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基于癸二酸聚甘油/聚己内酯/明胶并添加纳米羟基磷灰石的三维支架在促进人脂肪来源间充质干细胞软骨分化中的作用

The role of three-dimensional scaffolds based on polyglycerol sebacate/ polycaprolactone/ gelatin in the presence of Nanohydroxyapatite in promoting chondrogenic differentiation of human adipose-derived mesenchymal stem cells.

作者信息

Talouki Pardis Yousefi, Tackallou Saeed Hesami, Shojaei Shahrokh, Benisi Soheila Zamanlui, Goodarzi Vahabodin

机构信息

Department of Biomedical Engineering, Central Tehran Branch, Islamic Azad University, Tehran, Iran.

Department of Biology, Central Tehran Branch, Islamic Azad University, P.O. Box 13145-784, Tehran, Iran.

出版信息

Biol Proced Online. 2023 Mar 24;25(1):9. doi: 10.1186/s12575-023-00197-z.

Abstract

BACKGROUND

Tissue engineering for cartilage regeneration has made great advances in recent years, although there are still challenges to overcome. This study aimed to evaluate the chondrogenic differentiation of human adipose-derived mesenchymal stem cells (hADSCs) on three-dimensional scaffolds based on polyglycerol sebacate (PGS) / polycaprolactone (PCL) / gelatin(Gel) in the presence of Nanohydroxyapatite (nHA).

MATERIALS AND METHODS

In this study, a series of nHA-nanocomposite scaffolds were fabricated using 100:0:0, 60:40:0, and 60:20:20 weight ratios of PGS to PCL: Gel copolymers through salt leaching method. The morphology and porosity of prepared samples was characterized by SEM and EDX mapping analysis. Also, the dynamic contact angle and PBS adsorption tests are used to identify the effect of copolymerization and nanoparticles on scaffolds' hydrophilicity. The hydrolytic degradation properties were also analyzed. Furthermore, cell viability and proliferation as well as cell adhesion are evaluated to find out the biocompatibility. To determine the potential ability of nHA-nanocomposite scaffolds in chondrogenic differentiation, RT-PCR assay was performed to monitor the expression of collagen II, aggrecan, and Sox9 genes as markers of cartilage differentiation.

RESULTS

The nanocomposites had an elastic modulus within a range of 0.71-1.30 MPa and 0.65-0.43 MPa, in dry and wet states, respectively. The PGS/PCL sample showed a water contact angle of 72.44 ± 2.2°, while the hydrophilicity significantly improved by adding HA nanoparticles. It was found from the hydrolytic degradation study that HA incorporation can accelerate the degradation rate compared with PGS and PGS/PCL samples. Furthermore, the in vitro biocompatibility tests showed significant cell attachment, proliferation, and viability of adipose-derived mesenchymal stem cells (ADMSCs). RT-PCR also indicated a significant increase in collagen II, aggrecan and Sox9 mRNA levels.

CONCLUSIONS

Our findings demonstrated that these nanocomposite scaffolds promote the differentiation of hADSCs into chondrocytes possibly by the increase in mRNA levels of collagen II, aggrecan, and Sox9 as markers of chondrogenic differentiation. In conclusion, the addition of PCL, Gelatin, and HA into PGS is a practical approach to adjust the general features of PGS to prepare a promising scaffold for cartilage tissue engineering.

摘要

背景

近年来,用于软骨再生的组织工程取得了巨大进展,尽管仍有挑战需要克服。本研究旨在评估在纳米羟基磷灰石(nHA)存在下,人脂肪来源间充质干细胞(hADSCs)在基于聚癸二酸甘油酯(PGS)/聚己内酯(PCL)/明胶(Gel)的三维支架上的软骨分化情况。

材料与方法

在本研究中,通过盐析法使用PGS与PCL:Gel共聚物的重量比为100:0:0、60:40:0和60:20:20制备了一系列nHA纳米复合支架。通过扫描电子显微镜(SEM)和能谱分析(EDX)对制备样品的形态和孔隙率进行了表征。此外,还使用动态接触角和磷酸盐缓冲盐水(PBS)吸附试验来确定共聚和纳米颗粒对支架亲水性的影响。还分析了水解降解性能。此外,评估细胞活力、增殖以及细胞粘附以确定生物相容性。为了确定nHA纳米复合支架在软骨分化中的潜在能力,进行逆转录聚合酶链反应(RT-PCR)测定以监测作为软骨分化标志物的胶原蛋白II、聚集蛋白聚糖和Sox9基因的表达。

结果

纳米复合材料在干燥和湿润状态下的弹性模量分别在0.71 - 1.30兆帕和0.65 - 0.43兆帕范围内。PGS/PCL样品的水接触角为72.44±2.2°,而添加HA纳米颗粒后亲水性显著提高。从水解降解研究中发现,与PGS和PGS/PCL样品相比,掺入HA可以加速降解速率。此外,体外生物相容性测试显示脂肪来源间充质干细胞(ADMSCs)有显著的细胞附着、增殖和活力。RT-PCR还表明胶原蛋白II、聚集蛋白聚糖和Sox9信使核糖核酸(mRNA)水平显著增加。

结论

我们的研究结果表明,这些纳米复合支架可能通过增加作为软骨分化标志物的胶原蛋白II、聚集蛋白聚糖和Sox9的mRNA水平来促进hADSCs向软骨细胞的分化。总之,在PGS中添加PCL、明胶和HA是调整PGS一般特性以制备用于软骨组织工程的有前景支架的实用方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8fb6/10039520/8417654ca98b/12575_2023_197_Fig1_HTML.jpg

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