Literature DB >> 16263632

Formation of photoproducts and cytotoxicity of bilirubin irradiated with turquoise and blue phototherapy light.

Ellen Bruzell Roll1, Terje Christensen.   

Abstract

AIM: To compare a new turquoise ("green") fluorescent phototherapy lamp (490 nm) with a conventional blue phototherapy lamp (450 nm) with respect to cytotoxicity and photochemical effects of bilirubin.
METHODS: Mouse lymphoma cells (L5178Y-R) in the presence of bilirubin solutions were exposed to phototherapy light. Occurrence of necrosis and apoptosis, reduction of mitotic index and inhibited cell growth was assayed by appropriate methods. The presence of bilirubin and its photoisomers was measured by high-pressure liquid chromatography analysis and absorption spectroscopy.
RESULTS: At constant and equal light irradiances, the cytotoxic effects in the presence of bilirubin bound to human serum albumin showed that the green lamp caused significantly less necrosis (n = 4, p < 0.05) and less inhibition of cell multiplication (n = 3, p < 0.05) than the blue lamp. A slightly lower apoptotic fraction, although not statistically significant, was observed in cells exposed to the blue lamp. Photo-oxidation of bilirubin was more prominent with blue light irradiation. The photoequilibria between geometric isomers of bilirubin were different for the two lamps; more geometric photoisomers were formed by blue irradiation (n = 6, p < 0.05). The amounts of the most water-soluble isomers (presumably mainly lumirubin) were rather similar for the two lamps.
CONCLUSION: The two lamps were similar in the formation of therapeutically relevant photoproducts, but the blue lamp showed potential in forming more photo-oxidation products and in causing more severe cellular damage in the presence of bilirubin.

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Year:  2005        PMID: 16263632     DOI: 10.1111/j.1651-2227.2005.tb01819.x

Source DB:  PubMed          Journal:  Acta Paediatr        ISSN: 0803-5253            Impact factor:   2.299


  9 in total

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2.  Effect of phototherapy with turquoise vs. blue LED light of equal irradiance in jaundiced neonates.

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Authors:  E U Nwose; R S Richards; P Bwititi; E Butkowski
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Authors:  Finn Ebbesen; Mette L Donneborg; Pernille K Vandborg; Hendrik J Vreman
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5.  Apoptosis in the small intestine of neonatal rat using blue light-emitting diode devices and conventional halogen-quartz devices in phototherapy.

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6.  Does aggressive phototherapy increase mortality while decreasing profound impairment among the smallest and sickest newborns?

Authors:  J E Tyson; C Pedroza; J Langer; C Green; B Morris; D Stevenson; K P Van Meurs; W Oh; D Phelps; M O'Shea; G E McDavid; C Grisby; R Higgins
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7.  The effect of phototherapy on sister chromatid exchange with different light density in newborn hyperbilirubinemia.

Authors:  Hayriye Gözde Kanmaz; Nilüfer Okur; Dilek Dilli; Ahmet Yeşilyurt; Şerife Suna Oğuz
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8.  Molecular Mechanisms of UV-Induced Apoptosis and Its Effects on Skin Residential Cells: The Implication in UV-Based Phototherapy.

Authors:  Chih-Hung Lee; Shi-Bei Wu; Chien-Hui Hong; Hsin-Su Yu; Yau-Huei Wei
Journal:  Int J Mol Sci       Date:  2013-03-20       Impact factor: 5.923

9.  The Biological Effects of Bilirubin Photoisomers.

Authors:  Jana Jasprova; Matteo Dal Ben; Eleonora Vianello; Iryna Goncharova; Marie Urbanova; Karolina Vyroubalova; Silvia Gazzin; Claudio Tiribelli; Martin Sticha; Marcela Cerna; Libor Vitek
Journal:  PLoS One       Date:  2016-02-01       Impact factor: 3.240

  9 in total

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