Literature DB >> 33798737

Icariin enhances youth-like features by attenuating the declined gut microbiota in the aged mice.

Xiaoang Li1, Imran Khan2, Wenrui Xia3, Guoxin Huang4, Liang Liu5, Betty Yuen Kwan Law6, Lin Yin7, Weilin Liao8, Waikit Leong9, Ruixuan Han10, Vincent Kam Wai Wong11, Chenglai Xia12, Xiaoling Guo13, W L Wendy Hsiao14.   

Abstract

We previously reported the neuroprotective effects of icariin in rat cortical neurons. Here, we present a study on icariin's anti-aging effect in 24-month aged mice by treating them with a single daily dose of 100 mg/kg of icariin for 15 consecutive days. Icariin treatment improved motor coordination and learning skills while lowered oxidative stress biomarkers in the serum, brain, kidney, and liver of the aged mice. In addition, icariin improved the intestinal integrity of the aged mice by upregulating tight junction adhesion molecules and the Paneth and goblet cells, along with the reduction of iNOS and pro-inflammatory cytokines (IL-1β, TNF-α, IL-2 and IL-6, and IL-12). Icariin treatments also significantly upregulated aging-related signaling molecules, Sirt 1, 3 & 6, Pot1α, BUB1b, FOXO1, Ep300, ANXA3, Calb1, SNAP25, and BDNF in old mice. Through gut microbiota (GM) analysis, we observed icariin-associated improvements in GM composition of aged mice by reinstating bacteria found in the young mice, while suppressing some bacteria found in the untreated old mice. To clarify whether icariin's anti-aging effect is rooted in the GM, we performed fecal microbiota transfer (FMT) from icariin-treated old mice to the old mice. FMT-recipients exhibited similar improvements in the rotarod score and age-related biomarkers as observed in the icariin-treated old mice. Equal or better improvement on the youth-like features was noticed when aged mice were FMT with feces from young mice. Our study shows that both direct treatments with icariin and fecal transplant from the icariin-treated aged mice produce similar anti-aging phenotypes in the aged mice. We prove that GM plays a pivotal role in the healing abilities of icariin. Icariin has the potentials to be developed as a medicine for the wellness of the aged adults.
Copyright © 2021 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Aging; Aging-related markers; Gut microbiota; Icariin; Neuronal molecules

Mesh:

Substances:

Year:  2021        PMID: 33798737     DOI: 10.1016/j.phrs.2021.105587

Source DB:  PubMed          Journal:  Pharmacol Res        ISSN: 1043-6618            Impact factor:   7.658


  5 in total

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2.  The neuroprotective effects of icariin on ageing, various neurological, neuropsychiatric disorders, and brain injury induced by radiation exposure.

Authors:  Ling Rui Li; Gautam Sethi; Xing Zhang; Cui Liu Liu; Yan Huang; Qun Liu; Bo Xu Ren; Feng Ru Tang
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Authors:  Lin Yin; Guoxin Huang; Imran Khan; Lu Su; Wenrui Xia; Betty Yuen Kwan Law; Vincent Kam Wai Wong; Qiang Wu; Jingyi Wang; Wai Kit Leong; W L Wendy Hsiao
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5.  Ginsenoside Rb1 improves intestinal aging via regulating the expression of sirtuins in the intestinal epithelium and modulating the gut microbiota of mice.

Authors:  Zili Lei; Lei Chen; Qing Hu; Yanhong Yang; Fengxue Tong; Keying Li; Ting Lin; Ya Nie; Hedong Rong; Siping Yu; Qi Song; Jiao Guo
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  5 in total

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