Department of Bionanotechnology and Bio-Convergence Engineering, Jeonbuk National University, Jeonju-si, Korea.
Department of Industrial Engineering and BIOtech Research Center, University of Trento, Trento, Italy.
J Tissue Eng Regen Med. 2021 Nov;15(11):936-947. doi: 10.1002/term.3237. Epub 2021 Sep 2.
Various research about cartilage regeneration using biomaterials has been done recently. Particularly, gellan gum hydrogel (GG) is reported to be suitable as a biomaterial for cartilage tissue engineering (TE) for its water uptaking ability, producibility, and environmental resemblance of native cartilage. Despite these advantages, mechanical and cell adhesion properties are still difficult to modulate. Reinforcement is essential to overcome these problems. Herein, GG was modified by physically blending with different lengths of silk fiber (SF). As SF is expected to improve such disadvantages of GG, mechanical and biological properties were characterized to confirm its reinforcement ability. Mechanical properties such as degradation rate, swelling rate, compression strength, and viscosity were studied and it was confirmed that SF significantly reinforces the mechanical properties of GG. Furthermore, in vitro study was carried out to confirm morphology, biocompatibility, proliferation, and chondrogenesis of chondrocytes encapsulated in the hydrogels. Overall, chondrocytes in the GG blended with SF (SF/GG) showed enhanced cell viability and growth. According to this study, SF/GG can be a promising biomaterial for cartilage TE biomaterial.
最近已经有许多关于使用生物材料进行软骨再生的研究。特别是,由于具有吸水能力、可生产性以及与天然软骨相似的环境,葡聚糖胶(GG)被报道为适合软骨组织工程(TE)的生物材料。尽管有这些优点,但机械性能和细胞黏附性能仍然难以调节。增强是克服这些问题的必要手段。在此,通过物理混合不同长度的丝纤维(SF)对 GG 进行了改性。由于 SF 有望改善 GG 的这些缺点,对其机械和生物学特性进行了表征以确认其增强能力。研究了降解率、溶胀率、压缩强度和粘度等机械性能,结果表明 SF 显著增强了 GG 的机械性能。此外,还进行了体外研究以确认水凝胶包封的软骨细胞的形态、生物相容性、增殖和软骨分化。总的来说,SF 混合 GG(SF/GG)中的软骨细胞显示出增强的细胞活力和生长。根据这项研究,SF/GG 可以成为软骨 TE 生物材料有前途的生物材料。