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1.
Dermatol Online J ; 26(3)2020 Mar 15.
Artigo em Inglês | MEDLINE | ID: mdl-32609442

RESUMO

Gel nails are a common artificial nail option. Ultraviolet (UV) nail lamps are commonly used to cure gel nails. Ultraviolet A radiation is a known mutagen that penetrates into the nail bed. Although previously reported, the role of UV nail lamps in the carcinogenesis of both keratinocyte carcinoma and melanoma remains controversial. Herein, we report a patient taking the photosensitizing agent hydrochlorothiazide who developed numerous squamous cell carcinomas on the dorsal hands and feet with a 10-year history of UV nail light exposure every 2-3 weeks.


Assuntos
Carcinoma de Células Escamosas/etiologia , Neoplasias Induzidas por Radiação/etiologia , Neoplasias Cutâneas/etiologia , Raios Ultravioleta/efeitos adversos , Idoso , Indústria da Beleza , Feminino , Pé/efeitos da radiação , Mãos/efeitos da radiação , Humanos , Hidroclorotiazida/efeitos adversos , Hidroclorotiazida/uso terapêutico , Doença de Meniere/tratamento farmacológico , Unhas , Fármacos Fotossensibilizantes/efeitos adversos , Fármacos Fotossensibilizantes/uso terapêutico , Fatores de Risco
2.
Anal Chim Acta ; 1098: 125-132, 2020 Feb 15.
Artigo em Inglês | MEDLINE | ID: mdl-31948575

RESUMO

Cyanide (both HCN and CN- are represented by CN) has multiple industrial applications, is commonly found in some foods, and is a component of fire smoke. Upon exposure, CN blocks production of adenosine triphosphate, causing cellular hypoxia and cytotoxic anoxia, which can eventually result in death. Considering CN's quick onset of action and the long analysis times associated with current techniques, the objective of this study was to develop and validate a rapid and field-portable sensor to detect blood CN concentrations focusing on both concentration and diagnostic accuracy. The sensor takes advantage of the chemical properties of CN by converting it exclusively to HCN via acidification of whole blood. High-speed headspace transfer is used to deliver HCN to a capture solution where it is reacted with naphthalene dialdehyde and taurine to produce a fluorescent ß-isoindole product. Simple spectrofluorometric analysis of the product provides quantitative analysis of CN from whole blood in 60 s and requires only 25 µL of blood (obtainable via fingerstick). A limit of detection of 5 µM, a linear range of 10-200 µM (with ≥15 µM considered CN exposed), and excellent accuracy (100 ± 15%) and precision (≤15.2% relative standard deviation) were obtained. To evaluate the diagnostic accuracy of the sensor, rabbit blood samples (N = 190, including 24 blinded samples) were analyzed by both the sensor and a lab-based spectrophotometric method. An excellent positive correlation was obtained between the sensor and the lab-based method (R2 ˃ 0.995) confirming the concentration accuracy of the CN sensor. Moreover, the sensor produced no false positives or negatives when diagnosing CN poisoning.


Assuntos
Automação , Cianetos/sangue , Animais , Cianetos/intoxicação , Cromatografia Gasosa-Espectrometria de Massas , Coelhos , Espectrofotometria Ultravioleta
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