3D-bioprinting a genetically inspired cartilage scaffold with GDF5-conjugated BMSC-laden hydrogel and polymer for cartilage repair

被引:72
作者
Sun, Ye [1 ]
You, Yongqing [2 ]
Jiang, Wenbo [1 ]
Zhai, Zanjin [1 ]
Dai, Kerong [1 ]
机构
[1] Shanghai Jiao Tong Univ, Shanghai Peoples Hosp 9, Sch Med, Shanghai Key Lab Orthoped Implants,Dept Orthoped, Shanghai 200011, Peoples R China
[2] Nanjing Med Univ, North Dist Suzhou Municipal Hosp, Affiliated Hosp, Dept Nephrol, Suzhou, Peoples R China
来源
THERANOSTICS | 2019年 / 9卷 / 23期
关键词
joint dysplasia; genetics; 3d-bioprinting; hydrogel; tissue engineering; IN-VITRO BIOCOMPATIBILITY; CHONDROGENIC DIFFERENTIATION; DEVELOPMENTAL DYSPLASIA; SILICA NANOPARTICLES; BIOACTIVE SCAFFOLDS; STEM-CELLS; GDF5; OSTEOARTHRITIS; SUSCEPTIBILITY; REGENERATION;
D O I
10.7150/thno.38061
中图分类号
R-3 [医学研究方法]; R3 [基础医学];
学科分类号
1001 ;
摘要
Rationale: Articular cartilage injury is extremely common in congenital joint dysplasia patients. Genetic studies have identified Growth differentiation factor 5 (GDF5) as a shared gene in joint dysplasia and OA progression across different populations. However, few studies have employed GDF5 in biological regeneration for articular cartilage repair. Methods & Results: In the present study, we report identified genetic association between GDF5 loci and hip joint dysplasia with genome-wide association study (GWAS). GWAS and replication studies in separate populations achieved significant signals for GDF5 loci. GDF5 expression was dysregulated with allelic differences in hip cartilage of DDH and upregulated in the repaired cartilage in a rabbit cartilage defect model. GDF5 in vitro enhanced chondrogenesis and migration of bone marrow stem cells (BMSCs), GDF5 was tested in ectopic cartilage generation with BMSCs by GDF5 in nude mice in vivo. Genetically inspired, we further generated functional knee articular cartilage construct for cartilage repair by 3d-bioprinting a GDF5-conjugated BMSC-laden scaffold. GDF5-conjugated scaffold showed better cartilage repairing effects compared to control. Meanwhile, transplantation of the 3D-bioprinted GDF5-conjugated BMSC-laden scaffold in rabbit knees conferred long-term chondroprotection. Conclusions: In conclusion, we report identified genetic association between GDF5 and DDH with combined GWAS and replications, which further inspired us to generate a ready-to-implant GDF5-conjugated BMSC-laden scaffold with one-step 3d-bioprinting for cartilage repair.
引用
收藏
页码:6949 / 6961
页数:13
相关论文
共 64 条
  • [1] Tissue-engineered autologous bladders for patients needing cystoplasty
    Atala, A
    Bauer, SB
    Soker, S
    Yoo, JJ
    Retik, AB
    [J]. LANCET, 2006, 367 (9518) : 1241 - 1246
  • [2] Prevalence of High-Grade Cartilage Defects in Patients With Borderline Dysplasia With Femoroacetabular Impingement: A Comparative Cohort Study
    Bolia, Ioanna K.
    Briggs, Karen K.
    Locks, Renato
    Chahla, Jorge
    Utsunomiya, Hajime
    Philippon, Marc J.
    [J]. ARTHROSCOPY-THE JOURNAL OF ARTHROSCOPIC AND RELATED SURGERY, 2018, 34 (08) : 2347 - 2352
  • [3] Buxton P, 2001, J BONE JOINT SURG AM, V83A, pS23
  • [4] Ancient selection for derived alleles at a GDF5 enhancer influencing human growth and osteoarthritis risk
    Capellini, Terence D.
    Chen, Hao
    Cao, Jiaxue
    Doxey, Andrew C.
    Kiapour, Ata M.
    Schoor, Michael
    Kingsley, David M.
    [J]. NATURE GENETICS, 2017, 49 (08) : 1202 - +
  • [5] A meta-analysis of European and Asian cohorts reveals a global role of a functional SNP in the 5′ UTR of GDF5 with osteoarthritis susceptibility
    Chapman, Kay
    Takahashi, Atsushi
    Meulenbelt, Ingrid
    Watson, Chris
    Rodriguez-Lopez, Julio
    Egli, Rainer
    Tsezou, Aspasia
    Malizos, Konstantinos N.
    Kloppenburg, Margreet
    Shi, Dongquan
    Southam, Lorraine
    van der Breggen, Ruud
    Donn, Rachelle
    Qin, Jianghui
    Doherty, Michael
    Slagboom, P. Eline
    Wallis, Gillian
    Kamatani, Naoyuki
    Jiang, Qing
    Gonzalez, Antonio
    Loughlin, John
    Ikegawa, Shiro
    [J]. HUMAN MOLECULAR GENETICS, 2008, 17 (10) : 1497 - 1504
  • [6] Heads, Shoulders, Elbows, Knees, and Toes: Modular Gdf5 Enhancers Control Different Joints in the Vertebrate Skeleton
    Chen, Hao
    Capellini, Terence D.
    Schoor, Michael
    Mortlock, Doug P.
    Reddi, A. Hari
    Kingsley, David M.
    [J]. PLOS GENETICS, 2016, 12 (11):
  • [7] Desktop-stereolithography 3D printing of a radially oriented extracellular matrix/mesenchymal stem cell exosome bioink for osteochondral defect regeneration
    Chen, Pengfei
    Zheng, Lin
    Wang, Yiyun
    Tao, Min
    Xie, Ziang
    Xia, Chen
    Gu, Chenhui
    Chen, Jiaxin
    Qiu, Pengcheng
    Mei, Sheng
    Ning, Lei
    Shi, Yiling
    Fang, Chen
    Fan, Shunwu
    Lin, Xianfeng
    [J]. THERANOSTICS, 2019, 9 (09): : 2439 - 2459
  • [8] Non-invasive monitoring of in vivo hydrogel degradation and cartilage regeneration by multiparametric MR imaging
    Chen, Zelong
    Yan, Chenggong
    Yan, Shina
    Liu, Qin
    Hou, Meirong
    Xu, Yikai
    Guo, Rui
    [J]. THERANOSTICS, 2018, 8 (04): : 1146 - 1158
  • [9] Immunomodulatory effects of mesoporous silica nanoparticles on osteogenesis: From nanoimmunotoxicity to nanoimmunotherapy
    Chen, Zetao
    Han, Shengwei
    Shi, Mengchao
    Liu, Guanqi
    Chen, Zhuofan
    Chang, Jiang
    Wu, Chengtie
    Xiao, Yin
    [J]. APPLIED MATERIALS TODAY, 2018, 10 : 184 - 193
  • [10] Mechanically enhanced lipo-hydrogel with controlled release of multi-type drugs for bone regeneration
    Cheng, Ruoyu
    Yan, Yufei
    Liu, Han
    Chen, Hao
    Pan, Guoqing
    Deng, Lianfu
    Cui, Wenguo
    [J]. APPLIED MATERIALS TODAY, 2018, 12 : 294 - 308