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NCT ID: NCT05118789 Recruiting - Clinical trials for Metastatic Solid Tumor

A Study of NVL-520 in Patients With Advanced NSCLC and Other Solid Tumors Harboring ROS1 Rearrangement (ARROS-1)

Start date: January 4, 2022
Phase: Phase 1/Phase 2
Study type: Interventional

Phase 1/2, dose escalation and expansion study designed to evaluate the safety and tolerability of NVL-520, determine the recommended phase 2 dose (RP2D), and evaluate the antitumor activity in patients with advanced ROS1-positive (ROS1+) NSCLC and other advanced ROS1-positive solid tumors. Phase 1 will determine the RP2D and, if applicable, the maximum tolerated dose (MTD) of NVL-520 in patients with advanced ROS1-positive solid tumors. Phase 2 will determine the objective response rate (ORR) as assessed by Blinded Independent Central Review (BICR) of NVL-520 at the RP2D. Secondary objectives will include the duration of response (DOR), time to response (TTR), progression-free survival (PFS), overall survival (OS), and clinical benefit rate (CBR) of NVL-520 in patients with advanced ROS1-positive NSCLC and other solid tumors.

NCT ID: NCT05118256 Recruiting - Silicosis Clinical Trials

Pirfenidone for the Reduction of Metabolic, Inflammatory and Fibrogenic Activity in Complicated Silicosis

Start date: November 15, 2021
Phase: Phase 2
Study type: Interventional

Silicosis is one of the leading causes of occupational respiratory disease worldwide. It is due to inhalation of respirable crystalline silica and can lead to progressive massive fibrosis (PMF), respiratory failure, and death. It is estimated that it causes more than 10,000 deaths a year worldwide, mainly in developing countries, although the level of underdiagnosis is high. In developed countries the incidence of the disease has been progressively decreasing in recent years, mainly due to the implementation of effective prevention measures, better occupational health surveillance systems and the displacement of mining activity to other countries, in a way that in the United Kingdom 216 cases were reported from 1996 to 2017. At the moment, there is no curative treatment for the disease, and the only therapeutic option is lung transplantation (when the disease evolves to PMF and subsequent respiratory failure). Meanwhile, the only accepted treatment is supportive treatment, with the administration of oxygen therapy in case of respiratory failure, early treatment of respiratory infections, vaccinations and respiratory rehabilitation. In recent years, molecules with antifibrogenic capacity have been developed and have demonstrated their ability to decrease pulmonary fibrogenic activity in diseases such as Idiopathic Pulmonary Fibrosis (IPF). This has been a milestone in the treatment of this disease and, therefore, its possible application to other diseases that share fibrogenic mechanisms with IPF, as PMF. The two molecules with the most clinical experience and approved for IPF are nintedanib and pirfenidone. The antifibrotic properties of pirfenidone have raised great expectations and many clinical trials are currently being carried out in other lung diseases that cause fibrosis, that is why we decide to study the efficacy of pirfenidone in reducing metabolic, inflammatory, and fibrogenic lung disease in patients with artificial stone silicosis and progressive massive fibrosis (PMF).

NCT ID: NCT05117840 Recruiting - Lung Cancer Clinical Trials

Screening for High Frequency Malignant Disease

SHIELD
Start date: January 13, 2022
Phase:
Study type: Observational

The SHIELD (Screening for High Frequency Malignant Disease) study is a prospective, observational, multi-site basket design trial without randomization. The primary objective of the study is to evaluate the sensitivity and specificity of a blood-based GuardantLUNAR-2 test to detect high frequency cancer in screen-relevant populations.

NCT ID: NCT05117775 Recruiting - Clinical trials for Head and Neck Cancer

Towards A Better Paradigm for Head and Neck Cancer Treatment Applying Artificial Intelligence. HNC-TACTIC.

HNC-TACTIC
Start date: December 6, 2021
Phase:
Study type: Observational

This will be an international, multicenter, retrospective, observational, and data-driven study using secondary data captured in EHRs. The extraction of the data captured in the EHRs will be performed with SAVANA's EHRead®, an innovative data-driven system based on Natural Language Processing (NLP) and machine learning. For all patients, the Index Date is defined as the timepoint within the study period when they fulfill ALL inclusion criteria and no exclusion criteria. Follow-up comprises the period between Index Date and the last EHR available within the study period. Additional variable-specific time windows may be considered to optimize data collection.

NCT ID: NCT05117476 Recruiting - Clinical trials for Advanced Solid Tumor

A Study of CLN-619 Alone and in Combination With Pembrolizumab in Advanced Solid Tumors

Start date: October 29, 2021
Phase: Phase 1
Study type: Interventional

CLN-619-001 is a Phase 1, open-label, multi-center study of CLN-619 alone and in combination with pembrolizumab in patients with advanced solid tumors.

NCT ID: NCT05117242 Recruiting - Clinical trials for Non Small Cell Lung Cancer Metastatic

Safety and Efficacy Study of GEN1046 as a Single Agent or in Combination With Pembrolizumab for Treatment of Recurrent (Non-small Cell) Lung Cancer

Start date: October 27, 2021
Phase: Phase 2
Study type: Interventional

The purpose of this trial is to investigate the safety and efficacy of acasunlimab (also known as GEN1046) as monotherapy and in combination with pembrolizumab in patients with non-small cell lung cancer who have progressed during or after treatment of previous standard of care

NCT ID: NCT05115799 Recruiting - Breast Cancer Clinical Trials

Effects of a Manual Therapy Program to Reduce the Evolution Time of Axillary Web Syndrome

Start date: December 1, 2021
Phase: N/A
Study type: Interventional

ABSTRACT Breast cancer is the most common malignant tumor in women, with more than a million new cases annually. One of the most frequent surgical and post-actinic sequelae and well known is postmastectomy lymphedema. The axillary web syndrome is another sequel that limits the functionality of the patient and delays the protocol times of application of treatments cancer, and in many cases this sequela is misdiagnosed. This surgical sequelusually disappears spontaneously after the third month of appearance, but this implies a long period of discomfort and limitations for the user, at the same time that it may delay the application of Radiotherapy within the indicated protocol deadlines (due to the need for a body posture with abduction and flexion of the affected upper limb for its application and with the lymphatic thrombus is impossible to get). With the present quasi-experimental study, the investigator intend to show that the application of Kinesitherapy and stretching from the beginning of the appearance of the cord, in a controlled and scheduled way by the physiotherapist, it is possible to reduce the time in which the lymphatic thrombus is present, and therefore, recover functionality, mobility, reduce pain and be able to apply the patients´ treatments within of the established deadlines. The investigator intend to apply this therapy in the intervention group and compare thrombus evolution times with the control group.

NCT ID: NCT05115110 Recruiting - Clinical trials for Spinal Muscular Atrophy (SMA)

A Study to Investigate the Safety and Efficacy of RO7204239 in Combination With Risdiplam (RO7034067) in Participants With Spinal Muscular Atrophy

MANATEE
Start date: June 2, 2022
Phase: Phase 2/Phase 3
Study type: Interventional

Risdiplam works by helping the body produce more survival motor neuron (SMN) protein throughout the body. This means fewer motor neurons - nerve cells that pass impulses from nerves to muscles to cause movement - are lost, which may improve how well muscles work in people with SMA. RO7204239 is an investigational anti-myostatin antibody that is designed to target myostatin. Myostatin plays an important role in the regulation of skeletal muscle size by controlling growth. Inhibiting myostatin may help muscles grow in size and strength. RO7204239 in combination with risdiplam, which is designed to increase the amount of SMN protein throughout the body, has the potential to further improve motor function and clinical outcomes for people living with SMA. This trial will study the safety and efficacy of RO7204239 in combination with risdiplam in patients with spinal muscular atrophy (SMA). The trial has two parts; Part 1 is the dose-finding part in SMA patients that are either ambulant (aged 2-10 years) or non-ambulant (aged 5-10 years) within separate cohorts, and Part 2 is the pivotal part in SMA patients aged 2-25 years that are ambulant.

NCT ID: NCT05114850 Recruiting - Heart Failure Clinical Trials

Retrospective Prospective Multicentric Clinical Follow up of Patients After Being Treated With TricValve®

Start date: April 20, 2022
Phase:
Study type: Observational [Patient Registry]

Retrospective prospective Multicentric clinical follow up of patients with severe tricuspid regurgitation after being treated with the TricValve® Transcatheter Bicaval Valves System.

NCT ID: NCT05112237 Recruiting - Cardiomyopathy Clinical Trials

Natural History Study in Pediatric Patients With MYBPC3 Mutation-associated Cardiomyopathy

MyCLIMB
Start date: November 1, 2021
Phase:
Study type: Observational

The objective of this study is to collect information on patients with cardiomyopathy (CM) due to mutations in the MYBPC3 gene, to evaluate their disease course, burden of illness, risk factors for this disease, and the quality of life (QoL). This study will also collect information on treatments, procedures and outcome in infants and children up to 18 yrs who have this mutation.