نتایج جستجو برای: brilliant blue fcf

تعداد نتایج: 74785  

2014
Yüksel Totan Emre Güler Mehmet Serdar Dervişoğulları

We report intensely staining epiretinal membrane (ERM) with Brilliant Blue G (BBG) under air for two minutes. ERM peeling was performed in 21 cases. After removal of posterior hyaloid, 0.2 mL BBG was first applied on the macula, to stain ERM under air conditions for 2 minutes. Internal limiting membrane (ILM) was intensely stained and peeled in all cases following ERM removal. In 4 cases, the E...

Journal: :Eukaryotic cell 2014
Lydia R Heasley Galo Garcia Michael A McMurray

The septins are a family of GTP-binding proteins that form cytoskeletal filaments. Septins are highly conserved and evolutionarily ancient but are absent from land plants. The synthetic plant cytokinin forchlorfenuron (FCF) was shown previously to inhibit budding yeast cell division and induce ectopic septin structures (M. Iwase, S. Okada, T. Oguchi, and A. Toh-e, Genes Genet. Syst. 79:199-206,...

2011
George Yungchih Wang

This paper investigates how free cash flow (FCF) is associated with agency costs (AC), and how FCF and AC influence firm performance. The research purpose is therefore threefold. Specifically, the study is to explore the impact of FCF on AC, to re-examine the free cash flow hypothesis, and to test the agency theory based on the empirical data from Taiwan publicly-listed companies. The study use...

Journal: :The open microbiology journal 2016
Moiz A Ansari Zeeshan Fatima Saif Hameed

Candida albicans is known to cause infections ranging from superficial and systemic in immunocompromised person. In this study, we explored that the antifungal action of Methylene blue (MB) is mediated through mitochondrial dysfunction and disruption of redox and membrane homeostasis against C. albicans. We demonstrated that MB displayed its antifungal potential against C. albicans and two clin...

2016
Zheng‐Mei Xiong Ji Young Choi Kun Wang Haoyue Zhang Zeshan Tariq Di Wu Eunae Ko Christina LaDana Hiromi Sesaki Kan Cao

Hutchinson-Gilford progeria syndrome (HGPS), a fatal premature aging disease, is caused by a single-nucleotide mutation in the LMNA gene. Previous reports have focused on nuclear phenotypes in HGPS cells, yet the potential contribution of the mitochondria, a key player in normal aging, remains unclear. Using high-resolution microscopy analysis, we demonstrated a significantly increased fraction...

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