Rodríguez-Jiménez Francisco Javier, Valdes-Sánchez Teresa, Carrillo José M, Rubio Mónica, Monleon-Prades Manuel, García-Cruz Dunia Mercedes, García Montserrat, Cugat Ramón, Moreno-Manzano Victoria
Neuronal Regeneration Lab, Centro de Investigación Principe Felipe, València 46012, Spain.
Medicine and Surgery Department, CEU-Cardenal Herrera University, Moncada 46115, Spain.
J Funct Biomater. 2012 Aug 9;3(3):556-68. doi: 10.3390/jfb3030556.
Osteoarticular pathologies very often require an implementation therapy to favor regeneration processes of bone, cartilage and/or tendons. Clinical approaches performed on osteoarticular complications in dogs constitute an ideal model for human clinical translational applications. The adipose-derived mesenchymal stem cells (ASCs) have already been used to accelerate and facilitate the regenerative process. ASCs can be maintained in vitro and they can be differentiated to osteocytes or chondrocytes offering a good tool for cell replacement therapies in human and veterinary medicine. Although ACSs can be easily obtained from adipose tissue, the amplification process is usually performed by a time consuming process of successive passages. In this work, we use canine ASCs obtained by using a Bioreactor device under GMP cell culture conditions that produces a minimum of 30 million cells within 2 weeks. This method provides a rapid and aseptic method for production of sufficient stem cells with potential further use in clinical applications. We show that plasma rich in growth factors (PRGF) treatment positively contributes to viability and proliferation of canine ASCs into caprolactone 2-(methacryloyloxy) ethyl ester (CLMA) scaffolds. This biomaterial does not need additional modifications for cASCs attachment and proliferation. Here we propose a framework based on a combination of approaches that may contribute to increase the therapeutical capability of stem cells by the use of PRGF and compatible biomaterials for bone and connective tissue regeneration.
骨关节炎病症常常需要实施治疗以促进骨骼、软骨和/或肌腱的再生过程。针对犬类骨关节炎并发症所采取的临床方法构成了人类临床转化应用的理想模型。脂肪来源的间充质干细胞(ASCs)已被用于加速和促进再生过程。ASCs 能够在体外维持培养,并且可以分化为骨细胞或软骨细胞,为人类和兽医学中的细胞替代疗法提供了良好的工具。尽管可以轻松地从脂肪组织中获取 ACSs,但扩增过程通常通过连续传代这种耗时的过程来进行。在这项研究中,我们使用在 GMP 细胞培养条件下通过生物反应器装置获得的犬类 ASCs,该装置在两周内可产生至少 3000 万个细胞。这种方法提供了一种快速且无菌的方法来生产足够数量的干细胞,这些干细胞在临床应用中具有潜在的进一步用途。我们表明,富含生长因子的血浆(PRGF)处理对犬类 ASCs 在己内酯 2 -(甲基丙烯酰氧基)乙酯(CLMA)支架中的活力和增殖有积极作用。这种生物材料不需要额外修饰就能促进 cASCs 的附着和增殖。在此,我们提出一个基于多种方法组合的框架,该框架可能有助于通过使用 PRGF 和适用于骨与结缔组织再生的生物材料来提高干细胞的治疗能力。