry and RT-PCR analysis showed that, in contrast to normal intima, C3aR and C5aR were highly expressed in atherosclerotic lesions. In atherosclerotic plaques, the principal cells expressing both C3aR and C5aR were macrophages. Moreover, T cells expressed C5aR, and a small fraction of them also expressed C3aR, mast cells expressed C5aR, whereas endothelial cells and subendothelial smooth muscle cells expressed both C3aR and C5aR. These results suggested that intimal cells can respond to and become activated by complement-derived anaphylatoxins. Finally, we wanted to learn, whether oxLDL-IgG immune complexes, activators of the classical complement pathway, could have direct cellular effects in atherogenesis. Thus, we tested whether oxLDL-IgG immune complexes affect the survival of human monocytes, the precursors of macrophages, which are the most abundant inflammatory cell type in atherosclerotic lesions. We found that OxLDL-IgG immune complexes, in addition to transforming monocytes into foam cells, promoted their survival by decreasing their spontaneous apoptosis. This effect was mediated by cross-linking Fc receptors with ensuing activation of Akt-dependent survival signaling. Our finding revealed a novel mechanism by which oxLDL-IgG immune complexes can directly affect the accumulation of monocyte-macrophages in human atherosclerotic lesions and thus play a role in atherogenesis.
Resumo:
The metabolic syndrome and type 1 diabetes are associated with brain alterations such as cognitive decline brain infarctions, atrophy, and white matter lesions. Despite the importance of these alterations, their pathomechanism is still poorly understood. This study was conducted to investigate brain glucose and metabolites in healthy individuals with an increased cardiovascular risk and in patients with type 1 diabetes in order to discover more information on the nature of the known brain alterations. We studied 43 20- to 45-year-old men. Study I compared two groups of non-diabetic men, one with an accumulation of cardiovascular risk factors and another without. Studies II to IV compared men with type 1 diabetes (duration of diabetes 6.7 ± 5.2 years, no microvascular complications) with non-diabetic men. Brain glucose, N-acetylaspartate (NAA), total creatine (tCr), choline, and myo-inositol (mI) were quantified with proton magnetic resonance spectroscopy in three cerebral regions: frontal cortex, frontal white matter, thalamus, and in cerebellar white matter. Data collection was performed for all participants during fasting glycemia and in a subgroup (Studies III and IV), also during a hyperglycemic clamp that increased plasma glucose concentration by 12 mmol/l. In non-diabetic men, the brain glucose concentration correlated linearly with plasma glucose concentration. The cardiovascular risk group (Study I) had a 13% higher plasma glucose concentration than the control group, but no difference in thalamic glucose content. The risk group thus had lower thalamic glucose content than expected. They also had 17% increased tCr (marker of oxidative metabolism). In the control group, tCr correlated with thalamic glucose content, but in the risk group, tCr correlated instead with fasting plasma glucose and 2-h plasma glucose concentration in the oral glucose tolerance test. Risk factors of the metabolic syndrome, most importantly insulin resistance, may thus influence brain metabolism. During fasting glycemia (Study II), regional variation in the cerebral glucose levels appeared in the non-diabetic subjects but not in those with diabetes. In diabetic patients, excess glucose had accumulated predominantly in the white matter where the metabolite alterations were also the most pronounced. Compared to the controls values, the white matter NAA (marker of neuronal metabolism) was 6% lower and mI (glia cell marker) 20% higher. Hyperglycemia is therefore a potent risk factor for diabetic brain disease and the metabolic brain alterations may appear even before any peripheral microvascular complications are detectable. During acute hyperglycemia (Study III), the increase in cerebral glucose content in the patients with type 1 diabetes was, dependent on brain region, between 1.1 and 2.0 mmol/l. An every-day hyperglycemic episode in a diabetic patient may therefore as much as double brain glucose concentration. While chronic hyperglycemia had led to accumulation of glucose in the white matter, acute hyperglycemia burdened predominantly the gray matter. Acute hyperglycemia also revealed that chronic fluctuation in blood glucose may be associated with alterations in glucose uptake or in metabolism in the thalamus. The cerebellar white matter appeared very differently from the cerebral (Study IV). In the non-diabetic men it contained twice as much glucose as the cerebrum. Diabetes had altered neither its glucose content nor the brain metabolites. The cerebellum seems therefore more resistant to the effects of hyperglycemia than is the cerebrum.
Resumo:
Congenital nephrotic syndrome of the Finnish type (NPHS1) is an autosomal recessive disease which is highly enriched in the Finnish population. It is caused by mutations in the NPHS1 gene encoding for nephrin, which is a major component of the glomerular filtration barrier in the kidney. Patients with NPHS1 have heavy proteinuria and nephrotic syndrome (NS) from birth and develop renal fibrosis in early childhood. Renal transplantation (TX) is the only curative treatment for NPHS1. These patients form the largest group of pediatric kidney transplant children in our country. The NPHS1 kidneys are removed in infancy and they serve as an excellent human material for studies of the pathophysiology of proteinuric kidney diseases. Sustained proteinuria is a major factor leading to end-stage renal failure and understanding this process is crucial for nephrology. In this study we investigated the glomerular and tubulointerstitial changes that occur in the NPHS1 kidneys during infancy as well as the expression of nephrin in non-renal tissues. We also studied the pathology and management of recurrent proteinuria in kidney grafts transplanted to NPHS1 children. Severe renal lesions evolved in patients with NPHS1 during the first months of life. Glomerular sclerosis developed through progressive mesangial sclerosis, and capillary obliteration was an early consequence of this process. Shrinkage of the glomerular tuft was common, whereas occlusion of tubular opening or protrusion of the glomerular tuft into subepithelial space or through the Bowman's capsule were not detected. Few inflammatory cells were detected in the mesangial area. The glomerular epithelial cells (podocytes) showed severe ultrastructural changes and hypertrophy. Podocyte proliferation and apoptosis were rare, but moderate amounts of podocytes were detached and ended up in the urine. The results showed that endocapillary lesions not extracapillary lesions, as generally believed were important for the sclerotic process in the NPHS1 glomeruli. In the tubulointerstitium, severe lesions developed in NPHS1 kidneys during infancy. Despite heavy proteinuria, tubular epithelial cells (TECs) did not show transition into myofibroblasts. The most abundant chemokines in NPHS1 tissue were neutrophil activating protein-2 (NAP-2), macrophage inhibiting factor (MIF), and monocyte chemoattractant protein-1 (MCP-1). Interstitial inflammation and fibrosis were first detected in the paraglomerular areas and the most abundant inflammatory cells were monocytes/macrophages. Arteries and arterioles showed intimal hypertrophy, but the pericapillary microvasculature remained quite normal. However, excessive oxidative stress was evident in NPHS1 kidneys. The results indicated that TECs were relatively resistant to the heavy tubular protein load. Nephrin was at first thought to be podocyte specific, but some studies especially in experimental animals have suggested that nephrin might also be expressed in non-renal tissues such as pancreas and central nervous system. The knowledge of nephrin biology is important for the evaluation of nephrin related diseases. In our study, no significant amounts of nephrin protein or mRNA were detected in non-renal tissues of man and pig as studied by immunohistochemistry and in situ hybridization. The phenotype analysis of NPHS1 children, who totally lack nephrin, revealed no marked impairment in the neurological, testicular, or pancreatic function speaking against the idea that nephrin would play an important functional role outside the kidney. The NPHS1 kidneys do not express nephrin and antibodies against this major glomerular filter protein have been observed in NPHS1 children after renal TX most likely as an immune reaction against a novel antigen. These antibodies have been associated with the development of recurrent NS in the kidney graft of NPHS1 patients. In our study, a third of the NPHS1 patients homozygous for Fin-Major mutation developed recurrent NS in the transplanted graft. Re-transplantations were performed to patients who lost their graft due to recurrent NS and heavy proteinuria immediately developed in all cases. While 73% of the patients had detectable serum anti-nephrin antibodies, the kidney biopsy findings were minimal. Introduction of plasma exchange (PE) to the treatment of recurrent nephroses increased the remission rate from 54% to 89%. If remission was achieved, recurrent NS did not significantly deteriorate the long term graft function. In conclusion, the results show that the lack of nephrin in podocyte slit diaphragm in NPHS1 kidneys induces progressive mesangial expansion and glomerular capillary obliteration and inflicts interstitial fibrosis, inflammation, and oxidative stress with surprisingly little involvement of the TECs in this process. Nephrin appears to have no clinical significance outside the kidney. Development of antibodies against nephrin seems to be a major cause of recurrent NS in kidney grafts of NPHS1 patients and combined use of PE and cyclophosphamide markedly improved remission rates.
Resumo:
Biologisesti aktiivisilla oligosakkarideilla on vaikutuksia kasvin kasvuun ja kehittymiseen. Tietyn tyyppiset oligosakkaridit voivat myös indusoida puolustusreaktion valikoivasti oligosakkaridista riippuen. Useat biologisesti aktiiviset oligosakkaridit on löydetty kasvien soluseinää keinotekoisesti hajottamalla. Pro gradu -tutkielman tarkoituksena oli karakterisoida kuusen (Picea abies) solukkolinjan A3/85 solususpensiokasvatukseen erittämiä oligosakkarideja. Kuusisolukko A3/85 on otollinen kandidaatti tutkimukseen, sillä sen on todettu erittävän solunulkoista ligniiniä suspensioliuokseen. Oligosakkarideja karakterisoitiin yhden ja neljän vuorokauden kasvatuksista. Alustan sokeripitoisuutta alennettiin neljän vuorokauden kasvatuksissa karakterisoinnin helpottamiseksi. Oligosakkaridien pitoisuudet voivat olla hyvin alhaisia, joten solujen tuottamia yhdisteitä seurattiin myös radioaktiivisen D-[U-14C]-glukoosin avulla. Kasvien soluseinässä yleiset glukuronihappo, galakturonihappo, ksyloosi, arabinoosi ja apioosi valmistetaan glukoosi-6-fosfaatista, joko myo-inositolihapetusreitin tai sokerihapetusreitin kautta. Lisäksi tutkittiin, muuttuuko radioaktiivisen leiman jakautuminen näytteissä, kun kasvatusliuoksessa on tai ei ole myo-inositolia. Kasvatusliuos fraktioitiin geelisuodatuskromatografialla. Fraktioiden sisältämät yhdisteet eroteltiin paperikromatografialla ja värjättiin hopeanitraatilla, aniliinivetyftalaatilla tai ninhydriinillä. Hopeanitraatti on hyödyllinen monosakkaridien, oligosakkaridien ja alditolien värjäyksessä. Radioaktiivisuuden kertymistä yhdisteisiin seurattiin nestetuikelaskimella ja autoradiografialla. Paperikromatografialla erotelluista yhdisteistä valittiin mielenkiintoiseksi koetut yhdisteet, jotka eristettiin preparatiivisella paperikromatografialla. Eristetyille yhdisteille tehtiin happohydrolysointi, borohydridikäsittely tai entsymaattinen Driselaasi -käsittely. Happohydrolysointi avaa sokeriyksiköiden väliset glykosidiset sidokset. Natriumborohydridipelkistys muuttaa oligosakkaridiketjun pelkistävän sokerin sokerialkoholiksi ja Driselaasi -käsittely avaa isoprimeveroosin Xyl-Į-(1ĺ6)-Glc -sidosta lukuun ottamatta muut glykosidiset sidokset. 14C-leima on jakautunut myo-inositolin kanssa kasvatetun näytteen fraktioinnissa vahvemmin suurimolekyylisiin yhdisteisiin, kun taas ilman myo-inositolia kasvatetussa näytteessä suurin aktiivisuus D-[U-14C]-glukoosin jälkeen on trisakkaridien alueella. Suspensioliuoksista analysoitiin useita oligosakkarideja polymerisaatioasteella 1-4. Analysoiduista yhdisteistä kolme sisälsivät ksyloosia, jota solut voivat syntetoida joko myo-inositolin hapetusreitin tai glukoosin hapetusreitin kautta. Myo-inositolin puuttuminen alustasta lisäsi näiden leimattujen yhdisteiden pitoisuutta. Alustan myo-inositoli ei ole radioaktiivista, joten myo-inositolihapetusreitin kautta valmistetut monosakkaridit eivät näy autoradiografiassa. Vaikuttaisi siis siltä, että myo-inositolihapetusreitti on aktiivinen ainakin, jos solukolle tarjotaan myo-inositolia. Lisätty myo-inositoli vähentää sokerihapetusreitin aktiivisuutta. Työn aikana onnistuttiin eristämään ja osittain tunnistamaan useita kuusen suspensioliuoksen yhdisteitä. Myo-inositolihapetusreitti todettiin aktiiviseksi solukkokasvatuksessa, kun ravintoalustassa on myo-inositolia.
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Since the time of Kirkwood, observed deviations in magnitude of the dielectric constant of aqueous protein solution from that of neat water (similar to 80) and slower decay of polarization have been subjects of enormous interest, controversy, and debate. Most of the common proteins have large permanent dipole moments (often more than 100 D) that can influence structure and dynamics of even distant water molecules, thereby affecting collective polarization fluctuation of the solution, which in turn can significantly alter solution's dielectric constant. Therefore, distance dependence of polarization fluctuation can provide important insight into the nature of biological water. We explore these aspects by studying aqueous solutions of four different proteins of different characteristics and varying sizes, chicken villin headpiece subdomain (HP-36), immunoglobulin binding domain protein G (GB1), hen-egg white lysozyme (LYS), and Myoglobin (MYO). We simulate fairly large systems consisting of single protein molecule and 20000-30000 water molecules (varied according to the protein size), providing a concentration in the range of similar to 2-3 mM. We find that the calculated dielectric constant of the system shows a noticeable increment in all the cases compared to that of neat water. Total dipole moment auto time correlation function of water < dM(W) (0)delta M-W (t) > is found to be sensitive to the nature of the protein. Surprisingly, dipole moment of the protein and total dipole moment of the water molecules are found to be only weakly coupled. Shellwise decomposition of water molecules around protein reveals higher density of first layer compared to the succeeding ones. We also calculate heuristic effective dielectric constant of successive layers and find that the layer adjacent to protein has much lower value (similar to 50). However, progressive layers exhibit successive increment of dielectric constant, finally reaching a value close to that of bulk 4-5 layers away. We also calculate shellwise orientational correlation function and tetrahedral order parameter to understand the local dynamics and structural re-arrangement of water. Theoretical analysis providing simple method for calculation of shellwise local dielectric constant and implication of these findings are elaborately discussed in the present work. (C) 2014 AIP Publishing LLC.
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The synaptic plasticity literature has focused on establishing necessity and sufficiency as two essential and distinct features in causally relating a signaling molecule to plasticity induction, an approach that has been surprisingly lacking in the intrinsic plasticity literature. In this study, we complemented the recently established necessity of inositol trisphosphate (InsP(3)) receptors (InsP(3)R) in a form of intrinsic plasticity by asking if InsP(3)R activation was sufficient to induce intrinsic plasticity in hippocampal neurons. Specifically, incorporation of D-myo-InsP(3) in the recording pipette reduced input resistance, maximal impedance amplitude, and temporal summation but increased resonance frequency, resonance strength, sag ratio, and impedance phase lead. Strikingly, the magnitude of plasticity in all these measurements was dependent on InsP 3 concentration, emphasizing the graded dependence of such plasticity on InsP(3)R activation. Mechanistically, we found that this InsP(3)-induced plasticity depended on hyperpolarization-activated cyclic nucleotide-gated channels. Moreover, this calcium-dependent form of plasticity was critically reliant on the release of calcium through InsP(3)Rs, the influx of calcium through N-methyl-D-aspartate receptors and voltage-gated calcium channels, and on the protein kinase A pathway. Our results delineate a causal role for InsP(3)Rs in graded adaptation of neuronal response dynamics, revealing novel regulatory roles for the endoplasmic reticulum in neural coding and homeostasis.
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A disfunção erétil (DE) tem alta prevalência entre hipertensos e tem sido considerada marcador precoce de risco cardiovascular. A presença e gravidade da DE bem como a resposta clínica aos inibidores da fosfodiesterase tipo 5 (PDE5) parecem depender da biodisponibilidade do óxido nítrico (NO) endotelial e da extensão da doença aterosclerótica. O objetivo deste estudo foi avaliar a resposta clínica da vardenafila usada em dois regimes terapêuticos em hipertensos com DE vasculogênica e sem doença cardiovascular maior, correlacionando a gravidade da DE e a eficácia da vardenafila com dados antropométricos, laboratoriais, escore de risco cardiovascular e parâmetros vasculares funcionais e estruturais. A resposta clínica à vardenafila nos dois regimes foi avaliada conforme o percentual de respostas positivas à questão 3 do Perfil do Encontro Sexual (PES3). Os parâmetros vasculares considerados foram a espessura médio-intimal (EMI) da carótida comum, a dilatação mediada pelo fluxo (DMF) da artéria braquial e a dilatação nitrato-mediada (DNM). Foram incluídos 100 homens hipertensos com idade entre 50 e 70 anos, sendo 74 portadores de DE vasculogênica e 26 com função erétil normal que serviram de grupo controle. Nos pacientes com DE, o índice de massa corporal, relação cintura-quadril, EMI da carótida, níveis séricos de triglicerídeos, colesterol total e LDL foram significativamente maiores que no grupo controle. Após o uso de vardenafila on demand (fase 1), os pacientes com mais de 50% de respostas positivas ao PES3 ou 50% de respostas afirmativas e um incremento de 6 pontos ou mais em relação ao Índice Internacional de Função Erétil (IIEF-FE) basal e/ou resposta positiva a Questão de Avaliação Global (QAG), foram considerados respondedores. O escore do IIEF-FE basal se correlacionou negativamente com a EMI da carótida (r=-0,48, P<0,001) e com o escore de Framingham (r= -0,41, P<0,001) no grupo com DE. Houve forte correlação positiva entre a resposta clínica à vardenafila com a DMF (r= 0,70, P<0,001), que não se observou entre o sub-grupo de diabéticos. Os 35 pacientes considerados não-respondedores na fase 1 foram randomizados e, em desenho duplo-cego, receberam vardenafila ou placebo diariamente durante cinco semanas, podendo usar 10 mg de vardenafila uma hora antes da atividade sexual (fase2). Houve resposta clínica positiva em 38,8% dos que receberam a vardenafila na fase 2 e esta resposta se correlacionou com a frequência sexual (r= 0,68, P<0,01) e com o escore de Framingham (r= -0,65, P<0,01), com a EMI da carótida (r= -0,61, P=0,01) e com o LDL-colesterol (r= -0,64, P<0,01). A vardenafila foi bem tolerada em ambos os regimes terapêuticos. Concluímos que nessa amostra de hipertensos, a gravidade da DE foi relacionada a parâmetros vasculares estruturais (EMI), enquanto a resposta clínica à vardenafila on demand foi mais diretamente dependente da função vascular momentânea (DMF). Houve benefício na utilização de vardenafila diariamente com o objetivo de resgatar a eficácia do inibidor quanto à melhora do desempenho sexual. A falta de eficácia clínica ao inibidor da PDE5 em ambos os regimes terapêuticos pode servir como marcador clínico que identifica homens hipertensos com um risco cardiovascular aumentado.
Resumo:
A aterosclerose e suas complicações são a principal causa de morbidade e mortalidade no mundo ocidental. O aumento da espessura da camada médio-intimal da carótida está associado com risco para doenças cardiovasculares, pois representa um marcador de aterosclerose subclínica, podendo ser detectada precocemente em indivíduos assintomáticos. O objetivo desse estudo foi identificar variáveis clínicas e nutricionais associadas com a aterosclerose subclínica em mulheres hipertensas. Estudo transversal envolvendo uma amostra de conveniência composta por 116 mulheres hipertensas entre 40 e 65 anos. Dados clínicos, como pressão arterial (PA) sistólica e diastólica, história de tabagismo, atividade física, uso de medicamentos foram coletados; foi feita a análise do perfil lipídico, glicemia e proteína C reativa (PCR); a avaliação dietética obtida pelo Recordatório de 24 horas e pelo Registro de três dias. A espessura médio-intimal (EMI) de carótidas foi realizada pelo aparelho de ultrassonografia. As pacientes foram divididas em dois grupos, de acordo com os valores da espessura médio-intimal de carótidas: EMI 0,9mm ou EMI > 0,9mm. Houve diferença significativa entre os grupos em relação à idade (50,846,62 vs 53,547,13; p=0,044), PA sistólica (134,5216,54 vs 142,9821,47; p=0,020), pressão de pulso (PP) (49,3611,03 vs 60,15 17,77; p<0,001), HDL (48,988,54 vs 44,057,45; p=0,004) e PCR (2,311,21 vs 3,051,34; p=0,016). Não houve diferença significativa em relação aos parâmetros antropométricos, exceto em relação à reactância (65,199,69 vs 61,447,88; p=0,036), avaliada pela bioimpedância elétrica (BIA). Quanto ao padrão de consumo alimentar, somente o consumo de gordura monoinsaturada foi diferente entre os grupos, sendo o maior consumo no grupo com menor valor de EMI (7,882,09 vs 7,022,06; p=0,031). Não houve diferença em relação à frequência de tabagismo e atividade física. Quando foi feita a análise de correlação da amostra, foi encontrada uma correlação entre a EMI de carótidas e idade (r=0,25; p=0,0067), PAS (r=0,19; p=0,0086); PP (r=0,30; p=0,0009), LDL (r=0,19; p=0,0434), assim como com gordura monoinsaturada (r= -0,25; p=0,0087), PCR (r=0,31; p=0,007) e HDL (r=-0,33; p=0,0004), porém apenas as variáveis HDL, PCRus e pressão de pulso mostraram ser preditoras independentes da EMI de carótida após feita uma análise de regressão linear multivariada. A proteína C reativa, HDL colesterol e pressão de pulso são importantes preditores independentes de aterosclerose subclínica.
Resumo:
A periodontite é uma doença infecciosa, crônica e altamente prevalente causando uma resposta inflamatória. A infecção e a inflamação são consideradas a base etiológica para o desenvolvimento da aterosclerose. Recentes estudos indicam que a periodontite severa pode influenciar o aumento de marcadores inflamatórios e de disfunção endotelial associados com o aumento de risco da doença coronariana e o acidente vascular cerebral. Embora alguns estudos tenham sugerido esta associação, os reais efeitos do tratamento da doença periodontal sobre a rede complexa de marcadores envolvidos na aterosclerose são pouco conhecidos. O objetivo deste estudo foi avaliar o efeito da terapia periodontal nos biomarcadores inflamatórios (TNF-α, fibrinogênio, PCRus, INFγ, IL-1β, IL-6 e IL-10), perfil lipídico (CT, HDL, LDL, TG, oxLDL e anti-oxLDL) e função endotelial (IMT) das artérias carótidas. Um total de trinta e dois indivíduos saudáveis sistemicamente e afetados pela periodontite severa (16 mulheres, 16 homens; 51,87 anos de idade), incluindo 17 sujeitos para o grupo teste e 15 sujeitos para o grupo controle foram recrutados para o estudo. A ultrassonografia das artérias carótidas e os níveis séricos inflamatórios foram avaliados no início, 40 e 100 dias após o tratamento periodontal não-cirúrgico, comparando tempo e grupos. O tratamento periodontal resultou em significante redução dos parâmetros da doença periodontal. O grupo que recebeu tratamento mostrou decréscimos significativos de oxLDL (P<0.0001), anti-oxLDL (P<0,0001), TNF-α (P<0,0001), fibrinogênio (P=0,008), INFγ (P<0,0001), IL-1β (P<0,0001), IL-6 (P<0,0001), IMT (P=0,006) e significante aumento de IL-10 (P<0,0001) após 100 dias do tratamento periodontal comparando com grupo controle. Entretanto, os resultados não foram significativos para PCRu (P=0,109), colesterol total (P=0,438), HDL (P=0,119), LDL (P=0,425) e triglicerídeos (P=0,939). Com base nestes resultados, o tratamento da periodontite pode melhorar o perfil inflamatório e a função endotelial, sendo uma importante ferramenta adicional para a prevenção das doenças cardiovasculares.