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    Please use this identifier to cite or link to this item: https://ir.csmu.edu.tw:8080/ir/handle/310902500/17796


    Title: Tissue-engineered fascia from vaginal fibroblasts for patients needing reconstructive pelvic surgery
    Authors: Hung, Man-Jung
    Wen, Mei-Chin
    Hung, Chia-Nung
    Ho, Esther Shih-Chu
    Chen, Gin-Den
    Cheng, Yang Vivian
    Contributors: 醫學研究所
    Keywords: Human vaginal fibroblasts;Pelvic organ prolapse;Reconstructive pelvic surgery;Regenerative medicine;Synthetic mesh;Tissue-engineering
    Date: 2010-05-18
    Issue Date: 2017-06-26T08:55:48Z (UTC)
    Publisher: International Urogynecology Journal
    ISSN: 0937-3462
    Abstract: Abstract
    Introduction and hypothesis

    Mesh-augmented reconstructive surgery for pelvic organ prolapse (POP) does not meet clinical expectations. A tissue-engineered fascia equivalent needs to be developed.

    Methods

    Human vaginal fibroblasts (HVFs) from 10 patients were characterized in vitro. Eligible HVFs and a biodegradable scaffold were used to fabricate a fascia equivalent, which was then transplanted in vivo.

    Results

    The cultured HVFs were divided into high (n = 6) or low (n = 4) collagen I/III ratio groups. Cells of the high-ratio group exhibited significantly higher proliferation potential than those of the low-ratio group (P < 0.05). A fascia equivalent was made with HVFs of the high-ratio group. In the subsequent animal study, a well-organized neo-fascia formation containing HVFs could be traced up to 12 weeks after transplantation.

    Conclusions

    Our results suggest that a tissue-engineered fascia could be developed from HVFs in vitro and in vivo, which might be an effective treatment for POP in the future.
    URI: https://www.doi.org/10.1007/s00192-010-1168-3
    https://ir.csmu.edu.tw:8080/ir/handle/310902500/17796
    Relation: International Urogynecology Journal September 2010, Volume 21, Issue 9, pp 1085–1093
    Appears in Collections:[醫學系] 期刊論文

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