Department of Regenerative Medicine, Graduate School of Medicine, Yokohama City University, 3-9 Fukuura, Kanazawa-ku, Yokohama 236-0004, Japan.
Division of Regenerative Medicine, Center for Stem Cell Biology and Regenerative Medicine, The Institute of Medical Science, the University of Tokyo, 4-6-1 Shirokanedai, Minato-ku, Tokyo 108-8639, Japan.
Int J Mol Sci. 2020 Nov 11;21(22):8496. doi: 10.3390/ijms21228496.
Microtia is a congenital aplasia of the auricular cartilage. Conventionally, autologous costal cartilage grafts are collected and shaped for transplantation. However, in this method, excessive invasion occurs due to limitations in the costal cartilage collection. Due to deformation over time after transplantation of the shaped graft, problems with long-term morphological maintenance exist. Additionally, the lack of elasticity with costal cartilage grafts is worth mentioning, as costal cartilage is a type of hyaline cartilage. Medical plastic materials have been transplanted as alternatives to costal cartilage, but transplant rejection and deformation over time are inevitable. It is imperative to create tissues for transplantation using cells of biological origin. Hence, cartilage tissues were developed using a biodegradable scaffold material. However, such materials suffer from transplant rejection and biodegradation, causing the transplanted cartilage tissue to deform due to a lack of elasticity. To address this problem, we established a method for creating elastic cartilage tissue for transplantation with autologous cells without using scaffold materials. Chondrocyte progenitor cells were collected from perichondrial tissue of the ear cartilage. By using a multilayer culture and a three-dimensional rotating suspension culture vessel system, we succeeded in creating scaffold-free elastic cartilage from cartilage progenitor cells.
小耳畸形是一种先天性的耳廓软骨发育不全。传统上,会采集自体肋软骨并进行塑形以用于移植。然而,由于肋软骨采集的限制,这种方法会产生过度的侵犯。由于塑形移植物移植后的时间推移导致的变形,存在长期形态维持的问题。此外,肋软骨移植物缺乏弹性也值得一提,因为肋软骨是一种透明软骨。已经将医用塑料材料作为肋软骨的替代品进行移植,但移植排斥和随着时间的推移变形是不可避免的。使用具有生物起源的细胞来为移植创造组织是当务之急。因此,使用可生物降解的支架材料开发了软骨组织。然而,这些材料会遭受移植排斥和生物降解,导致由于缺乏弹性而使移植的软骨组织变形。为了解决这个问题,我们建立了一种不使用支架材料,使用自体细胞来创建弹性移植用软骨组织的方法。从耳软骨的软骨膜组织中采集软骨细胞祖细胞。通过使用多层培养和三维旋转悬浮培养容器系统,我们成功地从软骨祖细胞中创建了无支架弹性软骨。