[1]Li X,Li S,Qian J,et al.Early efficacy of type i collagen-based matrix-assisted autologous chondrocyte transplantation for the treatment of articular cartilage lesions[J].Front Bioeng Biotechnol,2021(9):760179.
[2]Wang X,Ren Z,Liu Y,et al.Characteristics and clinical outcomes after osteochondral allograft transplantation for treating articular cartilage defects:Systematic review and single-arm meta-analysis of studies from 2001 to 2020[J].Orthop J Sports Med,2023,11(9):23259671231199418.
[3]Gilat R,Haunschild ED,Huddleston HP,et al.Osteochondral allograft transplant for focal cartilage defects of the femoral condyles:clinically significant outcomes,failures,and survival at a minimum 5-year follow-up[J].Am J Sports Med,2021,49(2):467-475.
[4]Gómez Cimiano FJ,Garcés Zarzalejo C,Estellés M.de León LR,et al.Osteochondral allograft transplantation in the knee,after prolonged fresh storage at 37 ℃.Determination of viability of human cartilage allografts,indications,technique,and evidence.Follow up 10 years[J].Rev Esp Cir Ortop Traumatol (Engl Ed),2021,65(5):340-348.
[5]Han Y,Qu P,Zhang K,et al.Storage solution containing hydrogen improves the preservation effect of osteochondral allograft[J].Cell Tissue Bank,2019,20(2):201-208.
[6]Moore DD,Baker KC,Baker EA,et al.Effect of bisphosphonate pretreatment on fresh osteochondral allografts:Analysis of in vitro graft structure and in vivo osseous incorporation[J].Orthopaedics,2018,41(3):e376-e382.
[7]Denbeigh JM,Hevesi M,Paggi CA,et al.Modernizing storage conditions for fresh osteochondral allografts by optimizing viability at physiologic temperatures and conditions[J].Cartilage,2019,13(1_suppl):280S-292S.
[8]Cinats D,Miller S,Abusara Z,et al.Evolution of a novel tissue preservation protocol to optimize osteochondral transplantation outcomes[J].Cartilage,2018,12(1):31-41.
[9]Merkely G,Ackermann J,Farina EM,et al.Shorter storage time is strongly associated with improved graft survivorship at 5 years after osteochondral allograft transplantation[J].Am J Sports Med,2020,48(13):3170-3176.
[10]Stoker AM,Stannard JP,Kuroki K,et al.Validation of the missouri osteochondral allograft preservation system for the maintenance of osteochondral allograft quality during prolonged storage[J].Am J Sports Med,2017,46(1):58-65.
[11]Vangsness C,Higgs G,Hoffman J,et al.Implantation of a novel cryopreserved viable osteochondral allograft for articular cartilage repair in the knee[J].J Knee Surg,2017,31(6):528-535.
[12]Wu K,Laouar L,Elliott JAW,et al.Vitrification of intact porcine femoral condyle allografts using an optimized approach[J].Cartilage,2020,13(2 suppl):1688S-1699S.
[13]Cao F,Qi J,Song H,et al.Tsmu solution improves rabbit osteochondral allograft preservation and transplantation outcome[J].Cell Tissue Bank,2018,19(4):549-558.
[14]de Sousa EB,Aguiar DP,Barcelos JFM,et al.Approaches to preserve human osteochondral allografts[J].Cell Tissue Bank,2014,16(3):425-431.
[15]Pegg DE,Wang L,Vaughan D.Cryopreservation of articular cartilage.Part 3:The liquidus-tracking method[J].Cryobiology,2020(93):12-17.
[16]Mirzayan R,Charles MD,Batech M,et al.Bipolar osteochondral allograft transplantation of the patella and trochlea[J].Cartilage,2018,11(4):431-440.
[17]Hunt HE,Sadr K,DeYoung AJ,et al.The role of immunologic response in fresh osteochondral allografting of the knee[J].Am J Sports Med,2014,42(4):886-891.
[18]Ball ST,Amiel D,Williams SK,et al.The effects of storage on fresh human osteochondral allografts[J].Clin Orthop Relat Res,2004 (418):246-252.
[19]Andrew T.Pennock,Ferdinand Wagner,Catherine M Robertson,et al.Prolonged storage of osteochondral allografts:Does the addition of fetal bovine serum improve chondrocyte viability?[J].J Knee Surg,2006,19(4):265-272.
[20]Onuma K,Urabe K,Naruse K,et al.Allogenic serum improves cold preservation of osteochondral allografts[J].Clin Orthop Relat Res,2012,470(10):2905-2914.
[21]Zhang P,Cao L,Ma Y-Y,et al.Metagenomic analysis reveals presence of different animal viruses in commercial fetal bovine serum and trypsin[J].Zool Res,2022,43(5):756-766.
[22]Wen C,Xu L,Xu X,et al.Insulin-like growth factor-1 in articular cartilage repair for osteoarthritis treatment[J].Arthritis Res Ther,2021,23(1):277.
[23]Yang F,Zhang Y,Liu B,et al.Basic fibroblast growth factor and agarose gel promotethe ability of immune privilege of allogeneic cartilage transplantation in rats[J].J Orthop Translat,2020(22):73-80.
[24]Mickevicius T,Pockevicius A,Kucinskas A,et al.Impact of storage conditions on electromechanical,histological and histochemical properties of osteochondral allografts[J].BMC Musculoskelet Disord,2015,16(1):314.
[25]Meloni GR,Farran A,Mohanraj B,et al.Recombinant human FGF18 preserves depth-dependent mechanical inhomogeneity in articular cartilage[J].Eur Cell Mater,2019(38):23-34.
[26]Calvo R,Espinosa M,Figueroa D,et al.Assessment of cell viability of fresh osteochondral allografts in N-acetylcysteine-enriched medium[J].Cartilage,2018,11(1):117-121.
[27]Robertson CM,Allen RT,Pennock AT,et al.Upregulation of apoptotic and matrix-related gene expression during fresh osteochondral allograft storage[J].Clin Orthop Relat Res,2006(442):260-266.
[28]Yu SM,Han Y,Kim SJ.Simvastatin abolishes nitric oxide-and reactive oxygen species-induced cyclooxygenase-2 expression by blocking the nuclear factor κB pathway in rabbit articular chondrocytes[J].Cell Biol Int,2020,44(10):2153-2162.
[29]Linn MS,Chase DC,Healey RM,et al.Etanercept enhances preservation of osteochondral allograft viability[J].Am J Sports Med,2011,39(7):1494-1499.
[30]Ding L,Zampogna B,Vasta S,et al.Why do osteochondral allografts survive?Comparative analysis of cartilage biochemical properties unveils a molecular basis for durability?[J].Am J Sports Med,2015,43(10):2459-2468.
[31]Qi J,Hu Z,Song H,et al.Cartilage storage at 4℃ with regular culture medium replacement benefits chondrocyte viability of osteochondral grafts in vitro[J].Cell Tissue Bank,2016,17(3):473-479.
[32]Harb A,von Horn A,Gocalek K,et al.Lactated ringer-based storage solutions are equally well suited for the storage of fresh osteochondral allografts as cell culture medium-based storage solutions[J].Injury,2017,48(7):1302-1308.
[33]Stoker AM,Caldwell KM,Stannard JP,et al.Metabolic responses of osteochondral allografts to re-warming[J].J Orthop Res,2019,37(7):1530-1536.
[34]Hevesi M,Denbeigh JM,Paggi CA,et al.Fresh osteochondral allograft transplantation in the knee:A viability and histologic analysis for optimizing graft viability and expanding existing standard processed graft resources using a living donor cartilage program[J].Cartilage,2019,13(1 suppl):948S-956S.
[35]Pallante AL,Bae WC,Chen AC,et al.Chondrocyte viability is higher after prolonged storage at 37 ℃ than at 4 ℃ for osteochondral grafts[J].Am J Sports Med,2009,37(1 suppl):24-32.
[36]Dontchos BN,Coyle CH,Izzo NJ,et al.Optimizing CO2 normalizes pH and enhances chondrocyte viability during cold storage[J].J Orthop Res,2007,26(5):643-650.
[37]Yamada T,Uchida K,Onuma K,et al.Hydrogen supplementation of preservation solution improves viability of osteochondral grafts[J].Scientific World J,2014(2014):109876.
[38]Wang B,Shao Z,Gu M,et al.Hydrogen sulfide protects against IL-1β-induced inflammation and mitochondrial dysfunction-related apoptosis in chondrocytes and ameliorates osteoarthritis[J].J Cell Physiol,2020,236(6):4369-4386.
[39]Chaoqun L,Yuqi Z,Shi Z,et al.A comparison of the antioxidant effects between hydrogen gas inhalation and vitamin c supplementation in response to a 60-min treadmill exercise in rat gastrocnemius muscle[J].Front Physiol,2021(12):745194.
[40]Zhang G,Li Z,Meng C,et al.The anti-inflammatory effect of hydrogen on lung transplantation model of pulmonary microvascular endothelial cells during cold storage period[J].Transplantation,2018,102(8):1253-1261.
[41]Zhang H,Wang L,Cui J,et al.Maintaining hypoxia environment of subchondral bone alleviates osteoarthritis progression[J].Sci Adv,2023,9(14):eabo7868.
[42]Pallante AL,Grtz S,Chen AC,et al.Treatment of articular cartilage defects in the goat with frozen versus fresh osteochondral allografts:Effects on cartilage stiffness,zonal composition,and structure at six months[J].J Bone Joint Surg(Am),2012,94(21):1984-1995.
[43]Pallante-Kichura AL,Chen AC,Temple-Wong MM,et al.In vivo efficacy of fresh versus frozen osteochondral allografts in the goat at 6 months is associated with PRG4 secretion[J].J Orthop Res,2013,31(6):880-886.
[44]Allen RT,Robertson CM,Pennock AT,et al.Analysis of stored osteochondral allografts at the time of surgical implantation[J].Am J Sports Med,2017,33(10):1479-1484.
[45]Stoker A,Stannard J,Cook J.Chondrocyte viability at time of transplantation for osteochondral allografts preserved by the missouri osteochondral preservation system versus standard tissue bank protocol[J].J Knee Surg,2017,31(8):772-780.
[46]Stannard JP,Cook JL.Prospective assessment of outcomes after primary unipolar,multisurface,and bipolar osteochondral allograft transplantations in the knee:A comparison of 2 preservation methods[J].Am J Sports Med,2020,48(6):1356-1364.
[47]Anderson DE,Robinson KS,Wiedrick J,et al.Efficacy of fresh osteochondral allograft transplantation in the knee for adults 40 years and older[J].Orthop J Sports Med,2018,6(11):2325967118805441.
[48]Abolghasemian M,León S,Lee PTH,et al.Long-term results of treating large posttraumatic tibial plateau lesions with fresh osteochondral allograft transplantation[J].J Bone Joint Surg(Am),2019,101(12):1102-1108.
[49]French MH,McCauley JC,Pulido PA,et al.Bipolar fresh osteochondral allograft transplantation of the tibiotalar joint[J].J Bone Joint Surg(Am),2019,101(9):821-825.
[50]Qiao Z,Xin M,Wang L,et al.Proteoglycan 4 predicts tribological properties of repaired cartilage tissue[J].Theranostics,2020,10(6):2538-2552.
[51]Saito T.The superficial zone of articular cartilage[J].Inflamm Regen,2022,42(1):14.
[52]Maenohara Y,Chijimatsu R,Tachibana N,et al.Lubricin contributes to homeostasis of articular cartilage by modulating differentiation of superficial zone cells[J].J Bone Miner Res,2020,36(4):792-802.