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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
11

Expressão da proteína L1 do capsídio de HPV-16 em leveduras metilotróficas / Expression of the HPV-16 L1 capsid protein in methylotrophic yeasts

Silvia Boschi Bazan 20 August 2007 (has links)
Papilomavírus humanos (HPVs) são vírus de DNA que infectam células epiteliais, podendo ser responsáveis pelo aparecimento de lesões benignas e malignas. Dentre os mais de 120 tipos identificados, o HPV -16 constitui o principal agente etiológico do câncer cervical, que é uma das maiores causas de morte por câncer em mulheres no mundo. Sendo assim, infecções associadas ao HPV devem ser prevenidas por vacinas indutoras de resposta imune vírus-específicas. A proteína L1 do capsídio viral é capaz de arranjar-se em partículas morfologicamente e antigenicamente semelhantes ao vírus, denominadas \"virus-like particles\" (VLPs), que induzem altos títulos de anticorpos neutralizantes. Neste trabalho, foram clonados os genes L1 selvagem e otimizado de HPV -16 em vetores de expressão de leveduras metilotróficas como Hansenula polymorpha e Pichia pastoris. Foi observada uma expressão consistente da proteína recombinante apenas em P. pastoris, com o gene L1 otimizado. Foram realizadas diversas tentativas de purificação da proteína heteróloga, empregando técnicas de cromatografia e ultracentrifugação em gradiente descontínuo de sacarose. A correta montagem das VLPs foi confirmada por microscopia eletrônica. Problemas de agregação, heterogeneidade e adsorção a superfícies apresentados pela proteína L1 foram resolvidos após utilização de surfactante não-iônico e de um procedimento de desmontagem e remontagem das partículas, gerando preparações mais homogêneas. Ensaios de hemaglutinação e inibição da hemaglutinação comprovaram a apresentação de epítopos conformacionais na superfície das VLPs. Este trabalho demonstrou pela primeira vez a expressão da proteína L1 de HPV -16 em P. pastoris, visando ao desenvolvimento de uma vacina profilática de baixo custo para o sistema público de saúde. / Human papillomaviruses (HPVs) are DNA viruses that infect epithelial cells and can cause both benign and malignant lesions. From over 120 types catalogued so far, HPV-16 is the main etiologic agent of cervical cancer, which is the one of the most common causes of cancer deaths among women worldwide. Thus, HPV -associated infections might be prevented by vaccine inducing virus-specific immune responses. The L1 major capsid protein can self assemble into virus-like particles (VLPs), which are morphologically and antigenically indistinguishable from native viruses and induce high titers of neutralizing antibodies. In this work, we have cloned wild-type and codon-optimized L1 genes from HPV-16 in expression vectors of the methylotrophic yeasts Hansenula polymorpha and Pichia pastoris. Consistent L1 expression was only observed in P. pastoris transformed with the construction containing the codon-optimized gene. Many attempts to purify the heterologous protein were made, including chromatography and ultracentrifugation in sucrose density gradients. The correct assembly of VLPs was confirmed by electron microscopy. Some problems presented by recombinant L1 like aggregation, surface adsorption and heterogeneity were solved by using non-ionic surfactants and a procedure of disassembly and reassembly of the particles. Hemagglutination and hemagglutination inhibition assays corroborated the display of surface conformational epitopes by VLPs. This work showed for the first time the expression of the HPV-16 L1 protein in P. pastoris, aiming the development of a prophylactic vaccine free of charge for the public health system in Brazil.
12

Charakterizace virových nanočástic odvozených od myšího papilomaviru / Characterization of viral nanoparticles derived from mouse papillomavirus

Vomáčka, Petr January 2019 (has links)
The L1 and L2 capsid proteins of papillomaviruses are characterized by the ability to self- assemble into viral capsids, which can be divided into pseudovirions (PsVs) and virus-like particles (VLPs) by inner content. In addition to the fact that such particles can serve as "nano-containers" for diagnostic and therapeutic agents, it has also been shown that papillomaviruses, whether wild, PsVs or VLPs have a higher affinity for tumor tissue than non-tumor tissue. This thesis deals with relatively newly discovered (2011) mouse papillomavirus (MusPV) and nanoparticles derived from this virus. This papillomavirus has been chosen for its positives, including easy preparation of VLPs and PsVs, as well as an available model organism for possible testing. Furthermore, MusPV has the potential for use in gene therapy and cancer diagnosis, because there is no immune response in the human population. The aim of this diploma thesis is to prepare an expression system for the production of PsVs and VLPs. In additional it will also look at the quality and quantity of PsVs and VLPs, characterization of these particles and verification of existing postulates regarding higher affinity of papillomaviruses for tumor cells. Finally, it will also to verify whether the same effect is observed in MusPV. In the results of...
13

The effects of C-terminus modification of Dragon Grouper Nervous Necrosis Virus capsid protein on the virus particle formation.

He, Zi-Ming 08 September 2010 (has links)
In order to investigate the effects of C-terminus modification of Dragon Grouper Nervous Necrosis Virus capsid protein on the virus particle formation, we used E. coli expression system to express DGNNV capsid protain with different truncations at C-teminus fused with six or three histidines (His-Tag). These poly-His tagged clones, including ¡µC334-C6H, ¡µC335-C6H, ¡µC336-C6H, ¡µC337-C6H, C3H and C6H (His6 tagged at the C-teminus of wild-type capsid protein)¡Awere expressed and VLPs formation ability were examined. Wild-type and N-terminal recombination (N6H, His6 tagged at the N-teminus of wild-type capsid protein) were also used for comparison. These His-tagged VLPs can be further purified by Ni-NTA agarose, and their thermal stability of mutant VLPs were analyzed by Circular Dichroism. The Western blotting and ELISA assay were utilized to analyzed N-teminus or C-terminus was located at the surface of virus icosahedron. Once the four amino acids at the C-terminus of capsid protein were truncated (¡µC334-C6H), the mutated cpasid protein cannot assemble into VLPs. The same phenomenon was also observed in C6H. The related productions of wild-type, ¡µC335-C6H, ¡µC336-C6H, ¡µC337-C6H, C3H VLPs were about 100%, 56%, 116%, 141%, and 193%, respectively. Using Circular Dichroism to observe the thermal stability of mutant VLPs, the results revealed that the Tm of mutant VLPs were about 3oC lower than wild-type VLPs (61oC). The results of Western blotting and ELISA assay suggest that the C-termius of DGNNV capisid protein was exposed to the surface of virus structure.
14

Cílení virových nanočástic na specifické nádorové receptory / Targeting of viral nanoparticles to cancer specific receptors

Žáčková Suchanová, Jiřina January 2018 (has links)
The aim of this thesis is to reveal the potential of mouse polyomavirus (MPyV) based virus-like particles (VLPs) as possible nanocarriers for directed delivery of therapeutic or diagnostic compounds to specific cells or tissues. We have chosen mouse polyomavirus VLPs because they do not contain viral DNA and are considered safe for utilization in bio-applications. In our research, we used a chemical approach for retargeting of MPyV based VLPs from their natural receptor to cancer cells. The chemical modification of the capsid surface exposed lysines by an aldehyde-containing reagent enabled conjugation of VLPs to selected molecules: transferrin and inhibitor of glutamate carboxypeptidase II (GCPII). Transferrin, as a transporter of iron to metabolically active cells, targeted VLPs to numerous types of cancer cells overexpressing the transferrin receptor. On the other hand, GCPII serves as a transmembrane marker specific for prostate cancer cells and conjugation of its inhibitor to VLPs resulted in successful recognition of these cells. Electron microscopy was used for visualization of modified VLPs and flow cytometry together with confocal microscopy for investigation of cell specific interactions and VLP uptake. Furthermore, we explored the influence of serum proteins on VLPs. The abundance of...
15

Příprava monoklonálních protilátek proti proteinu VP2 lidských polyomavirů / Preparation of Monoclonal Antibodies Against VP2 Protein of Human Polyomaviruses

Vochyánová, Klára January 2013 (has links)
Aim of this diploma thesis was to prepare two protein antigens and two monoclonal antibodies, all based on VP2 minor protein of human polyomaviruses BK virus and Merkel Cell Polyomavirus. One monoclonal antibody was being prepared against unique part of VP2 protein (N-terminal epitope, not present in VP3 protein). A cell line producing such monoclonal antibody has never been established before due to low immunogenicity of the epitope. Our approach was successful in terms of mouse immunization, however, serious problems with hybridoma line stability appeared later during the preparation process. Preparation of antibody targeted to the sequence of VP2 protein of Merkel Cell Polyomavirus was another aim of this thesis. Mouse immunization and hybridoma fusion were performed successfully. After four rounds of cloning in order to purify an established clone, nine clones were cultivated in larger scale. This cultivation probably led to diminished antibody specificity and loss of production ability in most of the hybridoma cells. One more cloning should give rise to an established clone with sufficient production. Two preparations of protein antigens were performed in two expression systems. DNA encoding C-terminally truncated protein VP2 of BK virus fused with His-tag was cloned into a vector suitable for...
16

Studium interakcí hlavního strukturního proteinu polyomavirů se strukturami hostitelských buněk / Major structural protein of Polyomaviruses: Interactions with host cell structures

Mrkáček, Michal January 2018 (has links)
The main structural protein VP1 is the product of late polyomaviral genes and it is the largest and the most abundant protein of the whole polyomaviral capsid. Because of the low coding capacity of the polyomaviral genomes, it is considered that in addition to its structural role the VP1 protein might have some additional functions in the late phase of the infectious cycle. This diploma thesis is exactly on these additional functions. In the case of the VP1 protein of mouse polyomavirus, it was observed that the protein is capable of binding to the structure of cellular microtubules. The first objective of this work was to test whether pentamers of the VP1 protein are able of this binding without the participation of other cellular (or viral) proteins. Based on an in vitro experiment, we showed that protein VP1 binds to the structure of microtubules very inefficiently. The second objective of this work was to prepare a detection system that would allow an identification of potential interaction partners of BK polyomavirus VP1 protein. Therefore, expression plasmids producing the N and C-terminally tagged VP1 protein were prepared. These tagged proteins had the property of being biotinylated whilst being produced in the transfected cells. By using affinity chromatography, the entire protein complexes...
17

DEVELOPMENT AND EVALUATION OF NOVEL INTRANASAL VACCINATION STRATEGIES TO PREVENT PORCINE REPRODUCTIVE AND RESPIRATORY SYNDROME IN PIGS

Binjawadagi, Basavaraj 20 May 2015 (has links)
No description available.
18

Studium vlastností genových produktů Polyomaviru karcinomu Merkelových buněk : Příprava protilátek a konstrukce expresních vektorů. / Studies of properties of gene products of the Merkel cell carcinoma polyomavirus: Antibody preparation and expression vector construction.

Sauerová, Pavla January 2013 (has links)
Merkel cell polyomavirus (MCPyV) is a recently discovered human virus, having it's genome often integrated in a genome of Merkel carcinoma cells. Although this type of carcinoma is not so usual, it is very aggressive and it's incidence has been rising in last few years. It is not surprising that this virus is nowadays in the centre of scientific interest, as well as other pathogens and mechanisms affecting human life. Because the virus was discovered not so long ago, its research has been at the whole beginning. This diploma thesisaims to contribute to the study of this virus from the molecular-virology point of view. A neutralizing monoclonal antibody, type IgG2a, targeted against the main capsid protein of MCPyV, VP1, and recognizing its conformational epitote was prepared. This antibody was then used for a pilot study of VP1 VLPs MCPyV movement in mammalian cells. Results showed that the studied virus, at least particularly, utilizes caveolin-1-carrying vesicles for its movement in cells (colocalisation of VP1 VLPs and caveolin-1 was observedColocalisation with EEA1 marker of early endosomes, LamP2 marker of endolysosomal compartments or with BiP marker of endoplasmic reticulum was sporadic but significant. These preliminary results suggest that MCPyV might utilise an endocytic pathway leading...
19

Developing a Recombinant Plant Virus Nanoparticle Vaccine for Rift Valley Fever Virus

Chun, Elizabeth M 01 January 2019 (has links)
Rift Valley Fever (RVF) is an emerging infectious disease found in both livestock and humans. RVF is associated with high abortion and mortality rates in livestock and can be fatal in humans. As such, RVF is economically and socially significant to affected smallholder and subsistence farmers, those infected, and national livestock industries. However, Rift Valley Fever virus (RVFV) vaccines are not commercially available outside of endemic areas or for humans, and current vaccines are limited in their safety and efficacy. A plant-based, viral nanoparticle vaccine offers a more affordable alternative to conventional vaccines that is safe, rapidly producible, and easily scalable, better meeting the needs of impacted communities. This project focuses on assessing the potential of using a Nicotiana benthamiana plant expression system to generate recombinant tobacco mosaic virus (TMV) nanoparticles displaying RVFV glycoprotein epitopes. Eight TMV-RVFV glycoprotein constructs were designed. Five TMV-RVFV constructs were successfully cloned, and four recombinant TMV constructs were successfully expressed in planta. The antigenicity of these constructs was examined for their possible use in RVFV vaccine development.
20

Studium vlastností virových kapsidových proteinů a vývoj rekombinantních vakcín a diagnostických komponent založených na umělých virových strukturách / Studies of properties of viral capsid proteins and development of recombinant vaccines and diagnostic components based on artificial viral structures

Fraiberk, Martin January 2017 (has links)
The aim of this study was to develop a system for easy production of different veterinary chimeric vaccines based on stable mouse polyomavirus (MPyV) structures. The system is designed for antigens that are problematic in production or stability. First, universal vectors for baculovirus-directed production of chimeric MPyV VLPs or pentamers based on the major capsid protein VP1 were designed to be exploited as vaccines against other pathogens. The different strategies used in this study are based on: A) exposure of selected immunogenic epitopes on the surface of MPyV VLPs by inserting them into a surface loop of the VP1 protein, B) insertion of foreign protein molecules inside the VLPs, or C) fusion of a foreign protein or its part with the C-terminus of VP1 protein, thus forming giant pentamers of a chimeric protein. Candidate vaccine antigens against porcine circovirus 2 (PCV2), the causative agent of porcine circovirus 2 systemic diseases (PCV2-SD) which causes significant economic losses in swine breeding, were prepared using the constructed vectors. All candidate vaccines induced the production of antibodies against the capsid protein of PCV2 after immunization of mice. The candidate vaccine Var C based on fusion of MPyV and PCV2 capsid proteins, is able to induce production of antibodies with...

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