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1.
J Neurosci ; 43(13): 2338-2348, 2023 03 29.
Artículo en Inglés | MEDLINE | ID: mdl-36849414

RESUMEN

Photoaffinity ligands are best known as tools used to identify the specific binding sites of drugs to their molecular targets. However, photoaffinity ligands have the potential to further define critical neuroanatomic targets of drug action. In the brains of WT male mice, we demonstrate the feasibility of using photoaffinity ligands in vivo to prolong anesthesia via targeted yet spatially restricted photoadduction of azi-m-propofol (aziPm), a photoreactive analog of the general anesthetic propofol. Systemic administration of aziPm with bilateral near-ultraviolet photoadduction in the rostral pons, at the border of the parabrachial nucleus and locus coeruleus, produced a 20-fold increase in the duration of sedative and hypnotic effects compared with control mice without UV illumination. Photoadduction that missed the parabrachial-coerulean complex also failed to extend the sedative or hypnotic actions of aziPm and was indistinguishable from nonadducted controls. Paralleling the prolonged behavioral and EEG consequences of on target in vivo photoadduction, we conducted electrophysiologic recordings in rostral pontine brain slices. Using neurons within the locus coeruleus to further highlight the cellular consequences of irreversible aziPm binding, we demonstrate transient slowing of spontaneous action potentials with a brief bath application of aziPm that becomes irreversible on photoadduction. Together, these findings suggest that photochemistry-based strategies are a viable new approach for probing CNS physiology and pathophysiology.SIGNIFICANCE STATEMENT Photoaffinity ligands are drugs capable of light-induced irreversible binding, which have unexploited potential to identify the neuroanatomic sites of drug action. We systemically administer a centrally acting anesthetic photoaffinity ligand in mice, conduct localized photoillumination within the brain to covalently adduct the drug at its in vivo sites of action, and successfully enrich irreversible drug binding within a restricted 250 µm radius. When photoadduction encompassed the pontine parabrachial-coerulean complex, anesthetic sedation and hypnosis was prolonged 20-fold, thus illustrating the power of in vivo photochemistry to help unravel neuronal mechanisms of drug action.


Asunto(s)
Anestésicos Intravenosos , Encéfalo , Hipnosis , Hipnóticos y Sedantes , Ligandos , Etiquetas de Fotoafinidad , Propofol , Animales , Masculino , Ratones , Neuronas Adrenérgicas/efectos de los fármacos , Anestesia Intravenosa , Encéfalo/citología , Encéfalo/efectos de los fármacos , Encéfalo/metabolismo , Encéfalo/efectos de la radiación , Electrocorticografía , Electroencefalografía , Hipnosis/métodos , Hipnóticos y Sedantes/administración & dosificación , Hipnóticos y Sedantes/química , Hipnóticos y Sedantes/farmacología , Hipnóticos y Sedantes/efectos de la radiación , Locus Coeruleus/citología , Locus Coeruleus/efectos de los fármacos , Locus Coeruleus/metabolismo , Locus Coeruleus/efectos de la radiación , Ratones Endogámicos C57BL , Núcleos Parabraquiales/efectos de los fármacos , Núcleos Parabraquiales/metabolismo , Núcleos Parabraquiales/efectos de la radiación , Etiquetas de Fotoafinidad/química , Etiquetas de Fotoafinidad/efectos de la radiación , Propofol/administración & dosificación , Propofol/análogos & derivados , Propofol/farmacología , Propofol/efectos de la radiación , Factores de Tiempo , Rayos Ultravioleta , Anestésicos Intravenosos/administración & dosificación , Anestésicos Intravenosos/química , Anestésicos Intravenosos/farmacología , Anestésicos Intravenosos/efectos de la radiación
2.
Int J Pharm Compd ; 17(4): 344-6, 2013.
Artículo en Inglés | MEDLINE | ID: mdl-24261150

RESUMEN

Midazolam is a short-acting benzodiazepine central nervous system depressant available as an injection, tablet, or oral syrup. The need for alternative dosage form options for patients unable to take tablets and shortages of other forms of the drug have led compounding pharmacies to seek alternatives, mainly solutions and suspensions. Additionally, some patients are unable to use suspending agents containing alcohol or sorbitol. The objective of this study was to determine the stability of midazolam in sorbitol-free, alcohol-free SyrSpend SF and SyrSpend SF Cherry suspending agents. The studied samples were compounded into a 1-mg/mL suspension and stored in low-actinic plastic bottles at temperatures between 2 degrees C to 8 degrees C and at room temperature conditions. Six samples were assayed at each time point out to 58 days by a stability-indicating high-performance liquid chromatography method. The method was validated for its specificity through forced-degradation studies. The samples remained within 90% to 110% of the initial concentration throughout the course of the study. Based on the data collected, the beyond-use date of these preparations is at least 58 days when protected from light at both refrigerated and room temperature storage conditions.


Asunto(s)
Aromatizantes/química , Hipnóticos y Sedantes/química , Midazolam/química , Prunus , Gusto , Administración Oral , Química Farmacéutica , Cromatografía Líquida de Alta Presión , Frío , Composición de Medicamentos , Embalaje de Medicamentos , Estabilidad de Medicamentos , Almacenaje de Medicamentos , Aromatizantes/administración & dosificación , Aromatizantes/efectos de la radiación , Frutas , Humanos , Hipnóticos y Sedantes/administración & dosificación , Hipnóticos y Sedantes/efectos de la radiación , Luz , Midazolam/administración & dosificación , Midazolam/efectos de la radiación , Fotólisis , Reproducibilidad de los Resultados , Suspensiones , Factores de Tiempo
3.
Farm Hosp ; 37(1): 4-9, 2013.
Artículo en Inglés | MEDLINE | ID: mdl-23461494

RESUMEN

PURPOSE: To evaluate the stability of an extemporaneously prepared 7% chloral hydrate syrup under different conditions of storage and dispensing. METHODS: Three batches of 7% chloral hydrate syrup were prepared. Each batch was stored in 50 light-resistant glass containers of 60 mL with child-resistant caps and in two bottles of 1000 mL to simulate two forms of dispensing, mono and multi-dose, respectively. Twenty five mono-dose bottles and a multi-dose bottle of each batch were stored under room conditions (20 ± 1 °C) and the rest of the samples were stored in the fridge (5 ± 2 °C). The physical, chemical and microbiological stability was evaluated for 180 days. Stability was defined as retention of at least 95% of the initial concentration of chloral hydrate, the absence of both visible particulate matter, or color and/or odor changes and the compliance with microbiological attributes of non-sterile pharmaceutical products. RESULTS: At least 98% of the initial chloral hydrate concentration remained throughout the 180-day study period. There were no detectable changes in color, odor, specific gravity and pH and no visible microbial growth. These results were not affected by storage, room or refrigeration conditions or by the frequent opening or closing of the multi-dose containers. CONCLUSIONS: Extemporaneously compounded 7% chloral hydrate syrup was stable for at least 180 days when stored in mono or multi-dose light-resistant glass containers at room temperature and under refrigeration.


Asunto(s)
Hidrato de Cloral/química , Hipnóticos y Sedantes/química , Hidrato de Cloral/administración & dosificación , Hidrato de Cloral/efectos de la radiación , Frío , Contaminación de Medicamentos , Embalaje de Medicamentos , Estabilidad de Medicamentos , Hipnóticos y Sedantes/administración & dosificación , Hipnóticos y Sedantes/efectos de la radiación , Luz , Refrigeración , Soluciones , Temperatura , Factores de Tiempo
4.
Environ Sci Technol ; 46(9): 4749-56, 2012 May 01.
Artículo en Inglés | MEDLINE | ID: mdl-22489744

RESUMEN

Phototransformation of the widely used benzodiazepine pharmaceuticals diazepam and human metabolites nordiazepam, temazepam and oxazepam under simulated sunlight in water was investigated. Photolysis experiments were conducted in the presence and absence of humic acids. Half-lives for each of the benzodiazepine pharmaceuticals were <200 h (under all conditions) suggesting that phototransformation is an important process for such chemicals in the photic zone of receiving waters. Due to the observed phototransformation of the benzodiazepines, significant emphasis was placed on identification of the photoproducts. A total of fourteen photoproducts, including benzophenones, acridinones and quinazolinones or quinazolines was identified and measured by liquid chromatography-multistage mass spectrometry (LC-MS(n)). Phototransformation studies were also undertaken on authentic samples of two of the identified photoproducts, 5-chloro-methylaminobenzophenone and 2-amino-5-chlorobenzophenone, in order to establish the phototransformation pathways. Interestingly, these two photoproducts showed relatively higher persistence than some of the benzodiazepines, suggesting that the fate and effects of photoproducts should also be incorporated into future risk assessments and environmental models of the fate of benzodiazepines.


Asunto(s)
Diazepam/efectos de la radiación , Hipnóticos y Sedantes/efectos de la radiación , Fotólisis , Contaminantes Químicos del Agua/efectos de la radiación , Diazepam/análogos & derivados , Diazepam/química , Diazepam/metabolismo , Humanos , Sustancias Húmicas , Hipnóticos y Sedantes/química , Hipnóticos y Sedantes/metabolismo , Cinética , Luz Solar , Contaminantes Químicos del Agua/química , Contaminantes Químicos del Agua/metabolismo
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