1000 resultados para Mulungu. Inibidor recombinante. Anticoagulante. Anti-inflamatório


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Proteinases are enzymes distributed widely founded in several organisms and perform many different functions, from maintaining homeostasis to the worsening of some diseases such as cancer, autoimmune diseases and infections. The proteins responsible of controlling the action of these enzymes are the inhibitors, that are classified based on their target proteases and are founded since simple organisms, such as bacteria, to higher organisms, such as larger plants and mammals. Plant proteinase inhibitors act by reducing or inactivating the activity of target proteases, thus, these proteins have been studied as potential tools in the treatment of diseases related to protease activities. In this context, an inhibitor of chymotrypsin from Erythrina velutina, called EvCI was previously purified and it was observed that this protein plays in vitro anticoagulant activity and anti-inflammatory activity in in vivo model. Aiming to reduce the environmental impact caused by the purification EvCI in high amounts and to facilitate the process of obtaining this protein, the recombinant chymotrypsin inhibitor from Eryhrina velutina was produced after cloning and expression in Escherichia coli. The bacteria were grown in LB medium and after induction of the expression this material was subjected to procedures for cell lysis and the product was applied on Nickel-affinity column. The proteins adsorbed were digested by thrombin and applied on Chymotrypsin-Sepharose affinity column, obtaining the purified inhibitor, named recEvCI. After electrophoresis, the recombinant inhibitor showed an approximately molecular mass of 17 kDa, and reduced the chymotrypsin and elastase activities in vitro. The recombinant inhibitor was sequenced and was found similar amino acids residues when compared to other inhibitors deposited in the database, with some modifications. recEvCI showed high stability under pH variations and reducing conditions, maintaining its activity around 80%. This protein increased the blood coagulation time in vitro by acting on the intrinsic pathway and did not show cytotoxicity against strains of mouse 3T3 fibroblasts and RAW 264.7 macrophages. recEvCI showed microbicide activity related to release of nitric oxide and consequently the activation of macrophages, futhermore having proinflammatory effects assessed by increased release of TNF-α. These results indicate that recEvCI can be biotechnologically used as a new tool in the control of coagulation-related diseases as well as can be an activating agent of the immune system in immunosuppressed individuals

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Proteinases are enzymes distributed widely founded in several organisms and perform many different functions, from maintaining homeostasis to the worsening of some diseases such as cancer, autoimmune diseases and infections. The proteins responsible of controlling the action of these enzymes are the inhibitors, that are classified based on their target proteases and are founded since simple organisms, such as bacteria, to higher organisms, such as larger plants and mammals. Plant proteinase inhibitors act by reducing or inactivating the activity of target proteases, thus, these proteins have been studied as potential tools in the treatment of diseases related to protease activities. In this context, an inhibitor of chymotrypsin from Erythrina velutina, called EvCI was previously purified and it was observed that this protein plays in vitro anticoagulant activity and anti-inflammatory activity in in vivo model. Aiming to reduce the environmental impact caused by the purification EvCI in high amounts and to facilitate the process of obtaining this protein, the recombinant chymotrypsin inhibitor from Eryhrina velutina was produced after cloning and expression in Escherichia coli. The bacteria were grown in LB medium and after induction of the expression this material was subjected to procedures for cell lysis and the product was applied on Nickel-affinity column. The proteins adsorbed were digested by thrombin and applied on Chymotrypsin-Sepharose affinity column, obtaining the purified inhibitor, named recEvCI. After electrophoresis, the recombinant inhibitor showed an approximately molecular mass of 17 kDa, and reduced the chymotrypsin and elastase activities in vitro. The recombinant inhibitor was sequenced and was found similar amino acids residues when compared to other inhibitors deposited in the database, with some modifications. recEvCI showed high stability under pH variations and reducing conditions, maintaining its activity around 80%. This protein increased the blood coagulation time in vitro by acting on the intrinsic pathway and did not show cytotoxicity against strains of mouse 3T3 fibroblasts and RAW 264.7 macrophages. recEvCI showed microbicide activity related to release of nitric oxide and consequently the activation of macrophages, futhermore having proinflammatory effects assessed by increased release of TNF-α. These results indicate that recEvCI can be biotechnologically used as a new tool in the control of coagulation-related diseases as well as can be an activating agent of the immune system in immunosuppressed individuals

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Heparan sulfate (HS) and Heparin (Hep) glycosaminoglycans (GAGs) are heterogeneous and highly charged polysaccharides. HS is structurally related to Hep but is much less substituted with sulfo groups than heparin and has a more varied structure (or sequence). Because of structural similiarities between these two polymers, they have been described together as heparinoids . Both chains bind a variety of proteins and mediate various physiologically important processes including, blood coagulation, cell adhesion and growth factor regulation. Heparinoids with structural characteristics similar to these described from HS and/or Hep from mammalian tissues have been isolated from different species of invertebrates, although only a few heparinoids from unusual sources have been characterized. The present study describes the presence of unusual heparinoids population from Artemia franciscana, isolated after proteolysis and fractionation by ion exchange resin and named, F-3.0M. The study model in vivo were hemostasis (rat tail scarification) and inflamatoty activity. The tests in vitro were used for coagulations assays (PT and APTT). The analyse of the heparinoids eluted with 3,0M NaCl showed electrophoretic migration in different buffer systems a single band with a behaviour intermediate between those of mammalian HEP and HS. The main products obtained from Artemia heparinoids after enzymatic degradation with heparitinases I and II from F. heparinum were N-sulphated disaccharides (∆U-GlcNS,6S/ ∆U,2S-GlcNS and ∆U-GlcNS) and N-acetylated disaccharides (∆U, GlcNAc). This heparinoid had a lower hemorrhagic effect (400μg/ml) when compared to unfractiionated heparins(25μg/ml).The results also suggest a negligible APTT activity of this heparinoid (62.2s). No action was observed on PT indicating that F-3.0M haven t action on the extrinsic pathway. The results showed that the fraction F- 3.0M have inhibitory effect on migration of leukocytes, 64.5% in the concentration of 10 μg/ml (P<0.001). The search for new heparin and/or heparan sulphates analogs devoid of anticoagulant activity is an atractive alternative and may open up a wide variety of new therapeutic applications

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Heparin, a sulfated polysaccharide, was the first compound used as an anticoagulant and antithrombotic agent. Due to their structural characteristics, also has great potential anti-inflammatory, though such use is limited in inflammation because of their marked effects on coagulation. The occurrence of heparin-like compounds that exhibit anticoagulant activity decreased in aquatic invertebrates, such as crab Goniopsis cruentata, sparked interest for the study of such compounds as anti-inflammatory drugs. Therefore, the objective of this study was to evaluate the potential modulator of heparin-like compound extracted from Goniopsis cruentata in inflammatory events, coagulation, and to evaluate some aspects of its structure. The heparin-type compound had a high degree of N-sulphation in its structure, being able to reduce leukocyte migration into the peritoneal cavity at lower doses compared to heparin and diclofenac sodium (anti-inflammatory commercial). Furthermore, it was also able to inhibit the production of nitric oxide and tumor necrosis factor alpha by activated macrophages, inhibited the activation of the enzyme neutrophil elastase in low concentrations and showed a lower anticoagulant effect in high doses as compared to porcine mucosal heparin. Because of these observations, the compound extracted from crab Goniopsis cruentata can be used as a structural model for future anti-inflammatory agents

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In recent years the heparin has been the subject of several studies that aim to expand its use as a therapeutic agent, due to its ability to modulate the activity of various proteins that play important roles in the regulation of pathophysiological processes. In several experiments and preclinical trials, heparin has demonstrated an anti-inflammatory role. However, its clinical use is limited, due to its strong anticoagulant activity and hemorrhagic complications. For this reason, considerable efforts have been employed in discovery of heparin analogous (heparinoid) with reduced side effects, that retain the anti-inflammatory properties of heparin. In this context, a heparinoid obtained from the head of Litopenaeus vannamei shrimp, which presents a structural similarity to heparin, showed, in previous studies, anti-inflammatory activity in a model of acute peritonitis with reduced anticoagulant effect in vitro and low hemorrhagic activity. Thus, the present work had as objective to evaluate the effect the heparinoid of the cephalothorax of gray shrimp on the acute inflammatory response in different times (3 or 6 hours after the induction of inflammatory stimulus), using the model of acute peritonitis induced in mice. It was also analyzed the HL effect over the activity of elastase, an enzyme involved in leukocyte recruitment. Furthermore to check if the different doses of heparin and heparinoid change the hemostatic balance in vivo, was assessed the effect of these compounds on the plasma clotting time in animals submitted to inflammation. The results show that in 3 hours, all doses of heparinoid were able to prevent efficiently in the acute inflammatory process without any anticoagulant effects, unlike the extrapolation dose of heparin, which has induced a large hemorrhage due its high anticoagulant activity. However, 6 hours after induction of inflammation, only the dosages of 0.1 and 1.0 μg/Kg of heparin and 1.0 μg/Kg of heparinoid kept anti-migratory effect, without changing of the hemostatic balance. These results indicate that the anti-migratory effect of theses compounds depends on the dosage and time of inflammatory stimulus. The HL and heparin were also able to inhibit the activity of the enzyme elastase. The discovery of this bioactive compound in the cephalothorax of shrimps can arouse great interest in biotechnology, since this compound could be useful as a structural model interesting for the development of new therapeutic agents for peritonitis

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Pós-graduação em Biotecnologia - IQ

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Heparin, a sulfated polysaccharide, was the first compound used as an anticoagulant and antithrombotic agent. Due to their structural characteristics, also has great potential anti-inflammatory, though such use is limited in inflammation because of their marked effects on coagulation. The occurrence of heparin-like compounds that exhibit anticoagulant activity decreased in aquatic invertebrates, such as crab Goniopsis cruentata, sparked interest for the study of such compounds as anti-inflammatory drugs. Therefore, the objective of this study was to evaluate the potential modulator of heparin-like compound extracted from Goniopsis cruentata in inflammatory events, coagulation, and to evaluate some aspects of its structure. The heparin-type compound had a high degree of N-sulphation in its structure, being able to reduce leukocyte migration into the peritoneal cavity at lower doses compared to heparin and diclofenac sodium (anti-inflammatory commercial). Furthermore, it was also able to inhibit the production of nitric oxide and tumor necrosis factor alpha by activated macrophages, inhibited the activation of the enzyme neutrophil elastase in low concentrations and showed a lower anticoagulant effect in high doses as compared to porcine mucosal heparin. Because of these observations, the compound extracted from crab Goniopsis cruentata can be used as a structural model for future anti-inflammatory agents

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In recent years the heparin has been the subject of several studies that aim to expand its use as a therapeutic agent, due to its ability to modulate the activity of various proteins that play important roles in the regulation of pathophysiological processes. In several experiments and preclinical trials, heparin has demonstrated an anti-inflammatory role. However, its clinical use is limited, due to its strong anticoagulant activity and hemorrhagic complications. For this reason, considerable efforts have been employed in discovery of heparin analogous (heparinoid) with reduced side effects, that retain the anti-inflammatory properties of heparin. In this context, a heparinoid obtained from the head of Litopenaeus vannamei shrimp, which presents a structural similarity to heparin, showed, in previous studies, anti-inflammatory activity in a model of acute peritonitis with reduced anticoagulant effect in vitro and low hemorrhagic activity. Thus, the present work had as objective to evaluate the effect the heparinoid of the cephalothorax of gray shrimp on the acute inflammatory response in different times (3 or 6 hours after the induction of inflammatory stimulus), using the model of acute peritonitis induced in mice. It was also analyzed the HL effect over the activity of elastase, an enzyme involved in leukocyte recruitment. Furthermore to check if the different doses of heparin and heparinoid change the hemostatic balance in vivo, was assessed the effect of these compounds on the plasma clotting time in animals submitted to inflammation. The results show that in 3 hours, all doses of heparinoid were able to prevent efficiently in the acute inflammatory process without any anticoagulant effects, unlike the extrapolation dose of heparin, which has induced a large hemorrhage due its high anticoagulant activity. However, 6 hours after induction of inflammation, only the dosages of 0.1 and 1.0 μg/Kg of heparin and 1.0 μg/Kg of heparinoid kept anti-migratory effect, without changing of the hemostatic balance. These results indicate that the anti-migratory effect of theses compounds depends on the dosage and time of inflammatory stimulus. The HL and heparin were also able to inhibit the activity of the enzyme elastase. The discovery of this bioactive compound in the cephalothorax of shrimps can arouse great interest in biotechnology, since this compound could be useful as a structural model interesting for the development of new therapeutic agents for peritonitis

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Recentemente tem-se observado um crescente interesse pelo uso de plantas aromáticas, devido às inúmeras propriedades benéficas que lhes têm sido associadas, e a sua aplicação em diversas indústrias, como a indústria alimentar e farmacêutica. Este estudo incidiu sob três ervas aromáticas utilizadas comummente em Portugal: coentros, salsa e segurelha. O objetivo do mesmo foi contribuir para um melhor conhecimento das propriedades bioativas das plantas estudadas, através da determinação do seu teor em compostos fenólicos totais e em flavonoides, e avaliação das suas atividades antioxidante, antimicrobiana e anti-inflamatória. A atividade antioxidante foi determinada através de diferentes tipos de ensaios, nomeadamente avaliação da capacidade redutora, com os ensaios FRAP e CUPRAC, avaliação da capacidade de sequestro do radical DPPH• e avaliação da capacidade de sequestro do radical anião superóxido. A atividade antimicrobiana foi determinada utilizando três estirpes microbianas, Staphylococcus aureus, Escherichia coli e Candida albicans. Por sua vez, a ação anti-inflamatória foi determinada através de ensaios in-vivo apenas para a segurelha, utilizando dois modelos, um para a inflamação aguda (modelo de edema da pata induzido pela carragenina) e outro para a inflamação crónica (modelo da colite ulcerativa). Os resultados demonstraram que todos os extratos de plantas aromáticas possuem atividade antioxidante, sendo que o extrato de segurelha foi aquele que apresentou um maior teor de compostos fenólicos e flavonoides, bem como o que demonstrou possuir uma maior atividade antioxidante relativamente aos restantes extratos estudados, o que sugere o envolvimento destes compostos neste tipo de atividade antioxidante. Entre o extrato de coentros e salsa, o extracto de coentros apresentou um teor em compostos fenólicos e uma actividade antioxidante significativamente superior relativamente ao extracto de salsa. O extrato de segurelha foi o único que apresentou ação antimicrobiana, o que poderá indicar que os compostos fenólicos se encontram também interligados com esta propriedade. A atividade anti-inflamatória foi determinada apenas para o extrato de segurelha, sendo que se observou que este possui efeitos benéficos para a inflamação aguda e crónica, o que poderá estar novamente relacionado com o seu teor em fenóis e flavonoides. O efeito anti-inflamatório observado com o extrato de segurelha no modelo de colite pode ser muito útil do ponto de vista de profilaxia pois o extrato foi administrado aos animais logo a seguir à indução da colite e os resultados demonstram haver uma diminuição significativa da extensão e violência dos sinais da inflamação crónica observados no grupo controlo positivo.

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Nos últimos 50 anos, a compreensão sobre as alterações deteriorativas envolvidas na progressão da insuficiência cardíaca (IC), descritas inicialmente como decorrentes de alterações na retenção de sais e fluidos, ou alterações nos parâmetros hemodinâmicos, mudou significatiamente. Recentemente, diversos estudos em pacientes com IC demonstraram níveis plasmáticos (ou no soro) alterados de citocinas pro-inflamatórias, tais como o fator α de necrose tumoral (TNF-α), as interleucinas 1, 6 e 18, e a cardiotropina-1, dentre outros marcadores inflamatórios. Essas alterações monstraram-se independentes da etiologia da IC, sugerindo uma via patogênica comum. Em reposta a esses novos achados, intervenções no sentido de evitar e/ou reduzir essas alterações inflamatória tem sido propostas. Os benefícios cardiovasculares, induzidos treinamento aeróbio realizados em intensidades variando de leve a moderada, têm sido previamente relatados. Além disso, tem-se demonstrado que o treinamento físico (aeróbio moderado) parece capaz de modular, na vigência de um quadro inflamatório crônico anormal, a expressão elevada de citocinas pró-inflamatórias, moléculas de adesão solúveis, fatores quimioatratantes e estresse oxidativo. Tomados em conjunto, esses dados indicam um possível efeito anti-inflamatório induzido pelo treinamento físico. Dessa forma, esta revisão tem por objetivo abordar o treinamento físico como uma alternativa não farmacológica adjuvante a ser administrada em alguns quadros patológicos em que predominam as alterações crônicas do TNF-α, como na IC. Por sua vez, o "efeito anti-inflamatório" induzido pelo treinamento físico parece ser mediado principalmente pela IL-10.

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A dependência exclusiva de compostos químicos para o controle de Rhipicephalus (Boophilus) microplus tornou-se uma das maiores preocupações científicas e econômicas dos últimos anos, e como consequência, estão sendo realizadas pesquisas para o desenvolvimento de vacinas. O objetivo deste trabalho foi avaliar a resposta de linfonodos de bovinos imunizados a campo com o peptídeo rSBm7462 anti R. (B.) microplus. Foram utilizados 14 bovinos mestiços (Bos taurus x Bos indicus), com idades entre 4-10 meses, mantidos em duas propriedades rurais do norte do estado de Minas Gerais. Os animais receberam três imunizações do peptídeo rSBm7462, aplicados por via subcutânea, com intervalo de 30 dias. Após 15 dias de cada imunização, os linfonodos pré-escapulares foram coletados e fixados por 18 horas em formol. Posteriormente, foram incluídos em Paraplast e as amostras foram coradas pela técnica hematoxilina-eosina (HE) para a observação de eventos celulares. Para a identificação do antígeno nos linfonodos dos animais imunizados, foi realizada a técnica de imuno-histoquímica (IHQ) com o método peroxidase-anti-peroxidase (PAP). A resposta de linfonodos dos bovinos inoculados foi avaliada pelas análises de formação de centros germinais (CG), hiperplasia de cordões medulares (CM) e a presença do antígeno rSBm7462 em células PAP+, demonstrando que o peptídeo recombinante rSBm7462 induz uma resposta imune adaptativa T-dependente, caracterizada nos tecidos linfóides secundários pela formação de estruturas que conferem afinidade e memória imunológica.

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Pós-graduação em Biociências e Biotecnologia Aplicadas à Farmácia - FCFAR