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PUBMED FOR HANDHELDS

Journal Abstract Search


722 related items for PubMed ID: 9301046

  • 1. Photodynamic therapy with 5-aminolaevulinic acid-induced porphyrins of an amelanotic melanoma in vivo.
    Abels C, Fritsch C, Bolsen K, Szeimies RM, Ruzicka T, Goerz G, Goetz AE.
    J Photochem Photobiol B; 1997 Aug; 40(1):76-83. PubMed ID: 9301046
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  • 2. Porphyrins preferentially accumulate in a melanoma following intravenous injection of 5-aminolevulinic acid.
    Fritsch C, Abels C, Goetz AE, Stahl W, Bolsen K, Ruzicka T, Goerz G, Sies H.
    Biol Chem; 1997 Jan; 378(1):51-7. PubMed ID: 9049065
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  • 4. Photodynamic therapy with 5-aminolevulinic acid induces distinct microcirculatory effects following systemic or topical application.
    Schacht V, Szeimies RM, Abels C.
    Photochem Photobiol Sci; 2006 May; 5(5):452-8. PubMed ID: 16685321
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  • 5. Simulations on the selectivity of 5-aminolaevulinic acid-induced fluorescence in vivo.
    Ackermann G, Abels C, Bäumler W, Langer S, Landthaler M, Lang EW, Szeimies RM.
    J Photochem Photobiol B; 1998 Dec; 47(2-3):121-8. PubMed ID: 10093911
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  • 8. Experimental photodynamic therapy with MESO-tetrakisphenylporphyrin (TPP) in liposomes leads to disintegration of human amelanotic melanoma implanted to nude mice.
    Jezek P, Nekvasil M, Skobisová E, Urbánková E, Jirsa M, Zadinová M, Poucková P, Klepácek I.
    Int J Cancer; 2003 Feb 20; 103(5):693-702. PubMed ID: 12494481
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  • 11. Influence of topical photodynamic therapy with 5-aminolevulinic acid on porphyrin metabolism.
    Fritsch C, Verwohlt B, Bolsen K, Ruzicka T, Goerz G.
    Arch Dermatol Res; 1996 Aug 20; 288(9):517-21. PubMed ID: 8874745
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  • 13. Tissue distribution and penetration of 5-ALA induced fluorescence in an amelanotic melanoma after topical application.
    Pahernik S, Langer S, Botzlar A, Dellian M, Goetz AE.
    Anticancer Res; 2001 Aug 20; 21(1A):59-63. PubMed ID: 11299790
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  • 14. Effects of light fractionation and different fluence rates on photodynamic therapy with 5-aminolaevulinic acid in vivo.
    Babilas P, Schacht V, Liebsch G, Wolfbeis OS, Landthaler M, Szeimies RM, Abels C.
    Br J Cancer; 2003 May 06; 88(9):1462-9. PubMed ID: 12778078
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  • 16. Antitumor effect of 5-aminolevulinic acid-mediated photodynamic therapy can be enhanced by the use of a low dose of photofrin in human tumor xenografts.
    Peng Q, Warloe T, Moan J, Godal A, Apricena F, Giercksky KE, Nesland JM.
    Cancer Res; 2001 Aug 01; 61(15):5824-32. PubMed ID: 11479222
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  • 17. Intracutaneous ALA photodynamic therapy: dose-dependent targeting of skin structures.
    Sakamoto FH, Doukas AG, Farinelli WA, Tannous Z, Su Y, Smith NA, Zurakowski D, Anderson RR.
    Lasers Surg Med; 2011 Sep 01; 43(7):621-31. PubMed ID: 22057490
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  • 18. Delivery of a hydrophobic phthalocyanine photosensitizer using PEGylated gold nanoparticle conjugates for the in vivo photodynamic therapy of amelanotic melanoma.
    Camerin M, Moreno M, Marín MJ, Schofield CL, Chambrier I, Cook MJ, Coppellotti O, Jori G, Russell DA.
    Photochem Photobiol Sci; 2016 May 11; 15(5):618-25. PubMed ID: 27064601
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  • 19. Sustained and efficient porphyrin generation in vivo using dendrimer conjugates of 5-ALA for photodynamic therapy.
    Casas A, Battah S, Di Venosa G, Dobbin P, Rodriguez L, Fukuda H, Batlle A, MacRobert AJ.
    J Control Release; 2009 Apr 17; 135(2):136-43. PubMed ID: 19168101
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  • 20. Photodynamic therapy using 5-aminolaevulinic acid for experimental pancreatic cancer--prolonged animal survival.
    Regula J, Ravi B, Bedwell J, MacRobert AJ, Bown SG.
    Br J Cancer; 1994 Aug 17; 70(2):248-54. PubMed ID: 8054272
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