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用于伤口愈合应用的天然起源双层普鲁兰-PHBV 支架。

Natural origin bilayer pullulan-PHBV scaffold for wound healing applications.

机构信息

Department of Genetics and Bioengineering, Istanbul Bilgi University, Turkey.

Molecular Biology-Biotechnology and Genetics Research Center (MOBGAM), Istanbul Technical University, Turkey; Department of Molecular Biology and Genetics, Istanbul Technical University, Turkey.

出版信息

Biomater Adv. 2022 Mar;134:112554. doi: 10.1016/j.msec.2021.112554. Epub 2021 Nov 18.

Abstract

Skin tissue loss that occurs by injury and diseases can turn into chronic wounds as a result of complications alongside infection. Chronic wounds fail to heal by themselves and need advanced treatments like engineered wound dressings and regenerative scaffolds. In this study, a novel, natural origin, bilayer electrospun scaffold was produced from pullulan (PUL) and poly(hydroxybutyrate-co-hydroxyvalerate) (PHBV) biopolymers. PHBV production by Cupriavidus necator bacterial strain was optimized and produced polymer was characterized. Characteristic peaks and bands of PHBV were observed by H-NMR and FTIR analyses. Valerate mol percent of produced PHBV copolymer was determined by H-NMR. Average molecular weight of the polymer was determined by SLS technique and crystallinity of PHBV was calculated from DSC curve. Bilayer scaffold was produced by electrospinning of hydrophilic PUL fibrous membrane onto wet-electrospun hydrophobic PHBV 3D fibrous mat. Bilayer scaffold was designed to involve regenerative and barrier fibrous layers. Nano fibrous PUL membrane with smaller pore size was efficient as a barrier against bacterial transmission while enabling optimum oxygen and water vapor transmission. Water retention and degradation properties were found to be optimum for a skin tissue scaffold. In vitro studies showed that PUL membrane sustained L929 cell proliferation while preventing cells from migrating inside the barrier phase while PHBV layer supported cell viability, proliferation, and migration, creating a regenerative 3D structure. Results showed that, novel natural origin PUL/PHBV bilayer scaffold is a promising candidate for wound healing applications.

摘要

由于感染等并发症,由外伤和疾病导致的皮肤组织损失可能会变成慢性伤口。慢性伤口无法自行愈合,需要先进的治疗方法,如工程创面敷料和再生支架。在这项研究中,一种新型的天然来源的双层静电纺丝支架由普鲁兰(PUL)和聚(羟基丁酸酯-co-羟基戊酸酯)(PHBV)生物聚合物制成。优化了铜绿假单胞菌菌株生产 PHBV 的条件,并对生产的聚合物进行了表征。通过 H-NMR 和 FTIR 分析观察到 PHBV 的特征峰和谱带。通过 H-NMR 测定了所生产的 PHBV 共聚物的戊酸摩尔百分比。通过 SLS 技术测定了聚合物的平均分子量,并从 DSC 曲线计算了 PHBV 的结晶度。通过将亲水性 PUL 纤维膜静电纺到湿静电纺的疏水性 PHBV 3D 纤维垫上,制备了双层支架。双层支架设计为包含再生和屏障纤维层。具有较小孔径的纳米纤维 PUL 膜作为阻止细菌传输的屏障非常有效,同时能够实现最佳的氧气和水蒸气传输。发现水保留和降解性能非常适合皮肤组织支架。体外研究表明,PUL 膜可维持 L929 细胞的增殖,同时防止细胞迁移到屏障相中,而 PHBV 层支持细胞活力、增殖和迁移,形成再生的 3D 结构。结果表明,新型天然来源的 PUL/PHBV 双层支架是一种有前途的伤口愈合应用候选材料。

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