[1]李文广,谢兴文△,李宁,等.氧化应激反应影响骨质疏松症的研究进展[J].中国中医骨伤科杂志,2022,30(12):80-84.
点击复制

氧化应激反应影响骨质疏松症的研究进展()
分享到:

《中国中医骨伤科杂志》[ISSN:1005-0205/CN:42-1340/R]

卷:
第30卷
期数:
2022年12期
页码:
80-84
栏目:
文献综述
出版日期:
2022-12-15

文章信息/Info

文章编号:
1005-0205(2022)12-0080-05
作者:
李文广1谢兴文12△李宁1黄晋3顾玉彪3罗鹏飞1宋学文3
1甘肃中医药大学(兰州,730000) 2甘肃中医药大学附属医院 3甘肃省中医院
关键词:
骨质疏松 氧化应激反应 成骨细胞 破骨细胞 骨代谢
分类号:
R274.39
文献标志码:
A

参考文献/References:

[1] XU F,LI W,YANG X,et al.The roles of epigenetics regulation in bone metabolism and osteoporosis[J].Frontiers in Cell and Development Biology,2021,8:619301.
[2] TIAN Y,MA X,YANG C,et al.The impact of oxidative stress on the bone system in response to the space special environment[J].Int J Mol Sci,2017,18(10):2132.
[3] DOMAZETOVIC V,MARCUCCI G,IANTOMASI T,et al.Oxidative stress in bone remodeling:role of antioxidants[J].Clin Cases Miner Bone Metab,2017,14(2):209-216.
[4] MORIS D,SPARTALIS M,TZATZAKI E,et al.The role of reactive oxygen species in myocardial redox signaling and regulation[J].Ann Transl Med,2017,5(16):324.
[5] ZOU Z,CHANG H,LI H,et al.Induction of reactive oxygen species:an emerging approach for cancer therapy[J].Apoptosis,2017,22(11):1321-1335.
[6] 曹燕,李雪萍.氧化应激在骨关节炎中的研究进展[J].医学综述,2021,27(19):3779-3784.
[7] MINGUZZI M,CETRULLO S,D'ADAMO S,et al.Emerging players at the intersection of chondrocyte loss of maturational arrest,oxidative stress,senescence and low-grade inflammation in osteoarthritis[J].Oxid Med Cell Longev,2018:3075293.
[8] AGIDIGBI T S,KIM C.Reactive oxygen species in osteoclast differentiation and possible pharmaceutical targets of ROS-mediated osteoclast diseases[J].International Journal of Molecular Sciences,2019,20(14):3576.
[9] 刘志远,王靖宇,梅晰凡.依达拉奉对过氧化氢诱导的成骨细胞氧化应激损伤的抑制效果[J].中国慢性病预防与控制,2020,28(10):748-752.
[10] DE UGARTE L,BALCELLS S,NOGUES X,et al.Pro-osteoporotic miR-320a impairs osteoblast function and induces oxidative stress[J].PLoS ONE,2018,13(11):e0208131.
[11] 于淼,李生娇,艾泽馨,等.骨质疏松相关的microRNA的分析及其在成骨细胞氧化应激作用中的初步研究[J].中华老年口腔医学杂志,2020,18(4):193-199.
[12] 李钺,谢炜星,晋大祥,等.激活AMPK保护氧化应激条件下成骨细胞的作用机制[J].中国骨质疏松杂志,2017,23(3):407-410.
[13] XU G,LI X,ZHU Z,et al.Iron overload induces apoptosis and cytoprotective autophagy regulated by ROS generation in Mc3t3-E1 Cells[J].Biol Trace Elem Res,2021,199(10):3781-3792.
[14] PINNA A,TORKI BAGHBADERANI M,VIGIL HERNáNDEZ V,et al.Nanoceria provides antioxidant and osteogenic properties to mesoporous silica nanoparticles for osteoporosis treatment[J].Acta Biomater,2021,122:365-376.
[15] LI D Y,YU J C,XIAO L,et al.Autophagy attenuates the oxidative stress-induced apoptosis of Mc3T3-E1 osteoblasts[J].Eur Rev Med Pharmacol Sci,2017,21(24):5548-5556.
[16] SHE C,ZHU L Q,ZHEN Y F,et al.Activation of AMPK protects against hydrogen peroxide-induced osteoblast apoptosis through autophagy induction and NADPH maintenance:new implications for osteonecrosis treatment?[J].Cell Signal,2014,26(1):1-8.
[17] PALUI R,PRAMANIK S,MONDAL S,et al.Critical review of bone health,fracture risk and management of bone fragility in diabetes mellitus[J].World J Diabetes,2021, 12(6):706-729.
[18] AGIDIGBI T S,KIM C.Reactive oxygen species in osteoclast differentiation and possible pharmaceutical targets of ROS-mediated osteoclast diseases[J].Int J Mol Sci,2019,20(14):3576-3588.
[19] 党祎,杜成砚,姚红林,等.激素型骨坏死与氧化应激[J].中国组织工程研究,2023,27(9):1469-1476.
[20] WAUQUIER F,LEOTOING L,COXAM V,et al. Oxidative stress in bone remodelling and disease[J]. Trends Mol Med,2009,15(10):468-477.
[21] KONG L,WANG B,YANG X,et al.Picrasidine Ⅰ from picrasma quassioides suppresses osteoclastogenesis via inhibition of rankl induced signaling pathways and attenuation of ROS production[J].Cell Physiol Biochem,2017,43(4):1425-1435.
[22] DOMAZETOVIC V,MARCUCCI G,IANTOMASI T,et al.Oxidative stress in bone remodeling:role of antioxidants[J].Clin Cases Miner Bone Metab,2017,14(2):209-216.
[23] 蒋维海,孙微,王一帆.唑来膦酸盐针剂对老年骨质疏松患者临床疗效及细胞因子、骨代谢和氧化应激的影响[J].中国老年学杂志,2019,39(23):5744-5747.
[24] YANG S,RIES W L,KEY L L.Nicotinamide adenine dinucleotide phosphate oxidase in the formation of superoxide in osteoclasts[J].Calcif Tissue Int,1998,63(4):346-350.
[25] SONTAKKE A N,TARE R S.A duality in the roles of reactive oxygen species with respect to bone metabolism[J].Clin Chim Acta,2002,318(1/2):145-148.
[26] KIM J H,KIM N.Signaling pathways in osteoclast differentiation[J].Chonnam Med J,2016,52(1):12-17.
[27] ZHENG D,CUI C,SHAO C,et al. Coenzyme Q10 inhibits RANKL-induced osteoclastogenesis by regulation of mitochondrial apoptosis and oxidative stress in RAW264.7 cells[J].J Biochem Mol Toxicol,2021,35(7):e22778.
[28] CHEN X,ZHI X,WANG J,et al.RANKL signaling in bone marrow mesenchymal stem cells negatively regulates osteoblastic bone formation[J].Bone Research,2018,6(4):418-425.
[29] 姜朝阳,谢兴文,徐世红,等.骨髓间充质干细胞成骨分化相关信号通路[J].中华骨质疏松和骨矿盐疾病杂志,2020,13(5):473-478.
[30] DENG X,JING D,LIANG H,et al.H2O2 damages the stemness of rat bone marrow-derived mesenchymal stem cells:developing a “stemness loss” model[J].Med Sci Monit,2019,25:5613-5620.
[31] ZHOU X,DAI X,WU X,et al.Overexpression of bmi1 in lymphocytes stimulates skeletogenesis by improving the osteogenic microenvironment[J].Sci Rep,2016,6:29171.
[32] CHEN G,ZHANG Y,YU S,et al.Bmi1 overexpression in mesenchymal stem cells exerts antiaging and antiosteoporosis effects by inactivating p16/p19 signaling and inhibiting oxidative stress[J].Stem Cells,2019,37(9):1200-1211.
[33] COIPEAU P,ROSSET P,LANGONNE A,et al. Impaired differentiation potential of human trabecular bone mesenchymal stromal cells from elderly patients[J].Cytotherapy,2009,11(5):584-594.
[34] ZHU X,ZHANG L,CHEN Y,et al.Vaspin protects mouse mesenchymal stem cells from oxidative stress-induced apoptosis through the MAPK/p38 pathway[J].Mol Cell Biochem,2019,462(1/2):107-114.
[35] CHEN G,ZHANG Y,YU S,et al.Bmi1 overexpression in mesenchymal stem cells exerts antiaging and antiosteoporosis effects by inactivating p16/p19 signaling and inhibiting oxidative stress[J].Stem Cells,2019,37(9):1200-1211.
[36] YANG Y,SUN Y,MAO W W,et al.Oxidative stress induces downregulation of TP53INP2 and suppresses osteogenic differentiation of BMSCs during osteoporosis through the autophagy degradation pathway[J].Free Radic Biol Med,2021,166:226-237.
[37] 刘关羽,何卫阳,朱鑫,等.氧化应激诱导自噬对骨髓间充质干细胞增殖与凋亡的影响[J].中国病理生理杂志,2015,31(12):2176-2182.
[38] CHEN L,SHI X,XIE J,et al.Apelin-13 induces mitophagy in bone marrow mesenchymal stem cells to suppress intracellular oxidative stress and ameliorate osteoporosis by activation of AMPK signaling pathway[J].Free Radic Biol Med,2021,163:356-368.
[39] HUANG Q,GAO B,JIE Q,et al.Ginsenoside-Rb2 displays anti-osteoporosis effects through reducing oxidative damage and bone-resorbing cytokines during osteogenesis[J].Bone,2014,66:306-314.
[40] LEE S,LE N H,KANG D.Melatonin alleviates oxidative stress-inhibited osteogenesis of human bone marrow-derived mesenchymal stem cells through AMPK activation[J].Int J Med Sci,2018,15(10):1083-1091.
[41] 杨自豪,赖翔宇,崔彦.柚皮素对氧化应激所致大鼠骨质疏松的影响及机制[J].基因组学与应用生物学,2020,39(7):3339-3343.
[42] 王军,王剑,鲁敏,等.异补骨脂素对氧化应激介导骨质疏松大鼠模型的作用及机制[J].疑难病杂志,2019,18(9):940-944.
[43] 罗毅玲,周丕琪,王刚.温针灸联合古方青娥丸加味对绝经后骨质疏松腰腿痛患者疼痛、氧化应激及性激素水平的影响[J].湖南中医药大学学报,2019,39(8):977-981.
[44] 王秉义,潘剑.丹参素拮抗氧化应激所致骨质疏松并通过PI3K/Akt通路减少成骨细胞的凋亡[J].中国骨质疏松杂志,2017,23(1):1-5.
[45] ZHANG Q,SONG X,CHEN X,et al.Antiosteoporotic effect of hesperidin against ovariectomy-induced osteoporosis in rats via reduction of oxidative stress and inflammation[J].J Biochem Mol Toxicol,2021,35(8):e22832.
[46] CHEN Y J,HUANG A C,CHANG H H,et al.Caffeic acid phenethyl ester,an antioxidant from propolis,protects peripheral blood mononuclear cells of competitive cyclists against hyperthermal stress[J].J Food Sci,2009,74(6):H162-H167.
[47] HAN D,GU X,GAO J,et al.Chlorogenic acid promotes the Nrf2/HO-1 anti-oxidative pathway by activating p21Waf1/Cip1 to resist dexamethasone-induced apoptosis in osteoblastic cells[J].Free Radic Biol Med,2019,137:1-12.
[48] HUYUT Z,BAKAN N,YLDRM S,et al. Effects of the phosphodiesterase-5(PDE-5)inhibitors,avanafil and zaprinast,on bone remodeling and oxidative damage in a rat model of glucocorticoid-induced osteoporosis[J].Med Sci Monit Basic Res,2018,24:47-58.
[49] CGALOVÁ A,TICHÁ L,GAÁL KOVALÍKOVÁ A,et al.Bone mineral density and oxidative stress in adolescent girls with anorexia nervosa[J].Eur J Pediatr,2022,181(1):311-321.
[50] MAZZANTI L,BATTINO M,NANETTI L,et al.Effect of 1-year dietary supplementation with vitaminized olive oil on markers of bone turnover and oxidative stress in healthy post-menopausal women[J].Endocrine,2015,50(2):326-334.
[51] LI L,CHEN B,ZHU R,et al.Fructus Ligustri Lucidi preserves bone quality through the regulation of gut microbiota diversity,oxidative stress,TMAO and Sirt6 levels in aging mice[J].Aging(Albany NY),2019,11(21):9348-9368.
[52] LEE C W,LIN H C,WANG B Y,et al.Ginkgolide B monotherapy reverses osteoporosis by regulating oxidative stress-mediated bone homeostasis[J].Free Radic Biol Med,2021,168:234-246.
[53] HUANG Q,GAO B,JIE Q,et al.Ginsenoside-Rb2 displays anti-osteoporosis effects through reducing oxidative damage and bone-resorbing cytokines during osteogenesis[J].Bone,2014,66:306-314.

备注/Memo

备注/Memo:
通信作者 E-mail:827925272@qq.com
更新日期/Last Update: 2022-12-10