631 research outputs found

    239. Ocena efektu przeciwnowotworowego genetycznie modyfikowanej szczepionki komórkowej w mysim modelu raka nerki

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    CelGenetycznie modyfikowane szczepionki komórkowe (GMTV) mają za zadanie indukcję efektywnej odpowiedzi przeciwnowotworowej. Postanowiliśmy ocenić efekt protekcyjny dwóch różnych GMTV w mysim modelu raka jasnokomórkowego nerki, oraz rolę komórek dendrytycznych w fazie indukcji przeciwnowotworowej odpowiedzi komórkowej.MetodyPrzy wykorzystaniu wektorów retrowirusowych DCCMV-IRES-Neo-H-6 oraz DCCMV-IRES-Neo-IL-6 wprowadzono do komórek mysiego raka jasnokomórkowego (RenCa) skonstruowano dwa rodzaje GMTV: (i) Komórki RenCa wykazujące ekspresję genu Interleukiny-6, (ii) komórki RenCa wykazujące ekspresję genu Hyper-lnterleukiny-6 (sztuczna cytokina będąca białkiem fuzyjnym składającym się z IL-6 powiązanej sztucznym linkerem z agonistycznym rozpuszczalnym receptorem) W celu oceny efektu protekcyjnego GMTV, myszy Balb/c w wieku 8–12 tygodni (8 osobników w jednej grupie eksperymentalnej) immunizowano podając podskórnie w lewe udo, 1×10^6 naświetlonych (80 Gy) komórek (RenCa w/t, RenCa-IL-6, Renca-H6). Po 14 dniach myszom podawano podskórnie w prawe udo wyjściowe komórki RenCa w/t w ilości 5×10^5. Następnie oceniano dynamikę pojawiania się guzów oraz kinetykę ich wzrostu. W celu oceny mechanizmów indukcji odpowiedzi immunologicznej postanowiono ocenić in situ wpływ poszczególnych rodzajów GMTV na komórki dendrytyczne. Myszy Balb/c otrzymywały w okolicy śródbrzusza, podskórnie 2×10^6 napromienionych (80 Gy) komórek Renca w/t, Renca-IL-6, Renca H-6 zawieszonych w Matrigelu™. Po 7 dniach przy pomocy cytometru przepływowego analizowano komórki naciekające Matrigel.Wyniki i podsumowanieImmunizacja myszy komórkami RenCa-H6 okazała się najbardziej efektywna w porównaniu do komórek RenCa w/t i RenCa-IL-6. Jakkolwiek nie przeciwdziałała wzrostowi guzów. Aktywowane komórki DC naciekały najsilniej komórki RenCa-H6. Efekt protekcyjny wyraźnie korelował z ilością aktywowanych komórek DC naciekających miejsce podania GMTV. Intensywna infiltracja miejsca podania GMTV przez komórki DC o wysokim poziomie aktywacji wskazuje na silną role Hyper-Interleukiny-6 w procesie indukcji funkcjonalnej przeciwnowotworowej odpowiedzi immunologicznej

    Phase Transition in Sexual Reproduction and Biological Evolution

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    Using Monte Carlo model of biological evolution we have discovered that populations can switch between two different strategies of their genomes' evolution; Darwinian purifying selection and complementing the haplotypes. The first one is exploited in the large panmictic populations while the second one in the small highly inbred populations. The choice depends on the crossover frequency. There is a power law relation between the critical value of crossover frequency and the size of panmictic population. Under the constant inbreeding this critical value of crossover does not depend on the population size and has a character of phase transition. Close to this value sympatric speciation is observed.Comment: 13 pages, 8 figure

    Ultrastructural and cytochemical study on vitellogenesis in the diphyllidean cestode Echinobothrium euterpes (Echinobothriidae) and its phylogenetical implications

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    The first description of vitellogenesis in the Diphyllidea is presented in this paper. Though the type of vitellogenesis and mature vitellocyte in Echinobothriumeuterpesappear to be unique among the Eucestoda, however, they somewhat resemble that observed in the two orders of the lower cestodes, Tetraphyllidea and Proteocephalidea. Vitellocyte maturation is characterized by: (1) an increase in cell volume; (2) extensive development of short, parallel, frequently concentric cisternae of GER that produce dense proteinaceous granules; (3) development of Golgi complexes engaged in packaging this material; (4) progressive formation of saturated lipid droplets; their continuous enlargement and fusion; (5) formation of small accumulations of glycogen particles scattered between and among lipid droplets in the cytoplasm of maturing vitellocytes; (6) concentration of dense proteinaceous granules in the peripheral layer of cytoplasm, around the cell plasma membrane; and (7) vacuolization of cytoplasm of mature vitellocytes accompanied by a rapid increase in its volume. A new,unreported type of dense proteinaceous granules, situated around the limiting plasma membranes of mature vitellocytes, is described. Vitellogenesis evidently differs from that with typical shell-globules and shell-globule clusters previously reported in other taxa of lower cestodes. Cytochemical staining with periodic acidthiosemicarbazide-silver proteinate for glycogen indicates a strongly positive reaction for glycogen particles between and around largeunsaturated lipid droplets of the maturing and mature vitellocytes. Some hypotheses concerning the interrelationship between this pattern of vitellogenesis, possible mode of egg formation, embryonic development and diphyllidean life cycle, and their phylogenetic implications are drawn and discussed.publishe

    Functional ultrastructure and cytochemistry of vitellogenesis and mature vitellocytes of the digenean Cainocreadium labracis (Dujardin, 1845), parasite of Dicentrarchus labrax (L., 1758)

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    Vitellogenesis and vitellocytes of Cainocreadium labracis were studied by transmission electron microscopy (TEM) and TEM cytochemistry. Four developmental stages were distinguished during vitellogenesis: (I) stem cell of high nucleo-cytoplasmic ratio; (II) early differentiation with chief activity focused on the beginning of protein synthesis and shell globule formation; (III) advanced differentiation with rapid intensification of protein synthesis, progressive fusion of single shell globules into large globule clusters, and formation of unsaturated lipid droplets surrounded by β-glycogen particles; and (IV) mature vitellocyte. Early vitellogenesis with vitellocyte maturation consists of: (1) increase in cell volume; (2) increased development of large, parallel cisternae of GER with production of proteinaceous granules; (3) development of small Golgi complexes that package granules; and (4) within vacuoles, progressive enlargement of proteinaceous granules into shell globule clusters formed during vitellogenesis. Three types of inclusions accumulate in large amounts in mature vitelline cells: (1) shell globule clusters, importantcomponentintheformationofeggshell;(2)numerousunsaturatedlipiddroplets.Thoughfewer,therearealsodiphasic droplets consisting of saturated and unsaturated lipids in the same droplet, and (3) a relatively small amount of β-glycogen particles, usually surround a few groups of lipid droplets. The β-glycogen and lipid droplets are nutritive reserves for embryogenesis. General pattern and functional ultrastructure of vitellogenesis greatly resemble those observed in some lower cestodes, such as bothriocephalideans and diphyllobothrideans. Variations and differences in the amount of lipids and of glycogen during vitellogenesis in lower cestodes and other trematodes are compared and discussed

    Kinematic mental simulations in abduction and deduction

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    We present a theory, and its computer implementation, of how mental simulations underlie the abductions of informal algorithms and deductions from these algorithms. Three experiments tested the theory’s predictions, using an environment of a single railway track and a siding. This environment is akin to a universal Turing machine, but it is simple enough for nonprogrammers to use. Participants solved problems that required use of the siding to rearrange the order of cars in a train (experiment 1). Participants abduced and described in their own words algorithms that solved such problems for trains of any length, and, as the use of simulation predicts, they favored “while-loops” over “for-loops” in their descriptions (experiment 2). Given descriptions of loops of procedures, participants deduced the consequences for given trains of six cars, doing so without access to the railway environment (experiment 3). As the theory predicts, difficulty in rearranging trains depends on the numbers of moves and cars to be moved, whereas in formulating an algorithm and deducing its consequences, it depends on the Kolmogorov complexity of the algorithm. Overall, the results corroborated the use of a kinematic mental model in creating and testing informal algorithms and showed that individuals differ reliably in the ability to carry out these tasks
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