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排序方式: 共有7760条查询结果,搜索用时 15 毫秒
91.
Zobair Younossi Maria Stepanova Arun J. Sanyal Stephen A. Harrison Vlad Ratziu Manal F. Abdelmalek Anna Mae Diehl Stephen Caldwell Mitchell L. Shiffman Raul Aguilar Schall Bryan McColgan G. Mani Subramanian Robert P. Myers Andrew Muir Nezam H. Afdhal Jaime Bosch Zachary Goodman 《Journal of hepatology》2018,68(6):1365-1370
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David S. Park Marina Cerrone Gregory Morley Carolina Vasquez Steven Fowler Nian Liu Scott A. Bernstein Fang-Yu Liu Jie Zhang Christopher S. Rogers Silvia G. Priori Larry A. Chinitz Glenn I. Fishman 《The Journal of clinical investigation》2015,125(1):403-412
SCN5A encodes the α subunit of the major cardiac sodium channel NaV1.5. Mutations in SCN5A are associated with conduction disease and ventricular fibrillation (VF); however, the mechanisms that link loss of sodium channel function to arrhythmic instability remain unresolved. Here, we generated a large-animal model of a human cardiac sodium channelopathy in pigs, which have cardiac structure and function similar to humans, to better define the arrhythmic substrate. We introduced a nonsense mutation originally identified in a child with Brugada syndrome into the orthologous position (E558X) in the pig SCN5A gene. SCN5AE558X/+ pigs exhibited conduction abnormalities in the absence of cardiac structural defects. Sudden cardiac death was not observed in young pigs; however, Langendorff-perfused SCN5AE558X/+ hearts had an increased propensity for pacing-induced or spontaneous VF initiated by short-coupled ventricular premature beats. Optical mapping during VF showed that activity often began as an organized focal source or broad wavefront on the right ventricular (RV) free wall. Together, the results from this study demonstrate that the SCN5AE558X/+ pig model accurately phenocopies many aspects of human cardiac sodium channelopathy, including conduction slowing and increased susceptibility to ventricular arrhythmias. 相似文献
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Virginia Balouz María de los Milagros Cámara Gaspar E. Cánepa Santiago J. Carmona Romina Volcovich Nicolás Gonzalez Jaime Altcheh Fernán Agüero Carlos A. Buscaglia 《Clinical and Vaccine Immunology : CVI》2015,22(3):304-312
The trypomastigote small surface antigen (TSSA) is a mucin-like molecule from Trypanosoma cruzi, the etiological agent of Chagas disease, which displays amino acid polymorphisms in parasite isolates. TSSA expression is restricted to the surface of infective cell-derived trypomastigotes, where it functions as an adhesin and engages surface receptors on the host cell as a prerequisite for parasite internalization. Previous results have established TSSA-CL, the isoform encoded by the CL Brener clone, as an appealing candidate for use in serology-based diagnostics for Chagas disease. Here, we used a combination of peptide- and recombinant protein-based tools to map the antigenic structure of TSSA-CL at maximal resolution. Our results indicate the presence of different partially overlapping B-cell epitopes clustering in the central portion of TSSA-CL, which contains most of the polymorphisms found in parasite isolates. Based on these results, we assessed the serodiagnostic performance of a 21-amino-acid-long peptide that spans TSSA-CL major antigenic determinants, which was similar to the performance of the previously validated glutathione S-transferase (GST)-TSSA-CL fusion molecule. Furthermore, the tools developed for the antigenic characterization of the TSSA antigen were also used to explore other potential diagnostic applications of the anti-TSSA humoral response in Chagasic patients. Overall, our present results provide additional insights into the antigenic structure of TSSA-CL and support this molecule as an excellent target for molecular intervention in Chagas disease. 相似文献
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Laura Villarreal‐Martínez Jaime García‐Chvez Berenice Snchez‐Jara Aida Mashenka Moreno‐Gonzlez Janet Soto‐Padilla Efraín Aquino‐Fernndez Rogelio Paredes‐Aguilera Karla Maldonado‐Silva Cecilia Rodríguez‐Castillejos Ana Itamar Gonzlez‐vila María Mora‐Torres Hector Manuel Tiznado‐García Natalia Elizabeth Padilla‐Durn Nuria Citlali Luna‐Silva Eric Israel Gutirrez‐Jurez Jorge Nemi‐Cueto Claudia Sofia Gmez‐Gonzlez Ricardo De Len‐Figueroa Adela Lpez‐Miranda Mirna Guadalupe Ríos‐Osuna Edna Liliana Tamez‐Gmez Elio Aarn Reyes‐Espinoza Irving Armando Domínguez‐Varela Gerardo Gonzlez‐Martínez Elias Adn Godoy‐Salinas 《Haemophilia》2020,26(2):290-297
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The hepatitis B virus (HBV) represents a worldwide public health problem; the virus is present in one third of the global population. However, this rate may in fact be higher due to occult hepatitis B virus infection (OBI). This condition is characterized by the presence of the viral genome in the liver of individuals sero-negative for the virus surface antigen (HBsAg). The causes of the absence of HBsAg in serum are unknown, however, mutations have been identified that produce variants not recognized by current immunoassays. Epigenetic and immunological host mechanisms also appear to be involved in HBsAg suppression. Current evidence suggests that OBI maintains its carcinogenic potential, favoring the progression of fibrosis and cirrhosis of the liver. In common with open HBV infection, OBI can contribute to the establishment of hepatocellular carcinoma. Epidemiological data regarding the global prevalence of OBI vary due to the use of detection methods of different sensitivity and specificity. In Latin America, which is considered an area of low prevalence for HBV, diagnostic screening methods using gene amplification tests for confirmation of OBI are not conducted. This prevents determination of the actual prevalence of OBI, highlighting the need for the implementation of cutting edge technology in epidemiological surveillance systems. 相似文献
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