参考文献/References:
[1] KORKMAZ M,KIZILKURT T,PEHLIVANOGLU T,et al.Management of complex tibial plateau fractures:a comparative study of Ilizarov external fixation method with or without minimal internal fixation[J].Ulus Travma Acil Cerrahi Derg,2025,31(2):194-201.
[2] YANG J,ZHANG X,LIANG W,et al.Efficacy of adjuvant treatment for fracture nonunion/delayed union:a network meta-analysis of randomized controlled trials[J].BMC Musculoskelet Disord,2022,23(1):481.
[3] 吴青松,王飞,段来宝,等.前内及前外侧联合入路钢板内固定结合骨伤复原汤口服治疗复杂过伸型胫骨平台骨折[J].中医正骨,2024,36(3):46-50.
[4] ZHANG W,YANG F,YAN Q,et al.Hypoxia inducible factor-1alpha related mechanism and TCM intervention in process of early fracture healing[J].Chin Herb Med,2023,16(1):56-69.
[5] HONG R,CHEN B,WU H,et al.Crocin facilitates osteogenesis and angiogenesis by moderating oxidative stress and ferroptosis via Nrf2/GPX4 pathway[J].Tissue Cell,2025,93:102675.
[6] LI B,QIN K,WANG B,et al.Crocin promotes osteogenesis differentiation of bone marrow mesenchymal stem cells[J].In Vitro Cell Dev Biol Anim,2020,56(8):680-688.
[7] 尹航,宋奎.藏红花素水凝胶对软骨细胞与MC3T3-E1细胞的影响[J].中国组织工程研究,2025,29(34):7293-7300.
[8] STENQUIST D S,CATON T D,CHEN E Y,et al.Fracture characteristics and functional outcomes for Schatzker V/VI bicondylar tibial plateau fractures with a separate tubercle fragment:a comparative study[J].Arch Orthop Trauma Surg,2025,145(1):112.
[9] 翟晨骏,刘磊,周鸣,等.围手术期外周静脉血中长链非编码RNA PAX8-AS1与微RNA-1252-5p表达水平对胫骨骨折内固定术后骨折愈合的影响[J].中医正骨,2023,35(8):8-13.
[10] YU L,WANG W,LV C,et al.Dual functional hydrogel of osteoclastic-inhibition and osteogenic-stimulation for osteoporotic bone defect regeneration[J].Mater Today Bio,2025,5(31):101550.
[11] CAO Y,ZHANG H,QIU M,et al.Biomimetic injectable and bilayered hydrogel scaffold based on collagen and chondroitin sulfate for the repair of osteochondral defects[J].Int J Biol Macromol,2024,257(Pt 1):128593.
[12] JU Y,HU Y,YANG P,et al.Extracellular vesicle-loaded hydrogels for tissue repair and regeneration[J].Mater Today Bio,2022,21(18):100522.
[13] 陈国良,赵振睿,杜鑫,等.透明质酸基水凝胶在骨组织工程中的应用[J].国际骨科学杂志,2024,45(4):265-269.
[14] KHANKA S,SOMANI C,SHARMA K,et al.Litsea glutinosa extract promotes fracture healing and prevents bone loss via BMP2/SMAD1 signaling[J].J Endocrinol,2024,261(2):e230351.
[15] WU X H,DOU B,SUN N Y,et al.Astragalus saponin IV promotes osteogenic differentiation of bone marrow mesenchymal stem cells via miR-21/NGF/BMP2/RUNX2 pathway[J].Acta Histochem,2020,122(4):151549.
[16] YANG J,LIU Y,CHEN K,et al.The hyaluronic acid gel promotes the formation of osteoblasts mineralized nodules and fracture callus by regulating the expression of RUNX2 and osteocalcin[J].Cell Mol Biol,2023,69(15):136-140.
[17] GU Y,BAI Y.Osteogenic effect of crocin in human periodontal ligament stem cells via Wnt/beta-catenin signaling[J].Oral Dis,2024,30(3):1429-1438.
[18] LI B,ZHANG S,YUN X,et al.NEDD4's effect on osteoblastogenesis potential of bone mesenchymal stem cells in rats concerned with PI3K/Akt pathway[J].Differentiation,2025,141:100830.
[19] HUANG H,JI F,QI G,et al.Rehmannioside A promotes the osteoblastic differentiation of MC3T3-E1 cells via the PI3K/AKT signaling pathway and inhibits glucocorticoid-induced bone loss in vivo[J].J Pharmacol Sci,2024,156(4):247-257.
[20] GAO S,CHEN B,ZHU Z,et al.PI3K-Akt signaling regulates BMP2-induced osteogenic differentiation of mesenchymal stem cells(MSCs):a transcriptomic landscape analy-sis[J].Stem Cell Res,2023,66:103010.
[21] JIANG T,HU G,YANG R,et al.Panax notoginseng saponins regulate angiogenic cytokines through the PI3K/AKT/mTOR signaling pathway to promote fracture healing in ovariectomized rats[J].J Med Food,2024,27(9):824-833.
[22] LOU Y,ZOU L,SHEN Z,et al.Protective effect of dexmedetomidine against delayed bone healing caused by morphine via PI3K/Akt mediated Nrf2 antioxidant defense system[J].Front Pharmacol,2024,28(15):1396713.
[23] TAN J,LI J,CAO B,et al.Niobium promotes fracture healing in rats by regulating the PI3K-Akt signalling pathway:an in vivo and in vitro study[J].J Orthop Transl,2022,13(37):113-125.
[24] 何艳,布海切木·卡德尔,周晓珊,等.藏红花素通过调控PI3K/Akt信号通路抑制成骨细胞凋亡引起的骨质疏松[J].医学研究杂志,2021,50(1):85-90.
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