注射热敏壳聚糖/明胶水凝胶用于牙髓干细胞的增殖和分化。

IF 2.2 4区 工程技术 Q3 PHARMACOLOGY & PHARMACY Bioimpacts Pub Date : 2023-01-01 DOI:10.34172/bi.2022.23904
Mohammad Samiei, Elaheh Dalir Abdollahinia, Nazanin Amiryaghoubi, Marziyeh Fathi, Jaleh Barar, Yadollah Omidi
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引用次数: 6

摘要

基于明胶和壳聚糖(CS)等天然聚合物的生物相容性和可生物降解支架为口腔组织工程提供了合适的微环境。在本研究中,我们报道了用于人牙髓干细胞成骨分化的可注射热敏水凝胶(PNIPAAm-g-CS共聚物/明胶混合水凝胶)的合成。方法:以端羧基PNIPAAm与CS反应合成CS-g-PNIPAAm,以皂角素为化学交联剂,将CS-g-PNIPAAm与不同量的明胶溶液混合,得到均相溶液。通过FT-IR和SEM对制备的水凝胶的化学成分和微观结构进行了表征。为了评估机械性能(例如,凝胶的储存和损失模量),考虑了流变学分析。采用茜素红染色和ALP试验检测DPSCs的钙沉积和ALP活性。通过活/死实验研究其毒性,real-time PCR检测制备的水凝胶培养的hdpsc的成骨分化情况。结果:明胶掺入量高的水凝胶,其网状结构略松散。明胶含量较少的水凝胶G′值较高,说明CS的胺基与龙胆平共价键发生交联反应较多,具有较高的弹性。所有的水凝胶都含有活细胞,死亡细胞可以忽略不计,表明制备的水凝胶对hdpsc具有很高的生物相容性。茜素红染色定量结果显示,在制备的水凝胶上培养21天后,hdpsc的钙沉积显著增加。此外,在含有较多明胶的水凝胶上培养的hDPSCs显示出最高的ALP活性。21 d后,加入明胶的水凝胶组OCN、BMP-2等后期成骨基因的表达分别比对照组高6倍和4倍。结论:制备的PNIPAAm-g-CS共聚物/明胶杂化水凝胶具有多孔结构、适宜的流变行为、提高细胞活力等特点,可实现口腔组织工程所需的成骨分化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Injectable thermosensitive chitosan/gelatin hydrogel for dental pulp stem cells proliferation and differentiation.

Introduction: Biocompatible and biodegradable scaffolds based on natural polymers such as gelatin and chitosan (CS) provide suitable microenvironments in dental tissue engineering. In the present study, we report on the synthesis of injectable thermosensitive hydrogel (PNIPAAm-g-CS copolymer/gelatin hybrid hydrogel) for osteogenic differentiation of human dental pulp stem cells (hDPSCs). Methods: The CS-g-PNIPAAm was synthesized using the reaction of carboxyl terminated PNIPAAm with CS, which was then mixed with various amounts of gelatin solution in the presence of genipin as a chemical crosslinker to gain a homogenous solution. The chemical composition and microstructures of the fabricated hydrogels were confirmed by FT-IR and SEM analysis, respectively. To evaluate the mechanical properties (e.g., storage and loss modulus of the gels), the rheological analysis was considered. Calcium deposition and ALP activity of DPSCs were carried out using alizarin red staining and ALP test. While the live/dead assay was performed to study its toxicity, the real-time PCR was conducted to investigate the osteogenic differentiation of hDPSCs cultured on prepared hydrogels. Results: The hydrogels with higher gelatin incorporation showed a slightly looser network compared to the other ones. The hydrogel with less gelatin indicates a rather higher value of G', indicating a higher elasticity due to more crosslinking reaction of amine groups of CS via a covalent bond with genipin. All the hydrogels contained viable cells with negligible dead cells, indicating the high biocompatibility of the prepared hydrogels for hDPSCs. The quantitative results of alizarin red staining displayed a significant rise in calcium deposition in hDPSCs cultured on prepared hydrogels after 21 days. Further, hDPSCs cultured on hydrogel with more gelatin displayed the most ALP activity. The expression of late osteogenic genes such as OCN and BMP-2 were respectively 6 and 4 times higher on the hydrogel with more gelatin than the control group after 21 days. Conclusion: The prepared PNIPAAm-g-CS copolymer/gelatin hybrid hydrogel presented great features (e.g., porous structure, suitable rheological behavior, and improved cell viability), and resulted in osteogenic differentiation necessary for dental tissue engineering.

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来源期刊
Bioimpacts
Bioimpacts Pharmacology, Toxicology and Pharmaceutics-Pharmaceutical Science
CiteScore
4.80
自引率
7.70%
发文量
36
审稿时长
5 weeks
期刊介绍: BioImpacts (BI) is a peer-reviewed multidisciplinary international journal, covering original research articles, reviews, commentaries, hypotheses, methodologies, and visions/reflections dealing with all aspects of biological and biomedical researches at molecular, cellular, functional and translational dimensions.
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