电纺丝聚[(R)-3-羟基丁酸酯-co-(R)-3-羟基戊酸酯]- ecoflex垫在牙周再生中的应用初步研究

Anhui Wang, Yunna Gan, Juan-juan Qu, Baixiang Cheng, F. Wang, Hao Yu
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引用次数: 4

摘要

聚[(R)-3-羟基丁酸酯-co-(R)-3-羟基戊酸酯](PHBV)是一种天然来源的聚酯,在组织工程支架中具有潜在的应用前景。然而,PHBV具有高脆性、降解缓慢、高疏水性和不理想的生物相容性等缺点。在之前的研究中,我们通过将PHBV与Ecoflex混合来改善其性能,Ecoflex是一种具有高柔韧性、快速降解和相对较高亲水性的合成生物聚酯。在体外细胞培养中,Ecoflex也显著改善了人骨髓基质细胞的粘附和增殖。在这项研究中,我们试图研究牙周韧带干细胞(PDLSCs)和骨膜来源干细胞(PC)在电纺丝PHBV-Ecoflex垫上的增殖。PHBV与Ecoflex以不同的质量比(PHBV/Ecoflex: 100/ 0,70 / 30,50 / 50,30 /70)在二氯甲烷中共溶,并电纺成垫子。hPDLSCs和hPCs在不同基质上的增殖规律基本一致。在所有时间点,任何含ecoflex的垫子上的细胞数都高于纯PHBV垫子上的细胞数。细胞数量随Ecoflex浓度的增加而增加,因此我们认为PHBV-Ecoflex可以用于牙周再生。
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Application of Electrospun Poly[(R)-3-hydroxybutyrate-co-(R)-3-hydroxyvalerate]-Ecoflex Mats in Periodontal Regeneration: A Primary Study
Poly[(R)-3-hydroxybutyrate-co-(R)-3-hydroxyvalerate] (PHBV) is a nature-derived polyester with potential application in tissue engineering scaffolds. However, PHBV is associated with disadvantages including high brittleness, slow degradation, high hydrophobicity, and unsatisfactory biocompatibility. In previous study, we improved the properties of PHBV by blending it with Ecoflex, a synthetic biopolyester with a high flexibility, fast degradation, and comparatively higher hydrophilicity. In vitro cell culture also showed significantly improved adhesion and proliferation of human bone marrow stroma cells with the introduction of Ecoflex. In this study, we sought to investigate the proliferation of periodontal ligament stem cells (PDLSCs) and periosteum-derived stem cells (PC) on electro spun PHBV-Ecoflex mats. PHBV was co dissolved with Ecoflex in dichloromethane at different mass ratios (PHBV/Ecoflex: 100/0, 70/30, 50/50, 30/70) and electro spun into mats. The cell proliferation of hPDLSCs and hPCs displayed almost the same rules on different mats. The cell number on any Ecoflex-containing mat was higher than that on the pure PHBV mat at all time points. The cell number increased with the Ecoflex concentration in the mat. So we suppose that PHBV-Ecoflex mats could be used in periodontal regeneration.
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