244 resultados para FGF


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人胚胎干细胞(ESC)的成功分离培养,吸引大批人对干细胞生物学的关注,特 别是ESC 在再生医学及人类早期胚胎发育研究的潜在价值。然而在人ESC 临床应用 之前需要找到合适的动物模型进行大量的预实验研究,从而评价其应用的安全性、有 效性及存活效率。因此,从其它物种建立稳定而可用的ESC 系也是必不可少的。ESC 能无限地自我更新并保持多潜能性,但控制其自我更新的分子机制现在仍然知之甚少 且物种间存在差异,了解ESC 的自我更新有利于提高建系率、改善培养体系及定向 分化体系。本文一方面对ESC 分离培养及自我更新机制的研究进展进行了综述,另 一方面对以下几个方面的内容进行了研究:1)建立了4 株稳定的兔ESC 系,能在体 外进行长期的培养并保持ESC 的多潜能Markers 及正常的XY 或XX 核型,具有碱性 磷酸酶活性、表达Oct-4、SSEA-1、SSEA-3、SSEA-4、TRA-1-60 及TRA-1-81。与人 和小鼠ESC 相似,兔ESC 表达多潜能基因(Oct-4、Nanog、Sox-2 及UTF-1),并表 达了与ESC 自我更新相关的信号通路(FGF、TGFβ及WNT)的许多基因。从形态 来说,兔ESC 与灵长类ESC 相似,但兔ESC 具有较快的增殖能力,与小鼠ESC 相类 似。在体外及体内兔ESC 均能分化成代表原始三胚层的各种细胞类型及组织。2) 从 受体抑制实验及生长因子的联合加入可以得出结论FGF 及TGF 信号通路对维持兔 ESC 的多潜能性发挥着重要的作用,这样的结果与人ESC 相类似。也表明FGF、TGF β及WNT 信号通路在兔ESC 的自我更新中都起着作用,而且他们之间可能形成了信 号调控网络,相互之间有着正负反馈作用。FGF2+Activin A 或TGFβ1+Noggin 的无 饲养层无血清培养体系不仅能显著抑制兔ESC 的分化,且能维持其长期的自我更新。 但与小鼠不同,TGFβ信号通路能影响其增殖能力,而对其多潜能性的维持并没有作 用。这就更说明了兔比小鼠更适宜成为人类疾病临床治疗之前的模型动物。3)四种 猕猴细胞系(MOF、MESF、MFG 和CMESF)可作为饲养层比MEFs(小鼠饲养层 细胞)更好或同等好支持猕猴ESC 的生长,保持其自我更新能力和分化的多能性。 而卵泡颗粒上皮样细胞(MFGE)不能支持猕猴ESC 的自我更新。进一步的研究表明 饲养层支持ESC 生长能力的差异可能是由于基因表达种类以及表达量上的差异而导 致的。

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Fibroblast growth factor-2 (FGF-2) is a multifunctional polypeptide that affects many cellular functions and phenomena. The wild-type recombinant human fibroblast growth factor rhFGF-2(W) and the mutant C78SC96S rhFGF-2(M) were expressed in Escherichia coli and their products were purified. The results by the means of fluorescence spectroscopy and CD spectrums, suggested that due to its decreased hydrophobicity rhFGF-2 is not deposited as an inclusion body. The mitogenic activity of the expressed rhFGF-2(M) on 3T3 fibroblasts was shown to be 10-fold more than the expressed rhFGF-2(W) of which the biological activity was a little less than that of the standard rhbFGF(W), indicating that the increased biological activity was due to the change of its secondary structure, dimerization and affinity binding to FGF receptor (FGFR).

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The ability of tissue engineered constructs to replace diseased or damaged organs is limited without the incorporation of a functional vascular system. To design microvasculature that recapitulates the vascular niche functions for each tissue in the body, we investigated the following hypotheses: (1) cocultures of human umbilical cord blood-derived endothelial progenitor cells (hCB-EPCs) with mural cells can produce the microenvironmental cues necessary to support physiological microvessel formation in vitro; (2) poly(ethylene glycol) (PEG) hydrogel systems can support 3D microvessel formation by hCB-EPCs in coculture with mural cells; (3) mesenchymal cells, derived from either umbilical cord blood (MPCs) or bone marrow (MSCs), can serve as mural cells upon coculture with hCB-EPCs. Coculture ratios between 0.2 (16,000 cells/cm2) and 0.6 (48,000 cells/cm2) of hCB-EPCs plated upon 3.3 µg/ml of fibronectin-coated tissue culture plastic with (80,000 cells/cm2) of human aortic smooth muscle cells (SMCs), results in robust microvessel structures observable for several weeks in vitro. Endothelial basal media (EBM-2, Lonza) with 9% v/v fetal bovine serum (FBS) could support viability of both hCB-EPCs and SMCs. Coculture spatial arrangement of hCB-EPCs and SMCs significantly affected network formation with mixed systems showing greater connectivity and increased solution levels of angiogenic cytokines than lamellar systems. We extended this model into a 3D system by encapsulation of a 1 to 1 ratio of hCB-EPC and SMCs (30,000 cells/µl) within hydrogels of PEG-conjugated RGDS adhesive peptide (3.5 mM) and PEG-conjugated protease sensitive peptide (6 mM). Robust hCB-EPC microvessels formed within the gel with invasion up to 150 µm depths and parameters of total tubule length (12 mm/mm2), branch points (127/mm2), and average tubule thickness (27 µm). 3D hCB-EPC microvessels showed quiescence of hCB-EPCs (<1% proliferating cells), lumen formation, expression of EC proteins connexin 32 and VE-cadherin, eNOS, basement membrane formation by collagen IV and laminin, and perivascular investment of PDGFR-β+/α-SMA+ cells. MPCs present in <15% of isolations displayed >98% expression for mural markers PDGFR-β, α-SMA, NG2 and supported hCB-EPC by day 14 of coculture with total tubule lengths near 12 mm/mm2. hCB-EPCs cocultured with MSCs underwent cell loss by day 10 with a 4-fold reduction in CD31/PECAM+ cells, in comparison to controls of hCB-EPCs in SMC coculture. Changing the coculture media to endothelial growth media (EBM-2 + 2% v/v FBS + EGM-2 supplement containing VEGF, FGF-2, EGF, hydrocortisone, IGF-1, ascorbic acid, and heparin), promoted stable hCB-EPC network formation in MSC cocultures over 2 weeks in vitro, with total segment length per image area of 9 mm/mm2. Taken together, these findings demonstrate a tissue engineered system that can be utilized to evaluate vascular progenitor cells for angiogenic therapies.

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A discondroplasia da tíbia (TD) em aves consiste numa anomalia do esqueleto onde existe uma falha nos processos normais da ossificação endocondral. Esta patologia é caracterizada pela formação de uma cartilagem não vascularizada e não mineralizada que se estende até à metáfise. Uma vez que existem várias anomalias do esqueleto em mamíferos com lesões semelhantes às apresentadas pela TD, este trabalho teve como objectivo a caracterização desta patologia em termos das moléculas que podem estar envolvidas no seu desenvolvimento. Assim, foi estudada a expressão das macromoléculas da matriz extracelular, das enzimas degradadoras da matriz (metaloproteinases da matriz: MMPs), bem como das moléculas envolvidas na proliferação e diferenciação celular, na angiogénese e apoptose. A expressão génica foi realizada, por PCR quantitativo em tempo real, em placas de crescimento normais e discondroplásicas obtidas a partir de frangos de carne (broilers) da estirpe Cobb. Os níveis proteicos de algumas MMPs foram analisados por immunoblotting e zimografia de gelatina. No presente estudo não se verificou alteração na expressão dos genes dos colagénios do tipo II, IX, X e XI, bem como do agrecano, nas lesões discondroplásicas. Observou-se uma redução acentuada nos níveis de mRNA da gelatinase-B (MMP-9), da colagenase-3 (MMP-13) e das estromalisinas -2 (MMP-10) e -3 (MMP-11), bem como nos níveis proteicos da gelatinase-A (MMP-2) e da MMP-13. Por outro lado, a MMP-7 aumentou drasticamente a expressão do seu gene. As moléculas envolvidas na proliferação e diferenciação dos condrócitos, tais como a PTHrP, o Ihh, o Cbfa-1 e o Sox-9, mantiveram a sua expressão génica nas lesões. Por outro lado, o TGF-β reduziu a sua expressão. A caspase-3 também dimimuiu a sua expressão na patologia. Em relação aos factores angiogénicos, o FGF manteve a sua expressão e o VEGF aumentou significativamente nas lesões. Este aumento do VEGF juntamente com o aumento da MMP-7 sugere um aumento da hipoxia nas lesões. Os nossos resultados sugerem que a acumulação da cartilagem observada na discondroplasia é devida a uma diminuição da proteólise da matriz, resultado de uma sub-expressão das MMPs, e não de um aumento da produção das macromoléculas da matriz. Desta forma, os nossos resultados sugerem que a falha na expressão e/ou activação das MMPs poderá estar associada ao desenvolvimento da discondroplasia da tíbia em aves. Finalmente, os nossos resultados vêm suportar os resultados anteriores que sugerem uma ligação entre a expressão das MMPs e anomalias no processo de ossificação endocondral.

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In previous work we found that mezerein, a C kinase activator, as well as basic fibroblast growth factor (FGF-2) induce demyelination and partial oligodendrocyte dedifferentiation in highly differentiated aggregating brain cell cultures. Here we show that following protein kinase C activator-induced demyelination, effective remyelination occurs. We found that mezerein or FGF-2 caused a transient increase in DNA synthesis following a pronounced decrease of the myelin markers myelin basic protein and 2',3'-cyclic nucleotide 3'-phosphohydrolase. Both oligodendrocytes and astrocytes were involved in this mitogenic response. Within 17 days after demyelination, myelin was restored to the level of the untreated controls. Transient mitotic activity was indispensable for remyelination. The present results suggest that myelinating oligodendrocytes retain the capacity to reenter the cell cycle, and that this plasticity is important for the regeneration of the oligodendrocyte lineage and remyelination. Although it cannot be excluded that a quiescent population of oligodendrocyte precursor cells was present in the aggregates and able to proliferate, differentiate and remyelinate, we could not find evidence supporting this view.

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The TNF family ligand ectodysplasin A (EDA) regulates the induction, morphogenesis and/or maintenance of skin-derived structures such as teeth, hair, sweat glands and several other glands. Deficiencies in the EDA - EDA receptor (EDAR) signalling pathway cause hypohidrotic ectodermal dysplasia (HED). This syndrome is characterized by the absence or malformation of several skin-derived appendages resulting in hypotrychosis, hypodontia, heat-intolerance, dry skin and dry eyes, susceptibility to airways infections and crusting of various secretions. The EDA-EDAR system is an important effector of canonical Wnt signalling in developing skin appendages. It functions by stimulating NF-κB-mediated transcription of effectors or inhibitors of the Wnt, Sonic hedgehog (SHH), fibroblast growth factor (FGF) and transforming growth factor beta (TGFβ) pathways that regulate interactions within or between epithelial and mesenchymal cells and tissues. In animal models of Eda-deficiency, soluble EDAR agonists can precisely correct clinically relevant symptoms with low side effects even at high agonist doses, indicating that efficient negative feedback signals occur in treated tissues. Hijacking of the placental antibody transport system can help deliver active molecules to developing foetuses in a timely manner. EDAR agonists may serve to treat certain forms of ectodermal dysplasia.

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Introduction : L’hypophosphatémie survient couramment après hépatectomie partielle. La régénération du foie était l’explication initiale. Cependant, les pertes rénales de phosphate observées récemment suggèrent que l’hypophosphatémie est probablement d’origine rénale. Nous avons donc mesuré la fraction d’excrétion urinaire de phosphate (FePO4) après hépatectomie partielle et nous avons étudié le rôle de la parathormone (PTH) et des phosphatonines dans cette hypophosphatémie. Méthodes : Les taux sériques de phosphate, de calcium ionisé, de PTH intacte, de « fibroblast growth factor- 23 » (FGF-23) intact et carboxyle-terminal, de FGF-7, de la « frizzled-related protein-4 » (FRP-4) et de HCO3- ainsi que le pH et la FePO4 ont été mesurés avant la chirurgie et aux jours postopératoires (po) 1, 2, 3, 5 et 7, chez 18 patients ayant subi une résection hépatique partielle. Résultats : Le phosphate sérique était à son plus bas niveau (0,66 ± 0,33 mmol/l; p < 0,001) au jour po 2. La FePO4 culminait à 25,07 ± 2,26 % au jour po 1 (p < 0,05) et était associée avec le taux de la parathormone intacte (r = 0,65; p = 0,006). Le calcium ionisé sérique diminuait à 1,1 ± 0,01 mmol/l, (p < 0,01) en même temps que la parathormone intacte s’élevait à 8,8 ± 0,9 pmol/l, (p < 0,01) au jour po 1; ces deux paramètres étaient inversement corrélés (r = -0,062; p = 0,016). Le FGF-23 intact atteignait son plus bas niveau à 7,8 ± 6,9 pg/ml (p < 0,001), au jour po 3; les valeurs de FGF-23 étaient corrélées avec la diminution du phosphate sérique aux jours po 0, 3, 5 et 7 (p < 0,001). Le FGF-23 carboxyle-terminal, le FGF-7 et la FRP-4 n’étaient pas reliés au phosphate sérique ni à la FePO4. Conclusion : L’hypophosphatémie observée après résection hépatique partielle est liée à une augmentation de la FePO4 qui est sans aucune relation avec les FGF-23 intact ou carboxyle-terminal, le FGF-7 et la FRP-4. La PTH intacte était associée avec la FePO4 uniquement au jour po 1. L’hypophosphatémie après résection hépatique est secondaire à d’autres facteurs non encore identifiés.

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De par sa présence dans tous les vaisseaux sanguins, l'endothélium joue un rôle clef dans le processus d’hémostase, tant par sa libération de facteurs anticoagulants que par ses changements protéiques qui permettent à l’organisme de déclencher la réparation tissulaire. La fonction anticoagulante de l’endothélium peut être mise en défaut en cas d’atteinte de son intégrité, entrainant la formation de thrombus, le rejet précoce de greffes ou encore l’induction de l’athérosclérose. L’intégrité de l’endothélium est donc capitale pour la prévention de nombreuses maladies cardiovasculaires. Chez l’adulte, les cellules endothéliales (CE), normalement quiescentes, sont rapidement activées en cas d’hypoxie ou d’inflammation, leur permettant ainsi d’amorcer le processus angiogénique comme suit: Tout d’abord, l’induction de l’hyperperméabilité vasculaire permet l’extravasation des protéines plasmatiques. Ensuite, la dégradation de la lame basale par des métalloprotéases permet aux CE de se détacher, de proliférer, de migrer et de s’organiser pour former l’ébauche du futur vaisseau. La dernière étape consiste en la maturation du vaisseau, c’est-à-dire son recouvrement par des cellules murales, telles que les cellules musculaires lisses et les péricytes. Ces processus sont régulés par de nombreux facteurs angiogéniques tels que les membres de la famille Notch, du vascular endothelial growth factor (VEGF), du fibroblast growth factor (FGF), des angiopoïétines, et des matrix metalloproteases (MMP). L’angiogenèse pathologique, soit une insuffisance ou un excès de vascularisation, est impliquée dans les blessures chroniques, les accidents cardiovasculaires, les pathologies coronariennes artérielles, les pathologies tumorales, l’arthrite rhumatoïde, la rétinopathie diabétique, l’athérosclérose, le psoriasis et l’asthme. Ces pathologies sont souvent issues d’une dérégulation de l’activité endothéliale, fréquemment observée conjointement à l’expression continue de molécules d’adhésion leucocytaires, à l’augmentation de la perméabilité vasculaire, et aux anomalies de la vasoréactivité. L’activation non-contrôlée de l’endothélium entraîne ainsi une inflammation chronique et la formation de structures vasculaires anarchiques. Les premiers leucocytes à répondre à l’appel inflammatoire sont les neutrophiles. Equippées d’une panoplie de produits antibactériens puissants mais aussi nocifs pour les tissus qui les entourent, ces cellules polylobées participent à chaque étape du processus inflammatoire, depuis l’induction de l’hyperperméabilité vasculaire jusqu’à la résolution. En effet, grâce à leurs récepteurs, les neutrophiles détectent et interprètent les signaux biochimiques présents dans la circulation et à la surface de l’endothélium, et libèrent aussi leurs propres médiateurs tels le VEGF, les MMP, et l’interleukine-8 (IL-8), dont les effets sont à la fois paracrines et autocrines. Existent-ils d’autres modulateurs typiques de la fonction endothéliale capables d’influencer le comportement des neutrophiles? En effet, notre laboratoire a démontré que chez l’humain, une stimulation directe aux angiopoïétines incitait les neutrophiles à adhérer aux CE, à migrer, à synthétiser et à relâcher l’IL-8, voire même à vivre plus longtemps. La présence du récepteur des angiopoïétines, Tie2, à la surface des neutrophiles laisse présager que la famille possèderait d’autres fonctions leucocytaires encore non-identifiées. Par ailleurs, dans un modèle classique de l’angiogenèse in vivo (matrigel), nous avons observé que sous l’effet du FGF1 et 2, les ébauches des nouveaux vaisseaux étaient parfois accompagnées d’une infiltration de cellules granulocytaires. Ainsi, en partant de ces observations, l’objectif de nos études (présentées ci-après) était d’approfondir nos connaissances sur la relation entre neutrophiles et facteurs angiogéniques, notamment les FGF et les angiopoïétines. Par tests in vitro, nous avons confirmé que les neutrophiles humains exprimaient plusieurs récepteurs du FGF (FGFR1-4) d’une façon hétérogène, et qu’ils migraient vers un gradient des ligands FGF1 et 2. Par ailleurs, nous nous sommes intéressés aux voies de signalisation inflammatoires activées par les ligands FGF1, FGF2, Ang1 et Ang2. Grâce à une stratégie génique ciblant 84 gènes inflammatoires, nous avons identifié plusieurs cibles d’intérêt touchées par Ang1, dont certains membres de la famille de l’IL-1, alors qu’aucun des gènes testés n’avait changé de façon significative sous l’effet des FGF ou d’Ang2. Suite à des cinétiques approfondies, nous avons démontré qu’Ang1 stimulait la transcription de l’ARN messager de l’IL-1β, et augmentait simultanément la quantité de protéine immature (pro-IL-1β; inactive) et clivée (IL-1β « mature »; active). En parallèle, Ang1 augmentait la sécrétion de l’antagoniste naturel de l’IL-1β, l’IL-1RA, sans pour autant stimuler la relâche de l’IL-1β. A l’instar des endotoxines bactériennes dont les effets liés à l’IL-1 dépendaient de la kinase p38, ceux d’Ang1 découlaient presque entièrement des voies de signalisation du p42/44.

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The tubular structures, which transport essential gases, liquids, or cells from one site to another, are shared among various divergent organisms. These highly organized tubular networks include lung, kidney, vasculature and mammary gland in mammals as well as trachea and salivary gland in Drosophila melanogaster. Many questions regarding the tubular morphogenesis cannot be addressed sufficiently by investigating the mammalian organs because their structures are extremely complex and therefore, systematic analyses of genetic and cellular programs guiding the development is not possible. In contrast, the Drosophila tracheal development provides an excellent model system since many molecular markers and powerful tools for genetic manipulations are available. Two mechanisms were shown to be important for the outgrowth of tracheal cells: the FGF signaling pathway and the interaction between the tracheal cells and the surrounding mesodermal cells. The Drosophila FGF ligand encoded by branchless (bnl) is localized in groups of cells near tracheal metameres. The tracheal cells expressing the FGF receptor breathless (btl) respond to these sources of FGF ligand and extend towards them. However, this FGF signaling pathway is not sufficient for the formation of continuous dorsal trunk, the only muticellular tube in tracheal system. Recently, it was found out that single mesodermal cells called bridge-cells are essential for the formation of continuous dorsal trunk as they direct the outgrowth of dorsal trunk cells towards the correct targets. The results in this PhD thesis demonstrate that a cell adhesion molecule Capricious (Caps), which is specifically localized on the surface of bridge-cells, plays an essential role in guiding the outgrowing dorsal trunk cells towards their correct targets. When caps is lacking, some bridge-cells cannot stretch properly towards the adjacent posterior tracheal metameres and thus fail to interconnect the juxtaposing dorsal trunk cells. Consequently, discontinuous dorsal trunks containing interruptions at several positions are formed. On the other hand, when caps is ectopically expressed in the mesodermal cells through a twi-GAL4 driver, these mesodermal cells acquire a guidance function through ectopic caps and misguide the outgrowing dorsal trunk cells in abnormal directions. As a result, disconnected dorsal trunks are formed. These loss- and gain-of-function studies suggest that Caps presumably establishes the cell-to-cell contact between the bridge-cells and the tracheal cells and thereby mediates directly the guidance function of bridge-cells. The most similar protein known to Caps is another cell adhesion molecule called Tartan (Trn). Interestingly, trn is expressed in the mesodermal cells but not in the bridge-cells. When trn is lacking, the outgrowth of not only the dorsal trunks but also the lateral trunks are disrupted. However, in contrast to the ectopic expression of caps, the misexpression of trn does not affect tracheal development. Whereas Trn requires only its extracellular domain to mediate the matrix function, Caps requires both its extracellular and intracellular domains to function as a guidance molecule in the bridge-cells. These observations suggest that Trn functions differently from Caps during tracheal morphogenesis. Presumably, Trn mediates a matrix function of mesodermal cells, which support the tracheal cells to extend efficiently through the surrounding mesodermal tissue. In order to determine which domains dictate the functional specificity of Caps, two hybrid proteins CapsEdTrnId, which contains the Caps extracellular domain and the Trn intracellular domain, and TrnEdCapsId, which consists of the Trn extracellular domain and the Caps intracellular domain, were constructed. Gain of function and rescue experiments with these hybrid proteins suggest on one hand that the extracellular domains of Caps and Trn are functionally redundant and on the other hand that the intracellular domain dictates the functional specificity of Caps. In order to identify putative interactors of Caps, yeast two-hybrid screening was performed. An in vivo interaction assay in yeast suggests that Ras64B interacts specifically with the Caps intracellular domain. In addition, an in vitro binding assay reveals a direct interaction between an inactive form of Ras64B and the Caps intracellular domain. ras64B, which encodes a small GTPase, is expressed in the mesodermal cells concurrently as caps. Finally, a gain-of-function study with the constitutively active Ras64B suggests that Ras64B presumably functions downstream of Caps. All these results suggest consistently that the small GTPase Ras64B binds specifically to the Caps intracellular domain and may thereby mediate the guidance function of Caps.

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At the end of the last century, a model to explain clinical observations related to the mandibular growth was developed. According to it, the lateral pterigoid muscle (LPM) was one of the main modulators of the differentiation of mesenquimal cells inside the condyle to condroblasts or osteoblasts, and therefore of the growth of the mandibular condilar cartilage (CCM). The main components of the model were the humoral and the mechanical. Nowadays, the humoral would include growth factors such as IGF-I, FGF-2 and VEGF, which seem to be involved in mandibular growth. Since skeletal muscle can secrete these growth factors, there is a possibility that LPM modulates the growth of CCM by a paracrine or endocrine mechanism. The mechanical component derived from the observations that both the blood flow inside the temporomandibular joint (ATM) and the action of the retrodiscal pad on the growth of the CCM, depend, in part, on the contractile activity of the LPM. Despite the fact that there are some results suggesting  hat LPM is activated under conditions of mandibular protrusion, there is no full agreement on whether this can stimulate the growth of CCM. In this review, the contributions and limitations of the works related to mandibular growth are discussed and a model which integrates the available information to explain the role of the LPM in the growth of the CCM is proposed.

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Dentro del estudio de la expresión de diferentes genes, el teleósteo Danio rerio (Pez cebra) ha sido modelo de estudio del desarrollo de los vertebrados. Esta especie es ventajosa para este fin por diferentes razones, entre- ellas están la producción de grandes camadas durante todo el año, son fácilmente mantenidos, sus embriones son transparentes y se desarrollan fuera de la madre, tienen un desarrollo rápido, ya que en las 24 horas post -fecundación ya están formados la mayor parte de tejidos y primordios de los órganos, se pueden generar mutantes que se pueden propagar y estudiar muy fácilmente. Este trabajo pretende mostrar la relación entre la expresión temprana del Factor de Crecimiento Fibroblástico tipo 8 (FGF8) y el desarrollo del Sistema Nervioso Central de esta especie.

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Neural stem cells (NSCs) are potential sources for cell therapy of neurodegenerative diseases and for drug screening. Despite their potential benefits, ethical and practical considerations limit the application of NSCs derived from human embryonic stem cells (ES) or adult brain tissue. Thus, alternative sources are required to satisfy the criteria of ready accessibility, rapid expansion in chemically defined media and reliable induction to a neuronal fate. We isolated somatic stem cells from the human periodontium that were collected during minimally invasive periodontal access flap surgery as part of guided tissue regeneration therapy. These cells could be propagated as neurospheres in serum-free medium, which underscores their cranial neural crest cell origin. Culture in the presence of epidermal growth factor (EGF) and fibroblast growth factor-2 (FGF-2) under serum-free conditions resulted in large numbers of nestin-positive/Sox-2-positive NSCs. These periodontium-derived (pd) NSCs are highly proliferative and migrate in response to chemokines that have been described as inducing NSC migration. We used immunocytochemical techniques and RT-PCR analysis to assess neural differentiation after treatment of the expanded cells with a novel induction medium. Adherence to substrate, growth factor deprivation, and retinoic acid treatment led to the acquisition of neuronal morphology and stable expression of markers of neuronal differentiation by more than 90% of the cells. Thus, our novel method might provide nearly limitless numbers of neuronal precursors from a readily accessible autologous adult human source, which could be used as a platform for further experimental studies and has potential therapeutic implications.

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Adult neural crest related-stem cells persist in adulthood, making them an ideal and easily accessible source of multipotent cells for potential clinical use. Recently, we reported the presence of neural crest-related stem cells within adult palatal ridges, thus raising the question of their localization in their endogenous niche. Using immunocytochemistry, reverse transcription-polymerase chain reaction, and correlative fluorescence and transmission electron microscopy, we identified myelinating Schwann cells within palatal ridges as a putative neural crest stem cell source. Palatal Schwann cells expressed nestin, p75(NTR), and S100. Correlative fluorescence and transmission electron microscopy revealed the exclusive nestin expression within myelinating Schwann cells. Palatal neural crest stem cells and nestin-positive Schwann cells isolated from adult sciatic nerves were able to grow under serum-free conditions as neurospheres in presence of FGF-2 and EGF. Spheres of palatal and sciatic origin showed overlapping expression pattern of neural crest stem cell and Schwann cell markers. Expression of the pluripotency factors Sox2, Klf4, c-Myc, Oct4, the NF-κB subunits p65, p50, and the NF-κB-inhibitor IκB-β were up-regulated in conventionally cultivated sciatic nerve Schwann cells and in neurosphere cultures. Finally, neurospheres of palatal and sciatic origin were able to differentiate into ectodermal, mesodermal, and endodermal cell types emphasizing their multipotency. Taken together, we show that nestin-positive myelinating Schwann cells can be reprogrammed into multipotent adult neural crest stem cells under appropriate culture conditions.

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Maximally effective concentrations of endothelin-1 (ET-1), acidic FGF (aFGF), or 12-O-tetradecanoylphorbol-13-acetate (TPA) activated mitogen-activated protein kinase (MAPK) by 3-4-fold in crude extracts of myocytes cultured from neonatal rat heart ventricles. Maximal activation was achieved after 5 min. Thereafter, MAPK activity stimulated by ET-1 or aFGF declined to control values within 1-2 h, whereas activation by TPA was more sustained. Two peaks of MAPK activity (a 42- and a 44-kDa MAPK) were resolved in cells exposed to ET-1 or aFGF by fast protein liquid chromatography on a Mono Q column. One major and one minor peak of MAPK kinase (MAPKK) was stimulated by ET-1 or aFGF. Cardiac myocytes expressed protein kinase C (PKC)-alpha, -delta, -epsilon and -zeta as shown immunoblotting. Exposure to 1 microM TPA for 24 h down-regulated PKC-alpha, -delta, and -epsilon, but not PKC-zeta. This maneuver wholly abolished the activation of MAPK on re-exposure to TPA but did not affect the response to aFGF. The effect of ET-1 was partially down-regulated. ET-1 stimulated phospho[3H]inositide hydrolysis 18-fold, whereas aFGF stimulated by only 30%. Agonists which initially utilize dissimilar signaling pathways may therefore converge at the level of MAPKK/MAPK and this may be relevant to the hypertrophic response of the heart.

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The extracellular signal-regulated kinases 1/2 (ERK1/2) are activated in cardiomyocytes by Gq protein-coupled receptors and are associated with induction of hypertrophy. Here, we demonstrate that, in primary cardiomyocyte cultures, ERK1/2 were also significantly activated by platelet-derived growth factor (PDGF), epidermal growth factor (EGF) or fibroblast growth factor (FGF), but insulin, insulin-like growth factor 1 (IGF-1) and nerve growth factor (NGF) had relatively minor effects. PDGF, EGF or FGF increased cardiomyocyte size via ERK1/2, whereas insulin, IGF-1 or NGF had no effect suggesting minimum thresholds/durations of ERK1/2 signaling are required for the morphological changes associated with hypertrophy. Peptide growth factors are widely accepted to activate phospholipase C gamma1 (PLCgamma1) and protein kinase C (PKC). In cardiomyocytes, only PDGF stimulated tyrosine phosphorylation of PLCgamma1 and nPKCdelta. Furthermore, activation of ERK1/2 by PDGF, but not EGF, required PKC activity. In contrast, EGF substantially increased Ras.GTP with rapid activation of c-Raf, whereas stimulation of Ras.GTP loading by PDGF was minimal and activation of c-Raf was delayed. Our data provide clear evidence for differential coupling of PDGF and EGF receptors to the ERK1/2 cascade, and indicate that a minimum threshold/duration of ERK1/2 signaling is required for the development of cardiomyocyte hypertrophy.