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NCT ID: NCT05656235 Not yet recruiting - Bladder Cancer Clinical Trials

Renal Retention in High Grade Upper Tract Urothelial Cancer

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

This trial will evaluate the use of combination pembrolizumab and enfortumab vedotin for patients with high grade non-metastatic (cN0/NxMx, no measurable regional lymph nodes, no metastases) upper tract urothelial cancer (UTUC), preferring to forego standard of care radical nephroureterectomy (RNU) surgery. Currently these patients would not be suitable candidates for neoadjuvant trials, as the patients intention is to forego surgery. The patients are also not candidates for metastatic trials, as the patients have no measurable metastasis. The Investigators hypothesize the combination of pembrolizumab and enfortumab vedotin for patients with high grade cN0/NxMx UTUC deferring RNU will lead to event free survival outcomes similar to that achieved by RNU in a historic dataset.

NCT ID: NCT05655494 Not yet recruiting - Cancer Clinical Trials

A Multilevel Approach to Connecting Underrepresented Populations to Clinical Trials

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

The purpose of this study is to pilot test and evaluate an existing tailored ALEX Research Portal to navigate Black and Hispanic adult cancer patients and their family members through referral to cancer clinical trials.

NCT ID: NCT05655325 Not yet recruiting - Clinical trials for Mild Cognitive Impairment

Accelerated Age-related Cognitive Decline: Impact of Exercise on Executive Function and Neuroplasticity

EXEC
Start date: February 29, 2024
Phase: N/A
Study type: Interventional

The purpose of this study is to see if 6 months of home-based walking will improve memory, and brain structure and function, compared to health education in older adults that have chronic kidney disease and mild cognitive impairment.

NCT ID: NCT05654103 Not yet recruiting - Clinical trials for End Stage Renal Disease on Dialysis

Comparing Surgical and Endovascular Arteriovenous Fistula Creation

Start date: June 1, 2024
Phase: N/A
Study type: Interventional

Patients with end-stage kidney disease (ESKD) who use hemodialysis to filter their blood require vascular access for the dialysis machine; the most common type of vascular access is called an arteriovenous fistula (AVF). The AVF is a direct connect between an artery and vein. Until recently, AVFs were only created through surgery that requires general anesthesia and opening up the skin. Now there are 2 FDA-approved devices designed to create AVFs using endovascular techniques (endoAVF), which means a device that goes through the skin instead of opening the skin up. Also patients are not required to be under general anesthesia, they can receive local anesthesia instead. Due to the relatively new approval of these devices, there is not a randomized study to compare the results of endoAVF versus surgAVF. This study is a pilot study for an eventually larger scale study to compare the results of endoAVF versus surgAVF. The study aims to determine what the proportion of patients seeking hemodialysis access could qualify for receiving either an endoAVF , surgAVF, or both. Patients who are screened for hemodialysis access must undergo a duplex ultrasound of the blood vessels in the arm to confirm correct sizing. If participants qualify for both procedures they will be randomized to either endoAVF or surgAVF and will track the clinical and patient-reported outcomes of each procedure. Our pilot study hopes to enroll 90 participants. Those outcomes will inform a larger scale study. If the potential participant chooses to abstain from participation in the randomized trial, preferring to decide the method of AVF creation, we will offer to them a chance to join an endoAVF/surgAVF registry that will track the clinical outcomes of the procedure via medical record monitoring.

NCT ID: NCT05653583 Not yet recruiting - Atrial Fibrillation Clinical Trials

Peripheral Nerve Stimulation Therapy for Atrial Fibrillation

Start date: March 2023
Phase: N/A
Study type: Interventional

This is a three-arm, single-blinded, randomized, sham-controlled, nonsignificant risk study to assess the feasibility of reducing Atrial Fibrillation burden with peripheral nerve stimulation. The three arms include treatment with a wrist-worn neuromodulation ("wrist device"), treatment with an ear-worn neuromodulation device ("ear device") and sham stimulation with wrist-worn device that does not actually deliver stimulation ("sham device"). ECG patches will be worn on the chest to measure AF episode onset and duration ("ECG Patch"). Additionally, a wrist-worn monitoring device will be used for the measurement of heart rate (HR), heart rate variability (HRV), and other biomarkers ("Cardiac Measurement Device (CMD)"). Finally, subjects will track AF episode onset, duration, and symptom type in an AF diary.

NCT ID: NCT05652478 Not yet recruiting - Healthy Volunteer Clinical Trials

Early Metabolic Effects of Dolutegravir or Tenofovir Alefenamide in Healthy Volunteers

Start date: June 26, 2024
Phase: Phase 2
Study type: Interventional

Background: People with HIV take drugs to keep the amount of virus in their body low. One type of these drugs, called integrase strand transfer inhibitors (INSTIs), can cause weight gain over time. Weight gain can cause diabetes, heart disease, and other serious issues. Researchers want to understand how INSTIs cause weight changes. Objective: To see how a common INSTI, dolutegravir (DTG), affects how the body uses energy. DTG will be compared with a non-INSTI drug, tenofovir alafenamide (TAF). Eligibility: Healthy people aged 18 to 55. Design: Participants will be screened. They will have a physical exam and blood tests. They will have a nutritional assessment and tests of their heart function. Participants will have 2 inpatient stays at the clinic. Each stay will be for 11 nights, with a 3-week break between. Both DTG and TAF are gel caps swallowed once per day by mouth. Participants will take 1 drug for 8 days during each stay. Participants will have tests to see how their body uses energy: They will spend 23 continuous hours in a special room that measures how much oxygen they breathe in and how much carbon dioxide they breathe out. They will do this a total of 6 times. They will have a DEXA (dual-energy X-ray absorptiometry). DEXA is a kind of X-ray that measures body fat and bone density. They will lie on a table. Electrodes will be placed on their hands and feet to measure body fat and lean body mass. They will stand still on a platform for about 30 seconds. High-resolution laser cameras will scan their bodies.

NCT ID: NCT05649059 Not yet recruiting - Phobia, Social Clinical Trials

Investigating the Effects of Cannabidiol on Social Anxiety Disorder

CAN-SAD
Start date: December 2023
Phase: Phase 4
Study type: Interventional

The purpose of this study is to test whether a single-dose of Epidiolex (cannabidiol) is associated with reduced psychological, physiological, and neuroimaging measures of anxiety in people diagnosed with social anxiety disorder (SAD).

NCT ID: NCT05647317 Not yet recruiting - Heart Failure Clinical Trials

Mobile Technology-Based System for Patient Engagement and Physician-Directed Remote Management of Heart Failure

Start date: July 28, 2023
Phase: N/A
Study type: Interventional

This pilot study is to assess the feasibility, preliminary utility and acceptance of a digital technology-based system for heart failure management.

NCT ID: NCT05641766 Not yet recruiting - THC Clinical Trials

Multimodal Magnetoencephalography and Electroencephalography Exploration of the Acute Effects of THC Exposure on Neural Noise and Information Transmission Within Working Memory Networks

THC-MEG
Start date: August 1, 2024
Phase: Phase 2
Study type: Interventional

The purpose of this study is to use non-invasive brain imaging methods (MEG and EEG) to characterize the effects of THC on brain activity during learning.

NCT ID: NCT05641675 Not yet recruiting - Heart Failure Clinical Trials

Non-invasive Pulmonary Artery Prediction (ADOPTS)

ADOPTS
Start date: February 1, 2023
Phase:
Study type: Observational

A proprietary machine-learning algorithm has been developed to model continuous pulmonary artery pressure (PAP), a physiologic marker of cardiopulmonary function. The algorithm was developed from PAP recordings obtained during invasive right heart catheterization. The study will evaluate whether this algorithm can perform as well when embedded into a non-invasive wearable device that records EKG, heart sounds, and thoracic impedance has yet to be established.