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L. 叶提取物通过调节 mTOR-NF-κB-SASP 信号抑制真皮成纤维细胞的复制性衰老。

L. Leaf Extract Inhibits Replicative Senescence in Dermal Fibroblasts by Regulating mTOR-NF-κB-SASP Signaling.

机构信息

BioSpectrum Life Science Institute, 767, Sinsu-ro, Yongin-si 16827, Korea.

Shinsegae International Technology Innovation Center, 449, Dosan-daero, Seoul 06015, Korea.

出版信息

Nutrients. 2022 May 9;14(9):1979. doi: 10.3390/nu14091979.

Abstract

Senescent fibroblasts progressively deteriorate the functional properties of skin tissue. Senescent cells secrete senescence-associated secretory phenotype (SASP) factor, which causes the aging of surrounding non-senescent cells and accelerates aging in the individuals. Recent findings suggested the senomorphic targeting of the SASP regulation as a new generation of effective therapeutics. We investigated whether L. leaf extract (ITE) inhibited senescence biomarkers , , and gene expression, and SASP secretions by inhibiting cellular senescence in the replicative senescent human dermal fibroblast (RS-HDF). ITE has been demonstrated to inhibit the secretion of SASP factors in several senomorphic types by regulating the MAPK/NF-κB pathway via its inhibitory effect on mTOR. ITE suppressed the inflammatory response by inhibiting mTOR, MAPK, and IκBα phosphorylation, and blocking the nuclear translocation of NF-κB. In addition, we observed that autophagy pathway was related to inhibitory effect of ITE on cellular senescence. From these results, we concluded that ITE can prevent and restore senescence by blocking the activation and secretion of senescence-related factors generated from RS-HDFs through mTOR-NF-κB regulation.

摘要

衰老的成纤维细胞逐渐降低皮肤组织的功能特性。衰老细胞分泌衰老相关分泌表型 (SASP) 因子,导致周围非衰老细胞的衰老,并加速个体的衰老。最近的研究结果表明,靶向 SASP 调节的衰老表型是新一代有效的治疗方法。我们研究了 L. 叶提取物 (ITE) 是否通过抑制复制性衰老的人真皮成纤维细胞 (RS-HDF) 中的细胞衰老来抑制衰老生物标志物 、 、 和 基因表达以及 SASP 分泌。ITE 通过抑制 mTOR 来调节 MAPK/NF-κB 通路,已被证明可以抑制几种衰老表型中 SASP 因子的分泌。ITE 通过抑制 mTOR、MAPK 和 IκBα 的磷酸化以及阻断 NF-κB 的核易位来抑制炎症反应。此外,我们观察到自噬途径与 ITE 对细胞衰老的抑制作用有关。从这些结果中,我们得出结论,ITE 可以通过阻断 RS-HDF 产生的与衰老相关的因子的激活和分泌来预防和恢复衰老,这是通过 mTOR-NF-κB 调节实现的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9f86/9102489/c6e6664dff63/nutrients-14-01979-g001.jpg

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