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11.
Zhang WW  Sun QX  Liu YH  Gao W  Li YH  Lu K  Wang Z 《生理学报》2011,63(3):245-255
本研究旨在观察六味地黄(Liu Wei Dihuang,LWDH)对D-半乳糖(D-galactose,D-gal)致衰老大鼠的学习记忆能力及中枢胆碱能神经系统的保护作用.采用成年Sprague-Dawley(SD)大鼠64只,雌雄各半.雄性、雌性大鼠均随机分为4组(n=8):空白对照组即生理盐水+生理盐水(N+N)组...  相似文献   
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Theories of biological aging: genes, proteins, and free radicals   总被引:7,自引:0,他引:7  
Rattan SI 《Free radical research》2006,40(12):1230-1238
Traditional categorization of theories of aging into programmed and stochastic ones is outdated and obsolete. Biological aging is considered to occur mainly during the period of survival beyond the natural or essential lifespan (ELS) in Darwinian terms. Organisms survive to achieve ELS by virtue of genetically determined longevity assuring maintenance and repair systems (MRS). Aging at the molecular level is characterized by the progressive accumulation of molecular damage caused by environmental and metabolically generated free radicals, by spontaneous errors in biochemical reactions, and by nutritional components. Damages in the MRS and other pathways lead to age-related failure of MRS, molecular heterogeneity, cellular dysfunctioning, reduced stress tolerance, diseases and ultimate death. A unified theory of biological aging in terms of failure of homeodynamics comprising of MRS, and involving genes, milieu and chance, is acquiring a definitive shape and wider acceptance. Such a theory also establishes the basis for testing and developing effective means of intervention, prevention and modulation of aging.  相似文献   
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Our studies revealed that LCA (lithocholic bile acid) extends yeast chronological lifespan if added to growth medium at the time of cell inoculation. We also demonstrated that longevity in chronologically aging yeast is programmed by the level of metabolic capacity and organelle organization that they developed before entering a quiescent state and, thus, that chronological aging in yeast is likely to be the final step of a developmental program progressing through at least one checkpoint prior to entry into quiescence. Here, we investigate how LCA influences longevity and several longevity-defining cellular processes in chronologically aging yeast if added to growth medium at different periods of the lifespan. We found that LCA can extend longevity of yeast under CR (caloric restriction) conditions only if added at either of two lifespan periods. One of them includes logarithmic and diauxic growth phases, whereas the other period exists in early stationary phase. Our findings suggest a mechanism linking the ability of LCA to increase the lifespan of CR yeast only if added at either of the two periods to its differential effects on various longevity-defining processes. In this mechanism, LCA controls these processes at three checkpoints that exist in logarithmic/diauxic, post-diauxic and early stationary phases. We therefore hypothesize that a biomolecular longevity network progresses through a series of checkpoints, at each of which (1) genetic, dietary and pharmacological anti-aging interventions modulate a distinct set of longevity-defining processes comprising the network; and (2) checkpoint-specific master regulators monitor and govern the functional states of these processes.  相似文献   
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衰老是一个新兴的重要研究领域,随着该领域相关知识的积累和技术的进步,人们逐渐意识到衰老本身可以被针对性地干预,实现延长寿命并且延缓衰老相关疾病的发生发展,具有重要的科学和现实意义.引起个体衰老的众多因素中,衰老细胞的积累被认为是导致器官衰老发生退行性变,最终引起衰老相关疾病的重要原因.近年来,多项研究表明,清除体内衰老细胞可以延缓多种衰老相关疾病的发生,直接证明了衰老细胞是导致衰老相关疾病的重要原因之一,为治疗衰老相关疾病提供了新靶点.细胞衰老是由于损伤积累诱发了细胞周期抑制通路的激活,细胞永久地退出细胞增殖周期.衰老细胞会发生细胞形态、转录谱、蛋白质稳态、表观遗传以及代谢等系列特征的改变,同时衰老细胞对凋亡发生抵抗从而在体内多器官组织积累.衰老细胞会激活炎症因子分泌通路,导致组织局部非感染性炎症微环境,进而导致器官退行性变及多种衰老相关疾病的发生发展.因此针对衰老细胞对凋亡抵抗的特性,多个研究小组通过筛选小分子化合物库,发现某些化合物能够选择性清除衰老细胞,这些小分子化合物被称为"senolytics",意为"衰老细胞杀伤性化合物".衰老细胞杀伤性化合物在多种衰老相关疾病动物模型中能够延缓疾病的发展并延长哺乳动物寿命.因此,靶向杀伤衰老细胞对多种衰老相关疾病的治疗从而提高健康寿命具有重要的临床应用前景.除靶向杀伤衰老细胞策略以外,干细胞移植、基因编辑、异体共生等策略在抗衰老研究发展中也具有重要意义,具有启发性.本文通过汇总近期衰老细胞清除领域的重要进展和多种抗衰老策略,将细胞衰老研究发展史做简要梳理,就细胞衰老与衰老相关疾病的关系作一综述,重点讨论衰老细胞在多种衰老相关疾病中作为治疗靶点的应用潜力,并就其局限性和进一步的研究方向进行探讨.  相似文献   
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Convallatoxin is widely used as a cardiac glycoside in acute and chronic congestive heart-failure and paroxysmal tachycardia, with many effects and underlying protective mechanisms on inflammation and cellular proliferation. However, convallatoxin has not been investigated in its antioxidant effects and lifespan extension in Caenorhabditis elegans. In this study, we found that convallatoxin (20?μM) could significantly prolong the lifespan of wild-type C. elegans up to 16.3% through daf-16, but not sir-2.1 signalling and increased thermotolerance and resistance to paraquat-induced oxidative stress. Convallatoxin also improved pharyngeal pumping, locomotion, reduced lipofuscin accumulation and reactive oxygen species levels in C. elegans, which were attributed to hormesis, free radical-scavenging effects in vivo, and up-regulation of stress resistance-related proteins, such as SOD-3 and HSP-16.1. Furthermore, aging-associated genes daf-16, sod-3, and ctl-2 also appeared to contribute to the stress-resistance effect of convallatoxin. In summary, this study demonstrates that convallatoxin can protect against heat and oxidative stress and extend the lifespan of C. elegans, pointing it as a potential novel drug for retarding the aging process in humans.  相似文献   
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以我国北方4个大花生品种为研究材料,于花生结荚期到收获,用红外测温仪对各品种的冠层温度进行连续观测,并测定了花生主茎功能叶片中叶绿素、可溶性糖、可溶性蛋白、丙二醛(MDA)含量及硝酸还原酶(NR)、超氧化物歧化酶(SOD)和过氧化氢酶(CAT)活性。结果表明,不同品种花生冠层温度存在明显差异。冠层温度低的品种比冠层温度高的品种叶绿素、可溶性糖、可溶性蛋白含量及NR、SOD和CAT活性明显偏高,而MDA含量明显偏低,且越往生育后期越明显,说明冠层温度低的品种比冠层温度高的品种生活力更旺盛,抵抗衰老能力更强。因此,冠层温度可作为花生抗衰老能力的一个重要指标,用于指导花生育种和栽培等生产实践。  相似文献   
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为寻找新型抗衰老药物,该文以海南西海岸红树林伴生植物为研究对象,采用9种不同培养基从7种伴生植物21份样品中分离纯化放线菌,通过PCR扩增,16S rRNA基因序列分析已纯化放线菌的多样性,利用秀丽隐杆线虫(Caenorhabditis elegans)模型筛选菌株来进行延缓衰老活性研究。结果表明:(1)从7种伴生植物21份样品中共分离到26株海洋放线菌,隶属于9科15属,分别为拟诺卡菌属、短状杆菌属、短小杆菌属、Demequina、戈登氏菌属、类诺卡氏菌属、Lysinimicrobium、细杆菌属、假诺卡氏菌属、微球菌属、原小单孢菌属、拟无枝酸菌属、Yimella、北里孢菌属和链霉菌属,其中链霉菌属为优势菌属。(2)经秀丽隐杆线虫模型筛选,发现有2株海洋放线菌的发酵粗提物具有延缓秀丽隐杆线虫衰老的作用。综上结果说明海南西海岸红树林伴生植物中含有丰富多样的药用放线菌资源,为海洋放线菌抗衰老研究奠定了基础。  相似文献   
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随着人口老龄化问题的凸显,衰老相关的研究越来越被重视。秀丽隐杆线虫(Caenorhabditis elegans)是抗衰老研究领域中非常重要的生物模型,具有生命周期短、易于培养和观察等优点,但与其他哺乳动物模型相比仍有一些局限性,如DNA甲基化的缺乏等。本文主要综述了秀丽隐杆线虫模型在抗衰老研究和药物筛选中的应用,包括抗衰老药物对线虫寿命和抗性的测定与评估、药物筛选以及健康衰老研究中的应用,并概括了该模型的优势和局限性,为秀丽隐杆线虫模型在抗衰老研究中的应用提供理论依据。  相似文献   
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