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用于牙周组织工程的载有三偏磷酸钙的电纺聚(酯脲)纳米纤维

Calcium Trimetaphosphate-Loaded Electrospun Poly(Ester Urea) Nanofibers for Periodontal Tissue Engineering.

作者信息

Toledo Priscila T A, Anselmi Caroline, Dal-Fabbro Renan, Mahmoud Abdel H, Abel Alexandra K, Becker Matthew L, Delbem Alberto C B, Bottino Marco C

机构信息

Department of Cariology, Restorative Sciences, and Endodontics, School of Dentistry, University of Michigan, Ann Arbor, MI 48109, USA.

Department of Preventive and Restorative Dentistry, School of Dentistry, São Paulo State University (UNESP), Araçatuba 16015-050, SP, Brazil.

出版信息

J Funct Biomater. 2023 Jun 30;14(7):350. doi: 10.3390/jfb14070350.

Abstract

The objective of this research was to create and appraise biodegradable polymer-based nanofibers containing distinct concentrations of calcium trimetaphosphate (Ca-TMP) for periodontal tissue engineering. Poly(ester urea) (PEU) (5% /) solutions containing Ca-TMP (15%, 30%, 45% /) were electrospun into fibrous scaffolds. The fibers were evaluated using SEM, EDS, TGA, FTIR, XRD, and mechanical tests. Degradation rate, swelling ratio, and calcium release were also evaluated. Cell/Ca-TMP and cell/scaffold interaction were assessed using stem cells from human exfoliated deciduous teeth (SHEDs) for cell viability, adhesion, and alkaline phosphatase (ALP) activity. Analysis of variance (ANOVA) and post-hoc tests were used (α = 0.05). The PEU and PEU/Ca-TMP-based membranes presented fiber diameters at 469 nm and 414-672 nm, respectively. Chemical characterization attested to the Ca-TMP incorporation into the fibers. Adding Ca-TMP led to higher degradation stability and lower dimensional variation than the pure PEU fibers; however, similar mechanical characteristics were observed. Minimal calcium was released after 21 days of incubation in a lipase-enriched solution. Ca-TMP extracts enhanced cell viability and ALP activity, although no differences were found between the scaffold groups. Overall, Ca-TMP was effectively incorporated into the PEU fibers without compromising the morphological properties but did not promote significant cell function.

摘要

本研究的目的是制备并评估含不同浓度三偏磷酸钙(Ca-TMP)的可生物降解聚合物基纳米纤维用于牙周组织工程。将含有Ca-TMP(15%、30%、45% )的聚(酯脲)(PEU)(5% )溶液静电纺丝成纤维支架。使用扫描电子显微镜(SEM)、能谱仪(EDS)、热重分析仪(TGA)、傅里叶变换红外光谱仪(FTIR)、X射线衍射仪(XRD)和力学测试对纤维进行评估。还评估了降解速率、溶胀率和钙释放情况。使用人乳牙脱落干细胞(SHEDs)评估细胞/Ca-TMP和细胞/支架相互作用,以检测细胞活力、黏附性和碱性磷酸酶(ALP)活性。采用方差分析(ANOVA)和事后检验(α = 0.05)。基于PEU和PEU/Ca-TMP的膜的纤维直径分别为469 nm和414 - 672 nm。化学表征证明Ca-TMP已掺入纤维中。与纯PEU纤维相比,添加Ca-TMP导致更高的降解稳定性和更低的尺寸变化;然而,观察到相似的力学特性。在富含脂肪酶的溶液中孵育21天后,释放的钙极少。Ca-TMP提取物增强了细胞活力和ALP活性,尽管在支架组之间未发现差异。总体而言,Ca-TMP有效地掺入PEU纤维中,而不影响其形态学特性,但未促进显著的细胞功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/99b8/10381820/975e4e300dac/jfb-14-00350-g001.jpg

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