Clinical trials
Multi-omics clinical trials
Below are recruiting multi-omics clinical trials, each written for real people, not researchers. We’re tracking 88 recruiting studies, each written for real people, not researchers, below.
Recruiting studies
- NCT04920812Recruiting
Testing multi-sample methods to diagnose mitochondrial muscle disease
This study looks for the cause of suspected mitochondrial diseases by combining multiple lab tests on muscle and skin samples, plus genetic testing results. If your current gene tests didn’t find an answer, this could help researchers learn what might be causing your condition.
Nice, CHU de NICEAges Any age - NCT05165706Recruiting
Study of how obesity affects insulin resistance over time
This study follows adults over time to understand how weight and body chemistry relate to insulin resistance. It may help researchers learn why insulin resistance happens and what could prevent or improve it.
Stanford, CaliforniaAges 35–65 - NCT05251883Recruiting
Study of data from metastatic ovarian cancer using multiple tests
This study looks at metastatic ovarian cancer by analyzing many types of patient data (from “multi-omics,” which means different kinds of lab and biological information). It may help doctors better understand the disease and improve future care.
Guangzhou, GuangdongAges 18 years+ - NCT05501353Recruiting
Study tumor biomarkers in recurrent metastatic colon cancer
This study looks for blood/tumor signals (“biomarkers”) that may help predict outcomes in people whose colorectal cancer returns and spreads after surgery. It mainly helps researchers understand who may do better or worse, which can guide future care.
Hangzhou, ZhejiangAges 18–99 - NCT05516628RecruitingPhase 2
Adjuvant atezolizumab plus bevacizumab after liver cancer surgery
This trial studies whether adding atezolizumab and bevacizumab after complete liver cancer surgery can lower the chance the cancer comes back. It also uses “multi-omics” tests (special lab tests on your tissue/blood) to help predict who is more likely to respond or resist treatment.
SingaporeAges 21–90 - NCT05554224Recruiting
Personalized treatment based on obesity-related fatty liver tests
This study uses multiple types of health data (“multi-omics”) to help choose a personalized treatment plan for people with obesity-related fatty liver disease. It may help match treatment to your biology to improve outcomes.
Reus, TarragonaAges 18 years+ - NCT05570929Recruiting
Study of kidney changes before and around donation
This study follows people who are planning kidney donation or a kidney transplant to better understand how kidney function changes over time. It may help researchers predict risk and improve care by studying health markers in detail.
BerlinAges 18–75 - NCT05626296Recruiting
Blood-sample study of stroke patterns using multiple tests
This study looks at blood and lab “molecular” patterns in people who have had an ischemic stroke (a blocked blood vessel). It aims to understand differences between people labeled as having “phlegm-heat syndrome” versus not, which may help future stroke care. You may be eligible if your stroke was recent and confirmed by MRI.
Beijing, Beijing MunicipalityAges 50–80 - NCT05857969RecruitingPhase 1
Testing cancer drug response on removed tumor tissue
This early study uses tumor tissue (or bone marrow from blood cancers) and performs lab tests to see which cancer drugs may work better for each person. It also collects genetic information from blood or a saliva swab to help understand why cancers respond differently.
Miami, FloridaAges 1 day–21 years - NCT05912387RecruitingEarly Phase 1
Testing statin treatment in primary sclerosing cholangitis
This early study looks at how a statin (cholesterol-lowering medicine) affects people with primary sclerosing cholangitis (PSC) by measuring changes using multiple types of health data. It may help researchers understand which people benefit and how PSC biology changes with treatment.
Stanford, CaliforniaAges 18–80 - NCT05917275RecruitingPhase 4
Testing tests to predict how you’ll respond to blood pressure medicines
This study uses blood and other body measurements to predict how well certain blood pressure medicines will work for you. It may help doctors choose the best treatment sooner, based on your personal “multi-omics” (biomarker) results.
NijmegenAges 18–75 - NCT05974475Recruiting
Personalized modeling during targeted lung radiation for early cancer
This trial studies how detailed tests (“multi-omics” modeling) can improve how doctors plan and deliver stereotactic body radiotherapy (SBRT) for early-stage non-small cell lung cancer. It may help make treatment planning more precise for cancers in stages I–II.
Milan, ItalyAges 18 years+ - NCT06001073Recruiting
Heart and brain disease health prediction study
This study uses advanced health data to predict how heart and brain conditions may progress. It aims to help doctors provide better care for people with these diseases.
Xi'an, ShaanxiAges 3–80 - NCT06076083Recruiting
Microbiome study in Korean patients with ankylosing spondylitis
This study looks at the bacteria living in your body (the microbiome) in people with ankylosing spondylitis and their close family members. Researchers hope to better understand how these bacteria relate to the disease, which may lead to better treatments in the future.
Seoul, Kyungheedae-ro 23Ages 19–60 - NCT06163534Recruiting
Biomarker profiling study for advanced head and neck cancer patients
This study collects blood and tumor tissue samples to analyze biological markers in patients with advanced head and neck squamous cell carcinoma before starting immunotherapy. The goal is to better understand how these markers relate to treatment response.
Duarte, CaliforniaAges 18 years+ - NCT06183697Recruiting
Healthy Korean volunteers multi-omics database study
This study is building a database of genetic and other health information from healthy Korean volunteers. It involves providing samples and answering health questions to help future research.
SeoulAges 13–85 - NCT06200974Recruiting
Genetic study of HDR brachytherapy for low-risk prostate cancer
This study looks at a type of radiation therapy called HDR brachytherapy for men with low-risk or slightly higher risk prostate cancer. It aims to understand how your genes affect treatment outcomes.
Kelowna, British ColumbiaAges 18 years+ - NCT06220617Recruiting
Early detection of colorectal cancer using blood tests
This study is looking for people newly diagnosed with colorectal cancer or advanced adenoma to help find better ways to detect the disease early using advanced lab tests on blood samples.
Hangzhou, ZhejiangAges 18 years+ - NCT07694648Recruiting
Watching for germs that cause breathing problems
This study tracks patients with breathing problems to see which germs are making them sick. Doctors will use tests and medical records to watch for different pathogens.
Beijing, Beijing MunicipalityAges Any age - NCT06340152Recruiting
Studying maternal health after preeclampsia
This trial follows women who have had preeclampsia to learn more about their health after pregnancy. It collects blood and tissue samples to find markers that could improve future care.
San Diego, CaliforniaAges 18–50 - NCT06447870Recruiting
Why Some IBD Treatments Don't Work: A Multi-Omics Study
This study looks at why some people with inflammatory bowel disease (Crohn's or ulcerative colitis) do not respond to certain biologic treatments. Researchers will use advanced testing (multi-omics) to better understand treatment response. If you are starting or have just started treatment with infliximab, adalimumab, vedolizumab, or ustekinumab, you may be able to join.
Guangzhou, GuangdongAges 18 years+ - NCT06452550Recruiting
Can brain scans predict Crohn's disease progression?
This study uses brain MRI and psychological questionnaires alongside standard Crohn's tests to see if certain brain patterns predict how the disease will progress over six months or more.
ShanghaiAges 18–45 - NCT06489119Recruiting
Studying plaque types in coronary artery disease with advanced imaging
This trial uses advanced imaging (OCT) and single-cell analysis to study different types of plaque in people with coronary artery disease. It aims to understand how these plaque types differ at a cellular level, which could lead to better treatments.
Harbin, HeilongjiangAges 18–85 - NCT06492109Recruiting
Blood study on sleep loss
This study looks at blood samples to understand how sleep loss affects the body. It may help find new ways to diagnose or treat sleep problems.
Hangzhou, ZhejiangAges 18–80
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Common questions
- Are there clinical trials for multi-omics?
- Yes. Clin2 currently lists 88 recruiting multi-omics studies from the U.S. registry, each rewritten for real people, not researchers, so you can see what it’s testing and who it’s for.
- How do I know if I qualify for a multi-omics trial?
- Each study lists its eligibility criteria — rules about age, diagnosis, and prior treatments. On every Clin2 trial page we explain these in words written for real people and offer a short, optional pre-screen for a fit read. The study team makes the final decision.
- Does it cost anything to join a multi-omics trial?
- Using Clin2 is always free. Many trials cover the cost of the study treatment and related visits; some reimburse travel. The study team explains exactly what’s covered before you decide.
Related conditions
Clin2 helps you find and understand clinical trials and does not provide medical advice. Study data comes from ClinicalTrials.gov. Talk with your doctor about whether a specific trial is right for you.