Induced pluripotent stem cells (iPSC) are undifferentiated cells capable of unlimited self-renewal. By introducing specific transcription factors, any somatic (fully differentiated) cell of the mammalian body can be changed (reprogrammed) into iPSC. The iPSCs are very similar to embryonic stem cells in their molecular and functional properties. By using specific factors, iPSCs can be differentiated into each of the about 200 cell types in the human body. The big advantage of iPSCs is the availability of somatic cells (isolation from blood or skin biopsy). Creation of "tailor made" iPSCs for each patient would allow transplantation of own cells and avoid problems with finding an immunologically compatible donor. and Kateřina Vodičková Kepková, Petr Vodička, Jan Motlík.
Pro hloubavého čtenáře jsou v hlavní části článku shromážděna v historické posloupnosti fakta k zamyšlení se nad výše položenou otázku. V roce 2016 uplyne 170 roků od jednoho z nejvýznamněších činů lidského intelektu v historii nebeské mechaniky - objevu planety Neptun. Udál se za neobvyklých a částečně i dramatických okolností na různých mistech Evropy. Proběhl zásluhou úspěšného propojení matematicky obtížných a časově náročných výpočtů ve Francii, Anglii a krátkého pozorování v Německu., The discovery of planet Neptune is one of the greatest events in the history of celestian mechanics. Le Verrier and simultaneously Adam applied inverse perturbation theory to the problem of Uranus, whose irregularities in motion could be used for determination of the orbit and mass of a yet unknown planet. These very complicated computations were successfully finished in summer 1846. Neptune was discovered by Johann Galle using le Verrier‘s predictions in September of the same year proving that the mathematical methods and numerical calculations were not fundamentally flawed. Therefore, dicovery of Neptune cannot be considered as accidental., and Vladimír Štefl.
The recently announced results from the ICEP2 experiment are intepreted as an indirect observation of inflation gravitational waves. In this article we briefly discuss the cosmic inflation hypothesis, what is the B-mode, how it was measured, and why the polarization of the cosmic microwave background radiation can reveal how strong gravitational waves were present in the universe during this early epoch., Tomáš Ledvinka., and Obsahuje seznam literatury
Non-small cell lung cancer (NSCLC) results in high mortality and has gained increasing attention. C-Phycocyanin (C-PC) has been identified as a potential therapeutic inhibitor for NSCLC, but its underlying mechanism remains obscure. The gene expression of the long noncoding RNA neighbour of BRCAI RNA 2 (NBR2) in NSCLC cells was evaluated by quantitative reverse transcription-PCR. The cell capacity for proliferation and migration was examined by EdU and wound-healing assays. Furthermore, the viability and apoptosis of cells was measured with CCK-8 and annexin V/PI, respectively. Next, the protein level of activation of adenosine monophosphate- activated protein kinase and the rapamycin kinase (mTOR) signalling pathway-associated molecules was evaluated by western blotting. H292 cells were pre-treated with C-PC or transfected with plasmids encoding NBR2 or the shNBR2 plasmid, to over-express or knock down NBR2 expression, respectively. NBR2 expression was robustly down-regulated in NSCLC cell lines compared with a normal cell line (BEAS-2B). NBR2 over-expression inhibited migration and promoted apoptosis of H292 cells. Treatment of H292 cells with C-PC enhanced NBR2 levels in a dose- and time-dependent manner. Downregulation of NBR2 in H292 cells inhibited the activity of C-PC on cell proliferation, viability and clone formation. Further mechanistic investigation showed that the down-regulation of NBR2 abolished the modulatory effects of C-PC on the AMPK/mTOR signalling pathway. In conclusion, C-PC inhibits H292 cell growth by enhancing the NBR2/AMPK signalling pathway.