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Novel methods of treating ovarian infertility in older and POF women, testicular infertility, and other human functional diseases.治疗老年女性和卵巢早衰女性卵巢性不孕、睾丸性不孕及其他人类功能性疾病的新方法。
Reprod Biol Endocrinol. 2015 Feb 25;13:10. doi: 10.1186/s12958-015-0001-8.
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Shiitake dermatitis recorded by French Poison Control Centers - new case series with clinical observations.法国中毒控制中心记录的香菇性皮炎——新的病例系列及临床观察。
Clin Toxicol (Phila). 2014 Jul;52(6):625-8. doi: 10.3109/15563650.2014.923905.
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Endocrine factors modulating immune responses in pregnancy.孕期调节免疫反应的内分泌因素。
Front Immunol. 2014 May 8;5:196. doi: 10.3389/fimmu.2014.00196. eCollection 2014.
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Concise review: culture mediated changes in fate and/or potency of stem cells.简明综述:文化介导的干细胞命运和/或效力变化。
Stem Cells. 2011 Apr;29(4):583-9. doi: 10.1002/stem.603.
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Hotspots of aberrant epigenomic reprogramming in human induced pluripotent stem cells.人类诱导多能干细胞中异常表观基因组重编程的热点。
Nature. 2011 Mar 3;471(7336):68-73. doi: 10.1038/nature09798. Epub 2011 Feb 2.
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Bone marrow CD169+ macrophages promote the retention of hematopoietic stem and progenitor cells in the mesenchymal stem cell niche.骨髓 CD169+ 巨噬细胞促进造血干细胞和祖细胞在间充质干细胞龛中的滞留。
J Exp Med. 2011 Feb 14;208(2):261-71. doi: 10.1084/jem.20101688. Epub 2011 Jan 31.
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Reprogramming of sheep fibroblasts into pluripotency under a drug-inducible expression of mouse-derived defined factors.在药物诱导表达的小鼠来源定义因子下,将绵羊成纤维细胞重编程为多能性。
PLoS One. 2011 Jan 6;6(1):e15947. doi: 10.1371/journal.pone.0015947.
8
Mesenchymal stem cells: a perspective from in vitro cultures to in vivo migration and niches.间质干细胞:从体外培养到体内迁移和龛位的视角。
Eur Cell Mater. 2010 Sep 1;20:121-33. doi: 10.22203/ecm.v020a11.
9
Immune maintenance of self in morphostasis of distinct tissues, tumour growth and regenerative medicine.不同组织形态稳定、肿瘤生长和再生医学中的自身免疫维持。
Scand J Immunol. 2011 Mar;73(3):159-89. doi: 10.1111/j.1365-3083.2010.02497.x.
10
Pericytopathy: oxidative stress and impaired cellular longevity in the pancreas and skeletal muscle in metabolic syndrome and type 2 diabetes.血管周细胞病:代谢综合征和 2 型糖尿病患者胰腺和骨骼肌中的氧化应激和细胞寿命受损。
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从细胞层面到化学层面治疗急性神经疾病以及针对年龄相关性功能性疾病的替代方案。

From cellular to chemical approach for acute neural and alternative options for age-induced functional diseases.

作者信息

Bukovsky Antonin

机构信息

Antonin Bukovsky, The Institute of Biotechnology, Academy of Sciences of the Czech Republic, Prague 14220, Czech Republic.

出版信息

World J Stem Cells. 2015 Sep 26;7(8):1109-17. doi: 10.4252/wjsc.v7.i8.1109.

DOI:10.4252/wjsc.v7.i8.1109
PMID:26435770
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4591787/
Abstract

Endogenous "stem cell niche" (SCN) accompanying vessels contains immune system components which in vivo determine differentiation of multi potent stem cells toward proper cell types in given tissue. Combinations of sex steroids may represent novel chemical approach for neuronal areas of regenerative medicine, since they cause transformation of vascular smooth muscle stem cells into differentiating neuronal cells. Circulating sex steroids are present during pregnancy and can be utilized where needed, when various embryonic/fetal tissues develop from their stem cells. Utilization of induced regeneration of tissues (regenerative medicine) is expected being more effective in sudden failures of younger individuals carrying intact SCN, as compared to established chronic disorders caused by SCN alteration. An essential component of SCN are monocyte-derived cells exhibiting tissue-specific "stop effect" (SE) preventing, for instance, an aging of neuronal cells. Its alteration causes that implantation of neuronal stem cells will also result in their differentiation toward aging cells. When we repair the SE by supply of circulating mononuclear cells from young healthy individuals, we may be able to provide novel regenerative treatments of age-induced neural diseases by sex steroid combinations. Questions regarding some age-induced body alterations are also addressed.

摘要

内源性“干细胞生态位”(SCN)伴随血管包含免疫系统成分,这些成分在体内决定多能干细胞向特定组织中适当细胞类型的分化。性类固醇的组合可能代表再生医学神经领域的一种新型化学方法,因为它们可使血管平滑肌干细胞转化为分化的神经元细胞。循环性类固醇在孕期存在,当各种胚胎/胎儿组织从其干细胞发育而来时可在需要时加以利用。与由SCN改变引起的已确立的慢性疾病相比,利用诱导组织再生(再生医学)预计在具有完整SCN的年轻个体突发衰竭时更有效。SCN的一个重要组成部分是单核细胞衍生细胞,其表现出组织特异性“停止效应”(SE),例如可防止神经元细胞衰老。其改变导致植入神经元干细胞也会使其向衰老细胞分化。当我们通过提供来自年轻健康个体的循环单核细胞来修复SE时,我们或许能够通过性类固醇组合提供针对年龄诱导神经疾病的新型再生治疗方法。还探讨了一些与年龄相关的身体改变的问题。