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1.
Semin Neurol ; 42(5): 549-557, 2022 10.
Artigo em Inglês | MEDLINE | ID: mdl-36216359

RESUMO

Fasting has been widely studied in both prevention and treatment of many neurologic disorders. Some conditions may be prevented with any type of fasting, while some may require a stricter regimen. Fasting reduces weight, fasting blood glucose, and insulin resistance, and favorably alters the gut biome and the immune system. This article discusses various versions of fasting that have been studied as well as the known and theoretical mechanisms of how fasting effects the body and the brain. This article will then review evidence supporting the potential preventive and treatment effects of fasting in specific neurologic disorders including ameliorating the symptoms of Parkinson's disease, improving cognition in Alzheimer's disease, reducing migraine frequency and intensity, and reducing seizure frequency in epilepsy.


Assuntos
Doença de Alzheimer , Resistência à Insulina , Doenças do Sistema Nervoso , Doença de Parkinson , Humanos , Jejum , Doenças do Sistema Nervoso/etiologia , Doenças do Sistema Nervoso/prevenção & controle
2.
Neurohospitalist ; 14(3): 339-346, 2024 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-38895016

RESUMO

Lambl's excrescences (LEs) are thin, filiform and hypermobile strands that develop at the valvular coaptation sites of the heart. Since first described in 1856 by Vilém Dusan Lambl, there has been an increasing number of reports of central and peripheral emboli arising from cardiac LEs. LEs have been linked to ischemic strokes irrespective of age and comorbidities. We report one of the youngest reported cases in literature of an embolic stroke in a 25-year-old woman caused by a LE. A comprehensive workup was performed that revealed a large aortic valve LE. The patient was discharged on dual anti-platelet therapy with outpatient cardiology follow-up for surveillance echocardiograms. We then surveyed the literature and reviewed case reports and observational studies of LEs linked to systemic emboli. We found that most LEs are present on left-sided high-pressure valves especially the ventricular aspect of the aortic valves and that most reported cases of cerebral embolism had aortic valve LEs. The management of cardioembolic stroke secondary to LEs remains unclear. LEs have not been identified as a definite etiology of cardioembolic strokes warranting the need for large-scale studies to help guide the management of cardiac LEs in the setting of ischemic stroke.

3.
Medicines (Basel) ; 6(1)2019 Jan 31.
Artigo em Inglês | MEDLINE | ID: mdl-30709026

RESUMO

Background: Plant-derived phytochemicals have been of emerging interest as anti-obesity compounds due to their apparent effects on promoting reduced lipid accumulation in adipocytes. Despite such promising evidence, little is known about the potential mechanisms behind their anti-obesity effects. The aim of this study is to establish potential anti-obesity effects of the phytochemical guggulsterone (GS). Methods: Mature 3T3-L1 adipocytes were treated with GS, derived from the guggul plant native in northern India, to investigate its effects on mitochondrial biogenesis and adipocyte "beiging." Further, to explore the relationship between macrophages and adipocytes, 3T3-L1s were treated with conditioned media from GS-treated RAW264.7 macrophages. Markers of mitochondrial biogenesis and beiging were measured by western blot. Results: GS treatment in adipocytes resulted in increased mitochondrial density, biogenesis (PGC1α and PPARγ), and increased markers of a beige adipocyte phenotype (UCP1, TBX1, and ß-3AR). This upregulation in mitochondrial expression was accompanied by increases oxygen consumption. In GS-treated macrophages, markers of M2 polarization were elevated (e.g., arginase and IL-10), along with increased catecholamine release into the media. Lastly, 3T3-L1 adipocytes treated with conditioned media from macrophages induced a 167.8% increase in UCP1 expression, suggestive of a role of macrophages in eliciting an anti-adipogenic response to GS. Conclusions: Results from this study provide the first mechanistic understanding of the anti-obesity effects of GS and suggests a role for both direct GS-signaling and indirect stimulation of M2 macrophage polarization in this model.

4.
J Investig Med High Impact Case Rep ; 5(2): 2324709617712736, 2017.
Artigo em Inglês | MEDLINE | ID: mdl-28634592

RESUMO

Sodium-glucose cotransporter-2 (SGLT2) inhibitors improve glycemic control by a reversible inhibition of the sodium-glucose cotransporters in the renal proximal tubules resulting in increased urinary glucose. This unique mechanism, independent of insulin secretion and beta cell function, has made this class of medication desirable in patients with type 2 diabetes. However in May 2015, the US Food and Drug Administration issued a safety warning pertaining to the development of diabetic ketoacidosis (DKA) with the use of SGLT2 inhibitors. DKA associated with SGLT2 inhibitors frequently develops in the absence of hyperglycemia, which makes the diagnosis more challenging. Due to the reversible inhibition of SGLT2 by this class of medication, a quick recovery of glucosuria after cessation of medication is expected. In this article, we present a case of a 50-year-old woman with type 2 diabetes who developed euglycemic DKA after initiating therapy with canagliflozin. This case of DKA associated with SGLT2 inhibitor use was unique due to her hypoglycemic presentation and persistent glucosuria. SGLT2 inhibitors such as canagliflozin may predispose patients not only to diabetic ketoacidosis but also to prolonged glucosuria.

5.
Nutr Metab (Lond) ; 13: 89, 2016.
Artigo em Inglês | MEDLINE | ID: mdl-27980598

RESUMO

Obesity and its associated metabolic syndrome continue to be a health epidemic in westernized societies and is catching up in the developing world. Despite such increases, little headway has been made to reverse adverse weight gain in the global population. Few medical options exist for the treatment of obesity which points to the necessity for exploration of anti-obesity therapies including pharmaceutical and nutraceutical compounds. Defects in brown adipose tissue, a major energy dissipating organ, has been identified in the obese and is hypothesized to contribute to the overall metabolic deficit observed in obesity. Not surprisingly, considerable attention has been placed on the discovery of methods to activate brown adipose tissue. A variety of plant-derived, natural compounds have shown promise to regulate brown adipose tissue activity and enhance the lipolytic and catabolic potential of white adipose tissue. Through activation of the sympathetic nervous system, thyroid hormone signaling, and transcriptional regulation of metabolism, natural compounds such as capsaicin and resveratrol may provide a relatively safe and effective option to upregulate energy expenditure. Through utilizing the energy dissipating potential of such nutraceutical compounds, the possibility exists to provide a therapeutic solution to correct the energy imbalance that underlines obesity.

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