Liu Yi. New exploration on clinical treatment of injuries caused by uncommon agents or in extraordinary regions[J]. Chin j Burns, 2018, 34(5): 263-265. Doi: 10.3760/cma.j.issn.1009-2587.2018.05.002
Citation: Yin Kai, Ma Li, Shen Chuan'an, et al. Effects of transfection of human epidermal growth factor gene with adenovirus vector on biological characteristics of human epidermal cells[J]. Chin j Burns, 2016, 32(5): 305-311. Doi: 10.3760/cma.j.issn.1009-2587.2016.05.011

Effects of transfection of human epidermal growth factor gene with adenovirus vector on biological characteristics of human epidermal cells

doi: 10.3760/cma.j.issn.1009-2587.2016.05.011
  • Received Date: 2015-11-11
    Available Online: 2021-10-28
  • Publish Date: 2016-05-20
  • Objective To investigate the suitable transfection condition of human epidermal cells (hECs) with human epidermal growth factor (EGF) gene by adenovirus vector (Ad-hEGF) and its effects on the biological characteristics of hECs. Methods hECs were isolated from deprecated human fresh prepuce tissue of circumcision by enzyme digestion method and then sub-cultured. hECs of the third passage were used in the following experiments. (1) Cells were divided into non-transfection group and 5, 20, 50, 100, 150, and 200 fold transfection groups according to the random number table (the same grouping method below), with 3 wells in each group. Cells in non-transfection group were not transfected with Ad-hEGF gene, while cells in the latter six groups were transfected with Ad-hEGF gene in multiplicities of infection (MOI) of 5, 20, 50, 100, 150, and 200 respectively. The morphology of the cells was observed with inverted phase contrast microscope, and expression of green fluorescent protein of the cells was observed with inverted fluorescence microscope at transfection hour (TH) 24, 48, and 72. (2) Another three batches of cells were collected, grouped, and treated as above, respectively. Then the transfection rate of Ad-hEGF gene was detected by flow cytometer (n=3), the mass concentration of EGF in culture supernatant of cells was detected by enzyme-linked immunosorbent assay (n=6), and the proliferation activity of cells was detected by cell counting kit 8 (CCK8) and microplate reader (n=6) at TH 24, 48, and 72, respectively. (3) Cells were collected and divided into non-transfection group and transfection group, with 6 wells in each group. Cells in non-transfection group were cultured with culture supernatant of cells without transfection, while cells in transfection group were cultured with culture supernatant of cells which were transfected with Ad-hEGF gene in the optimum MOI (50). CCK8 and microplate reader were used to measure the biological activity of EGF secreted by cells on culture day 1, 3, and 5. (4) Cells were collected and divided into non-transfection group and transfection group, with 12 wells in each group. Cells in non-transfection group were not transfected with Ad-hEGF gene, while cells in transfection group were transfected with Ad-hEGF gene in the optimum MOI (50). The expression levels of cytokeratin 14 (CK14) and CK19 of cells were measured by immunofluorescence staining at TH 24. (5) Cells were collected, grouped, and treated as in (4), with 6 wells in each group. At post scratch hour (PSH) 0 (immediately after scratch), 12, 24, and 48, the migration distance of cells was observed and measured with inverted phase contrast microscope. Data were processed with analysis of variance of factorial design, analysis of variance for repeated measurement, and LSD test. Results (1) At TH 24 and 48, morphology of cells in each transfection group and non-transfection group were similar. Compared with that in non-transfection group, the cell debris increased significantly in 200 fold transfection group at TH 72. At TH 24, 48, and 72, the expression of green fluorescent protein was not seen in cells of non-transfection group, whereas it increased in cells of transfection group over transfection time. (2) The transfection rate of Ad-hEGF gene of cells in each transfection group increased gradually over transfection time. At TH 72, the transfection rates of Ad-hEGF gene of cells in 50-200 fold transfection groups were all above 90%, while the transfection rates of Ad-hEGF gene of cells in non-transfection group, 5, and 20 fold transfection groups were (0.51±0.20)%, (62.44±6.23)%, and (75.00±5.43)% respectively, which were obviously lower than the rate in 50 fold transfection group [(93.12±2.55)%, with P values below 0.01]. The mass concentration of EGF in culture supernatant of cells in each transfection group increased gradually over transfection time. At TH 72, the mass concentration of EGF in culture supernatant of cells in 50 fold transfection group was obviously higher than that in each of the other groups (with P values below 0.01). The proliferation activity of cells in each group at TH 24 and 48 was similar (with P values above 0.05). At TH 72, the proliferation activity of cells in 200 fold transfection group was obviously lower than that in other groups (with P values below 0.05). (3) On culture day 1, the biological activity of EGF secreted by cells in two groups was similar (P>0.05). On culture day 3 and 5, the biological activity of EGF secreted by cells in transfection group were obviously higher than that in non-transfection group (with P values below 0.01). (4) At TH 24, the expression levels of CK14 and CK19 of cells in transfection group were higher than those in non-transfection group. (5) The width of scratch in two groups was nearly the same at PSH 0. At PSH 12-48, the migration distance of cells in transfection group was obviously longer than that in non-transfection group (with P values below 0.01). Conclusions The suitable range of MOI of hECs transfected with Ad-hEGF gene is 50-150, and 50 is the optimum. hECs transfected with Ad-hEGF gene with MOI 50 can effectively express the EGF gene and keep its good abilities of proliferation, differentiation, and migration, as well.

     

  • Relative Articles

    [1]Yang Xuekang, Zhang Dongliang, He Ting, Zhang Yue, Xu Zhigang, Wei Jingtao, Li Jun, Liu Mengdong. Clinical experience of free superficial temporal fascia flap/anterolateral femoral fascial flap combined with skin grafting in repairing deep tissue defects of special parts of extremities[J]. CHINESE JOURNAL OF BURNS AND WOUNDS, 2023, 39(6): 507-511. doi: 10.3760/cma.j.cn501225-20220915-00407
    [2]Han Linqiu, Shen Mingyan, Tang Xinyi, Wan Pengxia, Lao Lingdi, He Tian. Best evidence summary of prevention strategies for pressure injury in adult hospitalized burn patients[J]. CHINESE JOURNAL OF BURNS AND WOUNDS, 2023, 39(9): 867-873. doi: 10.3760/cma.j.cn501225-20230328-00101
    [3]Shen Yuming. Strategies on the prevention and treatment of surgical site infection and the resulting wound[J]. CHINESE JOURNAL OF BURNS AND WOUNDS, 2021, 37(3): 207-212. doi: 10.3760/cma.j.cn501120-20210105-00006
    [4]Liu Zhennan, Zhou Yuemin. Research advances on the application of pulsed dye laser in the early treatment of post-traumatic scars[J]. CHINESE JOURNAL OF BURNS AND WOUNDS, 2021, 37(7): 688-691. doi: 10.3760/cma.j.cn501120-20200315-00164
    [5]Liu Yi. Pay attention to the prevention and treatment of iatrogenic wound[J]. CHINESE JOURNAL OF BURNS AND WOUNDS, 2021, 37(3): 213-215. doi: 10.3760/cma.j.cn501120-20210204-00049
    [6]Wang Yaojun, Ren Zhongliang, Xue Jiajie, Guo Lei, Gao Dengwen, Hao Qingye, Gao Fucheng, Yang Jie. Clinical effect of negative pressure wound therapy in emergency limb-salvage operation of destructive injury of limb[J]. CHINESE JOURNAL OF BURNS AND WOUNDS, 2019, 35(7): 532-536. doi: 10.3760/cma.j.issn.1009-2587.2019.07.010
    [8]Chen Pei, Yang Shuijuan, Yuan Xiaoxiao, Xu Juan, Tang Youling, Xie Weiguo. Application of self-made stretch pants in patients with burn in special sites[J]. CHINESE JOURNAL OF BURNS AND WOUNDS, 2018, 34(11): 827-828. doi: 10.3760/cma.j.issn.1009-2587.2018.11.020
    [9]Wang Kang′an, Wu Guosheng, Sun Yu, Xia Zhaofan. Advances in the research of prevention and treatment of postburn contractures of hand[J]. CHINESE JOURNAL OF BURNS AND WOUNDS, 2017, 33(1): 58-61. doi: 10.3760/cma.j.issn.1009-2587.2017.01.016
    [10]Liu Yi. Precise management of extraordinary agent wound by establishment of a multidisciplinary cooperation mechanism[J]. CHINESE JOURNAL OF BURNS AND WOUNDS, 2016, 32(6): 323-325. doi: 10.3760/cma.j.issn.1009-2587.2016.06.002
    [11]YAN Bai-gang, REN Xiao-bao, ZHAO Xiao-dong, LI Hua, LIU Wei, ZHAO Wen-feng. Influence of intensive insulin therapy on insulin resistance of patients with severe burn or trauma[J]. CHINESE JOURNAL OF BURNS AND WOUNDS, 2013, 29(2): 181-184. doi: 10.3760/cma.j.issn.1009-2587.2013.02.022
    [12]XIE Wei-guo. Research into the prevention and treatment of burns due to specific causes should be highly strengthened[J]. CHINESE JOURNAL OF BURNS AND WOUNDS, 2012, 28(6): 404-407. doi: 10.3760/cma.j.issn.1009-2587.2012.06.002
    [16]ZHENG Zhao, HU Da-hai, XU Ming-da, ZHU Xiong-xiang, HAN Jun-tao, DONG Mao-long, TAO Ke, WANG Hong-tao, XIE Song-tao, JIANC Chu-yun, CHEN Bi. Surgical therapy for massive deep skin and soft tissue injuries[J]. CHINESE JOURNAL OF BURNS AND WOUNDS, 2009, 25(1): 11-14. doi: 10.3760/cma.j.issn.1009-2587.2009.01.006
    [17]YAN Bai-gang, XU Shi-wei, LIU Wei, LI Hua, ZHAO Wen-feng, LIU Jian, WAN Zhong-geng, ZENG Jun. Effects of intensive insulin therapy on inflammatory response and prognosis of patients with severe trauma[J]. CHINESE JOURNAL OF BURNS AND WOUNDS, 2009, 25(3): 215-217. doi: 10.3760/cma.j.issn.1009-2587.2009.03.020
    [20]Emphasize early management of burn and prevent complications[J]. CHINESE JOURNAL OF BURNS AND WOUNDS, 2004, 20(3): 132-133.
  • Cited by

    Periodical cited type(6)

    1. 刘富,徐佳敏,张红艳. 化学烧伤救治研究进展. 江西医药. 2024(11): 1090-1094 .
    2. 胡大海,王耘川. 进一步重视特殊原因及部位烧伤创面处理. 中华烧伤与创面修复杂志. 2023(03): 209-214 . 本站查看
    3. 张锐,杨兆敏. 疼痛管理结合焦点解决短期心理护理对烧伤整形植皮患者术后疼痛、负性情绪及社会支持度的影响. 国际护理学杂志. 2023(07): 1212-1215 .
    4. 武海琪,许腊梅,许娟娟. 基于行为转变理论的阶段性护理在四肢烧伤康复期患者中的应用. 中国美容医学. 2023(04): 184-188 .
    5. 刘毅. 急慢性创面的美容修复. 中国美容医学. 2019(04): 2-3+1 .
    6. 肖斌,刘毅. 穿支皮瓣与美容修复. 中国美容医学. 2019(04): 10-13 .

    Other cited types(1)

  • Created with Highcharts 5.0.7Amount of accessChart context menuAbstract Views, HTML Views, PDF Downloads StatisticsAbstract ViewsHTML ViewsPDF Downloads2024-042024-052024-062024-072024-082024-092024-102024-112024-122025-012025-022025-0302.557.51012.5
    Created with Highcharts 5.0.7Chart context menuAccess Class DistributionFULLTEXT: 13.8 %FULLTEXT: 13.8 %META: 85.0 %META: 85.0 %PDF: 1.3 %PDF: 1.3 %FULLTEXTMETAPDF
    Created with Highcharts 5.0.7Chart context menuAccess Area Distribution其他: 6.3 %其他: 6.3 %上海: 1.3 %上海: 1.3 %北京: 1.3 %北京: 1.3 %北方邦: 1.3 %北方邦: 1.3 %张家口: 2.5 %张家口: 2.5 %芒廷维尤: 77.5 %芒廷维尤: 77.5 %襄阳: 2.5 %襄阳: 2.5 %西宁: 7.5 %西宁: 7.5 %其他上海北京北方邦张家口芒廷维尤襄阳西宁

Catalog

    通讯作者: 陈斌, bchen63@163.com
    • 1. 

      沈阳化工大学材料科学与工程学院 沈阳 110142

    1. 本站搜索
    2. 百度学术搜索
    3. 万方数据库搜索
    4. CNKI搜索

    Article Metrics

    Article views (88) PDF downloads(2) Cited by(7)
    Proportional views
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return