• Now research shows they may slow cellular aging.

    如今,研究证明它们还可能减缓细胞老化。

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  • Formulated with active rose extract to promote skin metabolism, moisturize skin and prevent cellular aging effectively.

    含有麦拉宁抑制成分以及保湿因子,提升肌肤的保湿能力及其新陈代谢功能。

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  • Cellular aging is linked to deficiencies in efficient repair of DNA double strand breaks and authentic genome maintenance at the chromatin level.

    细胞衰老与DNA双螺旋断裂后不能有效修复并在染色质水平维持可靠的基因组有关。

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  • It seemed that the extracellular matrix (ECM) proteins adsorbed onto the EVAL surface might have a protective role in the cellular aging process.

    表明吸附到EVAL表面的细胞外基质蛋白可延缓细胞的衰老进程。

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  • Deacetylation of p53 occurs through interaction with the SIRT1 protein, a deacetylase that may be involved in cellular aging and the DNA damage response (19).

    SIRT1蛋白,一种涉及到细胞衰老和DNA损伤反应的去乙酰基酶能够与p53结合,促使后者的去乙酰化(19)。

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  • Therefore, whether a biomaterial strongly influences cellular aging process must be considered in the selection of a biomaterial for the biomedical application.

    因此,在选择应用一个生物材料时需考虑该材料是否对细胞的衰老有很强的影响。

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  • The maintenance of telomere length and structure plays important roles in many biological processes including cellular aging, tumor genesis and stem cell self-renewal.

    端粒长度的维持以及端粒结构的稳定在细胞衰老、癌症发生以及干细胞全能性自我更新能力维持等生命过程中都起重要作用。

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  • It's this cellular efficiency, perhaps, that delays aging and helps preserve animals' good health.

    可能正是这种细胞效应延长了衰老,有助于动物保持良好的健康状态。

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  • Dr DE Grey describes aging as the life-long accumulation of various types of molecular and cellular damage throughout the body.

    他把衰老形容为人体各处多种分子与细胞损伤的终生累积过程。

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  • We postulate that SPATA4 gene is very likely to be involved in the process of cellular senescence and aging.

    我们推测SPATA4基因极有可能参与到细胞衰老乃至个体衰老的过程中。

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  • He describes aging as the lifelong accumulation of various types of molecular and cellular damage throughout the body.

    他把衰老描述为周身各种分子和细胞的损伤在一生中的累积。

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  • This was the first link between the molecular biology of telomeres and cellular senescence, the aging and death of cells.

    这是端粒的细胞生物学首次与细胞的衰老及死亡联系在一起。

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  • In so doing, the karma stored in one's form, along with the cellular dissonance that causes decay, aging or illness, can begin to be dissolved.

    当这样做,贮藏在形态中的业力和引起衰减、老化或疾病的非谐振细胞能被溶解。

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  • Three American scientists received the Nobel Prize in medicine for discovering an enzyme that plays a key role in cellular health and aging.

    三位美国科学家获得了今年的诺贝尔医学奖,他们的成就是发现了一种在细胞健康和衰老中起关键作用的(酉每)。

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  • Mitochondria, which can produce and supply energy for mammals, are involved in many cellular events of growth, development, aging, apoptosis as well as diseases.

    线粒体是哺乳动物的产能、供能细胞器,与生长、发育、衰老和凋亡等多种细胞事件及疾病有关。

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  • The natural process of aging is associated with a reduction in cellular immunity and this predisposes older people to herpes zoster.

    老化的过程本来就与细胞免疫力下降有关,这会诱发老年人带状疱疹的发作。

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  • But genes that help control cellular responses to famine, drought and other survival stresses may play a key role in staving off the diseases and chronic ailments of aging, research suggests.

    但研究结果暗示,那些对细胞应对饥荒、旱灾和其他生存压力有调节作用的基因,在防止人类患病以及患上老年慢性病方面可以起到重要作用。

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  • Intracellular and intercellular signaling play critical roles in controlling the cellular fate such as differentiation, aging and survival-death, and various cellular functions.

    细胞内和细胞间的信号传导调节着细胞各种功能以及增殖、分化、衰老和生死的命运。

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  • The free radical theory of aging indicated that cellular degeneration was resulted from the excessive free radical that produced in the process of normal cellular metabolism as growth.

    自由基学说认为,人体随着年龄增大所发生的退行性变化是细胞正常代谢过程中所产生的过量自由基副作用的结果。

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  • There are a series of genes in cell which determin cellular growth, differentiation, aging and death (3) Critical telomere shortening.

    生命钟基因控制着细胞程序衰老。 生物体细胞内存在一系列基因,它们控制着细胞的生长、分化、老化和死亡。

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  • The fundamental problems remain: the origin of life, cell organization, the pathways of differentiation, aging, and the molecular and cellular capabilities of the brain.

    基本的问题剩下︰生活,细胞组织,区别,变旧,以及大脑的分子和细胞能力的小路的起源。

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  • This suggests the animal's protective cellular stress response becomes deficient during aging.

    Morimoto说,“这暗示着随着年龄的增长,动物的细胞保护应答出现了缺陷。”

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  • This suggests the animal's protective cellular stress response becomes deficient during aging.

    Morimoto说,“这暗示着随着年龄的增长,动物的细胞保护应答出现了缺陷。”

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