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Journal Abstract Search


527 related items for PubMed ID: 20428796

  • 1. Effect of the abrogation of TGF-beta1 by antisense oligonucleotides on the expression of TGF-beta-isoforms and their receptors I and II in isolated fibroblasts from keloid scars.
    Bran GM, Goessler UR, Schardt C, Hormann K, Riedel F, Sadick H.
    Int J Mol Med; 2010 Jun; 25(6):915-21. PubMed ID: 20428796
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  • 2. Differential expression of transforming growth factor-beta receptors I and II and activation of Smad 3 in keloid fibroblasts.
    Chin GS, Liu W, Peled Z, Lee TY, Steinbrech DS, Hsu M, Longaker MT.
    Plast Reconstr Surg; 2001 Aug; 108(2):423-9. PubMed ID: 11496185
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  • 3. Silencing NLRC5 inhibits extracellular matrix expression in keloid fibroblasts via inhibition of transforming growth factor-β1/Smad signaling pathway.
    Ma HL, Zhao XF, Chen GZ, Fang RH, Zhang FR.
    Biomed Pharmacother; 2016 Oct; 83():1016-1021. PubMed ID: 27525969
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  • 4. Transforming growth factors beta1, beta2 and beta3 and their receptors are differentially expressed in human peritoneal fibroblasts in response to hypoxia.
    Saed GM, Collins KL, Diamond MP.
    Am J Reprod Immunol; 2002 Dec; 48(6):387-93. PubMed ID: 12607775
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  • 5. Knockdown of elF3a inhibits TGF‑β1‑induced extracellular matrix protein expression in keloid fibroblasts.
    Li T, Zhao J.
    Mol Med Rep; 2018 Mar; 17(3):4057-4061. PubMed ID: 29286129
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  • 9. Evaluation of genistein ability to modulate CTGF mRNA/protein expression, genes expression of TGFβ isoforms and expression of selected genes regulating cell cycle in keloid fibroblasts in vitro.
    Jurzak M, Adamczyk K, Antończak P, Garncarczyk A, Kuśmierz D, Latocha M.
    Acta Pol Pharm; 2014 Mar; 71(6):972-86. PubMed ID: 25745770
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  • 10. Blocking transforming growth factor-beta receptor signaling down-regulates transforming growth factor-beta1 autoproduction in keloid fibroblasts.
    Liu W, Cai Z, Wang D, Wu X, Cui L, Shang Q, Qian Y, Cao Y.
    Chin J Traumatol; 2002 Apr; 5(2):77-81. PubMed ID: 11904067
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  • 11. Expression of TGF-beta and its receptors in murine fetal and adult dermal wounds.
    Cowin AJ, Holmes TM, Brosnan P, Ferguson MW.
    Eur J Dermatol; 2001 Apr; 11(5):424-31. PubMed ID: 11525949
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  • 12. Upregulation of transforming growth factor-beta1 and vascular endothelial growth factor in cultured keloid fibroblasts: relevance to angiogenic activity.
    Fujiwara M, Muragaki Y, Ooshima A.
    Arch Dermatol Res; 2005 Oct; 297(4):161-9. PubMed ID: 16184401
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  • 13. Knockdown of IRF3 inhibits extracellular matrix expression in keloid fibroblasts.
    Zhang Y, Zhang L, Lin XH, Li ZM, Zhang QY.
    Biomed Pharmacother; 2017 Apr; 88():1064-1068. PubMed ID: 28192879
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  • 14. Expression of transforming growth factor (TGF)-beta1, -beta2, and -beta3 isoforms and TGF-beta type I and type II receptors in multiple sclerosis lesions and human adult astrocyte cultures.
    De Groot CJ, Montagne L, Barten AD, Sminia P, Van Der Valk P.
    J Neuropathol Exp Neurol; 1999 Feb; 58(2):174-87. PubMed ID: 10029100
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  • 18. Transforming growth factor-beta isoform and receptor expression in chondrosarcoma of bone.
    Masi L, Malentacchi C, Campanacci D, Franchi A.
    Virchows Arch; 2002 May; 440(5):491-7. PubMed ID: 12021923
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  • 19. Ternary complex of transforming growth factor-beta1 reveals isoform-specific ligand recognition and receptor recruitment in the superfamily.
    Radaev S, Zou Z, Huang T, Lafer EM, Hinck AP, Sun PD.
    J Biol Chem; 2010 May 07; 285(19):14806-14. PubMed ID: 20207738
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  • 20. [Impact of TGF-beta1 antisense on collagen-binding integrins in keloid].
    Bran G, Sommer U, Meinzer F, Goessler UR, Hörmann K, Riedel F, Sadick H.
    HNO; 2010 Jun 07; 58(6):605-8, 610-2. PubMed ID: 20464356
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