Literature DB >> 8235072

Fibroblast migration and proliferation during in vitro wound healing. A quantitative comparison between various growth factors and a low molecular weight blood dialysate used in the clinic to normalize impaired wound healing.

T Schreier1, E Degen, W Baschong.   

Abstract

During the formation of granulation tissue in a dermal wound, platelets, monocytes and other cellular blood constituents release various peptide growth factors to stimulate fibroblasts to migrate into the wound site and proliferate, in order to reconstitute the various connective tissue components. The effect on fibroblast migration and proliferation of these growth factors, and of Solcoseryl (HD), a deproteinized fraction of calf blood used to normalize wound granulation and scar tissue formation, was quantified in vitro. The presence of basic fibroblast growth factor (bFGF), platelet-derived growth factor (PDGF), transforming growth factor-beta (TGF-beta) and hemodialysate (HD) increased the number of cells in the denuded area, i.e., in the "wound space" of an artificially ruptured monolayer of LM-fibroblasts (mouse lung fibroblasts). When cell proliferation was blocked with Mitomycin C, in the first 24 h all factors, i.e., bFGF, PDGF, TGF-beta and HD, promoted cell migration, whereas after 48 h it became obvious that each factor stimulated both migration and proliferation, each in a characteristic way. The effects were significant and more distinct after 48 h, following the order: PDGF (46%) approximately bFGF (87%) > HD (45%) approximately TGF-beta (40%) > control (62%). The relative contributions of migration after inhibiting proliferation are given in brackets. The modulatory activity of HD was localized in its hydrophilic fraction. It was destroyed by acid hydrolysis. Furthermore, this activity could be blocked by protamine sulfate, an inhibitor blocking peptide growth factor receptor binding.

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Year:  1993        PMID: 8235072     DOI: 10.1007/bf02576227

Source DB:  PubMed          Journal:  Res Exp Med (Berl)        ISSN: 0300-9130


  38 in total

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Authors:  Yong Zhou; James S Hagood; Joanne E Murphy-Ullrich
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Review 2.  Scar management in burn injuries using drug delivery and molecular signaling: Current treatments and future directions.

Authors:  Saeid Amini-Nik; Yusef Yousuf; Marc G Jeschke
Journal:  Adv Drug Deliv Rev       Date:  2017-07-27       Impact factor: 15.470

Review 3.  Consensus guidelines for the use and interpretation of angiogenesis assays.

Authors:  Patrycja Nowak-Sliwinska; Kari Alitalo; Elizabeth Allen; Andrey Anisimov; Alfred C Aplin; Robert Auerbach; Hellmut G Augustin; David O Bates; Judy R van Beijnum; R Hugh F Bender; Gabriele Bergers; Andreas Bikfalvi; Joyce Bischoff; Barbara C Böck; Peter C Brooks; Federico Bussolino; Bertan Cakir; Peter Carmeliet; Daniel Castranova; Anca M Cimpean; Ondine Cleaver; George Coukos; George E Davis; Michele De Palma; Anna Dimberg; Ruud P M Dings; Valentin Djonov; Andrew C Dudley; Neil P Dufton; Sarah-Maria Fendt; Napoleone Ferrara; Marcus Fruttiger; Dai Fukumura; Bart Ghesquière; Yan Gong; Robert J Griffin; Adrian L Harris; Christopher C W Hughes; Nan W Hultgren; M Luisa Iruela-Arispe; Melita Irving; Rakesh K Jain; Raghu Kalluri; Joanna Kalucka; Robert S Kerbel; Jan Kitajewski; Ingeborg Klaassen; Hynda K Kleinmann; Pieter Koolwijk; Elisabeth Kuczynski; Brenda R Kwak; Koen Marien; Juan M Melero-Martin; Lance L Munn; Roberto F Nicosia; Agnes Noel; Jussi Nurro; Anna-Karin Olsson; Tatiana V Petrova; Kristian Pietras; Roberto Pili; Jeffrey W Pollard; Mark J Post; Paul H A Quax; Gabriel A Rabinovich; Marius Raica; Anna M Randi; Domenico Ribatti; Curzio Ruegg; Reinier O Schlingemann; Stefan Schulte-Merker; Lois E H Smith; Jonathan W Song; Steven A Stacker; Jimmy Stalin; Amber N Stratman; Maureen Van de Velde; Victor W M van Hinsbergh; Peter B Vermeulen; Johannes Waltenberger; Brant M Weinstein; Hong Xin; Bahar Yetkin-Arik; Seppo Yla-Herttuala; Mervin C Yoder; Arjan W Griffioen
Journal:  Angiogenesis       Date:  2018-08       Impact factor: 9.596

4.  Monophasic Pulsed Microcurrent of 1-8 Hz Increases the Number of Human Dermal Fibroblasts.

Authors:  Yoshiyuki Yoshikawa; Masaharu Sugimoto; Mikiko Uemura; Masafumi Matsuo; Noriaki Maeshige; Emma Tabe Eko Niba; Hisato Shuntoh
Journal:  Prog Rehabil Med       Date:  2016-10-26

Review 5.  TGF-β1 Signaling and Tissue Fibrosis.

Authors:  Kevin K Kim; Dean Sheppard; Harold A Chapman
Journal:  Cold Spring Harb Perspect Biol       Date:  2018-04-02       Impact factor: 10.005

6.  bFGF regulates PI3-kinase-Rac1-JNK pathway and promotes fibroblast migration in wound healing.

Authors:  Shigeyuki Kanazawa; Toshihiro Fujiwara; Shinsuke Matsuzaki; Kenta Shingaki; Manabu Taniguchi; Shingo Miyata; Masaya Tohyama; Yasuo Sakai; Kenji Yano; Ko Hosokawa; Tateki Kubo
Journal:  PLoS One       Date:  2010-08-17       Impact factor: 3.240

Review 7.  Cell migration.

Authors:  Xavier Trepat; Zaozao Chen; Ken Jacobson
Journal:  Compr Physiol       Date:  2012-10       Impact factor: 9.090

8.  In vitro wound repair by human gastric fibroblasts: implications for ulcer healing.

Authors:  E Piazuelo; A Lanas; P Jimenez; A García-Gonzalez; F Esteva
Journal:  Dig Dis Sci       Date:  1998-06       Impact factor: 3.199

9.  Beta-catenin and transforming growth factor beta have distinct roles regulating fibroblast cell motility and the induction of collagen lattice contraction.

Authors:  Raymond Poon; Saeid Amini Nik; Jessica Ahn; Laura Slade; Benjamin A Alman
Journal:  BMC Cell Biol       Date:  2009-05-11       Impact factor: 4.241

10.  Enhancement of Wound Healing Efficacy by Increasing the Stability and Skin-Penetrating Property of bFGF Using 30Kc19α-Based Fusion Protein.

Authors:  Haein Lee; Young-Hyeon An; Tae Keun Kim; Jina Ryu; G Kate Park; Mihn Jeong Park; Junghyeon Ko; Hyunbum Kim; Hak Soo Choi; Nathaniel S Hwang; Tai Hyun Park
Journal:  Adv Biol (Weinh)       Date:  2021-01-04
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