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社区首页
小组
痛风
痛风
发起讨论
痛风
16 个讨论
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痛风=痛疯
囧囧的FSTL4基因
• 最后回复
moeko1995
•
2019-08-26 19:57
762
7
• 来自相关小组
痛风患友交流
• 最后回复
黄艺红
•
2019-12-04 16:10
713
8
• 来自相关小组
首次怀疑检测准确性
icechen20
• 最后回复
•
2020-04-27 16:20
1408
10
• 来自相关小组
abcg2基因突变导致的尿酸高有什么好的治疗方法吗?
酷酷的SNTG1基因
• 最后回复
mabaoyuan037
•
2019-06-10 18:26
939
3
• 来自相关小组
血尿酸/痛风基因报告/微解读集合【病友儿过来报个到呗】【附本人结果和患病故事】
wushantao
• 最后回复
开心啊
•
2019-03-07 07:56
2425
13
• 来自相关小组
看来该去医院看看了
游泳的CASC6基因
• 最后回复
horinee
•
2018-12-12 17:49
798
1
• 来自相关小组
2016中国痛风诊疗指南中关于降低痛风风险的建议
chengang
• 最后回复
cj01036
•
2018-11-24 18:15
2058
6
• 来自相关小组
女30已被查出
ginny
• 最后回复
cj01036
•
2018-11-23 16:16
1570
1
• 来自相关小组
是和中风一个意思吗
可燃冰
• 最后回复
咆哮的ABCA4基因
•
2018-07-25 08:32
1046
2
• 来自相关小组
关于痛风?为什么我rs2231142这个点位是TT,难道基因突变了?
珂学发展观
• 最后回复
vickar
•
2018-03-31 07:30
1427
2
• 来自相关小组
我竟然是个不容易痛风的人
sniffle
• 最后回复
yuezhongfu
•
2016-10-26 18:07
1912
2
• 来自相关小组
怎么rs2231142这个点位完全翻转了?
谦和的MSH2基因
• 最后回复
zhengqiang
•
2016-08-16 13:55
1639
2
• 来自相关小组
相对于痛风我不太关心,虽然半年痛了4次,我更关心目前检查到的肾结石是不是尿酸结石
bob
• 最后回复
pchen
•
2016-08-09 15:46
1974
2
• 来自相关小组
血生化检测尿酸偏高,RS2231142位点是杂合子
chengang
• 最后回复
黑衣的ASTN2基因
•
2019-12-21 14:37
3783
12
• 来自相关小组
生化检测血尿酸超标一点点,目前没有收到基因检测报告,我以检测报告做为主要治疗依据
bob
• 最后回复
chengang
•
2016-01-26 10:50
1590
1
• 来自相关小组
发起讨论
痛风
16 个讨论
相关基因
SLC2A9
位点:RS1014290
位点:RS12498742
位点:RS16890979
位点:RS6855911
位点:RS13111638
SLC17A3
位点:RS1165205
ALDH16A1
位点:RS150414818
MLXIPL
位点:RS17145750
PDZK1
位点:RS1797052
ABCG2
位点:RS2231142
位点:RS1871744
位点:RS3114020
MUC1
位点:RS4072037
CNIH2
位点:RS4073582
ALDH2
位点:RS671
GCKR
位点:RS780094
BCAS3
位点:RS9895661
位点:RS11653176
KCNQ1
位点:RS179785
CNTN5
位点:RS7927466
NIPAL1
位点:RS11733284
HIST1H4E
位点:RS11758351
CUX2
位点:RS4766566
FAM35A
位点:RS7903456
HNF4A
位点:RS6031598
PNPLA3
位点:RS2281293
A1CF
位点:RS10994860
LRP2
位点:RS2075251
GWAS of clinically defined gout and subtypes identifies multiple susceptibility loci that include urate transporter genes.
Dehghan A, et al. Association of three genetic loci with uric acid concentration and risk of gout: a genome-wide association study. 2008
Kolz M, et al. Meta-analysis of 28,141 individuals identifies common variants within five new loci that influence uric acid concentrations. 2009
Stark K, et al. Common polymorphisms influencing serum uric acid levels contribute to susceptibility to gout, but not to coronary artery disease. 2009
Brandstätter A, et al. Sex and age interaction with genetic association of atherogenic uric acid concentrations. 2010
Chen MH, et al. A three-stage approach for genome-wide association studies with family data for quantitative traits. 2010
Maetzler W, et al. Serum and cerebrospinal fluid uric acid levels in lewy body disorders: associations with disease occurrence and amyloid-β pathway. 2015
Köttgen A, et al. Genome-wide association analyses identify 18 new loci associated with serum urate concentrations. 2013
Köttgen A, et al. Genome-wide association analyses identify 18 new loci associated with serum urate concentrations. 2013
Kolz M, et al. Meta-analysis of 28,141 individuals identifies common variants within five new loci that influence uric acid concentrations. 2009
McArdle PF, et al. Association of a common nonsynonymous variant in GLUT9 with serum uric acid levels in old order amish. 2008
Dehghan A, et al. Association of three genetic loci with uric acid concentration and risk of gout: a genome-wide association study. 2008
Denny JC, et al. Systematic comparison of phenome-wide association study of electronic medical record data and genome-wide association study data. 2013
Hollis-Moffatt JE, et al. Role of the urate transporter SLC2A9 gene in susceptibility to gout in New Zealand Māori, Pacific Island, and Caucasian case-control sample sets. 2009
Parsa A, et al. Genotype-based changes in serum uric acid affect blood pressure. 2012
Karns R, et al. Genome-wide association of serum uric acid concentration: replication of sequence variants in an island population of the Adriatic coast of Croatia. 2012
Li S, et al. The GLUT9 gene is associated with serum uric acid levels in Sardinia and Chianti cohorts. 2007
Hindorff LA, et al. Potential etiologic and functional implications of genome-wide association loci for human diseases and traits. 2009
Kolz M, et al. Meta-analysis of 28,141 individuals identifies common variants within five new loci that influence uric acid concentrations. 2009
Chen MH, et al. A three-stage approach for genome-wide association studies with family data for quantitative traits. 2010
Genome-wide meta-analysis identifies multiple novel loci associated with serum uric acid levels in Japanese individuals
Genome-wide meta-analysis identifies multiple novel loci associated with serum uric acid levels in Japanese individuals
Genome-wide association analysis identifies three new risk loci for gout arthritis in Han Chinese.
Genome-wide meta-analysis identifies multiple novel loci associated with serum uric acid levels in Japanese individuals
Genome-wide association study of clinically defined gout identifies multiple risk loci and its association with clinical subtypes.
Genome-wide association study revealed novel loci which aggravate asymptomatic hyperuricaemia into gout.
Li S, et al. The GLUT9 gene is associated with serum uric acid levels in Sardinia and Chianti cohorts. 2007
Stark K, et al. Association of common polymorphisms in GLUT9 gene with gout but not with coronary artery disease in a large case-control study. 2008
Li S, et al. The GLUT9 gene is associated with serum uric acid levels in Sardinia and Chianti cohorts. 2007
Stark K, et al. Common polymorphisms influencing serum uric acid levels contribute to susceptibility to gout, but not to coronary artery disease. 2009
Brandstätter A, et al. Sex-specific association of the putative fructose transporter SLC2A9 variants with uric acid levels is modified by BMI. 2008
Le MT, et al. SLC2A9--a fructose transporter identified as a novel uric acid transporter. 2008
Mohlke KL, et al. Metabolic and cardiovascular traits: an abundance of recently identified common genetic variants. 2008
Strait JB, et al. Using new tools to define the genetic underpinnings of risky traits associated with coronary artery disease: the SardiNIA study. 2009
Brandstätter A, et al. Sex and age interaction with genetic association of atherogenic uric acid concentrations. 2010
Guan M, et al. Association of an intronic SNP of SLC2A9 gene with serum uric acid levels in the Chinese male Han population by high-resolution melting method. 2011
Lyngdoh T, et al. Serum uric acid and adiposity: deciphering causality using a bidirectional Mendelian randomization approach. 2012
GWAS of clinically defined gout and subtypes identifies multiple susceptibility loci that include urate transporter genes.
Genome-wide meta-analysis identifies multiple novel loci associated with serum uric acid levels in Japanese individuals
Genetics of serum urate concentrations and gout in a high-risk population, patients with chronic kidney disease.
Genome-wide association analysis identifies three new risk loci for gout arthritis in Han Chinese.
Genome-wide association analysis identifies three new risk loci for gout arthritis in Han Chinese.
Genome-wide association study revealed novel loci which aggravate asymptomatic hyperuricaemia into gout.
GWAS of clinically defined gout and subtypes identifies multiple susceptibility loci that include urate transporter genes.
GWAS of clinically defined gout and subtypes identifies multiple susceptibility loci that include urate transporter genes.
GWAS of clinically defined gout and subtypes identifies multiple susceptibility loci that include urate transporter genes.
GWAS of clinically defined gout and subtypes identifies multiple susceptibility loci that include urate transporter genes.
GWAS of clinically defined gout and subtypes identifies multiple susceptibility loci that include urate transporter genes.
GWAS of clinically defined gout and subtypes identifies multiple susceptibility loci that include urate transporter genes.
Genome-wide meta-analysis identifies multiple novel loci associated with serum uric acid levels in Japanese individuals
Genome-wide meta-analysis identifies multiple novel loci associated with serum uric acid levels in Japanese individuals
A genome-wide association analysis reveals new pathogenic pathways in gout
A genome-wide association analysis reveals new pathogenic pathways in gout