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NCT ID: NCT03642236 Enrolling by invitation - Clinical trials for Acute Myeloid Leukemia

Combination of BTK Inhibitor Overcomes Drug-resistance in Refractory/Relapsed FLT3 Mutant AML

Start date: August 2018
Phase: Phase 2/Phase 3
Study type: Interventional

Clinical efficacy of FLT3 inhibitors combining with chemotherapy is usually transient and followed by emergence of drug-resistance in FLT3-ITD mutant AML. BTK is reported to be a therapeutic target in this subtype leukemia. Our previous study showed inhibition of BTK onvercome drug-resistance to FLT3 inhibitors/chemotherapy in refractory/relapsed FLT3 mutant AML. In this prospective randomized controlled study, the efficacy and safety of combination of BTK inhibitor with chemotherapy with/without FLT3 inhibitor in refractory/relapsed FLT3 mutant AML are evaluated.

NCT ID: NCT01907529 Enrolling by invitation - Clinical trials for Stage III Breast Cancer

A Trail of Neoadjuvant Endostar in Combination With Chemotherapy in Breast Cancer

TENDENCY
Start date: August 2019
Phase: Phase 2/Phase 3
Study type: Interventional

The trial was designed to study the efficacy and safety of neoadjuvant docetaxel, epirubicin in combination with cyclophosphamide(DEC) plus human recombinant endostatin (endostar) for breast cancer patients. The hypothesis of this protocol is that the combined an active angiogenesis agent to chemotherapy could enhance the pathological responce rate and further benefit breast cancer patients.

NCT ID: NCT04972240 Enrolling by invitation - Clinical trials for Marginal Bone Loss and Loss of Osteointegration of Short Implant

Stability, Marginal Bone Loss and Occlusal Load Analysis of PEEK Abutment Supported on Short Implant

Start date: August 2021
Phase: N/A
Study type: Interventional

this study will be directed toward evaluating stability, marginal bone loss and occlusal load of posterior customized PEEK abutments on Ti-bases supported by short implant

NCT ID: NCT05001178 Enrolling by invitation - Skeletal Maturation Clinical Trials

Maturation Within Different Skeletal Growth Patterns Using Maturation Index in Males.

Start date: August 2021
Phase:
Study type: Observational

The purpose of the study is to evaluate the difference between the maturation stages between different skeletal growth patterns

NCT ID: NCT05931900 Enrolling by invitation - Clinical trials for Functional Mitral Regurgitation

The JensClip Transcatheter Valve Repair System for Treating Functional Mitral Regurgitation

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

To evaluate the efficacy and safety of the JensClip transcatheter valve repair system for patients with moderate-severe or greater (MR ≥ 3+) functional mitral regurgitation (FMR) who have received adequate treatment but are still symptomatic.

NCT ID: NCT05966987 Enrolling by invitation - Clinical trials for Injectable Plasma-rich Fibrin Versus Low-Level Laser Therapy on Othodontic Movement

Assessment of Different Orthodontic Tooth Movements Assisted With Low-level Laser Therapy vs. Injectable Platelets-rich Fibrin

Start date: August 2023
Phase: Phase 1
Study type: Interventional

The present prospective clinical study will be undertaken for assessment of the effect of application of Injectable plasma-rich fibrin versus Low-Level Laser Therapy onthe rate of different orthodontic tooth movements,

NCT ID: NCT05972616 Enrolling by invitation - Clinical trials for Degenerative Disc Disease

Natural Matrix Protein™ (NMP™) in Interbody Lumbar Fusion

Start date: August 2023
Phase:
Study type: Observational

The objective of this study is to evaluate the performance of Induce Biologics NMP™ when used to promote interbody fusion for degenerative disease of the lumbar spine.

NCT ID: NCT05983172 Enrolling by invitation - Clinical trials for Acute Myeloid Leukemia

Multi-omics Approach of Risk Stratification for Patients With de Novo Acute Myeloid Leukemia

Start date: August 2023
Phase:
Study type: Observational [Patient Registry]

The investigators will use machine learning to identify features on bone marrow smears and select features that are related to gene mutations, gene expression, or prognosis. The investigators will then use genome-wide transcriptomic profiling to investigate gene expression that is associated with patients' outcomes. The investigators will design a next-generation sequencing panel with unique molecular index and assess its feasibility and robustness in detecting measurable residual disease and optimize the panel/platform/bioinformatic pipeline. Finally, The investigators will use machine learning to integrate bone marrow smear features, gene mutations, gene expression, and measurable residual disease to construct a comprehensive risk assessment system that is based on multi-omics data. The investigators believe that such a platform will help physicians to design the most appropriate treatment strategies for individual patients, not only advancing the concept of precision medicine but also improving patients' prognoses.

NCT ID: NCT06399367 Enrolling by invitation - Lymphedema Clinical Trials

Investigation of Lipedema, Lymphedema and Vascular Malformations by Multispectral Optoacoustic Tomography (MSOT)

Start date: August 2024
Phase:
Study type: Observational

This study aims to analyze the fatty tissue architecture of the subcutaneous tissue in patients from the plastic surgery department. Plastic surgery patients show a wide variety of subcutaneous fatty tissue structures during clinical examination. These include patients with edema of the extremities such as lipedema or lymphedema. Fatty tissue architecture plays a major role in our everyday lives, as wound healing and scar formation, for example, are influenced by the blood flow to the overlying skin. The fatty tissue architecture, especially in the subcutaneous fatty tissue, also plays a major role in our appearance. An analysis of the architecture can potentially provide information about the genesis of different skin fold formations. The aim of this study is to quantitatively describe structural differences in adipose tissue architecture. Adipose tissue architecture is still a largely unexplored area because imaging has not been possible to date. MSOT imaging is similar to conventional sonography in that a transducer is placed on the skin and energy is supplied to the tissue by pulsed laser light instead of sound. On a macroscopic level, this leads to a constant change of minimal oscillations of individual tissue components. The resulting sound waves can then be detected by the same transducer. Previous studies have shown that the quantitative determination of hemoglobin can be used to obtain information on blood circulation and inflammatory activity. In the extended spectrum, in contrast, not only hemoglobin and its oxygenation stages but also other biomarkers such as collagens and lipids can be detected. This is very useful for imaging of fat, lymphatics and normal and abnormal blood vessels in vascular malformations. This process was largely researched by the working group of Prof. Ntziachristos (Helmholtz Center Munich and Technical University of Munich) and Prof. Razansky (Eidgenösische Technische Hochschule Zurich) and is being further developed into a clinically applicable technology and sold commercially by the company iThera. As a first series of demonstrative clinical studies following rigorous technical development, MSOT will serve as a key tool for research partners in the investigation of several diseases that remain poorly-understood and have limited treatment options. These parallel studies will focus on lipedema and lymphedema as well as vascular malformations - three distinct disease groups with similarly unmet clinical needs for appropriate imaging modalities and high potential of translation to further major disease areas. By focusing on two unrelated diseases, this project will show the wide-reaching application of this innovative imaging approach. Following successful proof-of-principle validation in a clinical research environment, full exploitation and dissemination of the results will strive to deliver MSOT to the greater scientific community. The main objectives are to confirm/validate the spectral profile of fat and vasculature on MSOT in lipedema patients, to establish the spectral profile of vascular malformations based on MSOT for adults and children and to establish the spectral profile and imaging of lymphatic vessels. With a detailed analysis of the architecture, our understanding of the physiology and pathology of the skin may be enhanced.

NCT ID: NCT04132310 Enrolling by invitation - Pregnancy Related Clinical Trials

Mother Infant Nutrition Study

MINT
Start date: August 21, 2019
Phase:
Study type: Observational

Early life influences (including the intrauterine environment, birth weight, and early postnatal growth) shape subsequent weight trajectories and future chronic disease risk. The MINT study will evaluate whether maternal fat mass changes are associated with specific maternal weight trajectories during pregnancy, and with neonatal adiposity at birth. The study is a prospective observational cohort currently enrolling women in early pregnancy,and following mothers and infants after birth.