[1] |
Sada K, Hidaka S, Imaishi N, et al. Clinical and genetic analysis in a family with familial renal glucosuria: Identification of an N101K mutation in the sodium-glucose cotransporter 2 encoded by a solute carrier family 5 member 2 gene[J]. J Diabetes Investig. 2020, 11(3):573-577.
|
[2] |
望赛, 刘雪梅, 赵向忠, 等. 中国家族性肾性糖尿SGLT2基因变异分析及肾葡萄糖阈值的测定[J]. 中华肾脏病杂志, 2018, 34(11): 816-821.
doi: 10.3760/cma.j.issn.1001-7097.2018.11.003
|
[3] |
付红波, 李楠, 裴育, 等. 钠-葡萄糖共转运蛋白2基因变异致原发性肾性糖尿一例并文献复习[J]. 中华糖尿病杂志, 2018, 10(2): 150-153.
|
[4] |
余自华, 陈丽珠. 肾性糖尿的诊疗现状[J]. 中华实用儿科临床杂志, 2018, 33(17): 1286-1289.
|
[5] |
Santer R, Calado J. Familial renal glucosuria and SGLT2: from a mendelian trait to a therapeutic target[J]. Clin J Am Soc Nephrol, 2010, 5(1): 133-141.
doi: 10.2215/CJN.04010609
|
[6] |
Perry RJ, Shulman GI. Sodium-glucose cotransporter-2 inhibitors: Understanding the mechanisms for therapeutic promise and persisting risks[J]. J Biol Chem, 2020, 295(42): 14379-14390.
doi: 10.1074/jbc.REV120.008387
|
[7] |
Djeddi D, Cauliez A, Oulebsir A, et al. Persistently high urine glucose levels caused by familial renal glycosuria[J]. Arch Pediatr, 2020, 27(7): 386-387.
doi: 10.1016/j.arcped.2020.07.002
pmid: 32807621
|
[8] |
Yu L, Wu M, Hou P, et al. SLC5A2 mutations, including two novel mutations, responsible for renal glucosuria in Chinese families[J]. BMC Nephrol, 2020, 21(1): 69.
doi: 10.1186/s12882-020-01725-9
|
[9] |
Zhao X, Cui L, Lang Y, et al. A recurrent deletion in the SLC5A2 gene including the intron 7 branch site responsible for familial renal glucosuria[J]. Sci Rep, 2016, 6: 33920.
doi: 10.1038/srep33920
|
[10] |
Santer R, Kinner M, Lassen CL, et al. Molecular analysis of the SGLT2 gene in patients with renal glucosuria[J]. J Am Soc Nephrol, 2003, 14(11): 2873-2882.
pmid: 14569097
|
[11] |
Dorum S, Erdoğan H, Köksoy AY, et al. Clinical features of pediatric renal glucosuria cases due to SLC5A2 gene variants[J]. Pediatr Int, 2022, 64(1): e14948..
|
[12] |
Wang S, Wang Y, Wang J, et al. Six exonic variants in the SLC5A2 gene cause exon skipping in a minigene assay[J]. Front Genet, 2020, 11: 585064.
doi: 10.3389/fgene.2020.585064
|
[13] |
Santer R, Calado J. Familial renal glucosuria and SGLT2: from a mendelian trait to a therapeutic target[J]. Clin J Am Soc Nephrol, 2010, 5(1): 133-141.
doi: 10.2215/CJN.04010609
|
[14] |
王晓慧, 赵向忠, 李春梅, 等. 中国家族性肾性糖尿SGLT2基因变异分析及表型和基因型相关性研究[J]. 中华肾脏病杂志, 2016, 32(1): 1-8.
doi: 10.3760/cma.j.issn.1001-7097.2016.01.001
|
[15] |
Wang S, Zhao X, Zhang R, et al. Identification of ten novel SLC5A2 mutations and determination of the renal threshold for glucose excretion in Chinese patients with familial renal glucosuria[J]. Clin Chim Acta, 2019, 490: 102-106.
doi: S0009-8981(18)30654-5
pmid: 30593819
|
[16] |
Calado J, Loeffler J, Sakallioglu O, et al. Familial renal glucosuria: SLC5A2 mutation analysis and evidence of salt-wasting[J]. Kidney Int, 2006, 69(5): 852-855.
pmid: 16518345
|
[17] |
Xiong HY, Alipanahi B, Lee LJ, et al. RNA splicing. The human splicing code reveals new insights into the genetic determinants of disease[J]. Science, 2015, 347(6218): 1254806.
doi: 10.1126/science.1254806
|
[18] |
Lee H, Han KH, Park HW, et al. Familial renal glucosuria: a clinicogenetic study of 23 additional cases[J]. Pediatr Nephrol. 2012, 27(7): 1091-1095.
doi: 10.1007/s00467-012-2109-9
pmid: 22314875
|
[19] |
Wang X, Yu M, Wang T, et al. Genetic analysis and literature review of Chinese patients with familial renal glucosuria: Identification of a novel SLC5A2 mutation[J]. Clin Chim Acta, 2017, 469: 105-110.
doi: 10.1016/j.cca.2017.03.027
|
[20] |
Gu X, Chen M, Xu Y, et al. Acquired renal glucosuria in an undifferentiated connective tissue disease patient with a SLC5A2 heterozygous mutation: A case report[J]. Medicine (Baltimore), 2018, 97(50): e13664.
doi: 10.1097/MD.0000000000013664
|
[21] |
Li S, Yang Y, Huang L, et al. A novel compound heterozygous mutation in SLC5A2 contributes to familial renal glucosuria in a Chinese family, and a review of the relevant literature[J]. Mol Med Rep. 2019, 19(5): 4364-4376.
|
[22] |
Yu L, Lv JC, Zhou XJ, et al. Abnormal expression and dysfunction of novel SGLT2 mutations identified in familial renal glucosuria patients[J]. Hum Genet, 2011, 129(3): 335-344.
doi: 10.1007/s00439-010-0927-z
|
[23] |
Calado J, Sznajer Y, Metzger D, et al. Twenty-one additional cases of familial renal glucosuria: absence of genetic heterogeneity, high prevalence of private mutations and further evidence of volume depletion[J]. Nephrol Dial Transplant, 2008, 23(12): 3874-3879.
doi: 10.1093/ndt/gfn386
|
[24] |
Santer R, Kinner M, Lassen CL, et al. Molecular analysis of the SGLT2 gene in patients with renal glucosuria[J]. J Am Soc Nephrol, 2003, 14(11): 2873-2882.
pmid: 14569097
|
[25] |
Lee H, Han KH, Park HW, et al. Familial renal glucosuria: a clinicogenetic study of 23 additional cases[J]. Pediatr Nephrol, 2012, 27(7): 1091-1095.
doi: 10.1007/s00467-012-2109-9
pmid: 22314875
|
[26] |
Toka HR, Yang J, Zera CA, et al. Pregnancy-associated polyuria in familial renal glycosuria[J]. Am J Kidney Dis, 2013, 62(6): 1160-1164.
doi: 10.1053/j.ajkd.2013.05.018
pmid: 23871407
|
[27] |
Leslie BR, Gerwin LE, Taylor SI. Sodium-glucose cotransporter-2 inhibitors: lack of a complete history delays diagnosis[J]. Ann Intern Med, 2019, 171(6): 421-426.
doi: 10.7326/M19-1463
pmid: 31525753
|