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Métodos Terapéuticos y Terapias MTCI
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1.
J Natl Cancer Inst ; 109(6)2017 06.
Artículo en Inglés | MEDLINE | ID: mdl-28040797

RESUMEN

Background: A nontoxic chemopreventive intervention efficacious against different subtypes of breast cancer is still a clinically unmet need. The present study was undertaken to determine the efficacy of an Ayurvedic medicine phytochemical (Withaferin A, [WA]) for chemoprevention of breast cancer and to elucidate its mode of action. Methods: Chemopreventive efficacy of WA (4 and 8 mg/kg body weight) was determined using a rat model of breast cancer induced by N-methyl-N-nitrosourea (MNU; n = 14 for control group, n = 15 for 4 mg/kg group, and n = 18 for 8 mg/kg group). The mechanisms underlying breast cancer chemoprevention by WA were elucidated by immunoblotting, biochemical assays, immunohistochemistry, and cytokine profiling using plasma and tumors from the MNU-rat (n = 8-12 for control group, n = 7-11 for 4 mg/kg group, and n = 8-12 for 8 mg/kg group) and/or mouse mammary tumor virus-neu (MMTV-neu) models (n = 4-11 for control group and n = 4-21 for 4 mg/kg group). Inhibitory effect of WA on exit from mitosis and leptin-induced oncogenic signaling was determined using MCF-7 and/or MDA-MB-231 cells. All statistical tests were two-sided. Results: Incidence, multiplicity, and burden of breast cancer in rats were decreased by WA administration. For example, the tumor weight in the 8 mg/kg group was lower by about 68% compared with controls (8 mg/kg vs control, mean = 2.76 vs 8.59, difference = -5.83, 95% confidence interval of difference = -9.89 to -1.76, P = .004). Mitotic arrest and apoptosis induction were some common determinants of breast cancer chemoprevention by WA in the MNU-rat and MMTV-neu models. Cytokine profiling showed suppression of plasma leptin levels by WA in rats. WA inhibited leptin-induced oncogenic signaling in cultured breast cancer cells. Conclusions: WA is a promising chemopreventative phytochemical with the ability to inhibit at least two different subtypes of breast cancer.


Asunto(s)
Neoplasias de la Mama/prevención & control , Neoplasias Mamarias Experimentales/prevención & control , Virus del Tumor Mamario del Ratón , Infecciones por Retroviridae/complicaciones , Infecciones Tumorales por Virus/complicaciones , Witanólidos/uso terapéutico , 8-Hidroxi-2'-Desoxicoguanosina , Acetilcoenzima A/sangre , Familia de Aldehído Deshidrogenasa 1 , Animales , Apoptosis/efectos de los fármacos , Biomarcadores de Tumor/análisis , Neoplasias de la Mama/inducido químicamente , Neoplasias de la Mama/química , Neoplasias de la Mama/patología , Ciclo Celular/efectos de los fármacos , Citocinas/sangre , Desoxiguanosina/análogos & derivados , Desoxiguanosina/análisis , Complejo III de Transporte de Electrones/metabolismo , Femenino , Factores de Transcripción Forkhead/análisis , Humanos , Antígeno Ki-67/análisis , Ácido Láctico/sangre , Leptina/sangre , Células MCF-7 , Malatos/sangre , Neoplasias Mamarias Experimentales/química , Neoplasias Mamarias Experimentales/patología , Neoplasias Mamarias Experimentales/virología , Metilnitrosourea , Ratones , Mitosis/efectos de los fármacos , Índice Mitótico , Ratas , Receptores de Estrógenos/análisis , Retinal-Deshidrogenasa/análisis , Transducción de Señal/efectos de los fármacos , Carga Tumoral , Witanólidos/análisis , Witanólidos/farmacología
2.
Semin Cancer Biol ; 47: 147-153, 2017 12.
Artículo en Inglés | MEDLINE | ID: mdl-27867044

RESUMEN

Cancer chemoprevention, a scientific term coined by Dr. Sporn in the late seventies, implies use of natural or synthetic chemicals to block, delay or reverse carcinogenesis. Phytochemicals derived from edible and medicinal plants have been studied rather extensively for cancer chemoprevention using preclinical models in the past few decades. Nevertheless, some of these agents (e.g., isothiocyanates from cruciferous vegetables like broccoli and watercress) have already entered into clinical investigations. Examples of widely studied and highly promising phytochemicals from edible and medicinal plants include cruciferous vegetable constituents (phenethyl isothiocyanate, benzyl isothiocyanate, and sulforaphane), withaferin A (WA) derived from a medicinal plant (Withania somnifera) used heavily in Asia, and an oriental medicine plant component honokiol (HNK). An interesting feature of these structurally-diverse phytochemicals is that they target mitochondria to provoke cancer cell-selective death program. Mechanisms underlying cell death induction by commonly studied phytochemicals have been discussed rather extensively and thus are not covered in this review article. Instead, the primary focus of this perspective is to discuss experimental evidence pointing to mitochondrial dysfunction in cancer chemoprevention by promising phytochemicals.


Asunto(s)
Quimioprevención , Suplementos Dietéticos , Mitocondrias/efectos de los fármacos , Mitocondrias/metabolismo , Neoplasias/metabolismo , Neoplasias/prevención & control , Fitoquímicos/administración & dosificación , Plantas Medicinales/química , Animales , Proteínas del Complejo de Cadena de Transporte de Electrón/antagonistas & inhibidores , Humanos , Mitocondrias/genética , Dinámicas Mitocondriales/efectos de los fármacos
3.
Int Urol Nephrol ; 46 Suppl 1: S35-44, 2014 Sep.
Artículo en Inglés | MEDLINE | ID: mdl-25238893

RESUMEN

Muscarinic agonists are the most commonly used agents for treating the underactive bladder (UAB). However, because of the absence of pharmacologic specificity for bladder-only effects and possibly as a result of degenerative and other post-synaptic changes involving detrusor smooth muscle cells, they are simply not effective and side effects are common. If safe and effective therapy for UAB is made available, then most experts agree that the potential market would exceed industry expectations, just as antimuscarinic agents for overactive bladder did in the late 1990 s. The pharmaceutical and biotechnology industries that have a pipeline to urology and women's health should consider UAB as a potential target condition. A rational approach to treating the pathology of UAB is presented with a discussion of potential targets that may allow the development of safe and effective agents for the treatment of UAB.


Asunto(s)
Agonistas Muscarínicos/uso terapéutico , Músculo Liso/fisiopatología , Enfermedades de la Vejiga Urinaria/tratamiento farmacológico , Enfermedades de la Vejiga Urinaria/terapia , Vejiga Urinaria/fisiopatología , Animales , Inhibidores de la Colinesterasa/efectos adversos , Inhibidores de la Colinesterasa/uso terapéutico , Dinoprostona/uso terapéutico , Terapia por Estimulación Eléctrica , Humanos , Síntomas del Sistema Urinario Inferior/etiología , Agonistas Muscarínicos/efectos adversos , Contracción Muscular , Enfermedades de la Vejiga Urinaria/complicaciones
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