Risk Assessment of Congenital Diseases
Genetic analysis helps to understand the innate physical characteristics of individual. Adjusting the individual’s lifestyle and diet according to physical characteristics can effectively strengthen health and prevent disease threats. Whether it is cardiovascular disease factor, lipid metabolism gene, macular degeneration gene, methylation metabolic genotype or various cancer risk genetic analysis further health management is planned through relevant risk information after a complete physical type analysis, achieving more active and effective in reducing the risk of various genetic diseases.
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1295 TruAge COMPLETE
TruAge COMPLETE is exclusively licensed by the U.S.-based True Diagnostic™ Laboratory to Hans Functional Medicine Laboratory, with joint technology development integrating scientific research teams from Harvard University, Yale University, and Duke University. It utilizes a non–closed (fully traceable) algorithmic framework, analyzing over 950,000 CpG genomic sites and measuring more than 75 key biomarkers that influence healthspan development. This assessment provides the most extensive, precise, and clinically accurate biological age and actionable health information currently available worldwide. The evaluation delivers comprehensive insights ranging from aging pace tracking and organ health–related longevity biomarkers to precision assessments of cancer risk and alcohol-related risk, enabling highly accurate and practical health predictions.
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1439 Methyl Genomics™ (Blood)
Testing for health and disease-related Single-Nucleotide Polymorphisms (SNPs) can increase the success rate of clinical disease diagnosis and preventive treatments, providing clients with a more comprehensive health management plan.
Methyl Genomic™ analysis helps clinicians diagnose congenital genetic predispositions and assess whether biochemical methylation pathways are functioning properly in the body. These methylation cycles include the methionine cycle, folate cycle, biopterin (BH4) cycle, urea cycle, and citric acid cycle, all of which are interconnected reactions.
The presence or absence of SNPs can alter disease risk. By testing 30 mutation points in 13 methylation cycle genes, we can optimize imbalanced physiological functions in the body to an optimal state through lifestyle adjustments, dietary modifications, and personalized nutrigenomics prescriptions. -
0520 ApoE Genomics™
Genomics™
Genomic analysis evaluates inherited variations in your genetic sequence that may influence your health and increase the risk of developing certain chronic diseases. This analysis helps identify your unique genetic predispositions, providing early insights into your inherent constitution.
With this information, your physician can proactively design a personalized health management plan, enabling targeted prevention of chronic conditions and empowering you to take control of your health with greater ease and confidence.The analysis covers key areas such as: Estrogen metabolism genes, Alzheimer’s disease risk genes, Cardiovascular disease risk genes, Liver detoxification function and Macular degeneration-related genes.
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1133 Cardio Genomics™
Genomics™
Genomic analysis evaluates inherited variations in your genetic sequence that may influence your health and increase the risk of developing certain chronic diseases. This analysis helps identify your unique genetic predispositions, providing early insights into your inherent constitution.
With this information, your physician can proactively design a personalized health management plan, enabling targeted prevention of chronic conditions and empowering you to take control of your health with greater ease and confidence.The analysis covers key areas such as: Estrogen metabolism genes, Alzheimer’s disease risk genes, Cardiovascular disease risk genes, Liver detoxification function and Macular degeneration-related genes.
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1134 Estro Genomics™
Genomics™
Genomic analysis evaluates inherited variations in your genetic sequence that may influence your health and increase the risk of developing certain chronic diseases. This analysis helps identify your unique genetic predispositions, providing early insights into your inherent constitution.
With this information, your physician can proactively design a personalized health management plan, enabling targeted prevention of chronic conditions and empowering you to take control of your health with greater ease and confidence.The analysis covers key areas such as: Estrogen metabolism genes, Alzheimer’s disease risk genes, Cardiovascular disease risk genes, Liver detoxification function and Macular degeneration-related genes.
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0854 Detox Genomics™
Genomics™
Genomic analysis evaluates inherited variations in your genetic sequence that may influence your health and increase the risk of developing certain chronic diseases. This analysis helps identify your unique genetic predispositions, providing early insights into your inherent constitution.
With this information, your physician can proactively design a personalized health management plan, enabling targeted prevention of chronic conditions and empowering you to take control of your health with greater ease and confidence.The analysis covers key areas such as: Estrogen metabolism genes, Alzheimer’s disease risk genes, Cardiovascular disease risk genes, Liver detoxification function and Macular degeneration-related genes.
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0942 Macular Genomics™
Genomics™
Genomic analysis evaluates inherited variations in your genetic sequence that may influence your health and increase the risk of developing certain chronic diseases. This analysis helps identify your unique genetic predispositions, providing early insights into your inherent constitution.
With this information, your physician can proactively design a personalized health management plan, enabling targeted prevention of chronic conditions and empowering you to take control of your health with greater ease and confidence.The analysis covers key areas such as: Estrogen metabolism genes, Alzheimer’s disease risk genes, Cardiovascular disease risk genes, Liver detoxification function and Macular degeneration-related genes.
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1195 & 1196 Cancer Genomics™ (Male & Female)
Cancer gene analysis assesses genetic variations that may increase your risk of developing certain cancers. This analysis evaluates your unique genetic predispositions, helping you understand your individual constitution early on. With this information, your doctor can better plan a personalized health management strategy, aimed at proactively preventing cancer and ensuring a healthier life. This analysis includes general cancer-related genes, as well as genes associated with colorectal and lung cancer, and breast cancer. The goal is to help high-risk individuals with early detection and focus on wellness, minimizing the risk of disease.