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1.
Clin Pharmacol Ther ; 112(3): 605-614, 2022 09.
Artículo en Inglés | MEDLINE | ID: mdl-35355249

RESUMEN

PF-06835919 is a first-in-class ketohexokinase inhibitor (KHKi), recently under development for the treatment of metabolic and fatty liver diseases, which inhibited organic anion transporting polypeptide (OATP)1B1 in vitro and presented drug-drug interaction (DDI) risk. This study aims to investigate the dose-dependent effect of KHKi on OATP1B in vivo activity. We performed an open-label study comparing pharmacokinetics of atorvastatin (OATP1B probe) dosed alone (20 mg single dose) and coadministered with two dose strengths of KHKi (50 and 280 mg once daily) in 12 healthy participants. Additionally, changes in exposure of coproporphyrin-I (CP-I), an endogenous biomarker for OATP1B, were assessed in the atorvastatin study (1.12-fold and 1.49-fold increase in area under the plasma concentration-time profile (AUC) with once-daily 50 and 280 mg, respectively), and a separate single oral dose study of KHKi alone (100-600 mg, n = 6 healthy participants; up to a 1.80-fold increase in AUC). Geometric mean ratios (90% confidence interval) of atorvastatin AUC following 50 and 280 mg KHKi were 1.14 (1.00-1.30) and 1.54 (1.37-1.74), respectively. Physiologically-based pharmacokinetic modeling of CP-I plasma exposure following a single dose of KHKi predicted in vivo OATP1B inhibition from about 13% to 70% over the 100 to 600 mg dose range, while using the in vitro inhibition potency (1.9 µM). Model-based analysis correctly predicted "no-effect" (AUC ratio < 1.25) at the low dose range and "weak" effect (AUC ratio < 2) on atorvastatin pharmacokinetics at the high dose range of KHKi. This study exemplified the utility of biomarker-informed model-based approach in discerning even small effects on OATP1B activity in vivo, and to project DDI risk at the clinically relevant doses.


Asunto(s)
Fructoquinasas , Atorvastatina , Biomarcadores , Interacciones Farmacológicas , Fructoquinasas/metabolismo , Humanos , Transportador 1 de Anión Orgánico Específico del Hígado/metabolismo , Medición de Riesgo
2.
J Med Chem ; 63(12): 6489-6498, 2020 06 25.
Artículo en Inglés | MEDLINE | ID: mdl-32130005

RESUMEN

Drug precipitation in the nephrons of the kidney can cause drug-induced crystal nephropathy (DICN). To aid mitigation of this risk in early drug discovery, we developed a physiologically based in silico model to predict DICN in rats, dogs, and humans. At a minimum, the likelihood of DICN is determined by the level of systemic exposure to the molecule, the molecule's physicochemical properties and the unique physiology of the kidney. Accordingly, the proposed model accounts for these properties in order to predict drug exposure relative to solubility along the nephron. Key physiological parameters of the kidney were codified in a manner consistent with previous reports. Quantitative structure-activity relationship models and in vitro assays were used to estimate drug-specific physicochemical inputs to the model. The proposed model was calibrated against urinary excretion data for 42 drugs, and the utility for DICN prediction is demonstrated through application to 20 additional drugs.


Asunto(s)
Descubrimiento de Drogas , Evaluación Preclínica de Medicamentos , Drogas en Investigación/efectos adversos , Cálculos Renales/inducido químicamente , Preparaciones Farmacéuticas/metabolismo , Animales , Simulación por Computador , Perros , Humanos , Cálculos Renales/patología , Modelos Biológicos , Preparaciones Farmacéuticas/química , Relación Estructura-Actividad Cuantitativa , Ratas
3.
Drug Metab Dispos ; 43(2): 190-8, 2015 Feb.
Artículo en Inglés | MEDLINE | ID: mdl-25384899

RESUMEN

A previous report from our laboratory disclosed the identification of PF-04991532 [(S)-6-(3-cyclopentyl-2-(4-trifluoromethyl)-1H-imidazol-1-yl)propanamido)nicotinic acid] as a hepatoselective glucokinase activator for the treatment of type 2 diabetes mellitus. Lack of in vitro metabolic turnover in microsomes and hepatocytes from preclinical species and humans suggested that metabolism would be inconsequential as a clearance mechanism of PF-04991532 in vivo. Qualitative examination of human circulating metabolites using plasma samples from a 14-day multiple ascending dose clinical study, however, revealed a glucuronide (M1) and monohydroxylation products (M2a and M2b/M2c) whose abundances (based on UV integration) were greater than 10% of the total drug-related material. Based on this preliminary observation, mass balance/excretion studies were triggered in animals, which revealed that the majority of circulating radioactivity following the oral administration of [¹4C]PF-04991532 was attributed to an unchanged parent (>70% in rats and dogs). In contrast with the human circulatory metabolite profile, the monohydroxylated metabolites were not detected in circulation in either rats or dogs. Available mass spectral evidence suggested that M2a and M2b/M2c were diastereomers derived from cyclopentyl ring oxidation in PF-04991532. Because cyclopentyl ring hydroxylation on the C-2 and C-3 positions can generate eight possible diastereomers, it was possible that additional diastereomers may have also formed and would need to be resolved from the M2a and M2b/M2c peaks observed in the current chromatography conditions. In conclusion, the human metabolite scouting study in tandem with the animal mass balance study allowed early identification of PF-04991532 oxidative metabolites, which were not predicted by in vitro methods and may require additional scrutiny in the development phase of PF-04991532.


Asunto(s)
Activadores de Enzimas/farmacocinética , Glucoquinasa/metabolismo , Hipoglucemiantes/farmacocinética , Imidazoles/farmacocinética , Hígado/efectos de los fármacos , Ácidos Nicotínicos/farmacocinética , Anciano , Animales , Animales Endogámicos , Biotransformación , Radioisótopos de Carbono , Perros , Evaluación Preclínica de Medicamentos , Activadores de Enzimas/análisis , Activadores de Enzimas/sangre , Activadores de Enzimas/orina , Heces/química , Femenino , Glucoquinasa/química , Semivida , Humanos , Hipoglucemiantes/análisis , Hipoglucemiantes/sangre , Hipoglucemiantes/orina , Imidazoles/análisis , Imidazoles/sangre , Imidazoles/orina , Hígado/enzimología , Hígado/metabolismo , Masculino , Persona de Mediana Edad , Estructura Molecular , Ácidos Nicotínicos/análisis , Ácidos Nicotínicos/sangre , Ácidos Nicotínicos/orina , Especificidad de Órganos , Ratas Sprague-Dawley
4.
Toxicol Pathol ; 42(4): 696-708, 2014 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-24771080

RESUMEN

Glucokinase activators (GKAs) are being developed for the treatment of type 2 diabetes. The toxicity of 4 GKAs (PF-04279405, PF-04651887, piragliatin, and PF-04937319) was assessed in mice, rats, dogs, and/or monkeys. GKAs were administered for 2 to 8 weeks. Standard endpoints, glucose, and insulin were assessed. All compounds produced varying degrees of hypoglycemia in all species. Brain neuronal necrosis and/or peripheral neuropathy were observed with most compounds. These findings are consistent with literature reports linking hypoglycemia with nervous system effects. Arteriopathy, mainly of cardiac vessels, was observed at a low frequency in monkey and/or dog. Arteriopathy occurred only at doses that produced severe and prolonged periods of repeated hypoglycemia. Since this lesion occurred in multiple studies with structurally distinct GKAs, these results suggested arteriopathy was related to GKA pharmacology. The morphological characteristics of the arteriopathy were consistent with that produced by experimental catecholamine administration. We hypothesize that the prolonged periods of hypoglycemia resulted in increased local and/or systemic concentrations of catecholamines via a counterregulatory and/or stress-related mechanism. Alternatively, prolonged hypoglycemia may have resulted in endothelial dysfunction leading to arteriopathy. This risk can be managed in human patients in clinical studies by careful glucose monitoring and intervention to avoid prolonged episodes of hypoglycemia.


Asunto(s)
Azetidinas/efectos adversos , Bencenoacetamidas/efectos adversos , Benzofuranos/efectos adversos , Hipoglucemia/patología , Necrosis/patología , Enfermedades del Sistema Nervioso Periférico/patología , Pirimidinas/efectos adversos , Animales , Azetidinas/sangre , Bencenoacetamidas/sangre , Benzofuranos/sangre , Cromatografía Líquida de Alta Presión , Perros , Evaluación Preclínica de Medicamentos , Femenino , Hipoglucemia/inducido químicamente , Hipoglucemiantes/efectos adversos , Insulina/sangre , Macaca fascicularis , Masculino , Ratones , Ratones Endogámicos ICR , Necrosis/inducido químicamente , Neuronas/efectos de los fármacos , Neuronas/patología , Enfermedades del Sistema Nervioso Periférico/inducido químicamente , Pirimidinas/sangre , Ratas , Ratas Sprague-Dawley
5.
Bioorg Med Chem Lett ; 23(24): 6588-92, 2013 Dec 15.
Artículo en Inglés | MEDLINE | ID: mdl-24239482

RESUMEN

Glucokinase (hexokinase IV) continues to be a compelling target for the treatment of type 2 diabetes given the wealth of supporting human genetics data and numerous reports of robust clinical glucose lowering in patients treated with small molecule allosteric activators. Recent work has demonstrated the ability of hepatoselective activators to deliver glucose lowering efficacy with minimal risk of hypoglycemia. While orally administered agents require a considerable degree of passive permeability to promote suitable exposures, there is no such restriction on intravenously delivered drugs. Therefore, minimization of membrane diffusion in the context of an intravenously agent should ensure optimal hepatic targeting and therapeutic index. This work details the identification a hepatoselective GKA exhibiting the aforementioned properties.


Asunto(s)
Activadores de Enzimas/química , Glucoquinasa/química , Hipoglucemiantes/química , Regulación Alostérica , Animales , Células Cultivadas , Diabetes Mellitus Tipo 2/tratamiento farmacológico , Evaluación Preclínica de Medicamentos , Activadores de Enzimas/metabolismo , Activadores de Enzimas/uso terapéutico , Glucoquinasa/metabolismo , Hepatocitos/citología , Hepatocitos/enzimología , Humanos , Hipoglucemiantes/metabolismo , Hipoglucemiantes/uso terapéutico , Imidazoles/química , Inyecciones Intravenosas , Niacina/análogos & derivados , Niacina/química , Ratas , Distribución Tisular
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