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Amyloidosis clinical trials

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NCT ID: NCT03702829 Active, not recruiting - Amyloidosis Clinical Trials

24 Month Open Label Study of the Tolerability and Efficacy of Inotersen in TTR Amyloid Cardiomyopathy Patients

Start date: February 28, 2019
Phase: Phase 2
Study type: Interventional

Transthyretin is a protein produced in the liver that transports thyroid hormone and vitamin A. A single substitution of an amino acid in the structure of TTR can result in a relatively unstable protein, the breakdown products of which (predominantly monomers) aggregate abnormally and produce proteinaceous deposits in nerves and the heart. These deposits are known as amyloid and produce progressive nerve and heart damage. Amyloidosis due to a mutant TTR is usually an autosomal dominant and hence is a familial condition. Wild-type TTR is also capable of producing amyloid deposits which predominantly involves the heart (rather than the nervous system) resulting in a progressive decrease in cardiac function with increasing signs of heart failure. This study aims to determine whether subcutaneous injection of an antisense oligonucleotide drug, known as inotersen, that has been specifically designed to reduce production of the protein transthyretin by the liver, can slow or stop the progression of TTR amyloid cardiomyopathy as compared to historical controls, using advanced echocardiography and cardiac MRI. The study also aims to determine the tolerability and safety of this drug when administered over a 24-month period to patients with TTR amyloid cardiomyopathy.

NCT ID: NCT03678259 Completed - Clinical trials for Systemic Amyloidosis

124I-p5+14 Injection Safety in Subjects With Systemic Amyloidosis

Start date: October 1, 2018
Phase: Phase 1/Phase 2
Study type: Interventional

This is a single-center, exploratory, Phase 1 Positron Emission Tomography/x-ray Computed Tomography (PET/CT) imaging study to detect amyloidosis that will enroll patients with a confirmed diagnosis of systemic amyloidosis. The purpose of this exploratory trial is to assess the safety and efficacy of 124I-p5+14 Injection at a single-injection dose adequate for imaging amyloid deposits by using PET/CT imaging in subjects with confirmed systemic Immunoglobulin Light Chain-associated Amyloidosis (AL), Transthyretin-associated Amyloidosis (ATTR), Leukocyte Chemotactic Factor 2-associated Amyloidosis (ALect2) as well as other types.

NCT ID: NCT03626584 Completed - Cardiac Amyloidosis Clinical Trials

PET/MR Imaging In Patients With Cardiac Amyloidosis

Start date: August 25, 2017
Phase:
Study type: Observational

PET scanning (positron emission tomography) is a well-established technique used to identify areas of interest within the body. It involves injecting a radioactive tracer which highlights abnormal areas. It has recently been combined with CT (computed tomography) and MRI (magnetic resonance imaging) scanning to more accurately identify abnormalities within the heart. Cardiac amyloidosis, a condition which causes thickening of heart muscle due to abnormal protein deposits, is of particular interest. There are different forms of this condition and at present samples of tissue need to be taken and analysed in order to assess these accurately, which carries risks. The study makes use of hybrid PET/MR scanning using a designated scanner which enables PET scanning combined with MRI scanning. The investigators will use a PET tracer which is widely used in cardiac imaging as it is hoped this will enable characterisation of abnormal areas within the heart in this condition in a way which hasn't been done before. All participants will undergo PET scanning, where a radioactive tracer is injected into a vein before the scan. The radioactive substance only lasts for a short time and is safe, passed out of the body in urine. If successful, this imaging method will enable us to detect differences between different forms of cardiac amyloidosis in a non-invasive way, improving the diagnostic capabilities in this condition.

NCT ID: NCT03618537 Active, not recruiting - AL Amyloidosis Clinical Trials

Ixazomib Maintenance Study in Patients With AL Amyloidosis

Start date: August 2, 2018
Phase: Phase 2
Study type: Interventional

The purpose of this study is to learn if Ixazomib maintenance treatment (chemotherapy) works to control the disease. Through this study, the investigators hope to learn more about ways to prevent or delay relapse of AL Amyloidosis.

NCT ID: NCT03616496 Recruiting - Cardiac Amyloidosis Clinical Trials

Assessment of 18F-Florbetaben Whole-body PET for the Detection of Cardiac and Extracardiac Sites of Amyloid Deposits

CAPRI
Start date: June 6, 2019
Phase: N/A
Study type: Interventional

Although being classified as a rare disease, cardiac amyloidosis constitutes an increasing cause of heart failure, which is often overlooked and thus poorly managed. Amyloidosis involves deposits of light chain immunoglobulins in the immunoglobulin light chain amyloidosis (AL) type, but it may also be of a hereditary type in mutated transthyretin amyloidosis (ATTRm) or of a senile type in wildtype transthyretin forms (ATTRwt). Myocardial biopsy remains a gold standard for definitive diagnosis but it is a traumatic technique which only provides information on a limited number of sampled sites. Useful but not fully specific signs of cardiac amyloidosis may also be provided by Magnetic Resonance Imaging or MRI (delayed retention imaging) and echocardiography (longitudinal strain pattern). Notwithstanding the above, relatively specific markers of amyloid plaques are now available in Positron Emission Tomography (PET). These markers are primarily fluorinated tracers which have been developed for the diagnosis of Alzheimer's disease. Two of these have already been the subject of feasibility studies in the setting of cardiac amyloidosis diagnosis, on a maximum of 10 amyloidosis patients but with very favorable results. The hypothesis is that one of these two tracers, Florbetaben labelled with Fluorine-18-Florbetaben (18F-Florbetaben) used in the study, has sufficiently strong and prolonged binding kinetics at the level of the amyloid plaques to allow: (i) achieving whole-body PET recordings and thus, (ii) identifying not only cardiac amyloidosis but also extracardiac binding sites, particularly those readily accessible to biopsy sampling. This hypothesis has been strengthened by a recent case report illustrating the ability of whole-body florbetaben-PET to image not only cardiac but also extra-cardiac sites of amyloid deposits (Clin Nucl Med. 2017;42(1):50-3).

NCT ID: NCT03610035 Completed - Amyloidosis Clinical Trials

A Study of NPT189 in Healthy Subjects

Start date: July 24, 2018
Phase: Phase 1
Study type: Interventional

The purpose of the study is to evaluate the safety and tolerability of single dose of NPT189 in healthy volunteers. The study will also evaluate the pharmacokinetic characteristics of NPT189.

NCT ID: NCT03591757 Completed - Clinical trials for Transthyretin Amyloidosis

Short-term Effects of TOLCAPONE on Transthyretin Stability in Subjects With Leptomeningeal TTR Amyloidosis (ATTR)

Start date: October 30, 2018
Phase: Early Phase 1
Study type: Interventional

The purpose of this study is to determine whether Tolcapone crosses from the blood stream into the fluid around the brain and stabilizes the protein that makes leptomeningeal amyloid. Tolcapone is a commercially available generic drug that treats Parkinson's disease. The Investigator plans to evaluate Tolcapone as a treatment for ATTR (Transthyretin Amyloidosis), a rare genetic disease often causing death within 5-15 years after diagnosis. ATTR is characterized by deposition of misfolded protein known as amyloid, in one or more organ systems (including the peripheral and autonomic nervous systems, the heart, the brain and the eyes). The age at which symptoms begin to develop varies widely ranging between 20 to 70 years old. ATTR is progressive, and some variants can have a fatal outcome within a few years of presentation. Treatment options include supportive and symptomatic care that may slow or stop progressive decline in functional state but do not alter the pathological process. Liver transplant can be performed in selected patients but is limited by organ supply, requires lifelong immunosuppression, and may be complicated by progressive heart and nerve amyloid deposition. Importantly, liver transplant does not alter the natural course of central nervous system amyloid disease. To date, no treatment for ATTR penetrates the CNS. At present there is no FDA approved treatment for ATTR amyloidosis in the US. In Europe, Tafamidis has been approved for treatment of stage 1 ATTR-polyneuropathy since 2012. Tafamidis and Tolcapone bind to the thyroxine binding site of TTR (with different drug-transthyretin interactions) and in so doing stabilizes the tetrameric form of TTR, preventing dissociation and amyloid fibril formation The preclinical and clinical data from a variety of experimental systems support the therapeutic activity of TOLCAPONE in TTR mediated disease.

NCT ID: NCT03588468 Completed - Clinical trials for Transthyretin Amyloidosis

Expanding the Biomarkers in Familial Amyloid Neuropathy: MRI and Motor Unit Estimation by Electrophysiological Study

Start date: September 20, 2018
Phase: N/A
Study type: Interventional

Familial amyloid neuropathies (FAP) are hereditary disease due to a mutation of the tranthyretin gene (TTR). These neuropathies are severe and life frightening. Asymptomatic carrier of TTR mutation are now detected in large TTR-FAP family. However, it is very hard to detect the moment where a TTR mutation carrier become symptomatic: too early diagnosis exposes the patients to side effect of the treatment and too late diagnosis exposes the patient to disease progression and clinical sequels. Neurological monitoring comprises clinical examination, electrophysiology and imaging. Sensitivity and specificity of these tools are not sufficient and we have to develop new biomarkers sensitive enough to detect modifications under treatment and the moment where a TTR mutation carrier become symptomatic Magnetic resonance imaging (MRI) can well evaluate neuromuscular diseases. Electrophysiological examination is also a good tool to evaluate NAF. MUNIX is a technique that permits to estimate the number of motor unit in one muscl. MUNIX is related to the disability in chronic inflammatory neuropathies and could be more sensitive than clinical scales and other electrophysiological data to detect modification of the disease in TTR-FAP. The objective of this exploratory study is to test the applicability of MUNIX and MRI as early measures for detecting the transition from asymptomatic to symptomatic TTR-FAP. In symptomatic TTR-FAP we will determine if MUNIX and MRI data are related to clinical deficiency and disability of the patients. This is a transversal exploratory study. If we manage to demonstrate that MRI and MUNIX can segregate symptomatic versus asymptomatic TTR mutation gene carriers, we will propose a longitudinal study with a follow up of more asymptomatic gene carriers.

NCT ID: NCT03584022 Active, not recruiting - Clinical trials for Peripheral Neuropathy

Clinical Trial to Assess the Safety of a Novel Scaffold Biomaterial

Start date: November 9, 2018
Phase: N/A
Study type: Interventional

This is safety study. Subjects will be undergoing the surgical procedure of nerve biopsy. After routine surgery without grafting, patients develop swelling, redness, tenderness and dysesthesia at the biopsy site. In order to determine whether grafting is safe compared to not repairing the nerve, it is necessary to compare treated vs. untreated patients using systematic, sensitive and reproducible criteria.

NCT ID: NCT03567499 Withdrawn - Amyloidosis Clinical Trials

Pro-arrhythmic Potential of GSK3039294 in Healthy Subjects

Start date: July 12, 2018
Phase: Phase 1
Study type: Interventional

GSK3039294 has been developed to offer an orally available alternative to parenteral GSK2315698 (miridesap) for plasma serum amyloid P component (SAP) depletion prior to and following use of anti-SAP Monoclonal Antibody (mAb) in the treatment of systemic amyloidosis. The primary objectives of the study are to assess the cardiac arrhythmic potential of GSK3039294 and evaluate safety and tolerability of repeat doses of GSK3039294, in healthy subjects relative to placebo for the same duration. This study will consist of two parts, Part A and a conditional Part B. Part A is designed as a randomized double-blinded, 3 period, placebo-controlled, repeat-dose, crossover study. The decision to initiate Part B will be based on an evaluation of data from Part A, which will include an overall assessment of safety, pharmacokinetics (PK) and pharmacodynamics (PD). In Part A, there will be three treatment periods with 7 days of dosing in each and minimum 7-day washout period between each treatment session. Each subject will receive two dose levels of GSK3039294 and placebo. In Part B, there will be two treatment periods with 7 days of dosing in each and minimum 7-day washout period. Each subject will receive one dose level of GSK3039294 and placebo. In Part A, approximately 48 subjects will be recruited for an estimated total of 36 completers. In Part B, approximately 32 subjects will be recruited for an estimated total of 24 completers. The study will last up to approximately 10 weeks from screening to follow-up.