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负载大鼠表皮干细胞的聚己内酯-醋酸纤维素纳米纤维支架对大鼠全层皮肤缺损创面愈合的影响及机制

[Effects and mechanisms of polycaprolactone-cellulose acetate nanofiber scaffold loaded with rat epidermal stem cells on wound healing of full-thickness skin defects in rats].

作者信息

Lin Z X, Zhang Y H, Huang R, Li X Y

机构信息

Department of Burns and Plastic Surgery, the Second Affiliated Hospital of Air Force Medical University, Xi'an 710038, China.

出版信息

Zhonghua Shao Shang Za Zhi. 2021 May 20;37(5):460-468. doi: 10.3760/cma.j.cn501120-20210104-00005.

Abstract

To explore the effects and mechanisms of polycaprolactone-cellulose acetate (PCL-CA) nanofiber scaffold loaded with rat epidermal stem cells (ESCs) on wound healing of full-thickness skin defects in rats. The experiment research method was applied. The primary ESCs were isolated from 1-3 d old Sprague-Dawley (SD) rats (undefined gender) by rapid adherent method and cultured by rapid adherent method. ESCs of the first passage were used for the subsequent experiments after the positive expressions of integrin β and cytokeratin 19 (CK19) in primary cells were identified respectively by flow cytometey and immunofluorescence method. PCL-CA nanofiber scaffolds with polycaprolactone and cellulose acetate as components were prepared by electrospinning technique. The topological structure of the nanofiber scaffolds was determined and the diameter of 25 fibers was measured by scanning electron microscope. The constructed PCL-CA nanofiber scaffolds were used as the culture substrate for ESCs, which were cultured in keratinocytes (KCs) medium to construct ESCs-nanofiber scaffold complex (hereinafter referred to as ESCs scaffold). After 3 days of culture, the morphology of ESCs in the scaffold and their relationship was observed by scanning electron microscopy. The ESCs in ESCs scaffold were set as PCL-CA nanofiber scaffold group, and the ESCs cultured with KCs medium in culture dishes coated with type Ⅳ collagen were set as type Ⅳ collagen group. Western blotting was used to detect the protein expression level of CK19 in ESCs in the two groups after 3 days of culture (=3). The protein expressions of CK19 and proliferating nuclear antigen (PCNA) in ESCs in the two groups were detected by immunofluorescence method after 7 days of culture. A circular full-thickness skin wound of about 2 cm in diameter was prepared on both left and right sides of the back of 15 male SD rats aged 6-8 weeks. The rats were then equally divided into blank control group without implantation, scaffold alone group implanted with PCL-CA nanofiber scaffold, and ESCs scaffold group implanted with ESCs scaffold which were constructed after 3 days of culture according to the random number table. The percentage of wound areas on post injury day (PID) 3, 7, 14, and 21 was calculated (=5). The new skin tissue at the wound edge was collected on PID 21, the wound healing quality was evaluated by Masson staining, and the protein expression levels of Notch1, Jagged1, and Hes1, which are key proteins of Notch signaling pathway, were detected by Western blotting (=3). Data were statistically analyzed with one-way analysis of variance, one-way analysis of variance, analysis of variance for repeated measurement, independent sample test, and Bonferroni correction. The constructed PCL-CA nanofiber scaffolds had a porous, mesh-like, and multilayered three-dimensional structure, in which the surface of the fibers was smooth and non-porous, and the fiber diameter was (383±24) nm. The ESCs in ESCs scaffold showed intact cellular structures and were tightly attached to the scaffold after 3 days of culture. The cells were interconnected and fully extended on the surface of the scaffold to form a membrane. After 3 days of culture, the protein expression level of CK19 of ESCs in PCL-CA nanofiber scaffold group was significantly higher than that in type Ⅳ collagen group (=24.56, <0.01). After 7 days of culture, compared with those in type Ⅳ collagen group, there was no significant change in the proportion of PCNA positive cells of ESCs in PCL-CA nanofiber scaffold group, while the proportion of CK19 positive cells was higher. On PID 3, 7, 14, and 21, the percentages of wound areas of rats in ESCs scaffold group were (78.0±1.8)%, (40.9±2.0)%, (17.9±1.1)%, and (5.0±1.0)%, respectively, which were significantly lower than (84.2±1.9)%, (45.4±2.6)%, (21.8±1.7)%, and (10.1±1.1)% in blank control group (=5.42, 3.09, 4.33, 7.58, <0.05 or <0.01) and (82.7±1.2)%, (44.8±2.0)%, (22.4±2.4)%, and (10.3±2.4)% in scaffold alone group (=4.98, 3.11, 3.84, 4.57, <0.05 or <0.01), while the percentages of wound areas of rats between blank control group and scaffold alone group were similar (=1.47, 0.39, 0.47, 0.22, >0.05). On PID 21, the layer of new skin at the wound edge of rats in each group was intact; compared with that in blank control group or scaffold alone group, the new skin tissue at the wound edge of rats in ESCs scaffold group had more orderly collagen arrangement; the scaffolds in the new skin at the wound edge of rats were completely degraded in ESCs scaffold group and scaffold alone group. On PID 21, the protein expression levels of Notch1, Jagged1, and Hes1 in the new skin tissue at the wound edge of rats in scaffold alone group were similar to those in blank control group (=1.70, 1.94, 0.18, >0.05), while the protein expression levels of Notch1, Jagged1, and Hes1 in the new skin tissue at the wound edge of rats in ESCs scaffold group were significantly higher than those in scaffold alone group (=13.31, 22.07, 20.71, <0.01). PCL-CA nanofiber scaffolds can inhibit the differentiation of ESCs of rats without affecting their proliferation . ESCs scaffolds constructed through using PCL-CA nanofiber scaffolds as the carrier to culture ESCs of rats can significantly promote the wound healing of full-thickness skin defects in rats, and the mechanism may be related to the activation of Notch signaling pathway.

摘要

探讨负载大鼠表皮干细胞(ESCs)的聚己内酯 - 醋酸纤维素(PCL - CA)纳米纤维支架对大鼠全层皮肤缺损创面愈合的影响及机制。采用实验研究方法。通过快速贴壁法从1 - 3日龄的Sprague - Dawley(SD)大鼠(未明确性别)分离原代ESCs,并采用快速贴壁法进行培养。原代细胞经流式细胞术和免疫荧光法分别鉴定整合素β和细胞角蛋白19(CK19)呈阳性表达后,取第一代ESCs用于后续实验。以聚己内酯和醋酸纤维素为成分,采用静电纺丝技术制备PCL - CA纳米纤维支架。通过扫描电子显微镜测定纳米纤维支架的拓扑结构并测量25根纤维的直径。将构建好的PCL - CA纳米纤维支架作为ESCs的培养底物,在角质形成细胞(KCs)培养基中培养以构建ESCs - 纳米纤维支架复合物(以下简称ESCs支架)。培养3天后,通过扫描电子显微镜观察支架内ESCs的形态及其相互关系。将ESCs支架内的ESCs设为PCL - CA纳米纤维支架组,将在涂有Ⅳ型胶原的培养皿中用KCs培养基培养的ESCs设为Ⅳ型胶原组。培养3天(n = 3)后,采用蛋白质免疫印迹法检测两组ESCs中CK19的蛋白表达水平。培养7天后,采用免疫荧光法检测两组ESCs中CK19和增殖细胞核抗原(PCNA)的蛋白表达。在15只6 - 8周龄的雄性SD大鼠背部左右两侧制备直径约2 cm的圆形全层皮肤创面。然后根据随机数字表将大鼠平均分为未植入的空白对照组、植入PCL - CA纳米纤维支架的单纯支架组以及植入培养3天后构建的ESCs支架的ESCs支架组。计算伤后第3、7、14和21天(n = 5)的创面面积百分比。在伤后第21天收集创面边缘的新生皮肤组织,采用Masson染色评估创面愈合质量,采用蛋白质免疫印迹法检测Notch信号通路关键蛋白Notch1、Jagged1和Hes1的蛋白表达水平(n = 3)。数据采用单因素方差分析、重复测量方差分析、独立样本t检验及Bonferroni校正进行统计学分析。构建的PCL - CA纳米纤维支架具有多孔、网状和多层的三维结构,其中纤维表面光滑无孔,纤维直径为(383±24)nm。培养3天后,ESCs支架内的ESCs细胞结构完整,紧密附着于支架。细胞相互连接并在支架表面充分伸展形成膜状。培养3天后,PCL - CA纳米纤维支架组ESCs中CK19的蛋白表达水平显著高于Ⅳ型胶原组(F = 24.56,P < 0.01)。培养7天后,与Ⅳ型胶原组相比,PCL - CA纳米纤维支架组ESCs中PCNA阳性细胞比例无显著变化,而CK19阳性细胞比例更高。在伤后第3、7、14和21天,ESCs支架组大鼠的创面面积百分比分别为(78.0±1.8)%、(40.9±2.0)%、(17.9±1.1)%和(5.0±1.0)%,显著低于空白对照组的(84.2±1.9)%、(45.4±2.6)%、(21.8±1.7)%和(10.1±1.1)%(F = 5.42、3.09、4.33、7.58,P < 0.05或P < 0.01)以及单纯支架组的(82.7±1.2)%、(44.8±2.0)%、(22.4±2.4)%和(10.3±2.4)%(F = 4.98、3.11、3.84、4.57,P < 0.05或P < 0.01),而空白对照组与单纯支架组大鼠的创面面积百分比相似(F = 1.47、0.39、0.47、0.22,P > 0.05)。在伤后第21天,各组大鼠创面边缘的新生皮肤层完整;与空白对照组或单纯支架组相比,ESCs支架组大鼠创面边缘的新生皮肤组织胶原排列更有序;ESCs支架组和单纯支架组大鼠创面边缘新生皮肤中的支架已完全降解。在伤后第21天,单纯支架组大鼠创面边缘新生皮肤组织中Notch1、Jagged1和Hes1的蛋白表达水平与空白对照组相似(F = 1.70、1.94、0.18,P > 0.05),而ESCs支架组大鼠创面边缘新生皮肤组织中Notch1、Jagged1和Hes1的蛋白表达水平显著高于单纯支架组(F = 13.31、22.07、20.71,P < 0.01)。PCL - CA纳米纤维支架可抑制大鼠ESCs的分化而不影响其增殖。以PCL - CA纳米纤维支架为载体培养大鼠ESCs构建的ESCs支架可显著促进大鼠全层皮肤缺损创面愈合,其机制可能与Notch信号通路的激活有关。

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