1 |
Wang L, Ye H, Li Z, et al. Epidemiological trends of low back pain at the global, regional, and national levels[J]. Eur Spine J, 2022, 31(4):953-962.
|
2 |
Zheng J, Shen C. Quantitative relationship between the degree of lumbar disc degeneration and intervertebral disc height in patients with low back pain[J]. Contrast Media Mol Imaging, 2022, 2022:5960317. doi: 10.1155/2022/5960317.
|
3 |
Wei FL, Zhou CP, Zhu KL, et al. Comparison of different operative approaches for lumbar disc herniation: a network meta-analysis and systematic review[J]. Pain Physician, 2021, 24(4):E381-E392.
|
4 |
Kirnaz S, Capadona C, Wong T, et al. Fundamentals of intervertebral disc degeneration[J]. World Neurosurg, 2022, 157:264-273.
|
5 |
Li C, Bai Q, Lai Y, et al. Advances and prospects in biomaterials for intervertebral disk regeneration[J]. Front Bioeng Biotechnol, 2021, 9:766087. doi: 10.3389/fbioe.2021.766087.
|
6 |
杨林, 石军, 郭中华, 等. 基于高分子材料的椎间盘组织工程:研究重点和热点[J]. 中国组织工程研究, 2021, 25(16):2589-2596.
|
7 |
梁辰, 朱同贺, 朱忆尧, 等. 生物医用支架仿生设计及在组织工程中的应用[J]. 中国组织工程研究, 2024, 28(15):2416-2422.
|
8 |
Yan C, Wang X, Xiang C, et al. Applications of functionalized hydrogels in the regeneration of the intervertebral disc[J]. Biomed Res Int, 2021, 2021:2818624. doi: 10.1155/2021/2818624.
|
9 |
祝昊, 尚晖, 张洋, 等. 高分子材料在髓核组织工程中的应用与研究[J]. 中国医学工程, 2022, 30(05):53-58.
|
10 |
Ho CY, Wang CC, Wu TC, et al. Peptide-functionalized double network hydrogel with compressible shape memory effect for intervertebral disc regeneration[J]. Bioeng Transl Med, 2022, 8(2):e10447. doi: 10.1002/btm2.10447.
|
11 |
Wagner EK, Vedadghavami A, Jacobsen TD, et al. Avidin grafted dextran nanostructure enables a month-long intra-discal retention[J]. Sci Rep, 2020, 10(1):12017. doi: 10.1038/s41598-020-68351-1.
|
12 |
Lv B, Lu L, Hu L, et al. Recent advances in GelMA hydrogel transplantation for musculoskeletal disorders and related disease treatment[J]. Theranostics, 2023, 13(6):2015-2039.
|
13 |
马小艺, 陈海斌. 纳米材料在生物医学领域的应用与前景展望[J]. 中国医药导报, 2006, 3(32):13-15.
|
14 |
丁丽娜. 聚乳酸及其共聚物微球的制备及在生物医学领域的应用研究[D]. 东北师范大学, 2021.
|
15 |
Khandaker M, Kotturi H, Progri H, et al. In vitro and in vivo effect of polycaprolactone nanofiber coating on polyethylene glycol diacrylate scaffolds for intervertebral disc repair[J]. Biomed Mater, 2021, 16(4). doi: 10.1088/1748-605X/abfd12.
|
16 |
Liu Z, Wang H, Yuan Z, et al. High-resolution 3D printing of angle-ply annulus fibrosus scaffolds for intervertebral disc regeneration[J]. Biofabrication, 2022, 15(1). doi: 10.1088/1758-5090/aca71f.
|
17 |
宋婵婵, 冉兵, 宗毅, 等. 椎间盘退变机制及修复生物工程支架研究进展[J]. 中国疼痛医学杂志, 2022, 28(09):657-663.
|
18 |
Li Z, Cai F, Tang J, et al. Oxygen metabolism-balanced engineered hydrogel microspheres promote the regeneration of the nucleus pulposus by inhibiting acid-sensitive complexes[J]. Bioact Mater, 2022, 24:346-360.
|
19 |
Wang W, Xiao B, Qiu Y, et al. pH-responsive delivery of H2 through ammonia borane-loaded hollow polydopamine for intervertebral disc degeneration therapy[J]. Oxid Med Cell Longev, 2023, 2023:7773609. doi: 10.1155/2023/7773609.
|
20 |
王向阳, 刘永辉, 石洋, 等. 间充质干细胞在椎间盘退变中作用[J]. 中国矫形外科杂志, 2022, 30(10):906-910.
|
21 |
吴德升. 椎间盘退变干细胞生物学修复的临床研究进展与挑战[J]. 中国临床新医学, 2023, 16(3):201-206.
|
22 |
邓静倩, 侯丹丹, 祁丽亚, 等. 高分子微球在三维细胞培养领域的应用进展[J]. 化工新型料, 2023, 51(S2):155-160
|
23 |
卢世浩, 张子凡, 孙柏峰, 等. 间充质干细胞移植治疗椎间盘退变植入途径的研究进展[J]. 中国脊柱脊髓杂志, 2023, 33(11):1052-1056.
|
24 |
Li W, Huang C, Ma T, et al. Low-frequency electromagnetic fields combined with tissue engineering techniques accelerate intervertebral fusion[J]. Stem Cell Res Ther, 2021, 12(1):143. doi: 10.1186/s13287-021-02207-x.
|
25 |
Wang Y, Zhang Y, Chen K, et al. Injectable nanostructured colloidal gels resembling native nucleus pulposus as carriers of mesenchymal stem cells for the repair of degenerated intervertebral discs[J]. Mater Sci Eng C Mater Biol Appl, 2021, 128:112343. doi: 10.1016/j.msec.2021.112343.
|
26 |
赵宇朋. 负载髓核间充质干细胞及纤维环源性干细胞3D环状梯度GelMA水凝胶多模态一体化支架对椎间盘退变的实验研究[D]. 蚌埠医学院, 2021.
|
27 |
叶旭文, 顾勇, 陈亮. 负载姜黄素可注射微球延缓椎间盘的退变[J]. 中国组织工程研究, 2023, 27(12):1884-1891.
|
28 |
Xu H, Sun M, Wang C, et al. Growth differentiation factor-5-gelatin methacryloyl injectable microspheres laden with adipose-derived stem cells for repair of disc degeneration[J]. Biofabrication, 2020, 13(1):015010. doi: 10.1088/1758-5090/abc4d3.
|
29 |
李谦. 富血小板血浆治疗腰椎间盘突出症的研究进展[J]. 微创医学, 2023, 18(2):238-240.
|
30 |
杜薇, 丁宇, 崔洪鹏, 等. 经皮内窥镜下椎间盘摘除联合富血小板血浆凝胶微球置入治疗腰椎间盘突出症的疗效观察[J]. 中国脊柱脊髓杂志, 2020, 30(11):1001-1006.
|
31 |
赵文杰, 张文捷, 张亮, 等. 间充质干细胞来源外泌体在椎间盘退变修复中的研究进展[J/OL]. 中华损伤与修复杂志(电子版), 2021, 16(2):153-157.
|
32 |
杨超强, 张虎林, 汪小敏, 等. 间充质干细胞来源外泌体治疗椎间盘退变的机制研究进展[J]. 风湿病与关节炎, 2023, 12(5):66-70.
|
33 |
Xing H, Zhang Z, Mao Q, et al. Injectable exosome-functionalized extracellular matrix hydrogel for metabolism balance and pyroptosis regulation in intervertebral disc degeneration[J]. J Nanobiotechnology, 2021, 19(1):264. doi: 10.1186/s12951-021-00991-5.
|
34 |
Borrelli C, Buckley CT. Injectable Disc-Derived ECM Hydrogel Functionalised with Chondroitin Sulfate for Intervertebral Disc Regeneration[J]. Acta Biomater, 2020, 117:142-155.
|
35 |
Chen Q, Wang J, Xia Q, et al. Treatment outcomes of injectable thermosensitive hydrogel containing bevacizumab in intervertebral disc degeneration[J]. Front Bioeng Biotechnol, 2022, 10:976706. doi: 10.3389/fbioe.2022.976706.
|
36 |
Sun J, Yang F, Wang L, et al. Delivery of coenzyme Q10 loaded micelle targets mitochondrial ROS and enhances efficiency of mesenchymal stem cell therapy in intervertebral disc degeneration[J]. Bioact Mater, 2022, 23:247-260.
|
37 |
Feng G, Zhang Z, Dang M, et al. Nanofibrous spongy microspheres to deliver rabbit mesenchymal stem cells and anti-miR-199a to regenerate nucleus pulposus and prevent calcification[J]. Biomaterials, 2020, 256:120213. doi: 10.1016/j.biomaterials.2020.120213.
|
38 |
Wang J, Huang L, Huang Y, et al. Therapeutic effect of the injectable thermosensitive hydrogel loaded with SHP099 on intervertebral disc degeneration[J]. Life Sci, 2021, 266:118891. doi: 10.1016/j.lfs.2020.118891.
|
39 |
Wang Y, Kang J, Guo X, et al. Intervertebral disc degeneration models for pathophysiology and regenerative therapy-benefits and limitations[J]. J Invest Surg, 2022, 35(4):935-952.
|