Clinical Trials Logo

Other clinical trials

View clinical trials related to Other.

Filter by:

NCT ID: NCT04605614 Withdrawn - Clinical trials for Malignant Solid Neoplasm

64Cu-DOTA-pembrolizumab PET for the Study of PD1 Expression

Start date: August 15, 2022
Phase: Phase 1
Study type: Interventional

This phase I trial evaluates the best dose and side effects of copper (64Cu)-DOTA-pembrolizumab positron emission tomography (PET) for the study of PD1 expression. 64Cu is a radiotracer that binds to a molecule, PD1, that is found on immune cells that are found in the tumor. PD1 is short for 'programmed cell death protein 1'. When 64Cu-DOTA-pembrolizumab is injected into the patient's bloodstream, the 64Cu-pembrolizumab travels throughout the body and sticks to any tumor that has PD1 positive immune cells. Identifying the expression of PD1 in the tumor may help assess whether patients will respond to immunotherapy, and may detect clusters of immune cells when they are still too small to be detected by other Food and Drug Administration (FDA) approved techniques.

NCT ID: NCT04603742 Withdrawn - Covid19 Clinical Trials

Anakinra, COVID-19, Cytokine Storm

SOBI
Start date: December 2021
Phase: Phase 2
Study type: Interventional

The clinical syndrome associated with infection of the Coronavirus Disease 2019 (COVID-19) is notable for its variable clinical expression. Infection and transmission of the virus by asymptomatic individuals have been noted and represent one end of the clinical spectrum, while multi-organ failure, particularly pulmonary failure, and death represent the most severe end of the clinical spectrum. In a recent study published from the investigator's institution about the first 393 patients with COVID-19, 77.1% had a fever, a mechanism driven by IL-1. This suggests that there may be an excess release of IL-1 present. Cytokine storm syndrome (CSS) has been observed in patients with COVID-19 and has been proposed to contribute to the acute pulmonary failure that occurs. In distinct clinical settings, macrophage activation syndrome, elevated levels of pro-inflammatory cytokines, including IL-1, IL-6, and others, as well as elevations in laboratory indicators, including ferritin, CRP, d-dimer, and lymphopenia, have been observed. IL-1 production is induced in response to inflammatory stimuli and mediates various physiologic responses including inflammatory and immunological responses. Anakinra, a recombinant IL-1 receptor antagonist, has shown promise in treating CSS. It inhibits both IL-1-alpha and IL-1-beta. It is an FDA approved medication used in rheumatoid arthritis (RA) and Cryopyrin-Associated Periodic Syndromes (CAPS). Anakinra's ability to inhibit both IL-1 subtypes and short half-life makes it favorable to some experts. In the investigator's case-series, using anakinra in patients with COVID-19 showed promising in preventing the need for mechanical ventilation, and mortality subsequently. This study will determine the efficacy of anakinra, an interleukin (IL) -1 receptor blocker, in reducing the need for mechanical ventilation and/or 28-day mortality among patients with COVID-19 who have features of CSS and severe respiratory failure. The investigators will test the hypothesis that the proportion of subjects with COVID-19, features of CSS, and severe respiratory failure (World Health Organization (WHO) category 4 or 5) alive and without having required mechanical ventilation at day 28 from randomization will be 18% higher among those that receive anakinra compared to those that receive a placebo. A secondary hypothesis is that the number of subjects alive at 60-days will be higher amongst those who receive anakinra compared to those who receive a placebo.

NCT ID: NCT04603365 Withdrawn - Clinical trials for Metastatic Renal Cell Carcinoma

Pamiparib and Temozolomide for the Treatment of Hereditary Leiomyomatosis and Renal Cell Cancer

Start date: October 18, 2021
Phase: Phase 2
Study type: Interventional

This phase II trial investigates how well pamiparib and temozolomide work in treating patients with hereditary leiomyomatosis and renal cell (kidney) cancer. Poly adenosine diphosphate-ribose polymerase (PARPs) are proteins that help repair DNA mutations. PARP inhibitors, such as pamiparib, can keep PARP from working, so tumor cells can't repair themselves, and they may stop growing. Chemotherapy drugs, such as temozolomide, work in different ways to stop the growth of tumor cells, either by killing the cells, by stopping them from dividing, or by stopping them from spreading. Giving pamiparib and temozolomide may help treat patients with hereditary leiomyomatosis and renal cell cancer.

NCT ID: NCT04602117 Withdrawn - Ovarian Cancer Clinical Trials

ISPY-P1.01:Evaluating the Safety of Weekly Paclitaxel With Trastuzumab Duocarmazine (SYD985) in Patients With Metastatic Cancer

Start date: July 28, 2021
Phase: Phase 1
Study type: Interventional

This is an open-label, single-arm, multi-site phase I/Ib trial with SYD985, an antibody-drug conjugate (ADC) targeting HER2 on the cell membrane, combined with paclitaxel.

NCT ID: NCT04598516 Withdrawn - Renal Insufficiency Clinical Trials

Maastricht Investigation of Renal Function in Absence of- and Post- Contrast in Patients With eGFR LEss Than 30

MIRACLE
Start date: November 1, 2097
Phase:
Study type: Observational

Intravascular iodinated contrast administration has become crucial to modern medicine. Currently it is estimated that over 250 million injections are given each year worldwide during medical scans and interventions. An acute predefined increase in serum creatinine is considered an indicator of acute kidney injury (AKI). When such an acute increase in serum creatinine occurs within 5 days post-contrast in absence of another aetiology, it is assumed to be iodinated contrast administration induced acute kidney injury. For over 50 years now, acute kidney injury caused by intravascular administration of iodinated contrast material has been considered a leading cause of hospital-acquired renal failure. Contrast has been withheld in fear of kidney injury with misdiagnoses and delayed appropriate patient management as a result. Since 2018, it is now widely accepted that only patients with eGFR <30 mL/min/1.73m2 are at risk of renal injury after intravascular iodinated contrast material injection. However, no study to date has been able to distinguish acute kidney injury caused by iodinated contrast administration from that for which no causal link is established, and it is unsure a causal relationship exists. There are several studies, in attempts to evaluate the causal relationship between contrast exposure and nephrotoxicity, that found fluctuations in absence of contrast similar to those considered to be contrast-induced acute kidney injury. Similarly, it is unsure whether longer-term negative outcomes are inherent to the population studied or a result of contrast administration. However, most of these studies are observational and retrospective in nature. The issue with retrospective studies is that they often cannot control for confounders and therefore cannot give us causation, only association. On the other hand, prospective randomized controlled trials comparing intravascular iodinated contrast administration to no contrast are unlikely given evident ethical issues. The current prospective observational study proposes to use intra-patient comparisons of peak change in renal function during periods in absence of- and with contrast to elucidate the relationship between renal function and contrast administration in this population.

NCT ID: NCT04598282 Withdrawn - Clinical trials for Herpes Simplex Dendritic Keratitis

Evaluating Adjunctive Cryopreserved Amniotic Membrane Treatment in Herpes Simplex Dendritic Keratitis

Start date: January 21, 2021
Phase: N/A
Study type: Interventional

To prospectively evaluate the effectiveness of Prokera Slim in adults with primary or recurrent herpetic epithelial keratitis in terms of visual function, corneal opacity, time to resolution, cost of care, number of patient visits.

NCT ID: NCT04590274 Withdrawn - Covid19 Clinical Trials

Safety and Efficacy of Hydroxychloroquine for the Treatment & Prevention of Coronavirus Disease 2019 (COVID-19) Caused by Severe Acute Respiratory Syndrome Coronavirus 2 (SARS-CoV-2)

Start date: November 2020
Phase: Phase 1
Study type: Interventional

Coronavirus Disease 2019 (COVID-19) (previously called 2019-nCOV acute respiratory disease) is caused by SARS-CoV-2, a positive-sense single-stranded RNA virus of the coronavirus family. The coronaviruses are largely responsible for the common cold, the 2002 SARS outbreak in Guangdong, China, the 2012 MERS outbreak in Saudi Arabia, and the present COVID-19 outbreak that originated in Wuhan, China. Much has been reported by way of systemic injury caused by COVID-19 affecting the cardiovascular, hepatic, nervous systems. These conditions are likely the result of the virus overwhelming the immune system. For these reasons, the investigators wish to conduct this study using existing medications off-label, and over-the-counter supplements to support the immune response, prevent lasting injury, and hasten the recovery from COVID-19.

NCT ID: NCT04585932 Withdrawn - Clinical trials for Metastatic Prostate Carcinoma

Androgen Deprivation Therapy and Apalutamide With or Without Radiation Therapy for the Treatment of Biochemically Recurrent Prostate Cancer, RESTART Study

Start date: November 24, 2020
Phase: Phase 2
Study type: Interventional

This phase II trial studies how well androgen deprivation therapy and apalutamide with or without radiation therapy works for the treatment of prostate cancer that has a rise in the blood level of prostate-specific antigen (PSA) and has come back after treatment with surgery or radiation (biochemically recurrent). Androgens can cause the growth of prostate tumor cells. Apalutamide may help fight prostate cancer by blocking the use of androgens by the tumor cells. Androgen deprivation therapy drugs, leuprolide or degarelix, work to lower the amount of androgen in the body, also preventing the tumor cells from growing. Radiation therapy uses high energy x-rays to kill tumor cells and shrink tumors. Giving radiation therapy with apalutamide and androgen deprivation therapy may help to control prostate cancer that has come back in only a few (up to 5) spots in the body.

NCT ID: NCT04585724 Withdrawn - Clinical trials for Metastatic Malignant Neoplasm in the Brain

Stereotactic Radiosurgery With Abemaciclib, Ribociclib, or Palbociclib in Treating Patients With Hormone Receptor Positive Breast Cancer With Brain Metastases

Start date: June 12, 2020
Phase: Phase 1
Study type: Interventional

This phase I trial studies the side effects of stereotactic radiosurgery with abemaciclib, ribociclib, or palbociclib in treating patients with hormone receptor positive breast cancer that has spread to the brain (brain metasteses). Stereotactic radiosurgery is a specialized radiation therapy that delivers a single, high dose of radiation directly to the tumor and may cause less damage to normal tissue. Abemaciclib, ribociclib, and palbociclib may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth. Giving abemaciclib, ribociclib, or palbociclib concurrently with stereotactic radiosurgery may reduce the side effects and/or increase the response to each of the therapies.

NCT ID: NCT04580836 Withdrawn - Clinical trials for Renal Cell Carcinoma

MRI-Guided Radiation Therapy for the Treatment of Early-Stage Kidney Cancer, the MRI-MARK Trial

Start date: August 19, 2020
Phase: Phase 2
Study type: Interventional

This phase II trial investigates how well MRI-guided stereotactic body radiation therapy works in treating patients with early-stage kidney cancer. Radiation therapy uses high energy radiation to kill tumor cells and shrink tumors. Stereotactic body radiation therapy uses special equipment to position a patient and deliver radiation to tumors with high precision. This method may kill tumor cells with fewer doses over a shorter period and cause less damage to normal tissue. This method of radiation delivery is further refined through the incorporation of a MRI into the radiation machine to create a device known as a MRI linear accelerator. During treatment with MRI linear accelerator, continuous MRI images are obtained to allow for real-time treatment monitoring and the ability to adjust treatment plans if minor deviations in anatomy are noted. Giving MRI-guided stereotactic body radiation therapy may help treat patients with early-stage kidney cancer.