Study of calcitriol anti-aging effects on human natural killer cells in vitro

Vitamin D is widely considered to have a regulatory effect on the immune system. Some clinical investigations have shown that the demand for vitamin D increases with age. Calcitriol is the biologically active form of vitamin D. However, its effect on human natural killer (NK) cells remains unclear....

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Main Authors: Weiran Li, Xu Che, Xuemei Chen, Meiling Zhou, Xiaoping Luo, Tao Liu
Format: Article
Language:English
Published: Taylor & Francis Group 2021-01-01
Series:Bioengineered
Subjects:
Online Access:http://dx.doi.org/10.1080/21655979.2021.1972076
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spelling doaj-f40ceebffbf84e4f8d0ef554f3e6e9ee2021-09-24T14:41:26ZengTaylor & Francis GroupBioengineered2165-59792165-59872021-01-011216844685410.1080/21655979.2021.19720761972076Study of calcitriol anti-aging effects on human natural killer cells in vitroWeiran Li0Xu Che1Xuemei Chen2Meiling Zhou3Xiaoping Luo4Tao Liu5Shenzhen Luohu People’s Hospital, the 3rd Affiliated Hospital of Shenzhen UniversityNational Cancer Center/National Clinical Research Center for Cancer/Cancer Hospital & Shenzhen HospitalShenzhen Luohu People’s Hospital, the 3rd Affiliated Hospital of Shenzhen UniversityShenzhen Luohu People’s Hospital, the 3rd Affiliated Hospital of Shenzhen UniversityShenzhen Luohu People’s Hospital, the 3rd Affiliated Hospital of Shenzhen UniversityShenzhen Luohu People’s Hospital, the 3rd Affiliated Hospital of Shenzhen UniversityVitamin D is widely considered to have a regulatory effect on the immune system. Some clinical investigations have shown that the demand for vitamin D increases with age. Calcitriol is the biologically active form of vitamin D. However, its effect on human natural killer (NK) cells remains unclear. Therefore, in this study, we investigated the anti-aging and immunomodulatory effects of calcitriol on NK cells using a series of immunological methods to explore its important role in innate immunity. We found that calcitriol reversed the expression of aging-related biomarkers in NK cells and inhibited their expansion by maintaining these cells in the G1 phase, without any apoptosis and exhaustion. Calcitriol repressed the release of inflammation-related cytokines, such as interleukin-5 (IL-5), interleukin-13 (IL-13), interferon-gamma (IFN-γ), and tumor necrosis factor-alpha (TNF-α). The degranulation of NK cells was downregulated by calcitriol when these cells were co-cultured with K562 tumor cells. We also found that calcitriol upregulated the aging-related sirtuin 1- protein/kinase R-like endoplasmic reticulum kinase (SIRT1/pERK) pathway and SIRT1-deltaExon8 (SIRT1-∆Exon8) expression by activating the vitamin D receptor (VDR). Moreover, calcitriol could be a potential negative regulator of NK cell apoptosis and mitochondrial inactivation which caused by oxidative stress. Thus, calcitriol exhibits anti-aging effects on human NK cells in vitro by activating the SIRT1-PERK axis and resisting oxidative senescence.http://dx.doi.org/10.1080/21655979.2021.1972076calcitriolnk cellssirt1-∆exon8anti-agingoxidative senescence
collection DOAJ
language English
format Article
sources DOAJ
author Weiran Li
Xu Che
Xuemei Chen
Meiling Zhou
Xiaoping Luo
Tao Liu
spellingShingle Weiran Li
Xu Che
Xuemei Chen
Meiling Zhou
Xiaoping Luo
Tao Liu
Study of calcitriol anti-aging effects on human natural killer cells in vitro
Bioengineered
calcitriol
nk cells
sirt1-∆exon8
anti-aging
oxidative senescence
author_facet Weiran Li
Xu Che
Xuemei Chen
Meiling Zhou
Xiaoping Luo
Tao Liu
author_sort Weiran Li
title Study of calcitriol anti-aging effects on human natural killer cells in vitro
title_short Study of calcitriol anti-aging effects on human natural killer cells in vitro
title_full Study of calcitriol anti-aging effects on human natural killer cells in vitro
title_fullStr Study of calcitriol anti-aging effects on human natural killer cells in vitro
title_full_unstemmed Study of calcitriol anti-aging effects on human natural killer cells in vitro
title_sort study of calcitriol anti-aging effects on human natural killer cells in vitro
publisher Taylor & Francis Group
series Bioengineered
issn 2165-5979
2165-5987
publishDate 2021-01-01
description Vitamin D is widely considered to have a regulatory effect on the immune system. Some clinical investigations have shown that the demand for vitamin D increases with age. Calcitriol is the biologically active form of vitamin D. However, its effect on human natural killer (NK) cells remains unclear. Therefore, in this study, we investigated the anti-aging and immunomodulatory effects of calcitriol on NK cells using a series of immunological methods to explore its important role in innate immunity. We found that calcitriol reversed the expression of aging-related biomarkers in NK cells and inhibited their expansion by maintaining these cells in the G1 phase, without any apoptosis and exhaustion. Calcitriol repressed the release of inflammation-related cytokines, such as interleukin-5 (IL-5), interleukin-13 (IL-13), interferon-gamma (IFN-γ), and tumor necrosis factor-alpha (TNF-α). The degranulation of NK cells was downregulated by calcitriol when these cells were co-cultured with K562 tumor cells. We also found that calcitriol upregulated the aging-related sirtuin 1- protein/kinase R-like endoplasmic reticulum kinase (SIRT1/pERK) pathway and SIRT1-deltaExon8 (SIRT1-∆Exon8) expression by activating the vitamin D receptor (VDR). Moreover, calcitriol could be a potential negative regulator of NK cell apoptosis and mitochondrial inactivation which caused by oxidative stress. Thus, calcitriol exhibits anti-aging effects on human NK cells in vitro by activating the SIRT1-PERK axis and resisting oxidative senescence.
topic calcitriol
nk cells
sirt1-∆exon8
anti-aging
oxidative senescence
url http://dx.doi.org/10.1080/21655979.2021.1972076
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