نتایج جستجو برای: ذرات شبه ویروسی vlps

تعداد نتایج: 31009  

Journal: :Journal of virology 1996
L J White J M Ball M E Hardy T N Tanaka N Kitamoto M K Estes

Norwalk virus (NV) is the prototype strain of a group of noncultivable human caliciviruses responsible for epidemic outbreaks of acute gastroenteritis. While these viruses do not grow in tissue culture cells or animal models, expression of the capsid protein in insect cells results in the self-assembly of recombinant Norwalk virus-like particles (rNV VLPs) that are morphologically and antigenic...

2013
I-Chieh Chien John Scott Meschke Heidi L. Gough John F. Ferguson

The objective of this study was to characterize the morphology, size-distribution, concentration and genome size of virus-like particles (VLPs) in two acetate-fed Methanosaeta-dominated reactors to better understand the possible correlation between viruses and archaeal hosts. The study reactors were dominated by a single genus of acetoclastic methanogen, Methanosaeta, which was present at 6 to ...

2018
Ah-Ra Kim Dong-Hun Lee Su-Hwa Lee Ilaria Rubino Hyo-Jick Choi Fu-Shi Quan

Respiratory syncytial virus (RSV) is the leading cause of lower respiratory tract illness in infants, young children and the elderly. However, there is no licensed vaccine available against RSV infection. In this study, we generated virus-like particle (VLP) vaccine and investigated the vaccine efficacy in a mouse model. For VLP vaccines, tandem gene (1-780 bp) for V1 VLPs and tandem repeat gen...

2012
Cristina S Borio Marcos F Bilen Marcelo H Argüelles Sandra E Goñi Javier A Iserte Graciela Glikmann Mario E Lozano

BACKGROUND Arenavirus matrix protein Z plays an important role in virus budding and is able to generate enveloped virus-like-particles (VLPs) in absence of any other viral proteins. In these VLPs, Z protein is associated to the plasma membrane inner surface by its myristoyl residue. Budding induction and vesicle formation properties can be exploited to generate enveloped VLPs platform. These st...

ژورنال: :مجله تازه های بیوتکنولوژی سلولی - مولکولی 0
اطهر علی شیری athar alishiri science and research branch, islamic azad [email protected] فرشاد رخشنده رو farshad rakhshandehroo science and research branch, islamic azad universityتهران.میدان پونک. انتهای بزرگراه اشرفی اصفهانی. به سمت حصارک. واحد علوم و تحقیقات. گروه بیماری شناسی. دانشکده کشاورزی و منابع طبیعی حمیدرضا زمانی زاده hamidreza zamanizadeh science and research branch, islamic azad universityتهران.میدان پونک. انتهای بزرگراه اشرفی اصفهانی. به سمت حصارک. واحد علوم و تحقیقات. گروه بیماری شناسی. دانشکده کشاورزی و منابع طبیعی

سابقه و هدف: تکنولوژی استفاده از ریز حامل های نانومتری بر مبنی سازه های زیستی طبیعی، امیدهای زیادی را جهت تحول در صنعت داروسازی موجب شده است. مواد و روش ها: چگونگی استفاده از ساختمان های قفس شکل پروتئینی به مانند ساختمان های شبیه پیکره ویروس ها (virus like particle: vlp) برای بسته بندی دارو و ارسال به هدف در این پژوهش به صورت جامع مورد بررسی قرار می گیرد. یافته ها: تغییرات ژنتیکی و شیمیایی متنو...

Journal: :Journal of virology 2014
Reagan G Cox John J Erickson Andrew K Hastings Jennifer C Becker Monika Johnson Ryan E Craven Sharon J Tollefson Kelli L Boyd John V Williams

UNLABELLED Human metapneumovirus (HMPV) is a leading cause of respiratory disease in infants, children, and the elderly worldwide, yet no licensed vaccines exist. Live-attenuated vaccines present safety challenges, and protein subunit vaccines induce primarily antibody responses. Virus-like particles (VLPs) are an attractive alternative vaccine approach because of reduced safety concerns compar...

Journal: :Journal of virology 1998
M P McCarthy W I White F Palmer-Hill S Koenig J A Suzich

The human papillomavirus (HPV) capsid is primarily composed of a structural protein denoted L1, which forms both pentameric capsomeres and capsids composed of 72 capsomeres. The L1 protein alone is capable of self-assembly in vivo into capsidlike structures referred to as viruslike particles (VLPs). We have determined conditions for the quantitative disassembly of purified HPV-11 L1 VLPs to the...

2011
Elena V. Vassilieva Bao-Zhong Wang Andrei N. Vzorov Li Wang Ying-Chun Wang Jadranka Bozja Rui Xu Richard W. Compans

Previously, a modified HIV Env protein with a heterologous membrane anchor was found to be incorporated into HIV virus-like particles (VLPs) at 10-fold-higher levels than those of unmodified Env. To further improve the immunogenicity of such VLPs, membrane-anchored forms of bacterial flagellin (FliC) or a flagellin with a truncated variable region (tFliC) were constructed to be incorporated int...

Journal: :Journal of virology 1994
Z Qiu D Ou T C Hobman S Gillam

Rubella virus (RV) virions contain two envelope glycoproteins (E1 and E2) and a capsid protein (C). Noninfectious RV-like particles (VLPs) containing three structural proteins were expressed in a BHK cell line (BHK-24S) by using an inducible promoter. These VLPs were found to resemble RV virons in terms of their size, their morphology, and some biological activities. In immunoblotting studies, ...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 1998
H L Greenstone J D Nieland K E de Visser M L De Bruijn R Kirnbauer R B Roden D R Lowy W M Kast J T Schiller

Papillomavirus-like particles (VLPs) are a promising prophylactic vaccine candidate to prevent human papillomavirus (HPV) infections and associated epithelial neoplasia. However, they are unlikely to have therapeutic effects because the virion capsid proteins are not detected in the proliferating cells of the infected epithelia or in cervical carcinomas. To increase the number of viral antigen ...

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