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Journal Abstract Search


376 related items for PubMed ID: 1759646

  • 21. Modelling cortical cataractogenesis. XII: Supplemental vitamin A treatment reduces gamma-crystallin leakage from lenses in diabetic rats.
    Linklater HA, Dzialoszynski T, McLeod HL, Sanford SE, Trevithick JR.
    Lens Eye Toxic Res; 1992; 9(2):115-26. PubMed ID: 1534487
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  • 22. Variation in proportion and molecular weight of native crystallins from single human lenses upon aging and formation of nuclear cataract.
    Bessems GJ, Hoenders HJ, Wollensak J.
    Exp Eye Res; 1983 Dec; 37(6):627-37. PubMed ID: 6662209
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  • 25. Molecular evidence for the involvement of alpha crystallin in the colouration/crosslinking of crystallins in age-related nuclear cataract.
    Chen YC, Reid GE, Simpson RJ, Truscott RJ.
    Exp Eye Res; 1997 Dec; 65(6):835-40. PubMed ID: 9441707
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  • 28. Chromatofocusing for separation of human cataractous lens low molecular weight proteins.
    Kabasawa I, Watanabe M, Kimura M.
    Jpn J Ophthalmol; 1983 Dec; 27(4):592-7. PubMed ID: 6668752
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  • 29. Non-tryptophan fluorescence of crystallins from normal and cataractous human lenses.
    Bessems GJ, Keizer E, Wollensak J, Hoenders HJ.
    Invest Ophthalmol Vis Sci; 1987 Jul; 28(7):1157-63. PubMed ID: 3596993
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  • 30. The alpha-crystallin content of aqueous humour in cortical, nuclear, and complicated cataracts.
    Sandberg HO.
    Exp Eye Res; 1976 Jan; 22(1):75-84. PubMed ID: 1253853
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  • 32. Age-related changes in normal and cataractous human lens crystallins, separated by fast-performance liquid chromatography.
    Pereira PC, Ramalho JS, Faro CJ, Mota MC.
    Ophthalmic Res; 1994 Jan; 26(3):149-57. PubMed ID: 8090432
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  • 33. High molecular weight aggregate from cataractous and normal human lenses: characterization by antisera to lens crystallins.
    Kodama T, Wong R, Takemoto L.
    Jpn J Ophthalmol; 1988 Jan; 32(2):159-65. PubMed ID: 3184549
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  • 34. [FTRaman and FTIR spectroscopy in lens with senile cataract].
    Chen C, Su X, Zhang X.
    Zhonghua Yan Ke Za Zhi; 1997 Sep; 33(5):337-9. PubMed ID: 10451975
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  • 35. Distribution of HMW proteins and crystallins in cataractous lenses from undernourished and well-nourished subjects.
    Bhat KS.
    Exp Eye Res; 1983 Sep; 37(3):267-71. PubMed ID: 6628575
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  • 36. Enzyme activities and crystallin profiles of clear and cataractous lenses of the RCS rat.
    Dovrat A, Ding LL, Horwitz J.
    Exp Eye Res; 1993 Aug; 57(2):217-24. PubMed ID: 8405188
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  • 37. Characterization of alphaA-crystallin from high molecular weight aggregates in the normal human lens.
    Fujii N, Awakura M, Takemoto L, Inomata M, Takata T, Fujii N, Saito T.
    Mol Vis; 2003 Jul 07; 9():315-22. PubMed ID: 12847419
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  • 38. Variations in the soluble alpha-crystallin proteins from human cataractous lenses.
    Alao JF.
    Afr J Med Med Sci; 1978 Mar 07; 7(1):49-56. PubMed ID: 97955
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  • 39. Existence of deamidated alphaB-crystallin fragments in normal and cataractous human lenses.
    Srivastava OP, Srivastava K.
    Mol Vis; 2003 Apr 16; 9():110-8. PubMed ID: 12707643
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