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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

Rationale design of polymeric siRNA delivery systems

Kim, NaJung 01 July 2011 (has links)
Regulation of gene expression using small interfering RNA (siRNA) is a promising strategy for research and treatment of numerous diseases. However, siRNA cannot easily cross the cell membrane due to its inherent instability, large molecular weight and anionic nature. For this reason, a carrier that protects, delivers and unloads siRNA is required for successful gene silencing. The goal of this research was to develop a potential siRNA delivery system for in vitro and in vivo applications using cationic polymers, chitosan and polyethylenimine (PEI), poly(ethylene glycol) (PEG), mannose, and poly(D,L-lactic-co-glycolic acid) (PLGA). Furthermore, the delivery system was constructed in two different ways to explore the effect of mannose location in the structure. In the first approach, mannose and PEG were directly conjugated to the chitosan/PEI backbone, while mannose was connected to the chitosan/PEI backbone through PEG spacer in the second approach. First, the ability of modified chitosan polymers to complex and deliver siRNA for gene silencing was investigated. Despite the modified chitosan polymers successfully formed nanoplexes with siRNA, entered target cells and reduced cytotoxicity of unmodified chitosan, they showed limited gene silencing efficiency. For this reason, modified PEIs were examined to improve in vitro gene knockdown. The modified PEI polymers also complexed with siRNA and facilitated endocytosis of the nanoplexes. In addition, the modifications reduced inherent cytotoxicity of unmodified PEI without compromising the gene silencing efficiency on both mRNA and protein levels. Interestingly, we found that complexation of siRNA with PEI-PEG-mannose resulted in higher cell uptake and gene silencing than complexes made with mannose-PEI-PEG. Finally, the effect of sustained release of the mannosylated pegylated PEI/siRNA nanoplexes on gene silencing was tested by encapsulating the nanoplexes within PLGA microparticles. The modified PEIs enhanced the entrapment efficiency of siRNA into the particles and resulted in reduced initial burst followed by sustained release. Incorporating the modified PEIs increased cellular uptake of siRNA, whereas it did not enhance in vitro gene knockdown efficiency due to the sustained release properties. The modified PEIs reduced the in vitro cytotoxicity and in vivo hepatotoxicity of the PLGA microparticles. In addition, encapsulating the nanoplexes into PLGA microparticles further reduced the cytotoxicity of PEI. Throughout the study, the second structure was proven more efficacious than the first structure in cellular uptake, gene silencing, siRNA encapsulation, and sustained release. We have developed novel polymeric siRNA delivery systems that enhance delivery efficiency and cellular uptake of siRNA. They have great potential for utility as a long-acting siRNA delivery system in biomedical research.
12

Studium poruch cytochrom c oxidasy a ATP synthasy na biochemické a molekulární úrovni / Biochemical and molecular studies of cytochrome c oxidase and ATP synthase deficiencies

Fornůsková, Daniela January 2011 (has links)
Mgr. Daniela Fornuskova PhD thesis Biochemical and molecular studies of cytochrome c oxidase and ATP synthase deficiencies ABSTRACT The mammalian organism fully depends on the oxidative phosphorylation system (OXPHOS) as the major energy (ATP) producer of the cell. Disturbances of OXPHOS may be caused by mutations in either mitochondrial DNA (mtDNA) or nuclear DNA (nDNA). One part of the thesis is focused on the role of early and late assembled nuclear-encoded structural subunits of cytochrome c oxidase (CcO) as well as Oxa1l, the human homologue of the yeast mitochondrial Oxa1 translocase, in the biogenesis and function of the human CcO complex using stable RNA interference of COX4, COX5A, COX6A1 and OXA1L, as well as expression of epitope-tagged Cox6a, Cox7a and Cox7b, in HEK (human embryonic kidney)- 293 cells. Our results indicate that, whereas nuclear- encoded CcO subunits Cox4 and Cox5a are required for the assembly of the functional CcO complex, the Cox6a subunit is required for the overall stability of the holoenzyme. In OXA1L knockdown HEK-293 cells, intriguingly, CcO activity and holoenzyme content were unaffected, although the inactivation of OXA1 in yeast was shown to cause complete absence of CcO activity. In addition, we compared OXPHOS protein deficiency patterns in mitochondria from skeletal...
13

Vývoj chemických regulátorů drah mikroRNA a RNAi / Vývoj chemických regulátorů drah mikroRNA a RNAi

Bruštíková, Kateřina January 2015 (has links)
MicroRNAs are noncoding RNAs inducing sequence-specific posttranscriptional inhibition of gene expression and represent the major class of small endogenous RNAs in mammalian cells. Over 2,500 of human microRNAs potentially regulating more than 60% of human protein-coding genes have been identified. MicroRNAs participate in the majority of cellular processes, and their expression changes in various diseases, including cancer. Currently, there is no efficient small chemical compound available for the modulation of microRNA pathway activity. At the same time, small chemical compounds represent excellent tools for research of processes involving RNA silencing pathways, for biotechnological applications, and would have a considerable therapeutic potential. The presented work represents a part of a broader project, whose ultimate goal is: (i) to find a set of small molecules allowing for stimulation or inhibition of RNA silencing and (ii) to identify crosstalks between RNA silencing and other cellular pathways. This thesis summarizes results from the first two phases of the project, the development of high-throughput screening assays and the high- throughput screening (HTS) of available libraries of small compounds. To monitor the microRNA pathway activity, we developed and optimized one biochemical...
14

Dynamique de l’émergence in vitro des mutants d’échappement du virus de la peste des petits ruminants (PPRV) face à l’activité ARN interférente ciblant le gène de la nucléoprotéine : implications pour les stratégies thérapeutiques / Dynamics of the in vitro emergence of escape mutants of the peste des petits ruminants virus (PPRV) to interfering RNAs targeting the nucleoprotein gene : implications for therapeutics

Holz Correia, Carine Lidiane 04 November 2011 (has links)
Les membres du genre Morbillivirus, famille Paramyxoviridae sont responsables de graves maladies chez l'homme et les animaux, comme la rougeole, la peste bovine (RP) et la peste des petits ruminants (PPR). Malgré l'existence de vaccins efficaces contre ces maladies, des traitements spécifiques sont souhaitables. L'inhibition de la réplication de ces virus peut-être acquise par interférence ARN (ARNi), un mécanisme d'inhibition post-transcriptionnel déclenché par des séquences courtes d'ARN double-brin (siARN). Le CIRAD a précédemment identifié 3 siARNs ciblant des régions conservées du gène de la nucléoprotéine virale capables d'inhiber au moins 80% de la réplication in vitro des virus de la rougeole, de la RP et de la PPR. Cependant, un problème majeur dans la stratégie d'ARNi est le risque d'apparition de virus résistants. Dans cette étude, nous avons évalué le risque d'apparition de mutants d'échappement du virus de la PPR sous pression de sélection de 3 siARNs appliqués seul ou en association après plusieurs transfections successives in vitro. Excepté pour la combinaison des 3 siARNs, le virus a échappé à l'ARNi après 3 à 20 passages consécutifs, avec des mutations simples ou multiples (synonymes ou pas) ou une délétion de 6 nucléotides dans la zone cible des siARN. Ces résultats mettent en évidence une plasticité génomique inattendue des morbillivirus surtout illustrée par cette délétion non-délétère d'une partie significative d'un gène viral essentiel, qui devrait être considérée comme un obstacle à l'utilisation de l'ARNi comme thérapie antivirale. Cependant, l'utilisation combinée de 3 siARNs peut être proposée pour diminuer le risque d'échappement aux siARNs. / Viruses in the genus Morbillivirus, within the family Paramyxoviridae are responsible for severe humans and animal diseases, including measles, rinderpest (RP) and peste des petits ruminants (PPR). In spite of the existence of efficient vaccines against these diseases, specific treatments to be applied when the infection is already present are desirable. Inhibition of morbillivirus replication can be achieved by RNA interference (RNAi), a mechanism of post-transcriptional gene silencing triggered by small double-stranded RNA (siRNA). The CIRAD previously identified three siRNAs that target conserved regions of the essential gene encoding the viral nucleoprotein and are able to prevent in vitro at least 80% of the replication of measles, RP and PPR viruses . However, a major problem in RNAi is the important risk of emergence of escape mutants. In this study, we investigated the ability of PPR virus to escape the inhibition conferred by single or multiple siRNAs after several consecutive transfections in vitro. Except with the combination of the three different siRNAs, the virus systematically escaped RNAi after 3 to 20 consecutive passages. The mutations were characterized by either single or multiple punctual nucleotide mutations (synonymous or not) or a deletion of a stretch of 6 nucleotides into the siRNA target. These results demonstrate that the genomic plasticity of morbilliviruses, illustrated maily by this significant and no-deleterious deletion in an essential viral gene, should be considered as an obstacle to the use of RNAi in antiviral therapy. However, the combined use of three siRNAs can be proposed to prevent treatment failure with siRNAs.
15

Efeitos da infecção por Rickettsia rickettsii sobre o perfil de expressão gênica do carrapato vetor Amblyomma cajennense. / Effects of infection with Rickettsia rickettsii on the gene expression profile of the tick vector Amblyomma cajennense.

Larissa Almeida Martins 06 May 2014 (has links)
O agente etiológico da Febre Maculosa das Montanhas Rochosas (RMSF), conhecida no Brasil como Febre Maculosa Brasileira, é a bactéria Rickettsia rickettsii. Essa bactéria é transmitida ao homem pela picada de diferentes espécies de carrapatos ixodídeos. No Brasil, os vetores são Amblyomma cajennense e A. aureolatum. As taxas de prevalência de R. rickettsii nas populações de carrapatos de áreas endêmicas para RMSF são baixas, em geral abaixo de 1%. Essa baixa prevalência parece estar associada a menores taxas reprodutivas e de sobrevivência de linhagens infectadas, sugerindo que R. rickettsii seja patogênica também para os seus vetores. Infecções experimentais demonstraram que 80-100% dos indivíduos de uma colônia de A. aureolatum mantida em laboratório são infectados por R. rickettsii, enquanto apenas 10-60% de A. cajennense adquirem a bactéria. Esses dados indicam que as respostas dessas duas espécies de carrapatos à infecção sejam diferentes, resultando em diferentes taxas de prevalência da bactéria. Dessa maneira, a caracterização molecular das interações entre carrapatos do gênero Amblyomma e a bactéria R. rickettsii é importante, podendo gerar informações não somente para o esclarecimento acerca dos mecanismos de patogenicidade de R. rickettsii para os carrapatos, mas também para um melhor entendimento dos mecanismos responsáveis pela aparente restringência de A. cajennense à infecção. Assim, os objetivos do presente estudo foram: (i) analisar os efeitos da infecção por R. rickettsii sobre o perfil de expressão gênica de carrapatos A. cajennense por hibridação subtrativa por supressão (SSH), (ii) validar os dados de SSH por reação em cadeia de polimerase quantitativa precedida por transcrição reversa (RT-qPCR) e (iii) caracterizar funcionalmente dois genes com expressão induzida pela infecção por RNA de interferência (RNAi). Após a análise bioinformática dos dados de SSH, 44 sequências únicas foram obtidas, das quais 36 representam genes com expressão induzida e 8 genes com expressão reprimida pela infecção. A indução dos genes codificadores da subunidade I da citocromo c oxidase (COX1), da subunidade IV da NADH desidrogenase, de uma proteína com domínio de inibidor de serina-proteases Kunitz-type (papilina-like), identificados por SSH, e de um peptídeo antimicrobiano (hebraeína), foi confirmada por RT-qPCR. O silenciamento gênico da hebraeína e da papilina-like não teve nenhum efeito na aquisição de R. rickettsii pelo vetor, indicando que, isoladamente, não são responsáveis pela proteção de A. cajennense contra a infecção. Os dados gerados pelo presente estudo abrem perspectivas para que outros genes sejam avaliados quanto ao seu papel na aquisição de R. rickettsii, os quais, no futuro, podem ser considerados como alvos para o desenvolvimento de vacinas. / The etiologic agent of the Rocky Mountain Spotted Fever (RMSF), also known as Brazilian Spotted Fever in Brazil, is the bacterium Rickettsia rickettsii. This rickettsia is transmitted to humans by the bite of various tick species. In Brazil, Amblyomma cajennense and A. aureolatum are known as vectors. The prevalence rates of R. rickettsii infected ticks in RMSF endemic areas are low, oscillating around 1%. These low prevalence rates seems to be associated with lower reproductive and survival rates of infected ticks, suggesting that R. rickettsii is also pathogenic to its vectors. Experimental infections with R. rickettsii have demonstrated that 80 to 100% of A. aureolatum ticks from a laboratory colony acquire this bacterium, whereas only 10 to 60% of A. cajennense ticks become infected. These results indicate that the responses of these two tick species against infection are different, resulting in different prevalence rates of the bacterium. Therefore, the elucidation of the interactions between ticks of the genera Amblyomma and the bacterium R. rickettsii at a molecular level is important to provide information to better understand the mechanisms of pathogenicity of R. rickettsii against ticks as well as for the elucidation of the mechanisms responsible for the apparent refractoriness of A. cajennense against infection. Therefore, the objectives of the current study were: (i) analyze the effets of the infection with R. rickettsii on the gene expression of ticks A. cajennense by suppression subtractive hybridization (SSH), (ii) validate SSH data by reverse transcription quantitative polymerase chain reaction (RT-qPCR), and (iii) functionally characterize two genes induced by infection using RNA interference (RNAi). After bioinformatics analysis of SSH data, 44 unique sequences were obtained, among which 36 represent genes with expression induced and 8 repressed genes by infection. The induction of genes encoding subunit I of cytochrome c oxidase (COX1), the NADH dehydrogenase subunit IV, a protein containing Kunitz-type inhibitor domain (papilin-like), identified by SSH, and an antimicrobial peptide (hebraein), was confirmed by RT-qPCR. The effects of knockdown of hebraein and papilin-like encoding genes had no effect on the acquisition of R. rickettsii by the vector. Data of the current study may be used to evaluate the role of other genes in acquisition of R. rickettsii, which, in the future, may be considered as target for vaccine development.
16

Studium poruch cytochrom c oxidasy a ATP synthasy na biochemické a molekulární úrovni / Biochemical and molecular studies of cytochrome c oxidase and ATP synthase deficiencies

Fornůsková, Daniela January 2011 (has links)
Mgr. Daniela Fornuskova PhD thesis Biochemical and molecular studies of cytochrome c oxidase and ATP synthase deficiencies ABSTRACT The mammalian organism fully depends on the oxidative phosphorylation system (OXPHOS) as the major energy (ATP) producer of the cell. Disturbances of OXPHOS may be caused by mutations in either mitochondrial DNA (mtDNA) or nuclear DNA (nDNA). One part of the thesis is focused on the role of early and late assembled nuclear-encoded structural subunits of cytochrome c oxidase (CcO) as well as Oxa1l, the human homologue of the yeast mitochondrial Oxa1 translocase, in the biogenesis and function of the human CcO complex using stable RNA interference of COX4, COX5A, COX6A1 and OXA1L, as well as expression of epitope-tagged Cox6a, Cox7a and Cox7b, in HEK (human embryonic kidney)- 293 cells. Our results indicate that, whereas nuclear- encoded CcO subunits Cox4 and Cox5a are required for the assembly of the functional CcO complex, the Cox6a subunit is required for the overall stability of the holoenzyme. In OXA1L knockdown HEK-293 cells, intriguingly, CcO activity and holoenzyme content were unaffected, although the inactivation of OXA1 in yeast was shown to cause complete absence of CcO activity. In addition, we compared OXPHOS protein deficiency patterns in mitochondria from skeletal...
17

Überwindung der P-Glykoprotein (MDR1)-abhängigen Multidrugresistenz mittels RNA-Interferenz

Stege, Alexandra Eva 11 January 2007 (has links)
P-Glykoprotein als Produkt des MDR1-Gens stellt einen gut untersuchten Mediator der Multidrugresistenz (MDR) in humanen Malignomen dar. Die Überexpression dieses ABC-Transporters steht in Korrelation zu einer erniedrigten Tumorremission und einer kürzeren Überlebensrate der Patienten. Bisherige Versuche, das Protein über niedermolekulare Substanzen (MDR-Modulatoren) zu inhibieren, vermochten in allen bisherigen klinischen Studien nicht zu überzeugen, so daß diese bis heute keinen Eingang in Standardtherapieschemata gefunden haben. Ziel dieser Arbeit war es, mittels RNA-Interferenz Strategien die Expression von MDR1 zu hemmen und eine Reversion der zellulären Chemoresistenz sowohl im Zellkultur- als auch im Tiermodell zu erreichen. Für die in vitro Untersuchungen an drei humanen multidrug-resistenten Karzinomzellinien wurden verschiedene siRNA (short interfering) Duplexe und shRNA (short hairpin)-exprimierende Vektoren gegen die MDR1 mRNA entwickelt. Die Behandlung der Zellen mit siRNAs führte zu einer bis zu 91 %igen Inhibition der MDR1 mRNA-Expression und zu einer Sensitivierung der Zellen gegenüber dem Anthrazyklin um 89 %. Diese Effekte konnte über einen Zeitraum von drei bis fünf Tagen aufrechterhalten werden. Die stabile Expression von anti-MDR1 shRNAs führte in zwei der untersuchten Zellmodelle zu einer dauerhaften und kompletten Überwindung des MDR1-abhängigen Resistenzphänotyps. Im Mausmodell konnte durch intratumorale Applikation des anti-MDR1 shRNA-kodierenden Vektors mittels low-volume Jet-Injektion eine komplette Reversion der MDR1-Überexpression sowie eine Wiederherstellung der Chemosensitivität gegenüber Doxorubicin in dem resistenten Tumormodell erreicht werden. Die Effizienz der kombinierten Gen- und Chemotherapie wird durch die Verminderung des in vivo Tumorwachstums auf das Volumen des von der sensiblen Zellinien-abgeleiteten Tumors reflektiert. / Multidrug resistance (MDR) is the major cause of failure of effective chemotherapeutic treatment of disseminated neoplasms. The "classical" MDR phenotype of human malignancies is mediated by drug extrusion by the adenosine triphosphate binding cassette (ABC)-transporter P-glycoprotein (MDR1/P-gp). For stable reversal of "classical" MDR in three human cancer cell lines by RNA interference (RNAi) technology, two small interfering RNA (siRNA) constructs and four H1-RNA gene promoter-driven expression vectors encoding anti-MDR1/P-gp short hairpin RNA (shRNA) molecules were constructed. In all cellular systems, siRNAs could specifically inhibit MDR1 expression up to 91% at the mRNA and protein levels. Resistance against daunorubicin was decreased to a maximum of 89%. The introduction of anti-MDR1/P-gp shRNA expression vectors leads in two of the three human cancer cell lines to a complete reversion of the MDR phenotype. The reversal of MDR was accompanied by a complete suppression of MDR1/P-gp expression on mRNA and protein level, and by a considerable increased intracellular anthracyline accumulation in the anti-MDR1/P-gp shRNA-treated cells. In a mouse xenograft model a complete in vivo restoration of MDR1 overexpression and chemosensitivity to doxorubicin could be obtained by intratumorally jet-injected anti-MDR1 shRNA in a multidrug resistant human cancer tumor model.
18

Molecular and functional characterization of potential pathogenicity related genes from <i>Verticillium longisporum</i> / Molekulare und funktionelle Charakterisierung von potenziell pathogenitatsrelevanten Genen aus <i>Verticillium longisporum</i>

Beinhoff, Malte 18 July 2011 (has links)
No description available.
19

Vliv způsobu indukce RNA interference na umlčování reportérového genu pro GFP u Arabidopsis thaliana / Impact of the mode of RNAi induction on silencing of the reporter GFP gene in Arabidopsis thaliana

Růžičková, Adéla January 2015 (has links)
RNA interference (RNAi) is one of the key mechanisms that are involved in many biological processes such as control of plant gene expression, influence on chromatin arrangement or providing protection against invasive DNA or RNA transposons, viruses and transgenes. In plants, RNAi is triggered by double stranded RNA (dsRNA) that is cleaved by DICER LIKE (DCL) proteins to small RNAs (sRNAs). The size of these sRNAs is in range of 21 - 24 nucleotides (nt). Small RNA acts in the place of origin and they are also a mobile signal which in plants can move to a short distance through plasmodesmata and to a long distance trough phloem. sRNA and Argonaute (AGO) protein form RNA-induced silencing complex (RISC). Together, they recognize the target RNA molecule and contribute to an efficient RNAi phase which may be exhibited by gene silencing at posttranscriptional level (PTGS) or transcriptional level (TGS). The purpose of this study was to compare the effects of silencing constructs, witch in a controlled way differently trigger RNAi directed against the expression of the GFP reporter gene in the model organism Arabidopsis thaliana. Silencing constructs were placed under an inducible promoter activated by the presence of 17-β-estradiol (XVE system). They differed in the way of the dsRNA formation and in the...
20

RNAi-mediated knockdown of the endogenous TCR improves safety of immunotherapy with TCR gene-modified T cells

Bunse, Mario 11 March 2015 (has links)
Durch den Transfer der Gene des heterodimeren T-Zellrezeptors (TZR) mithilfe viraler Vektoren können T-Zellen programmiert werden, ein ausgewähltes Antigen spezifisch zu erkennen. In klinischen Studien wurden solche T-Zellen bereits mit Erfolg zur Immuntherapie von Krebs und viralen Infektionen eingesetzt. Genmodifizierte T-Zellen unterscheiden sich jedoch von normalen T-Zellen, weil sie neben den beiden zelleigenen auch die zwei übertragenen TZR-Gene exprimieren. Diese Situation erlaubt die Bildung vier verschiedener TZR-Heterodimere: der zelleigene TZR, der übertragene TZR und zwei gemischte TZR, bestehend aus je einer übertragenen und einer zelleigenen TZR-Kette. Gemischte TZR bergen das Risiko von Nebenwirkungen, weil sie durch Zufall gesundes Körpergewebe erkennen und so Autoimmunität auslösen könnten. In dieser Arbeit wurden deshalb virale Vektoren entwickelt, die gleichzeitig mit der Übertragung von neuen TZR-Genen den zelleigenen TZR durch RNA Interferenz (RNAi) unterdrücken. Mikro-RNA (miRNA), die in den Vektor MP71 eingefügt wurden, reduzierten den zelleigenen TZR in Maus-T-Zellen um mehr als 85%. Dies hatte zur Folge, dass beide Ketten des übertragenen P14-TZR in gleicher Menge auf der Zelloberfläche exprimiert wurden und die Bildung von gemischten TZR reduziert wurde. In einem Mausmodell der adoptiven T-Zelltherapie verhinderte die Unterdrückung des zelleigenen TZR die Entstehung von Autoimmunität, die andernfalls durch gemischte TZR verursacht wurde. Im Gegensatz dazu führte die Anwendung von gentechnisch optimierten P14-TZR-Genen weder zur angeglichenen Oberflächenexpression der P14-TZR Ketten noch zu weniger Autoimmunität im Mausmodell. Ein anderes Tierexperiment zeigte, dass die miRNA die Funktion der genmodifizierten T-Zellen nicht beeinträchtigte. Schließlich wurde ein viraler Vektor entwickelt und getestet, der die Expression des zelleigenen TZR in menschlichen T-Zellen effektiv unterdrückte und die Bildung von gemischten TZR reduzieren konnte. / T cells can be genetically modified using viral vectors. The transfer of genes encoding both chains of the heterodimeric T cell receptor (TCR) programs T cells to specifically react towards an antigen of choice. Such TCR gene-modified T cells were already successfully applied in clinical studies to treat cancer and viral infections. However, in contrast to nonmanipulated T cells these cells express the transferred TCR in addition to the endogenous TCR and this situation allows the assembly of four different TCR heterodimers: the endogenous TCR, the transferred TCR, and two mixed TCR dimers, composed of one endogenous and one transferred TCR chain. The formation of mixed TCR dimers represents a safety issue because they may by chance recognize self-antigens and thereby cause autoimmune side effects. To overcome this problem, an RNAi-TCR replacement vector was developed that simultaneously silences the endogenous TCR and expresses an RNAi-resistant therapeutic TCR. The expression of miRNA encoded by a retroviral MP71 vector in transduced mouse T cells reduced the surface levels of the endogenous TCR by more than 85%. The knockdown of the endogenous TCR in turn resulted in equal surface expression levels of both transferred P14 TCR chains and prevented the formation of mixed TCR dimers. Accordingly, the development of lethal mixed TCR dimer-dependent autoimmunity (TI-GVHD) in a mouse model of adoptive T cell therapy was dramatically reduced by the knockdown of the endogenous TCR. In contrast, the usage of genetically optimized TCR genes neither resulted in equal surface levels of both P14 TCR chains nor in reduced autoimmunity. A second mouse model demonstrated that the in vivo functionality of the transduced T cells was not negatively influenced by the expression of the miRNA. Finally, an RNAi-TCR replacement vector for human T cells was developed that effectively reduced the expression of the endogenous TCR and prevented the formation of mixed TCR dimers.

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