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Aging clinical trials

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NCT ID: NCT05249764 Completed - Aging Clinical Trials

Home-Based Exercise Training in Older Adults During the COVID-19 Pandemic

Start date: January 5, 2022
Phase: N/A
Study type: Interventional

The physical fitness and functionality of older adults are affected during the COVID-19 Pandemic. Regular exercise programs are effective in physical fitness and functioning in older adults. Individualized and supervised exercise programs for older adults in a safe environment can improve physical fitness and functionality. This study aims to examine the effect of home-based and exercise training on physical fitness and functionality in sedentary older adults during the COVID-19 pandemic.

NCT ID: NCT05247242 Active, not recruiting - Aging Clinical Trials

Physical Activity and Social Engagement for Persons With Disabilities in an Underserved Community

Start date: July 19, 2022
Phase: N/A
Study type: Interventional

Using a community-based participatory approach, this project aims to evaluate the feasibility, acceptability, and preliminary efficacy of two technology-driven group activity programs on socioemotional health and physical activity in a local underserved community, Tarrant, Alabama. Participants will complete two six-week programs, specifically Lakeshore Online Fitness (Online) and Get Active with Virtual Reality (VR).

NCT ID: NCT05246813 Recruiting - Aging Clinical Trials

Metabolic Profiling of Hematopoietic Stem Cells in Clonal Hematopoiesis (CHIP)

Start date: February 11, 2022
Phase:
Study type: Observational

Bone marrow samples will be collected from patients undergoing hip arthroplasty surgery. Blood and bone marrow samples will be used for metabolic profiling and analysis of relevant CHIP mutations. Combined single-cell transcriptomics and mutation-specific single-cell genotyping (biotin-PCR using mutation-targeted primers followed by sequencing) will subsequently be performed. The gene expression profile of wildtype and mutant hematopoietic stem cells will be compared, performing both broad gene set enrichment analysis and targeted analysis of metabolic pathways.

NCT ID: NCT05243108 Completed - Aging Clinical Trials

Targeting Aging and Promoting Longevity With Exogenous Nucleotides (TALENTs)

Start date: August 23, 2022
Phase: N/A
Study type: Interventional

To investigate the effects of dietary nucleotides (NTs) as an anti-aging supplement, a clinical trial is carried as a randomized, double-blind, parallel design, placebo-controlled. A total of 120 subjects will be enrolled in the study, and they shall be randomly distributed between the two arms, NTs-treated, and placebo-control. They would be given several measurements, including physical examination, questionnaire survey, clinical and aging-related biomarkers tests at 0 (baseline), 2, and 4 months during the RCT.

NCT ID: NCT05240885 Not yet recruiting - Aging Clinical Trials

Metabolic and Functional Consequences of Aging in Health and Disease

Start date: March 2022
Phase:
Study type: Observational

Considerable heterogeneity in the aging population has been observed. The exceptional longevity of individuals reaching 100 years old, so-called centenarians may be an example of life-long healthy aging, or added years may be spent in poor health with decreased physical and cognitive functioning. Current knowledge of the aging experience and the trajectories of physical and cognitive decline across various age groups are not well-understood, yet crucial to prevent spending added years in disease. Hence, the study objective is to develop the metabolic profile associated with aging-related disorders measured as the incidence of impaired functional capacity, cognitive function, and/or well-being.

NCT ID: NCT05237687 Recruiting - Aging Clinical Trials

The Role of Sirolimus in Preventing Functional Decline in Older Adults

Start date: July 2024
Phase: Phase 2
Study type: Interventional

Aging is associated with progressive impairment of tissue and organ function, resulting in increased susceptibility to chronic disease, frailty and disability. Currently there are limited treatment options to alter this inevitable process. The proposed work has the potential to identify a new therapeutic intervention to decrease aging-related degenerative processes. Rapamycin or sirolimus is a macrocyclic immunosuppressive drug that inhibits the mammalian target of rapamycin (mTOR). The mammalian target of rapamycin (mTOR) pathway is part of phosphoinositide 3-kinase (PI3K)/protein kinase B (AKT)/mammalian target of rapamycin (mTOR)-dependent pathway which is a fundamentally linked to cell metabolism, proliferation, differentiation, and survival. This pathway is altered in a variety of diseases, including cancers, immunosuppressed states, and fibroproliferative diseases. The mTOR kinase is considered one of the leading regulators of this pathway. Changes in mTOR signaling are closely associated with inflammation, cell growth and survival, leading to the development of chronic diseases. Recent evidence also suggests that mTOR inhibitors are promising modulators of the aging process by slowing the mechanisms of aging at the cellular level. There is a growing appreciation of the potential impact of sirolimus in slowing aging processes and in prolonging healthy lifespan. The proposed study addresses critical gaps in our understanding of the safety and efficacy of sirolimus in delaying aging processes and is based on findings in animal studies and incidental clinical observations. The investigators will overcome potential biases with a randomized control trial. The proposed intervention study is intended to improve our insight into clinical outcomes leading to prevention of chronic diseases such as skin cancer and mortality. Our overarching hypothesis is that sirolimus is one of the first pharmacological agents that will impact the aging process and chronic disease development. Specifically, the investigators aim to investigate whether sirolimus can reduce the occurrence or increase in biomarkers of aging processes.

NCT ID: NCT05234203 Completed - Aging Clinical Trials

The Impact of a Polyphenol-Rich Supplement on Epigenetic and Cellular Markers of Immune Age

Start date: March 25, 2022
Phase: N/A
Study type: Interventional

This is a prospective, interventional, single-arm, open-label pilot study of 50 patients to evaluate the effect of a polyphenol-rich nutritional supplement on epigenetic and cellular markers of immune age.

NCT ID: NCT05232968 Recruiting - Aging Clinical Trials

Ameliorating Effects of Aging by Physical Exercise

AMETHYST
Start date: January 10, 2022
Phase: N/A
Study type: Interventional

With increasing longevity, a significant increase in the incidence of neurodegenerative diseases is expected. According to forecasts based on data from the World Health Organization and data from epidemiological studies, up to 106 million people will have Alzheimer's disease in 2050, it's 1 in 85 people living on the planet. If it will be possible to manage to delay the onset or slow the progression of the disease by a single year, it will mean 9.2 million fewer patients worldwide. This leaves considerable scope for options to modify the onset and prevalence of the disease through lifestyle changes such as eating habits and exercise. It is known that the human brain retains a certain natural plasticity even in old age, which is a great advantage that allows it to adapt to physiological stimuli, such as regular exercise. The pleiotropic beneficial effects of exercise therefore have considerable potential to be used in the prevention and slowing of the progression of cognitive and motor function decline as well as in the prevention / treatment of metabolic dysregulation. This fact is supported by many epidemiological and interventional studies with exercise, emphasizing the importance of the global trend to use exercise as a standardized method of prevention and treatment of many chronic diseases and cognitive deficits.

NCT ID: NCT05220202 Recruiting - Depression Clinical Trials

MOTIVATE to Improve Outcomes for Older Veterans With Musculoskeletal Pain and Depression

MOTIVATE_IIR
Start date: September 20, 2023
Phase: N/A
Study type: Interventional

The proposed study seeks to evaluate effectiveness, implementation processes, and cost of MOTIVATE among older Veterans with chronic musculoskeletal (MSK) pain and comorbid depressive symptoms.

NCT ID: NCT05218213 Recruiting - Parkinson Disease Clinical Trials

Walking and Thinking - Brain Activity During Complex Walking in Aging and Parkinson's Disease

ParkMOVE
Start date: January 21, 2022
Phase:
Study type: Observational

Every-day life means being part of a complex environment and performing complex tasks that usually involve a combination of motor and cognitive skills. However, the process of aging or the sequelae of neurological diseases such as Parkinson's disease (PD) compromises motor-cognitive interaction necessary for an independent lifestyle. While motor-cognitive performance has been identified as an important goal for sustained health across different clinical populations, little is known about underlying brain function leading to these difficulties and how to best target these motor-cognitive difficulties in the context of rehabilitation and exercise interventions. The challenge of improving treatments of motor-cognitive difficulties (such as dual-tasking and navigation) is daunting, and an important step is arriving at a method that accurately portrays these impairments in an ecological valid state. The investigators aim therefore to explore brain function during complex walking in healthy and PD by investigating the effects of age and neurological disease on motor-cognitive performance and its neural correlates during three conditions of complex walking (dual-task walking, navigation and a combination of both) using non-invasive measures of brain activity (functional near infrared spectrometry, fNIRS) and advanced gait analysis in real time in young, older healthy adults and people with PD.