浏览全部资源
扫码关注微信
1.甘肃中医药大学(甘肃 兰州 730000)
2.甘肃中医药大学附属医院(甘肃 兰州 730030)
刘德孙,男,硕士研究生,主要从事中医药防治骨关节疾病临床研究工作
曹林忠,教授,主任医师,博士研究生导师; E-mail:25877330@qq.com
收稿日期:2024-08-28,
纸质出版日期:2025-06-10
移动端阅览
刘德孙,樊佳煊,拦玉鑫,等.基于H型血管探讨中药治疗骨质疏松症作用机制的研究进展[J].上海中医药杂志,2025,59(6):94-100.
LIU Desun,FAN Jiaxuan,LAN Yuxin,et al.Research progress in exploring mechanism of Chinese materia medica in treating osteoporosis based on H‑type blood vessels[J].Shanghai Journal of Traditional Chinese Medicine,2025,59(6):94-100.
刘德孙,樊佳煊,拦玉鑫,等.基于H型血管探讨中药治疗骨质疏松症作用机制的研究进展[J].上海中医药杂志,2025,59(6):94-100. DOI: 10.16305/j.1007-1334.2025.z20240828007.
LIU Desun,FAN Jiaxuan,LAN Yuxin,et al.Research progress in exploring mechanism of Chinese materia medica in treating osteoporosis based on H‑type blood vessels[J].Shanghai Journal of Traditional Chinese Medicine,2025,59(6):94-100. DOI: 10.16305/j.1007-1334.2025.z20240828007.
综述基于H型血管探讨中药治疗骨质疏松症作用机制的研究进展。研究发现,中药对H型血管的调控主要集中在血管中缺氧诱导因子-1α(HIF-1α)/血管内皮生长因子(VEGF)、切口通路(Notch)、血小板衍生生长因子-BB(PDGF-BB)、刺猬通路(Hedgehog)等关键通路,通过调节其上下游信号以及相关靶基因、靶蛋白的表达,促进骨组织血管再生和骨细胞成骨分化,刺激血管生成与成骨耦合,从而改善骨骼内部结构、稳定骨代谢、减少骨流失、增加骨密度、实现骨质疏松症的有效防治。
This paper reviews the research progress on the mechanism of Chinese materia medica treatment of osteoporosis based on H-type vessels. Studies have found that the regulation of Chinese materia medica on H-type blood vessels mainly focuses on key pathways such as hypoxia-inducing factor-1α (HIF-1α)/vascular endothelial growth factor (VEGF), Notch, platelet-derived growth factor-BB (PDGF-BB) and Hedgehog. By regulating the expression of its upstream and downstream signals as well as related target genes and target proteins, it can promote bone tissue angiogenesis and osteoblast differentiation, stimulate the coupling of angiogenesis and osteoblast, thereby improving the internal structure of bone, stabilizing bone metabolism, reducing bone loss, increasing bone density, and realizing effective prevention and treatment of osteoporosis.
ZHANG J , HU W , ZOU Z , et al . The role of lipid metabolism in osteoporosis: Clinical implication and cellular mechanism [J]. Genes Dis , 2024 , 11 ( 4 ): 101122 .
HU S , HU Y , TAN Z , et al . Repurposing the multiple sclerosis drug Siponimod for osteoporosis treatment [J]. Eur J Pharmacol , 2024 , 974 : 176630 .
WANG F , WANG H , ZHANG H , et al . A novel mechanism of MSCs responding to occlusal force for bone homeostasis [J]. J Dent Res , 2024 , 103 ( 6 ): 642 - 651 .
蒋欣 , 杨小龙 , 张泽臣 , 等 . “虚瘀”理论探讨耆鹿逐痹胶囊防治肾虚血瘀型骨质疏松的作用 [J]. 中国骨质疏松杂志 , 2024 , 30 ( 6 ): 880 - 883 .
XU J , HE S J , XIA T T , et al . Targeting type H vessels in bone-related diseases [J]. J Cell Mol Med , 2024 , 28 ( 4 ): e18123 .
MA T , WANG Y , MA J , et al . Research progress in the pathogenesis of hormone-induced femoral head necrosis based on microvessels: a systematic review [J]. J Orthop Surg Res , 2024 , 19 ( 1 ): 265 .
YAN Z Q , WANG X K , ZHOU Y , et al . H-type blood vessels participate in alveolar bone remodeling during murine tooth extraction healing [J]. Oral Dis , 2020 , 26 ( 5 ): 998 .
BAI J , LI L , KOU N , et al . Low level laser therapy promotes bone regeneration by coupling angiogenesis and osteogenesis [J]. Stem Cell Res Ther , 2021 , 12 ( 1 ): 432 .
LI J , WEI G , LIU G , et al . Regulating type H vessel formation and bone metabolism via bone-targeting oral micro/nano-hydrogel microspheres to prevent bone loss [J]. Adv Sci (Weinh) , 2023 , 10 ( 15 ): e2207381 .
ZHANG J , ZHAO T , ZHANG P , et al . Moslosooflavone protects against brain injury induced by hypobaric hypoxic via suppressing oxidative stress, neuroinflammation, energy metabolism disorder, and apoptosis [J]. J Pharm Pharmacol , 2024 , 76 ( 1 ): 44 - 56 .
LIU Z , LI Y . Expression of the HIF-1alpha/VEGF pathway is upregulated to protect alveolar bone density reduction in nasal-obstructed rats [J]. Histol Histopathol , 2024 , 39 ( 8 ): 1053 - 1063 .
LI X , LI Y , ZHANG W , et al . The IGF2BP3/Notch/Jag1 pathway: A key regulator of hepatic stellate cell ferroptosis in liver fibrosis [J]. Clin Transl Med , 2024 , 14 ( 8 ): e1793 .
WANG H , BI X , ZHANG R , et al . Adipose-derived mesenchymal stem cell facilitate hematopoietic stem cell proliferation via the jagged-1/notch-1/hes signaling pathway [J]. Stem Cells Int , 2023 , 2023 : 1068405 .
CHEN Y , LIAO G , MA T , et al . YY1/miR-140-5p/Jagged1/Notch axis mediates cartilage progenitor/stem cells fate reprogramming in knee osteoarthritis [J]. Int Immunopharmacol , 2023 , 121 : 110438 .
CHEN W , JIN X , WANG T , et al . Ginsenoside Rg1 interferes with the progression of diabetic osteoporosis by promoting type H angiogenesis modulating vasculogenic and osteogenic coupling [J]. Front Pharmacol , 2022 , 13 : 1010937 .
LIU G , SHU W , CHEN Y , et al . Bone-derived PDGF-BB enhances hippocampal non-specific transcytosis through microglia-endothelial crosstalk in HFD-induced metabolic syndrome [J]. J Neuroinflammation , 2024 , 21 ( 1 ): 111 .
WANG R , XU B . TGFβ1-modified MSC-derived exosome attenuates osteoarthritis by inhibiting PDGF-BB secretion and H-type vessel activity in the subchondral bone [J]. Acta Histochem , 2022 , 124 ( 7 ): 151933 .
CHEN J , WEI J Q , HONG M N , et al . Mitogen-activated protein kinases mediate adventitial fibroblast activation and neointima formation via GATA4/Cyclin D1 axis [J]. Cardiovasc Drugs Ther , 2023 , 38 ( 3 ): 527 - 538 .
HE S , HOU T , ZHOU J , et al . Endothelial cells promote migration of mesenchymal stem cells via PDGF-BB/PDGFRbeta-Src-Akt in the context of inflammatory microenvironment upon bone defect [J]. Stem Cells Int , 2022 , 2022 : 2401693 .
FELTRAN G , DE ANDRADE A F , FERNANDES C , et al . BMP7-induced osteoblast differentiation requires hedgehog signaling and involves nuclear mechanisms of gene expression control [J]. Cell Biol Int , 2024 , 48 ( 7 ): 939 - 950 .
ZHANG H , XU S , HE D , et al . Spatiotemporal expression of shh/gli signaling in human fetal bladder development [J]. Front Pediatr , 2021 , 9 : 765255 .
JIA J , HAN Y , CHO Y S , et al . Characterization of smoothened phosphorylation and activation [J]. Methods Mol Biol , 2022 , 2374 : 121 - 137 .
鲁林 , 方虹 . 骨碎补总黄酮抑制Notch1/Hes1/Prdx1通路对骨质疏松大鼠抗氧化能力的影响 [J]. 中国骨质疏松杂志 , 2023 , 29 ( 10 ): 1431 - 1436 .
曾志奎 , 黄枫 , 李悦 , 等 . 骨碎补总黄酮对大鼠Masquelet诱导膜血管新生因子表达的影响 [J]. 中华中医药学刊 , 2019 , 37 ( 10 ): 2345 - 2348 .
SHEN Z , DONG W , CHEN Z , et al . Total flavonoids of Rhizoma Drynariae enhances CD31 hi Emcn hi vessel formation and subsequent bone regeneration in rat models of dis traction osteogenesis by activating PDGF‑BB/VEGF/RUNX2/OSX signaling axis [J]. Int J Mol Med , 2022 , 50 ( 3 ): 112 .
王文驰 , 武瑞骐 , 黄杰荣 , 等 . 柚皮苷防治骨质疏松症的分子机制 [J]. 中国组织工程研究 , 2024 , 28 ( 34 ): 5528 - 5535 .
上官文姬 , 张跃辉 , 岳江 , 等 . 柚皮苷通过HIF-1α/VEGF信号促进H型血管抗骨质疏松的研究 [J]. 中国骨质疏松杂志 , 2022 , 28 ( 12 ): 1755 - 1759 .
汤露环 , 吴梦茹 , 陈妍妍 , 等 . 羌活抗类风湿性关节炎活性成分及作用机制的研究进展 [J]. 中草药 , 2024 , 55 ( 9 ): 3137 - 3145 .
蔡丹宇 , 王攀峰 , 周文彬 . 香叶木素调控Hedgehog信号通路对骨质疏松性骨缺损的影响 [J]. 中国骨质疏松杂志 , 2024 , 30 ( 2 ): 192 - 197 .
刘谊民 , 许婷 , 张黄琴 , 等 . 基于谱效关系和网络药理学的淫羊藿抗骨质疏松物质基础及作用机制 [J]. 中国实验方剂学杂志 , 2021 , 27 ( 16 ): 177 - 184 .
辛红美 , 许洁 , 汪长东 . 淫羊藿苷促进MC3T3-E1成骨分化通过Hedgehog信号通路 [J]. 中国药理学通报 , 2020 , 36 ( 5 ): 616 - 620 .
金昱彤 , 祁琳 , 牛芯蕊 , 等 . 红景天苷激活HIF-1α信号通路促进成骨细胞增殖的机制 [J]. 中国药理学通报 , 2022 , 38 ( 2 ): 190 - 195 .
TU Z L , ZHANG Z Y , JIN P P , et al . Salidroside promotes pro-angiogenesis and repair of blood brain barrier via Notch/ITGB1 signal path in CSVD Model [J]. J Adv Res , 2024 , 68 : 429 - 444 .
ZHU Z , WANG Z , MA C , et al . Isopsoralen promotes osteogenic differentiation of human jawbone marrow mesenchymal cells through Notch signaling pathway [J]. Ann Anat , 2023 , 250 : 152156 .
ZHU T , XIE W J , WANG L , et al . Corrigendum to "Notoginsenoside R1 activates the NAMPT-NAD + -SIRT1 cascade to promote postischemic angiogenesis by modulating Notch signaling" [Biomed. Pharmacother. 140 (2021) 111693] [J]. Biomed Pharmacother , 2023 , 165 : 115059 .
ZHOU Y H , XIE Q . Total glycosides from Eucommia ulmoides seed promoted osteogenic differentiation of adipose-derived mesenchymal stem cells and bone formation in ovariectomized rats through regulating Notch signaling pathway [J]. J Orthop Surg Res , 2021 , 16 ( 1 ): 660 .
LIANG C , NI G X , SHI X L , et al . Astragaloside Ⅳ regulates the HIF/VEGF/Notch signaling pathway through miRNA-210 to promote angiogenesis after ischemic stroke [J]. Restor Neurol Neurosci , 2020 , 38 ( 3 ): 271 - 282 .
QIU H , ZHANG L , HE X , et al . Promotion of angiogenesis in vitro by Astragalus polysaccharide via activation of TLR4 signaling pathway [J]. J Food Biochem , 2022 , 46 ( 10 ): e14329 .
宋红梅 , 谢文博 , 林菲菲 , 等 . 温阳补肾方对激素性股骨头坏死模型兔血清中成骨/成血管因子及H型血管标志物的影响 [J]. 中国中医骨伤科杂志 , 2023 , 31 ( 10 ): 6 - 11 .
于海洋 , 卢增鹏 , 汪海燕 , 等 . 生骨再造丸对激素性股骨头坏死大鼠H型血管生成的影响 [J]. 中国中医药信息杂志 , 2023 , 30 ( 5 ): 91 - 96 .
卢增鹏 . 基于HIF-1α/VEGF信号通路对成血管-成骨耦联作用探讨生骨再造丸治疗激素性股骨头坏死的机制 [D]. 兰州 : 甘肃中医药大学 , 2023 .
谢冰颖 , 李生强 , 林若慧 , 等 . 基于HIF-1α/VEGF通路探讨续苓健骨方对去卵巢大鼠骨代谢和局部血管生成的影响 [J]. 福建中医药 , 2024 , 55 ( 1 ): 21 - 24,31 .
王江伟 , 魏道德 , 王丽 , 等 . 通血健骨丸对兔缺血性坏死股骨头HIF-1α,VEGF和BMP-2表达的影响 [J]. 临床与病理杂志 , 2017 , 37 ( 12 ): 2625 - 2632 .
白蕊 , 陈文辉 , 李双蕾 , 等 . 壮骨方对高糖培养下血管内皮细胞增殖及Notch1、Noggin表达的影响 [J]. 时珍国医国药 , 2023 , 34 ( 8 ): 1814 - 1817 .
鲁林 , 方虹 . 基于Notch1-Hes1-Prdx蛋白家族通路探究强骨胶囊治疗绝经后骨质疏松的炎症及氧化应激机制 [J]. 中国医药导报 , 2023 , 20 ( 23 ): 8 - 15 .
SUN W , ZHANG L , FANG Z , et al . Shuxuetong injection and its peptides enhance angiogenesis after hindlimb ischemia by activating the MYPT1/LIMK1/Cofilin pathway [J]. J Ethnopharmacol , 2022 , 292 : 115166 .
LI F , YANG X , BI J , et al . Antiosteoporotic activity of Du-Zhong-Wan water extract in ovariectomized rats [J]. Pharm Biol , 2016 , 54 ( 9 ): 1857 - 1864 .
TIAN S , ZOU Y , WANG J , et al . Protective effect of Du-Zhong-Wan against osteoporotic fracture by targeting the osteoblastogenesis and angiogenesis couple factor SLIT3 [J]. J Ethnopharmacol , 2022 , 295 : 115399 .
刘晏东 , 张彦军 , 毛家伟 , 等 . NLRP3炎症小体在肌少-骨质疏松症中的作用及中药单体干预进展 [J]. 上海中医药杂志 , 2025 , 59 ( 1 ): 89 - 94 .
0
浏览量
0
下载量
0
CSCD
0
CNKI被引量
关联资源
相关文章
相关作者
相关机构