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Homeostatic memory and virtual memory CD8+ T cells
Název práce v češtině: Homeostatické paměťové a virtuální paměťové CD8+ T lymfocyty
Název v anglickém jazyce: Homeostatic memory and virtual memory CD8+ T cells
Akademický rok vypsání: 2016/2017
Typ práce: bakalářská práce
Jazyk práce: angličtina
Ústav: Katedra buněčné biologie (31-151)
Vedoucí / školitel: Mgr. Ondřej Štěpánek, Ph.D.
Řešitel: skrytý - zadáno vedoucím/školitelem, čeká na schválení garantem
Datum přihlášení: 04.10.2016
Datum zadání: 11.10.2016
Datum odevzdání elektronické podoby:14.05.2017
Datum proběhlé obhajoby: 05.06.2017
Oponenti: doc. RNDr. Magdaléna Krulová, Ph.D.
 
 
 
Předběžná náplň práce
The student will review current scientific literature on the topic of homeostatic memory and virtual memory T cells. Homeostatic memory T cells are generated from naive CD8+ Tlymphocytes during lymphopenia. Virtual memory CD8+ T cells also do not represent true immunological memory, because they are generated in the absence of a cognate foreign antigen. In contrast to homeostatic memory T cells, virtual memory T cells naturally occur in healthy lymphoreplete hosts. The origin of virtual memory T cells is still unclear, but they might represent the same T cell subset as experimentally induced homeostatic memory T cells. Gene expression signature and functional characteristics of homeostatic and virtual memory T cells will be compared to resolve whether or not homeostatic memory and virtual memory T cells represent the same differentiation program. Last but not least, the student will compare these T cells populations with conventional „true“ memory T cells that are formed upon exposure to cognate foreign antigens.
Předběžná náplň práce v anglickém jazyce
The student will review current scientific literature on the topic of homeostatic memory and virtual memory T cells. Homeostatic memory T cells are generated from naive CD8+ T lymphocytes during lymphopenia. Virtual memory CD8+ T cells also do not represent true immunological memory, because they are generated in the absence of a cognate foreign antigen. In contrast to homeostatic memory T cells, virtual memory T cells naturally occur in healthy lymphoreplete hosts. The origin of virtual memory T cells is still unclear, but they might represent the same T cell subset as experimentally induced homeostatic memory T cells. Gene expression signature and functional characteristics of homeostatic and virtual memory T cells will be compared to resolve whether or not homeostatic memory and virtual memory T cells represent the same differentiation program. Last but not least, the student will compare these T cells populations with conventional „true“ memory T cells that are formed upon exposure to cognate foreign antigens.
 
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