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Calcium score report

calcium

By Li Dali, Ph.D.

If you tested your DNA with a personal genomics service like 23andMe, AncestryDNA, FamilyTreeDNA, MyHeritage or another testing company, you can learn more about your risk factors for hundreds of diseases. By clicking the button above ⬆️, you can upload your raw DNA data file and receive a personalized 250-page health report with research links that is the most comprehensive.

Our DNA health analysis detects a number of genetic polymorphisms associated with metabolic disorders. This method distinguishes alleles, thereby providing genotypic information that helps assess the genetic basis of current clinical conditions or estimate the likelihood of developing a disease.

The Calcium topic in the TenDNA Health Report is designed to identify and allele-discriminate genetic polymorphisms associated with inherited risk for calcium metabolic disorders.

On our website, you have the opportunity to upload raw dna data file, enabling you to receive a personalized report encompassing insights into calcium levels, various trace elements, potential disease predispositions, and additional relevant factors.

Follow the link of the selected polymorphism to read a brief description of how the selected polymorphism affects Calcium and see a list of existing studies.

SNP polymorphisms related to the topic Calcium:

rs2202127Increased risk of calcium oxalate urolithiasis.
rs17251221Common variant of the calcium-sensitive receptor gene associated with total serum calcium levels. Associated with multiple stones in calcium nephrolithiasis.
rs1042636Calcium-sensitive receptor leading to the formation of calcium kidney stones.
rs4765913CACNA1C gene polymorphism, is associated with risk of bipolar disorder, schizophrenia and other psychiatric disorders.
rs1801725A986S polymorphism of a receptor affecting blood calcium concentration. Increases the risk of neonatal hypercalcaemia.
rs1006737A polymorphism of the potential-dependent calcium channel gene CACNA1C, is associated with risk of bipolar disorder, schizophrenia and other psychiatric disorders.
rs4765905A polymorphism of the potential-dependent calcium channel gene CACNA1C, is associated with risk of bipolar disorder, schizophrenia and other psychiatric disorders.
rs2159100A polymorphism of the potential-dependent calcium channel gene CACNA1C, is associated with risk of bipolar disorder, schizophrenia and other psychiatric disorders.
rs7647446
rs3804592
rs6438715
rs1802757
rs9869969
rs6438707
rs7295250
rs2239101
rs758231
rs17223925
rs16929471
rs111915616
rs2239097
rs2887780
rs116992907
rs2302729
rs16929470
rs2239089
rs16929486
rs1009281
rs4394887
rs1006564
rs1108385
rs11831085
rs3794288
rs216013
rs2370251
rs886898
rs7972947
rs142704083
rs58173258
rs60734921
rs10848683
rs2238095
rs12298278
rs4765687
rs7312105
rs4926244
rs16019
rs8109003
rs2304094
rs7250783
rs16016
rs11879128
rs10403191
rs2419549
rs1345649
rs17846914
rs35380374
rs10407144
rs75148188
rs4340440
rs12985786
rs7250857
rs4926293
rs2900964
rs1422257
rs2292035
rs4632265
rs16027
rs4926152
rs10925298
rs2485570
rs722582
rs6683225
rs10925399
rs6683160
rs918241
rs16834780

About The Author
Li Dali Li Dali

Li Dali, a National Foundation for Outstanding Youth Fund recipient, is a researcher at the School of Life Sciences in East China Normal University. He earned his PhD in genetics from Hunan Normal University in 2007 and conducted collaborative research at Texas A&M University during his doctoral studies. Li Dali and his team have optimized and innovated gene editing technology, leading to the establishment of a world-class system for constructing gene editing disease models.

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