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Effect of Growth Factor-Loaded Acellular Dermal Matrix/MSCs on Regeneration of Chronic Tympanic Membrane Perforations in Rats.生长因子负载的脱细胞真皮基质/间充质干细胞对大鼠慢性鼓膜穿孔再生的影响
J Clin Med. 2021 Apr 6;10(7):1541. doi: 10.3390/jcm10071541.
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Effect of the orientation of microskin on the survival rate of transplantation and improving the method.微小皮片方向对移植成活率的影响及改进方法
Int J Clin Exp Pathol. 2021 Feb 1;14(2):186-195. eCollection 2021.
3
Reduced Graphene Oxide Incorporated Acellular Dermal Composite Scaffold Enables Efficient Local Delivery of Mesenchymal Stem Cells for Accelerating Diabetic Wound Healing.还原氧化石墨烯复合脱细胞真皮支架可实现间充质干细胞的高效局部递送,以加速糖尿病伤口愈合。
ACS Biomater Sci Eng. 2019 Aug 12;5(8):4054-4066. doi: 10.1021/acsbiomaterials.9b00485. Epub 2019 Jul 5.
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GDF-5 promotes epidermal stem cells proliferation via Foxg1-cyclin D1 signaling.生长分化因子5通过Foxg1-细胞周期蛋白D1信号通路促进表皮干细胞增殖。
Stem Cell Res Ther. 2021 Jan 7;12(1):42. doi: 10.1186/s13287-020-02106-7.
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[Application of antigen-free porcine peritoneum as carrier of autologous microskin grafting in patients with extensive burn].无抗原猪腹膜作为自体微粒皮移植载体在大面积烧伤患者中的应用
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A Concise Review on Tissue Engineered Artificial Skin Grafts for Chronic Wound Treatment: Can We Reconstruct Functional Skin Tissue In Vitro?组织工程化人工皮肤移植物治疗慢性创面的简要综述:我们能否在体外重建功能性皮肤组织?
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Recell in post-traumatic cases: Preliminary results.创伤后病例中的Recell技术:初步结果。
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猪脱细胞真皮基质联合人表皮干细胞对裸鼠全层皮肤缺损创面愈合的影响

[Effects of porcine acellular dermal matrix combined with human epidermal stem cells on wound healing of full-thickness skin defect in nude mice].

作者信息

Zhao X H, Guo Y C, Chen H H, Li X, Wang Y, Ni W W, Xing M Q, Zhang R, Yu S C, Pan Y G, Zhan R X, Luo G X

机构信息

State Key Laboratory of Trauma, Burns and Combined Injury, Institute of Burn Research, the First Affiliated Hospital of Army Medical University (the Third Military Medical University), Chongqing 400038, China.

Department of Stem Cell and Regenerative Medicine, the First Affiliated Hospital of Army Medical University (the Third Military Medical University), Chongqing 400038, China.

出版信息

Zhonghua Shao Shang Yu Chuang Mian Xiu Fu Za Zhi. 2022 Jan 20;38(1):45-56. doi: 10.3760/cma.j.cn501120-20200920-00418.

DOI:10.3760/cma.j.cn501120-20200920-00418
PMID:34839596
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11705265/
Abstract

To explore the effects of porcine acellular dermal matrix (ADM) combined with human epidermal stem cells (ESCs) on wound healing of full-thickness skin defect in nude mice. The morphology of porcine ADM was analyzed by photograph of digital camera, the cell residues in porcine ADM were observed by hematoxylin-eosin (HE) staining, the surface structure of porcine ADM was observed by scanning electron microscope, the secondary structure of porcine ADM was analyzed by infrared spectrometer, the porcine ADM particle size was analyzed by dynamic light scattering particle size analyzer, and the porcine ADM potential was analyzed by nano-particle size potentiometer. The morphology of porcine ADM was observed by inverted fluorescence microscope when it was placed in culture medium for 30 min, 1 d, and 5 d (=2). The porcine ADM was divided into 5 min group, 10 min group, 20 min group, 30 min group, 60 min group, and 120 min group according to the random number table (the same grouping method below) in static state at normal temperature for the corresponding time to calculate the water absorption by weighing method (=3). Swiss white mouse embryonic fibroblasts (Fbs) were divided into blank control group (culture medium only), and 50.0 g/L ADM extract group, 37.5 g/L ADM extract group, 25.0 g/L ADM extract group, 12.5 g/L ADM extract group, and 6.5 g/L ADM extract group which were added with the corresponding final concentrations of ADM extract respectively. At post culture hour (PCH) 24, 48, and 72, the cell survival rate was detected by cell counting kit 8 and the cytotoxicity was graded (=5). The erythrocytes of a 6-week-old male Sprague-Dawley male rat were divided into normal saline group, ultra-pure water group, and 5 mg/mL ADM extract group, 10 mg/mL ADM extract group, and 15 mg/mL ADM extract group which were treated with the corresponding final concentrations of porcine ADM extract respectively. After reaction for 3 h, the absorbance value of hemoglobin was detected by microplate reader to represent the blood compatibility of porcine ADM (=3). ESCs were isolated and cultured from the discarded prepuce of a 6-year-old healthy boy who was treated in the Department of Urology of the First Affiliated Hospital of Army Medical University (the Third Military Medical University) in July 2020, and then identified by flow cytometry. The porcine ADM particles of composite ESC (hereinafter referred to as ESC/ADM) were constructed by mixed culture. After 3 days of culture, the composite effect of ESC/ADM was observed by HE staining and laser scanning confocal microscope. Thirty-six 7-8-week-old male non-thymic nude mice were divided into phosphate buffer solution (PBS) alone group, ADM alone group, ESC alone group, and ESC/ADM group, with 9 mice in each group, and the wound model of full-thickness skin defect was established. Immediately after injury, the wounds were treated with the corresponding reagents at one time. On post injury day (PID) 1, 7, 11, and 15, the wound healing was observed and the wound healing rate was counted (=3). On PID 7, the epithelialization of wounds was observed by HE staining and the length of un-epithelialized wound was measured (with this and the following sample numbers of 4). On PID 11, the dermal area and collagen deposition of wounds were observed by Masson staining and the dermal area of wound section was calculated, the number of cells expressing CD49f, a specific marker of ESC, was calculated with immunofluorescence staining, the mRNA expression of glyceraldehyde-3-phosphate dehydrogenase (GAPDH) in ESC after wound transplantation was detected by real-time fluorescence quantitative reverse transcription polymerase chain reaction. Data were statistically analyzed with independent sample test, one-way analysis of variance, analysis of variance for repeated measurement, and least significant difference test. The porcine ADM was white particles and composed of reticular structure, with no cells inside, disordered structure, and rough surface. The absorption peak of porcine ADM appeared at the wave numbers of 1 659, 1 549, and 1 239 cm, respectively. The main particle size distribution of porcine ADM in solution was 500 to 700 nm, with negative charge on the surface. The morphology of porcine ADM in static state at 30 min and on 1 and 5 d was relatively stable. The water absorption of porcine ADM remained relatively high level in static state from 30 min to 120 min. The cytotoxicity of mouse embryonic Fbs in 6.5 g/L ADM extract group, 12.5 g/L ADM extract group, and 25.0 g/L ADM extract group was grade 1 at PCH 24, and the cytotoxicity of the other groups was 0 grade at each time point. After reaction for 3 h, the absorbance value of hemoglobin of erythrocytes in ultra-pure water group was significantly higher than the values in normal saline group and 15 mg/mL ADM extract group (with values of 8.14 and 7.96, respectively, <0.01). After 3 days of culture, the cells of the fourth passage showed pebble-like morphology, with low expression of CD71 and high expression of CD49f, which were identified as ESCs. There was ESC attachment and growth on porcine ADM particles. On PID 1, the wound sizes of nude mice were almost the same in PBS alone group, ADM alone group, ESC alone group, and ESC/ADM group. On PID 7, 11, and 15, the wound contraction of nude mice in each group was observed, especially in ADM alone group, ESC alone group, and ESC/ADM group. On PID 7, the wound healing rates of nude mice in ESC alone group and ESC/ADM group were significantly higher than the rate in PBS alone group (with values of 2.83 and 4.72 respectively, <0.05 or <0.01). On PID 11, the wound healing rate of nude mice in ESC/ADM group was significantly higher than that in PBS alone group (=4.86, <0.01). On PID 15, the wound healing rates of nude mice in ADM alone group, ESC alone group, and ESC/ADM group were significantly higher than the rate in PBS alone group (with values of 2.71, 2.90, and 3.23 respectively, <0.05). On PID 7, the length of un-epithelialized wound of nude mice in ADM alone group, ESC alone group, and ESC/ADM group was (816±85), (635±66), and (163±32) μm, respectively, which were significantly shorter than (1 199±43) μm in PBS alone group (with values of 5.69, 10.19, and 27.54 respectively, <0.01). On PID 11, the dermal areas of wound section of nude mice in ADM alone group, ESC alone group, and ESC/ADM group were significantly larger than the area in PBS alone group (with values of 27.14, 5.29, and 15.90 respectively, <0.01); the collagen production of nude mice in ADM alone group and ESC/ADM group was more obvious than that in PBS alone group, and the collagen production of nude mice in ESC alone group and PBS alone group was similar. On PID 11, in the wounds of nude mice in ESC alone group and ESC/ADM group, the cells with positive expression of CD49f were respectively 135±7 and 185±15, and the mRNA expressions of GAPDH were positive; while there were no expressions of CD49f nor mRNA of GAPDH in the wounds of nude mice in PBS alone group and ADM alone group. ESC/ADM particles can promote the wound healing of full-thickness skin defects in nude mice, which may be related to the improved survival rate of ESCs after transplantation and the promotion of dermal structure rearrangement and angiogenesis by ADM.

摘要

探讨猪脱细胞真皮基质(ADM)与人表皮干细胞(ESCs)联合应用对裸鼠全层皮肤缺损创面愈合的影响。采用数码相机拍照分析猪ADM的形态,苏木精-伊红(HE)染色观察猪ADM中的细胞残留,扫描电子显微镜观察猪ADM的表面结构,红外光谱仪分析猪ADM的二级结构,动态光散射粒度分析仪分析猪ADM的粒径,纳米粒度电位仪分析猪ADM的电位。将猪ADM置于培养基中30分钟、1天和5天(=2)后,用倒置荧光显微镜观察其形态。按照随机数字表将猪ADM分为5分钟组、10分钟组、20分钟组、30分钟组、60分钟组和120分钟组(以下分组方法相同),在常温静态下处理相应时间,采用称重法计算吸水率(=3)。将瑞士小白鼠胚胎成纤维细胞(Fbs)分为空白对照组(仅培养基),以及分别添加相应终浓度ADM提取物的50.0 g/L ADM提取物组、37.5 g/L ADM提取物组、25.0 g/L ADM提取物组、12.5 g/L ADM提取物组和6.5 g/L ADM提取物组。在培养后24、48和72小时(PCH),用细胞计数试剂盒8检测细胞存活率并进行细胞毒性分级(=5)。将6周龄雄性Sprague-Dawley大鼠的红细胞分为生理盐水组、超纯水组,以及分别用相应终浓度猪ADM提取物处理的5 mg/mL ADM提取物组、10 mg/mL ADM提取物组和15 mg/mL ADM提取物组。反应3小时后,用酶标仪检测血红蛋白的吸光度值以代表猪ADM的血液相容性(=3)。从陆军军医大学第一附属医院(第三军医大学)泌尿外科2020年7月收治的一名6岁健康男孩废弃的包皮中分离培养ESCs,然后用流式细胞术进行鉴定。通过混合培养构建复合ESCs的猪ADM颗粒(以下简称ESC/ADM)。培养3天后,用HE染色和激光扫描共聚焦显微镜观察ESC/ADM的复合效果。将36只7 - 8周龄雄性无胸腺裸鼠分为单纯磷酸盐缓冲液(PBS)组、单纯ADM组、单纯ESCs组和ESC/ADM组,每组9只,建立全层皮肤缺损创面模型。受伤后立即一次性用相应试剂处理创面。在伤后第1、7、11和15天,观察创面愈合情况并计算创面愈合率(=3)。在伤后第7天,用HE染色观察创面的上皮化情况并测量未上皮化创面的长度(此及以下样本数均为4)。在伤后第11天,用Masson染色观察创面的真皮面积和胶原沉积情况并计算创面切片的真皮面积,用免疫荧光染色计算表达ESCs特异性标志物CD49f的细胞数量,用实时荧光定量逆转录聚合酶链反应检测创面移植后ESCs中甘油醛-3-磷酸脱氢酶(GAPDH)的mRNA表达。数据采用独立样本t检验、单因素方差分析、重复测量方差分析和最小显著差t检验进行统计学分析。猪ADM为白色颗粒,由网状结构组成,内部无细胞,结构紊乱,表面粗糙。猪ADM的吸收峰分别出现在波数1 659、1 549和1 239 cm处。猪ADM在溶液中的主要粒径分布为500至700 nm,表面带负电荷。猪ADM在30分钟及1天和5天静态下的形态相对稳定。猪ADM在30分钟至120分钟静态下的吸水率保持在较高水平。在PCH 24时,6.5 g/L ADM提取物组、12.5 g/L ADM提取物组和25.0 g/L ADM提取物组中小鼠胚胎Fbs的细胞毒性为1级,其他组在各时间点的细胞毒性均为0级。反应3小时后,超纯水组红细胞血红蛋白的吸光度值显著高于生理盐水组和15 mg/mL ADM提取物组(分别为8.14和7.96,P<0.01)。培养3天后,第4代细胞呈鹅卵石样形态,CD71低表达,CD49f高表达,鉴定为ESCs。猪ADM颗粒上有ESCs附着生长。在伤后第1天,单纯PBS组、单纯ADM组、单纯ESCs组和ESC/ADM组裸鼠的创面大小基本相同。在伤后第7、11和15天,观察到每组裸鼠的创面均有收缩,尤其是单纯ADM组、单纯ESCs组和ESC/ADM组。在伤后第7天,单纯ESCs组和ESC/ADM组裸鼠的创面愈合率显著高于单纯PBS组(分别为2.83和4.72,P<0.05或P<0.01)。在伤后第11天,ESC/ADM组裸鼠的创面愈合率显著高于单纯PBS组(P=4.86,P<0.01)。在伤后第15天,单纯ADM组、单纯ESCs组和ESC/ADM组裸鼠的创面愈合率显著高于单纯PBS组(分别为2.71、2.90和3.23,P<0.05)。在伤后第7天,单纯ADM组、单纯ESCs组和ESC/ADM组裸鼠未上皮化创面的长度分别为(816±85)、(635±66)和(163±32)μm,显著短于单纯PBS组的(1 199±43)μm(分别为5.69、10.19和27.54,P<0.01)。在伤后第11天,单纯ADM组、单纯ESCs组和ESC/ADM组裸鼠创面切片的真皮面积显著大于单纯PBS组(分别为27.14、5.29和15.90,P<0.01);单纯ADM组和ESC/ADM组裸鼠的胶原生成比单纯PBS组更明显,单纯ESCs组和单纯PBS组裸鼠的胶原生成相似。在伤后第11天,单纯ESCs组和ESC/ADM组裸鼠创面中CD49f阳性表达的细胞分别为135±7和185±15,GAPDH的mRNA表达为阳性;而单纯PBS组和单纯ADM组裸鼠创面中无CD49f表达,也无GAPDH的mRNA表达。ESC/ADM颗粒可促进裸鼠全层皮肤缺损创面的愈合,这可能与移植后ESCs存活率提高以及ADM促进真皮结构重排和血管生成有关。