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71.
Hydatid disease, manifesting as single or multiple hydatid cysts and caused by Echinococcus granulosus, is common in many parts of the world, especially the tropical countries. Although rare, this disease can also present during pregnancy, especially in endemic areas. Although much has been written about hepatic hydatidosis, there are only a few articles (mainly case reports) on hydatid disease in association with pregnancy. A literature search was done through Medline/PubMed and Medscape independently by the authors from 1950 to 2007 for key words "echinococcosis" and "pregnancy" and "management." All retrieved articles were reviewed. Manual cross-referencing was also done with inclusion of all relevant articles. In this review, we have attempted to summarize the presentation and available management approaches to hydatid disease, and have suggested evidence-based guidelines for its management during pregnancy. 相似文献
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德国企业的劳动保护和伤残事故保险体制在世界上独具特色,其职业卫生体制是双轨制,由代表国家利益的政府企业监督局和由政府授权的公众权益性团体"工伤保险联合会(又译作同业公会)"共同监督企业的安全卫生,前者主要负责监督,后者除负责监督外,侧重安全生产及劳动保护的技 相似文献
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Linda Su-Feher Anna N. Rubin Shanni N. Silberberg Rinaldo Catta-Preta Kenneth J. Lim Athena R. Ypsilanti Iva Zdilar Christopher S. McGinnis Gabriel L. McKinsey Thomas E. Rubino Jr. Michael J. Hawrylycz Carol Thompson Zev J. Gartner Luis Puelles Hongkui Zeng John L. R. Rubenstein Alex S. Nord 《Proceedings of the National Academy of Sciences of the United States of America》2022,119(15)
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Sara Marsango Laura Jenkins John D. Pediani Sophie J. Bradley Richard J. Ward Sarah Hesse Gabriel Biener Michael R. Stoneman Andrew B. Tobin Valerica Raicu Graeme Milligan 《Proceedings of the National Academy of Sciences of the United States of America》2022,119(24)
The quaternary organization of rhodopsin-like G protein-coupled receptors in native tissues is unknown. To address this we generated mice in which the M1 muscarinic acetylcholine receptor was replaced with a C-terminally monomeric enhanced green fluorescent protein (mEGFP)–linked variant. Fluorescence imaging of brain slices demonstrated appropriate regional distribution, and using both anti-M1 and anti–green fluorescent protein antisera the expressed transgene was detected in both cortex and hippocampus only as the full-length polypeptide. M1-mEGFP was expressed at levels equal to the M1 receptor in wild-type mice and was expressed throughout cell bodies and projections in cultured neurons from these animals. Signaling and behavioral studies demonstrated M1-mEGFP was fully active. Application of fluorescence intensity fluctuation spectrometry to regions of interest within M1-mEGFP–expressing neurons quantified local levels of expression and showed the receptor was present as a mixture of monomers, dimers, and higher-order oligomeric complexes. Treatment with both an agonist and an antagonist ligand promoted monomerization of the M1-mEGFP receptor. The quaternary organization of a class A G protein-coupled receptor in situ was directly quantified in neurons in this study, which answers the much-debated question of the extent and potential ligand-induced regulation of basal quaternary organization of such a receptor in native tissue when present at endogenous expression levels.Measuring and understanding the extent and potential significance of quaternary organization of members of the class A (rhodopsin-like) family of G protein-coupled receptors (GPCRs) have both fascinated and frustrated researchers for many years (1, 2). Over time, a wide range of methods have been applied to address this question, and many different GPCRs have been examined. Outcomes have ranged from assertions that such receptors are monomeric and that results consistent with other conclusions reflect either artifacts of the method of measurement or that studies have been performed at nonphysiological levels of expression of the receptor being studied, to those that have suggested rather stable dimeric or tetrameric complexes (1). Only in the case of rhodopsin, the photon receptor expressed at very high levels (in the range of 24,000–30,000 molecules/µm2) in rod outer segments of the eye, have detailed studies been conducted in situ on a class A GPCR. In this example, various studies have shown that rhodopsin is organized as rows of dimers (3, 4). However, to our knowledge, no other GPCR is expressed natively at levels akin to rhodopsin. As such, although a substantial number of studies, generally performed in transfected cell lines or in artificial bilayer systems, have provided evidence that other GPCRs can and do form dimeric and/or higher-order quaternary complexes in a concentration-dependent manner (1, 2), how levels of expression required to observe such complexes relate to expression levels in native cells and tissues has been poorly defined, as is the stability of such complexes and whether they are regulated by ligand binding.Developments in fluorescence fluctuation analysis (FFA) have facilitated efforts to define the oligomeric status of transmembrane receptor proteins (5, 6). Unlike methods based on resonance energy transfer, only a single fluorophore-linked protein is required to be expressed to use FFA. It is, therefore, more practical to use such methods in native cells and tissues if linked to genome-editing approaches and/or the generation of transgenic “knock-in” animal models in which a receptor of interest is replaced with a fluorophore-tagged, modified form of the receptor. Moreover, the recent introduction of fluorescence intensity fluctuation (FIF) spectrometry (7–10) has overcome issues with other methods based on FFA that result in information being compressed due to averaging of oligomer-size data from interrogated regions of interest (RoIs) in which complex mixtures of oligomers of different sizes may be present (7, 8).To define whether the class A M1 muscarinic acetylcholine receptor is present in hippocampal and cortical neurons as strict monomers or as a range of monomeric, dimeric, and, potentially, oligomeric complexes, we applied FIF spectrometry to images of such neurons isolated from a line of transgenic mice in which we replaced the M1 receptor with a form of the receptor that includes C-terminally linked monomeric enhanced green fluorescent protein (mEGFP). We first show that both expression levels and function of the introduced M1-mEGFP construct appear equivalent to the native M1 receptor in wild-type (WT) mice, using a range of methods and measures ranging from [3H]ligand binding and cell signaling assays to locomotion. We then demonstrate in hippocampal and cortical neurons that in the basal state, the M1-mEGFP construct is present as a mixture of monomers and dimeric or oligomeric complexes. We also show that the presence of either an agonist or an antagonist ligand promotes monomerization of the receptor. In these studies, we combined analysis of images of a fluorophore-modified receptor in situ with calculation of receptor oligomer complexity. The studies provide a clear and unambiguous answer to a long-standing question that has been the subject of considerable debate (11–13) but that has previously been restricted to studies performed on transfected cell lines. Moreover, these studies are a model for subsequent studies for researchers who plan to explore the topic of dimerization of rhodopsin-family GPCRs. 相似文献
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Fernando Luiz de Melo Bernardi Henrique Barbosa Ribeiro Luis Nombela-Franco Enrico Cerrato Gabriel Maluenda Tamim Nazif Pedro Alves Lemos Matias Sztejfman Pablo Lamelas Dario Echeverri Marcelo Antonio Cartaxo Queiroga Lopes Fbio Sndoli de Brito Jr Alexandre A. Abizaid Jos A. Mangione Helene Eltchaninoff Lars Sndergaard Josep Rodes-Cabau 《Arquivos brasileiros de cardiologia》2022,118(6):1085
Background:Transcatheter aortic valve replacement (TAVR) is a worldwide adopted procedure with rapidly evolving practices. Regional and temporal variations are expected to be found.Objective:To compare TAVR practice in Latin America with that around the world and to assess its changes in Latin America from 2015 to 2020.Methods:A survey was applied to global TAVR centers between March and September 2015, and again to Latin-American centers between July 2019 and January 2020. The survey consisted of questions addressing: i) center’s general information; ii) pre-TAVR evaluation; iii) procedural techniques; iv) post-TAVR management; v) follow-up. Answers from the 2015 survey of Latin-American centers (LATAM15) were compared with those of other centers around the world (WORLD15) and with the 2020 updated Latin-American survey (LATAM20). A 5% level of significance was adopted for statistical analysis.Results:250 centers participated in the 2015 survey (LATAM15=29; WORLD15=221) and 46 in the LATAM20. Combined centers experience accounted for 73 707 procedures, with WORLD15 centers performing, on average, 6- and 3-times more procedures than LATAM15 and LATAM20 centers, respectively. LATAM centers performed less minimalistic TAVR than WORLD15 centers, but there was a significant increase in less invasive procedures after 5 years in Latin-American centers. For postprocedural care, a lower period of telemetry and maintenance of temporary pacing wire, along with less utilization of dual antiplatelet therapy was observed in LATAM20 centers.Conclusion:Despite still having a much lower number of procedures, many aspects of TAVR practice in Latin-American centers have evolved in recent years, followingthe trend observed in developed country centers. 相似文献
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