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nicotinamide/fatigue

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The Safety and Efficacy Study of RiaGev in Healthy Adults

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Nicotinamide adenine dinucleotide (NAD+) is one of the essential cofactors required for the proper function of living cells, and depletion in NAD has been correlated to aging individuals as NAD is associated with oxidative stress and energy production. Per the Population Reference Bureau (PRB), it
Background: Risk of cardiovascular diseases (CVD) is significantly elevated in patients with chronic kidney disease (CKD). Arterial dysfunction is an important nontraditional CV risk factor gaining increased recognition in the field of nephrology. While many changes likely contribute to the

Nicotinamide Riboside on Mitochondrial Function in Li-Fraumeni Syndrome

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We have previously reported that inherited mutations of TP53, which causes the premature cancer disorder Li-Fraumeni syndrome (LFS), can promote mitochondrial function both in patients and mouse models. In the course of our follow up studies, we encountered a LFS patient with a long-standing history

Trial of Nicotinamide Riboside and Co-enzyme Q10 in Chronic Kidney Disease

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Sarcopenia (decreased muscle mass or function) is common in patients with chronic kidney disease (CKD) patients with direct impacts on their metabolic and clinical outcomes. Existing evidence and the investigator's preliminary data suggest that mitochondrial dysfunction is a key underlying mechanism

The Effect of Nicotinamide Riboside on Skeletal Muscle Function in Heart Failure Subjects

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As life expectancy increases and acute cardiac mortality decreases, the incidence of chronic heart failure (HF) continues to rise, and despite this, conceptual advances in the treatment of chronic heart failure have not increased substantially over last few decades. One intracellular component of

Nicotinamide Riboside and Mitochondrial Biogenesis

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Mitochondria are the primary source of energy within the cell, in the form of adenosine triphosphate (ATP). Mitochondrial ATP production is tightly regulated according to the energy requirements of the cell, but little is known about the underlying control mechanisms. This is important for the

Siltuximab in Schizophrenia

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A pathophysiological role for inflammation in schizophrenia has been one of the more enduring findings in the field. Recently, increased understanding of complex interactions between inflammation and the brain in other chronic diseases has better informed this relationship in schizophrenia. Several
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