http://www.cnr.it/ontology/cnr/individuo/prodotto/ID310457
Prevention of corneal keratocyte apoptosis after argon fluoride excimer laser irradiation with the free radical scavenger ubiquinone Q10 (Articolo in rivista)
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- Prevention of corneal keratocyte apoptosis after argon fluoride excimer laser irradiation with the free radical scavenger ubiquinone Q10 (Articolo in rivista) (literal)
- Anno
- 2000-01-01T00:00:00+01:00 (literal)
- Alternative label
Brancato, R; Schiavone, N; Siano, S; Lapucci, A; Papucci, L; Donnini, M; Formigli, L; Orlandini, SZ; Carella, G; Carones, F; Capaccioli, S (2000)
Prevention of corneal keratocyte apoptosis after argon fluoride excimer laser irradiation with the free radical scavenger ubiquinone Q10
in European Journal of Ophthalmology (Testo stamp.)
(literal)
- Http://www.cnr.it/ontology/cnr/pubblicazioni.owl#autori
- Brancato, R; Schiavone, N; Siano, S; Lapucci, A; Papucci, L; Donnini, M; Formigli, L; Orlandini, SZ; Carella, G; Carones, F; Capaccioli, S (literal)
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- http://medlib.yu.ac.kr/eur_j_oph/ejo_pdf/757.pdf (literal)
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- ISI Web of Science (WOS) (literal)
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- University of Milan; University of Florence; Consiglio Nazionale delle Ricerche (CNR); University of Florence; Univ Hosp San Raffaele (literal)
- Titolo
- Prevention of corneal keratocyte apoptosis after argon fluoride excimer laser irradiation with the free radical scavenger ubiquinone Q10 (literal)
- Abstract
- PURPOSE. To assess in vitro the potential of the free radical scavenger ubiquinone Q10 in preventing
keratocyte apoptosis after argon fluoride (ArF) excimer laser irradiation. METHODS. Cultured rabbit keratocytes were
irradiated at very low single-pulse laser fluences. The cumulative effects generated by three total fluence doses between 12 and
45 mJ/cm2, representative of single-pulse subablative doses during photorefractive keratectomy (PRK) in humans, were
evaluated. We employed the following parameters to compare pretreated (10 M ubiquinone Q10) and untreated samples: 1)
number and morphology of living cells
by Trypan blue test and ultramicroscopy, respectively; 2) level of free-radical formation assessed by malonaldehyde
quantitation; 3) cellular energy level evaluated by ATP assay. RESULTS. Excimer laser irradiation kills cultured keratocytes by
inducing apoptosis. The effect increases with the cumulative fluence dose. In the samples pretreated with ubiquinone Q10 there
were significantly fewer cumulative apoptotic events than in the untreated ones. Quantitative analysis of malonaldehyde cellular
levels suggested this protective action of ubiquinone Q10 was connected with its ability to scavenge laser-generated free
radicals. ATP assay also confirmed that it raised cellular energy levels. CONCLUSIONS. The treatment of corneal keratocytes
with relatively low concentrations of ubiquinone Q10 can prevent apoptosis after ArF excimer laser irradiation. If these findings
are confirmed on human keratocytes this treatment could be usefully exploited in the PRK surgical procedure. That might lead
to a reduction in the occurrence of haze and curvature regression triggered by programmed cell death. (literal)
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