Photodynamic potentiality of hypocrellin B and its lanthanide complexes
The search for new photosensitizers with strong absorption bands, fast elimination from the body and high singlet oxygen generation quantum yield has been the subject of intensive research over the past two decades. Perylenequinonoid pigments, such as hypocrellins and hypericin, stand out among othe...
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Published in | Journal of optics. A, Pure and applied optics Vol. 10; no. 10; pp. 104026 - 104026 (8) |
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Main Authors | , , , |
Format | Journal Article Conference Proceeding |
Language | English |
Published |
Bristol
IOP Publishing
01.10.2008
Institute of Physics |
Subjects | |
Online Access | Get full text |
ISSN | 1464-4258 1741-3567 |
DOI | 10.1088/1464-4258/10/10/104026 |
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Abstract | The search for new photosensitizers with strong absorption bands, fast elimination from the body and high singlet oxygen generation quantum yield has been the subject of intensive research over the past two decades. Perylenequinonoid pigments, such as hypocrellins and hypericin, stand out among other photosensitizers due to their remarkable properties, which fulfil these requirements. Besides, it was shown that hypocrellin B complexes with metal ions possess even more notable optical and photodynamic properties. In this work, a study of the photosensitizer hypocrellin B and its complexes formed with the lanthanide ions europium, lanthanum and terbium, in ethanol and dimethyl sulfoxide solutions, was carried out by spectroscopic methods, with the purpose of verifying its potentiality for use in photodynamic therapy. The photobleaching of this molecule was also investigated, and our results show that, under experimental conditions, there is a significant decrease in HB emission intensity after about 30 min of exposure to white light. Moreover, lanthanide ions are able to modify hypocrellin B energy levels, as well as its radioactive decay probabilities. Infrared emission revealed the capacity of these complexes for generating singlet oxygen. Hypocrellin B complex with lanthanum in ethanol showed the best results among the studied complexes regarding optical characteristics of ideal photosensitizers, since it induced the larger redshift of about 30 nm, as well as enhanced HB singlet oxygen generation quantum yield of about 32%. |
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AbstractList | The search for new photosensitizers with strong absorption bands, fast elimination from the body and high singlet oxygen generation quantum yield has been the subject of intensive research over the past two decades. Perylenequinonoid pigments, such as hypocrellins and hypericin, stand out among other photosensitizers due to their remarkable properties, which fulfil these requirements. Besides, it was shown that hypocrellin B complexes with metal ions possess even more notable optical and photodynamic properties. In this work, a study of the photosensitizer hypocrellin B and its complexes formed with the lanthanide ions europium, lanthanum and terbium, in ethanol and dimethyl sulfoxide solutions, was carried out by spectroscopic methods, with the purpose of verifying its potentiality for use in photodynamic therapy. The photobleaching of this molecule was also investigated, and our results show that, under experimental conditions, there is a significant decrease in HB emission intensity after about 30 min of exposure to white light. Moreover, lanthanide ions are able to modify hypocrellin B energy levels, as well as its radioactive decay probabilities. Infrared emission revealed the capacity of these complexes for generating singlet oxygen. Hypocrellin B complex with lanthanum in ethanol showed the best results among the studied complexes regarding optical characteristics of ideal photosensitizers, since it induced the larger redshift of about 30 nm, as well as enhanced HB singlet oxygen generation quantum yield of about 32%. |
Author | Vieira Jr, N D Gomes, L Courrol, L C Toffoli, D J |
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Cites_doi | 10.1016/B978-0-12-044080-1.50006-7 10.1093/jnci/90.12.889 10.1016/S1011-1344(96)07428-3 10.1016/S1572-1000(05)00097-9 10.1590/S0100-40422000000200015 10.1590/S0100-879X2000000800002 10.1039/b102011k 10.1111/j.1751-1097.1987.tb04741.x 10.1021/cr010371d 10.1016/S0040-4020(01)00952-8 10.1590/S0100-40422006000100021 10.1016/1010-6030(92)85002-C 10.1016/S1572-1000(04)00007-9 10.1111/j.1751-1097.1992.tb08527.x 10.1016/S1011-1344(96)07404-0 10.1590/S0100-40422002000500016 10.1021/jp0522563 10.1039/b302125d |
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Keywords | Chemical solution White light Photodynamic therapy Metal ion Lanthanum Complexes Quantum yield Laser applications in medicine Energy level Lanthanide ion hypocrellin B singlet oxygen Optical properties Europium Complexes Lanthanide Complexes Photosensitizer Photobleaching |
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SubjectTerms | Biological and medical applications Biological and medical sciences Exact sciences and technology Fundamental areas of phenomenology (including applications) Medical sciences Optics Physics Radiotherapy. Instrumental treatment. Physiotherapy. Reeducation. Rehabilitation, orthophony, crenotherapy. Diet therapy and various other treatments (general aspects) Technology. Biomaterials. Equipments. Material. Instrumentation |
Title | Photodynamic potentiality of hypocrellin B and its lanthanide complexes |
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