[1] GLYN-JONES S,PALMER A J,AGRICOLA R,et al. Osteoarthritis[J],Lancet,2015,386(9991):376-387.
[2] HUNTER D J,BIERMA-ZEINSTRA S. Osteoarthritis[J],Lancet,2019,393(10182):1745-1759.
[3] STEWART M,CIBERE J,SAYRE E C,et al. Efficacy of commonly prescribed analgesics in the management of osteoarthritis: a systematic review and meta-analysis[J]. Rheumatol Int,2018,38(11):1985-1997.
[4] ZHANG S,HU B,LIU W,et al. Articular cartilage regeneration: the role of endogenous mesenchymal stem/progenitor cell recruitment and migration[J]. Semin Arthritis Rheum,2020,50(2):198-208.
[5] YANG Z,LI H,YUAN Z,et al. Endogenous cell recruitment strategy for articular cartilage regeneration[J].Acta Biomater,2020,114:31-52.
[6] MCGONAGLE D,BABOOLAL T G,JONES E. Native joint-resident mesenchymal stem cells for cartilage repair in osteoarthritis[J]. Nat Rev Rheumatol,2017,13(12):719-730.
[7] VAHEDI P,MOGHADDAMSHAHABI R,WEBSTER T J,et al. The use of infrapatellar fat pad-derived mesenchymal stem cells in articular cartilage regeneration:a review[J]. Int J Mol Sci,2021,22(17):9215.
[8] 陈墅,周义钦,周嵘,等.髌下脂肪垫来源的的间充质干细胞软骨分化的研究进展[J]. 中华关节外科杂志(电子版),2018,12(3):379-384.
[9] DO AMARAL RJFC,ALMEIDA H V,KELLY D J,et al. Infrapatellar fat pad stem cells:from developmental biology to cell therapy[J].Stem Cells Int,2017,2017:6843727.
[10] DE BARI C,ROELOFS A J. Stem cell-based therapeutic strategies for cartilage defects and osteoarthritis[J]. Curr Opin Pharmacol,2018,40:74-80.
[11] 于咏,李心乐,刘大全,等.机械加载减轻骨关节炎小鼠的病理进展[J].天津医药,2019,47(5):479-483,564.
[12] ZHENG W,LI X,LIU D,et al. Mechanical loading mitigates osteoarthritis symptoms by regulating endoplasmic reticulum stress and autophagy[J]. FASEB J,2019,33(3):4077-4088.
[13] WANG X,LI X,LI J,et al. Mechanical loading stimulates bone angiogenesis through enhancing type H vessel formation and downregulating exosomal miR-214-3p from bone marrow-derived mesenchymal stem cells[J]. FASEB J,2021,35(1):e21150.
[14] LIU D,LI X,LI J,et al. Knee loading protects against osteonecrosis of the femoral head by enhancing vessel remodeling and bone healing[J]. Bone,2015,81:620-631.
[15] LI X,YANG J,LIU D,et al. Knee loading inhibits osteoclast lineage in a mouse model of osteoarthritis[J].Sci Rep,2016,6:24668.
[16] ARMIENTO A R,STODDART M J,ALINI M,et al. Biomaterials for articular cartilage tissue engineering: learning from biology[J]. Acta Biomater,2018,65:1-20.
[17] LI X,LIU D,LI J,et al. Wnt3a involved in the mechanical loading on improvement of bone remodeling and angiogenesis in a postmenopausal osteoporosis mouse model[J]. FASEB J,2019,33(8):8913-8924.
[18] ABDURAHMAN A,LI X,LI J,et al. Loading-driven PI3K/Akt signaling and erythropoiesis enhanced angiogenesis and osteogenesis in a postmenopausal osteoporosis mouse model[J]. Bone,2022,157:116346.
[19] ZHENG W,DING B,LI X,et al. Knee loading repairs osteoporotic osteoarthritis by relieving abnormal remodeling of subchondral bone via Wnt/β-catenin signaling[J]. FASEB J,2020,34(2):3399-3412.
[20] ZHENG W,LI X,LI J,et al. Mechanical loading mitigates osteoarthritis symptoms by regulating the inflammatory microenvironment in a mouse model[J]. Ann N Y Acad Sci,2022,online ahead of print.
[21] SHANG F,YU Y,LIU S,et al. Advancing application of mesenchymal stem cell-based bone tissue regeneration[J]. Bioact Mater,2020,6(3):666-683.
[22] XIANG X,LIU H,WANG L,et al. Ultrasound combined with SDF-1α chemotactic microbubbles promotes stem cell homing in an osteoarthritis model[J]. J Cell Mol Med,2020,24(18):10816-10829.
[23] XIA P,WANG X,WANG Q,et al. Low-intensity pulsed ultrasound promotes autophagy-mediated migration of mesenchymal stem cells and cartilage repair[J]. Cell Transplant,2021,30:963689720986142.
[24] YUAN L,SAKAMOTO N,SONG G,et al. Low-level shear stress induces human mesenchymal stem cell migration through the SDF-1/CXCR4 axis via MAPK signaling pathways[J]. Stem Cells Dev,2013,22(17):2384-2393.
[25] 杨爽,闫景龙. 软骨细胞分化过程中SOX9的作用[J]. 中国组织工程研究,2021,26(14):2279-2284.
[26] ALMALKI S G,AGRAWAL D K. Key transcription factors in the differentiation of mesenchymal stem cells[J]. Differentiation,2016,92(1/2):41-51.
[27] ZHANG X,WU S,ZHU Y,et al. Exploiting joint-resident stem cells by exogenous SOX9 for cartilage regeneration for therapy of osteoarthritis[J]. Front Med(Lausanne),2021,8:622609.
[28] LUO L,THORPE S D,BUCKLEY C T,et al. The effects of dynamic compression on the development of cartilage grafts engineered using bone marrow and infrapatellar fat pad derived stem cells[J]. Biomed Mater,2015,10(5):55011.
[1]朱 珊,王 植,万业达,等.负重与非负重位结合评价膝内翻的临床意义[J].天津医科大学学报,2014,20(04):309.
[2]王颖嫒,周 蕾,吕 星,等. SAPHO综合征15例临床分析[J].天津医科大学学报,2015,21(02):171.
[3]赵 灿,刘大全,王俊艳,等.膝关节机械加载改善小鼠乳腺癌肺转移的实验研究[J].天津医科大学学报,2017,23(01):5.
ZHAO Can,LIU Da-quan,ZHANG Ping,et al.?Knee loading inhibits pulmonary metastasis of breast cancer in mice[J].Journal of Tianjin Medical University,2017,23(05):5.
[4]张云龙,王 健,陈 刚,等.机械加载促进骨质疏松大鼠种植体骨结合的实验研究[J].天津医科大学学报,2017,23(05):394.
ZHANG Yun-long,WANG Jian,CHEN Gang,et al.Knee loading promotes osteointegration in osteoporosis rats[J].Journal of Tianjin Medical University,2017,23(05):394.
[5]郭嘉露,李心乐,李新,等.机械加载对高血压大鼠心血管及肾脏损伤的疗效观察[J].天津医科大学学报,2018,24(02):106.
GUO Jia-lu,LI Xin-le,LI Xin,et al.Effect of mechanical loading on the angiocarpy and kidney damage in hypertensive rats[J].Journal of Tianjin Medical University,2018,24(05):106.
[6]孟尧,王雪彤,李心乐,等.机械加载上调 Piezo1促进废用性骨质疏松小鼠的血管生成[J].天津医科大学学报,2023,29(05):514.
MENG Yao,WANG Xue-tong,LI Xin-le,et al.Mechanical loading promotes angiogenesis by up-regulating Piezo1 in disuse osteoporosis mice[J].Journal of Tianjin Medical University,2023,29(05):514.