Barone Ludovica, Rossi Federica, Valdatta Luigi, Cherubino Mario, Papait Roberto, Binelli Giorgio, Romano Nicla, Bernardini Giovanni, Gornati Rosalba
Department of Biotechnology and Life Sciences, University of Insubria, 21100 Varese, Italy.
Department of Ecological and Biological Sciences, University of Tuscia, 01100 Viterbo, Italy.
Nanomaterials (Basel). 2022 Apr 30;12(9):1521. doi: 10.3390/nano12091521.
Several studies have been conducted on the interaction between three-dimensional scaffolds and mesenchymal stem cells for the regeneration of damaged tissues. Considering that stem cells do not survive for sufficient time to directly sustain tissue regeneration, it is essential to develop cell-free systems to be applied in regenerative medicine. In this work, by in vivo experiments, we established that a collagen-nanostructured scaffold, loaded with a culture medium conditioned with mesenchymal stem cells derived from adipose tissue (hASC-CM), exerts a synergic positive effect on angiogenesis, fundamental in tissue regeneration. To this aim, we engrafted athymic BALB-C nude mice with four different combinations: scaffold alone; scaffold with hASCs; scaffold with hASC crude protein extract; scaffold with hASC-CM. After their removal, we verified the presence of blood vessels by optical microscopy and confirmed the vascularization evaluating, by real-time PCR, several vascular growth factors: CD31, CD34, CD105, ANGPT1, ANGPT2, and CDH5. Our results showed that blood vessels were absent in the scaffold grafted alone, while all the other systems appeared vascularized, a finding supported by the over-expression of CD31 and CDH5 mRNA. In conclusion, our data sustain the capability of hASC-CM to be used as a therapeutic cell-free approach for damaged tissue regeneration.
已经开展了多项关于三维支架与间充质干细胞相互作用以促进受损组织再生的研究。鉴于干细胞无法存活足够长的时间来直接维持组织再生,开发可应用于再生医学的无细胞系统至关重要。在这项工作中,通过体内实验,我们证实了一种负载有源自脂肪组织的间充质干细胞条件培养基(hASC-CM)的胶原蛋白纳米结构支架,对组织再生中至关重要的血管生成具有协同积极作用。为此,我们用四种不同组合移植了无胸腺BALB-C裸鼠:单独的支架;含hASCs的支架;含hASC粗蛋白提取物的支架;含hASC-CM的支架。取出后,我们通过光学显微镜检查血管的存在情况,并通过实时PCR评估几种血管生长因子(CD31、CD34、CD105、ANGPT1、ANGPT2和CDH5)来确认血管化情况。我们的结果表明,单独移植的支架中没有血管,而所有其他系统都出现了血管化,这一发现得到了CD31和CDH5 mRNA过表达的支持。总之,我们的数据支持hASC-CM作为受损组织再生的无细胞治疗方法的能力。