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2003 | 50 | 4 |

Tytuł artykułu

Application of electrophoretic methods for detection of protein-porphyrin complexes

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
Simple methods for detection and isolation of protein-porphyrin complexes were elaborated in our laboratory. They are based on the separation of protein-porphyrin complexes in native polyacrylamide gel and measurement of their fluorescence, with the use of two detection systems: the commercially available Gel Doc™ 2000 system, and a system specially designed for the purpose of these investigations, concerning protein-porphyrin interactions. The fluorescent complexes can be electro-trans­ferred from the gel onto PVDF membrane, eluted and analyzed in order to identify the protein interacting with porphyrins.

Wydawca

-

Rocznik

Tom

50

Numer

4

Opis fizyczny

p.1155-1163,fig.,ref.

Twórcy

autor
  • University of Gdansk, Gdansk, Poland
autor
autor
autor
autor

Bibliografia

  • Bartosova J, Kalousek I, Hrkal Z. (1994) Binding of meso-tetra(4-sulfonatophenyl)porphine to haemopexin and albumin studied by spectroscopy methods. Int JBiochem.; 26: 631-7.
  • Ding Y, Lin B, Huie CW. (2001) Binding studies of porphyrins to human serum albumin using affinity capillary electrophoresis. Electrophoresis.; 22: 2210-6.
  • Dougherty TJ, Weishaupt K, Potter W. (1987) Drugs comprising porphyrins. Patent No. 4,649,151 US 1987.
  • Gomer CJ. (1991) Preclinical examination of first and second generation photosensitizers used in photodynamic therapy (yearly review). Photochem Photobiol.; 54: 1093-107.
  • Graczyk A, Konarski J. (1995) Hematoporphyrin derivatives complex salts and their use in the detection and treatment of neoplasm. Patent No. 5,451,599 US 1995.
  • Henderson BW, Dougherty TJ. (1992) How does photodynamic therapy work? Photochem Photobiol.; 55: 145-57.
  • Kelty CJ, Brown NJ, Reed MW, Ackroyd R. (2002) The use of 5-aminolaevulinic acid as a photosensitiser in photodynamic therapy and photodiagnosis. Photochem Photobiol Sci.; 1: 158-68.
  • Konarski J, Kwasny M, Graczyk A. (1987) Investigation of photosensitizing properties of protoporphyrin derivatives with amino acid substituents. SPIELaser Technol. II.; 859: 227-30.
  • Kongshaug M. (1992) Distribution of tetrapyrrole photosensitizers among human plasma proteins. Int J Biochem.; 24: 1239-65.
  • Kongshaug M, Moan J. (1995) Separation of lipoproteins, albumin and gamma-globulin by single-step ultracentrifugation of human serum. Application. I: Binding of hematoporphyrin to human serum and to albumin. Int J Biochem Cell Biol.; 27: 371-84.
  • Maziere JC, Santus R, Morliere P, Reyftmann JP, Candide C, Mora L, Salmon S, Maziere C, Gatt S, Dubertret L. (1990) Cellular uptake and photosensitizing properties of anticancer porphyrins in cell membranes and low and high density lipoproteins. J Photochem Photobiol B.; 6: 61-8.
  • Maziere JC, Morliere P, Santus R. (1991) The role of the low density lipoprotein receptor pathway in the delivery of liphophilic photosensitizers in the photodynamic therapy of tumors. J Photochem Photobiol B.; 8: 351-60.
  • Polo L, Valduga G, Jori G, Reddi E. (2002) Low-density lipoprotein receptors in the uptake of tumour photosensitizers by human and rat transformed fibroblasts. Int J Biochem Cell Biol.; 34: 10-23
  • Radivic M, Pantelic D, Taseski J, Milencovic L. (1979) Albumin and its therapeutic use — part I. Bilt Hematol Transfuz.; 7: 137-44.
  • Rosenberger V, Margalit R. (1993) Thermodynamics of the binding of hematoporphyrin ester, a hematoporphyrin derivative-like photosensitizer, and its components to human serum albumin, human high-density lipoprotein and human low-density lipoprotein. Photochem Photobiol.; 58: 627-30.
  • Scorza G, Minetti M. (1998) One-electron oxidation pathway of thiols by peroxynitrate in biological fluids: bicarbonate and ascorbate promote the formation of albumin disulphide dimers in human blood plasma. Biochem J.; 329: 405-13.
  • Sternberg ED, Dolphin D. (1998) Porphyrin- based photosensitizers for use in photodynamic therapy. Tetrahedron.; 54: 4151-202.
  • Vrouenraets MB, Visser GW, Snow GB, van Dongen GA. (2003) Basic principles, applications in oncology and improved selectivity of photodynamic therapy. Anticancer Res.; 23: 505-22.
  • Woodburn KW, Vardaxis NJ, Hill JS, Kaye AH, Reiss JA, Philips DR. (1992) Evaluation of porphyrin characteristics required for photodynamic therapy. Photochem Photobiol.; 55: 697-704.
  • Zoladek T, Nhi NB, Jagiello I, Graczyk A, Rytka J. (1997) Diamino acid derivatives of porphyrins penetrate into yeast cells, induce photodamage, but have no mutagenic effect. Photochem Photobiol.; 66: 253-9.

Typ dokumentu

Bibliografia

Identyfikatory

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