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61.
62.
Priyanka Banerjee Sanghamitra Ghosh Mainak Dutta Elavarasan Subramani Jaydeep Khalpada Sourav RoyChoudhury Baidyanath Chakravarty Koel Chaudhury 《PloS one》2013,8(11)
Poor endometrial perfusion during implantation window is reported to be one of the possible causes of idiopathic recurrent spontaneous miscarriage (IRSM). We have tested the hypothesis that certain angiogenic and vasoactive factors are associated with vascular dysfunction during implantation window in IRSM and, therefore, could play a contributory role in making the endometrium unreceptive in these women. This is a prospective case-controlled study carried out on 66 women with IRSM and age and BMI matched 50 fertile women serving as controls. Endometrial expression of pro-inflammatory (IL-1β, TNF-α, IFN-γ, TGF-β1), anti-inflammatory (IL-4, -10), angiogenesis-associated cytokines (IL-2, -6, -8), angiogenic and vasoactive factors including prostaglandin E2 (PGE2), vascular endothelial growth factor (VEGF), endothelial nitric oxide synthase (eNOS), nitric oxide (NO) and adrenomedullin (ADM) were measured during implantation window by ELISA. Subendometrial blood flow (SEBF) was assessed by color Doppler ultrasonography. Multivariate analysis was used to identify the significant factor(s) responsible for vascular dysfunction in IRSM women during window of implantation and further correlated with vascular dysfunction. Endometrial expression of pro-inflammatory cytokines and PGE2 were up-regulated and anti-inflammatory and angiogenesis-associated cytokines down-regulated in IRSM women as compared with controls. Further, the angiogenic and vasoactive factors including VEGF, eNOS, NO and ADM were found to be down-regulated and SEBF grossly affected in these women. Multivariate analysis identified IL-10, followed by VEGF and eNOS as the major factors contributing towards vascular dysfunction in IRSM women. Moreover, these factors strongly correlated with blood flow impairment. This study provides an understanding that IL-10, VEGF and eNOS are the principal key components having a contributory role in endometrial vascular dysfunction in women with IRSM. Down-regulation of these factors is also associated with impaired endometrial perfusion which possibly makes the endometrium unreceptive that may eventually cause early pregnancy loss. 相似文献
63.
64.
Helen L. Henry Chhanda Dutta Noreen Cunningham Raymond Blanchard Robert Penny Chilung Tang Gail Marchetto Shu-Yin Chou 《The Journal of steroid biochemistry and molecular biology》1992,41(3-8)
The synthesis of 1,25(OH)2D3 is a critical control point in the regulation of calcium metabolism, and possibly in the growth and differentiation of a number of cell types. This paper reviews our current understanding of the regulation of this process at the cellular and molecular levels, with the emphasis on the mechanisms of feedback control 1,25(OH)2D3 itself, control of parathyroid hormone, the roles of cyclic AMP dependent protein kinase and protein kinase C, and the interaction between the various intracellular regulators of 1,25(OH)2D3 production. 相似文献
65.
Sedegah M Tamminga C McGrath S House B Ganeshan H Lejano J Abot E Banania GJ Sayo R Farooq F Belmonte M Manohar N Richie NO Wood C Long CA Regis D Williams FT Shi M Chuang I Spring M Epstein JE Mendoza-Silveiras J Limbach K Patterson NB Bruder JT Doolan DL King CR Soisson L Diggs C Carucci D Dutta S Hollingdale MR Ockenhouse CF Richie TL 《PloS one》2011,6(10):e24586
66.
Abhishek Jauhari Tanisha Singh Parul Singh Devendra Parmar Sanjay Yadav 《Molecular neurobiology》2018,55(2):936-945
Differentiation of neural stem cells (NSC’s) to mature and functional neurons requires coordinated expression of mRNA, microRNAs (miRNAs) and regulatory proteins. Our earlier unbiased miRNA profiling studies have identified miR-200, miR-34 and miR-221/222 as maximally up-regulated miRNA families in differentiating PC12 cells and demonstrated the capability of miR-200 family in inducing neuronal differentiation (J. Neurochem, 2015, 133, 640–652). In present study, we have investigated role of miR-34 family in neuronal differentiation and identified P53 as mediator of nerve growth factor (NGF) induced miR-34a expression in differentiating PC12 cells. Our studies have shown that NGF induced miR-34a, arrests proliferating PC12 cells to G1 phase, which is pre-requisite for neuronal differentiation. Our studies have also shown that increased expression of miR-34a controls the P53 level in differentiated PC12 cells in feedback inhibition manner, which probably prevents differentiated cells from P53 induced apoptosis. Expression profiling of miR-34 family in different neuronal, non-neuronal and developing cells have identified differentiated and aged brain cells as richest source of miR-34, which also indicates that higher expression of miR-34 family helps in maintaining the mature neurons in non-proliferative stage. In conclusion, our studies have shown that miR-34 is brain enriched miRNA family, which up-regulates with neuronal maturation and brain ageing and co-operative regulation of P53 and miR-34a helps in neuronal differentiation by arresting cells in G1 phase. 相似文献
67.
Prasad Archana Patel Preeti Pandey Shatrujeet Niranjan Abhishek Misra Pratibha 《Protoplasma》2020,257(2):561-572
Protoplasma - Growth and production kinetics of three important glycoalkaloids viz. α-solanine, solanidine, and solasodine in two contrasting prickly and prickleless plants of Solanum viarum... 相似文献
68.
Sharma Himanshu Bhandawat Abhishek Rahim Mohammed Saba Kumar Pankaj Choudhoury Mohini Pal Roy Joy 《Molecular biology reports》2020,47(5):3485-3500
Molecular Biology Reports - Introns experience lesser selection pressure, thus are liable for higher polymorphism. Intron Length Polymorphic (ILP) markers designed from exon-flanking introns... 相似文献
69.
NPC 1161C is a novel antimalarial drug of interest because of its superior curative and prophylactic activity, and favorable
toxicity profile against in vivo and in vitro models of malaria, pneumocystis carinii pneumonia, and leishmaniasis. The preformulation studies performed included determination of pKas, aqueous and pH solubility, cosolvent solubility, log P, pH stability, thermal analysis, and preliminary hygroscopicity studies. The mean pKa1, pKa2, and pKa3 were determined to be 10.12, 4.07, and 1.88, respectively. The aqueous solubility was found to be 2.4 × 10−4 M having a saturated solution pH of 4.3–5.0 and a low intrinsic solubility of 1.6 × 10−6 M. A mathematical model of the pH-solubility profile was derived from pH 2.2 to 8.0. An exponential decrease in solubility
was observed with increasing pH. The excess solid phase in equilibrium with the solution in aqueous buffers was determined
to be the free-base form of the drug. A significant increase in solubility was observed with all the cosolvents studied, in
both unbuffered and buffered systems. Mean log P of the salt and the free base were estimated to be 2.18 and 3.70, respectively. The compound had poor stability at pH 7.0
at 37°C, with a t
90 of 3.58 days. Thermal analysis of the drug using DSC and TGA revealed that the drug is present as a semi-crystalline powder,
which transformed into the amorphous state after melting. The drug was also found to sublime at higher temperatures. Determination
of physicochemical properties of NPC 1161C provided useful information for the development of a dosage form and preclinical
evaluation. 相似文献
70.
Khan JA Kudgus RA Szabolcs A Dutta S Wang E Cao S Curran GL Shah V Curley S Mukhopadhyay D Robertson JD Bhattacharya R Mukherjee P 《PloS one》2011,6(6):e20347