[1] |
Carucci NS, La Barbera G, Peruzzi L, et al. Time of onset and risk factors of renal involvement in children with Henoch-Schönlein purpura: retrospective study[J]. Children (Basel), 2022, 9(9): 1394.
|
[2] |
Trapani S, Micheli A, Grisolia F, et al. Henoch Schonlein purpura in childhood: epidemiological and clinical analysis of 150 cases over a 5-year period and review of literature[J]. Semin Arthritis Rheum, 2005, 35(3): 143-153.
doi: 10.1016/j.semarthrit.2005.08.007
|
[3] |
Xu S, Han S, Dai Y, et al. A review of the mechanism of vascular endothelial injury in immunoglobulin A vasculitis[J]. Front Physiol, 2022, 13: 833954.
doi: 10.3389/fphys.2022.833954
|
[4] |
Shang XP, Wu JG, Cheng Y, et al. Epidemiology and clinical characteristics of Henoch-Schönlein purpura associated with Mycoplasma pneumoniae infection in 131 children in Hubei Province, China[J]. Mediterr J Hematol Infect Dis, 2021, 13(1): e2021037.
|
[5] |
Zhong ZX, Tan JX, Tang Y, et al. Crescent lesions are not a predictive factor in adult-onset Henoch-Schönlein purpura nephritis[J]. Clin Exp Med, 2019, 19(4): 449-456.
doi: 10.1007/s10238-019-00567-6
|
[6] |
Kang Z, Xun M, Li Z, et al. Association of the clini-copathological characteristics and proteinuria remission of pediatric IgAV with nephrotic-range proteinuria: a retrospective cohort study[J]. Front Pediatr, 2022, 10: 959212.
doi: 10.3389/fped.2022.959212
|
[7] |
中华医学会儿科学分会肾脏学组. 紫癜性肾炎诊治循证指南(2016)[J]. 中华儿科杂志, 2017, 55(9): 647-651.
|
[8] |
Noone DG, Marks SD. Hyperuricemia is associated with hypertension, obesity, and albuminuria in children with chronic kidney disease[J]. J Pediatr, 2013, 162(1): 128-132.
doi: 10.1016/j.jpeds.2012.06.008
|
[9] |
Jančič SG, Močnik M, Marčun Varda N. Glomerular filtration rate assessment in children[J]. Children (Basel), 2022, 9(12): 1995.
|
[10] |
Giavarina D, Husain-Syed F, Ronco C. Clinical implications of the new equation to estimate glomerular filtration rate[J]. Nephron, 2021, 145(5): 508-512.
doi: 10.1159/000516638
|
[11] |
Xu K, Zhang L, Ding J, et al. Value of the Oxford classification of IgA nephropathy in children with Henoch-Schönlein purpura nephritis[J]. J Nephrol, 2018, 31(2): 279-286.
doi: 10.1007/s40620-017-0457-z
pmid: 29185209
|
[12] |
Haas M, Verhave JC, Liu ZH, et al. A multicenter study of the predictive value of crescents in IgA nephropathy[J]. J Am Soc Nephrol, 2017, 28(2): 691-701.
doi: 10.1681/ASN.2016040433
pmid: 27612994
|
[13] |
Pohl M. Henoch-Schönlein purpura nephritis[J]. Pediatr Nephrol, 2015, 30(2): 245-252.
doi: 10.1007/s00467-014-2815-6
pmid: 24733586
|
[14] |
Song Y, Huang X, Yu G, et al. Pathogenesis of IgA vasculitis: an up-to-date review[J]. Front Immunol, 2021, 12: 771619.
doi: 10.3389/fimmu.2021.771619
|
[15] |
Yun D, Kim DK, Oh KH, et al. MEST-C pathological score and long-term outcomes of child and adult patients with Henoch-Schönlein purpura nephritis[J]. BMC Nephrol, 2020, 21(1): 33.
doi: 10.1186/s12882-020-1691-5
pmid: 32000703
|
[16] |
Jimenez A, Chen A, Lin JJ, et al. Does MEST-C score predict outcomes in pediatric Henoch-Schönlein purpura nephritis?[J]. Pediatr Nephrol, 2019, 34(12): 2583-2589.
doi: 10.1007/s00467-019-04327-2
pmid: 31402405
|
[17] |
Çakıcı EK, Gür G, Yazılıtaş F, et al. A retrospective analysis of children with Henoch-Schonlein purpura and re-evaluation of renal pathologies using Oxford classification[J]. Clin Exp Nephrol, 2019, 23(7): 939-947.
doi: 10.1007/s10157-019-01726-5
pmid: 30895528
|
[18] |
Kim CH, Lim BJ, Bae YS, et al. Using the Oxford classification of IgA nephropathy to predict long-term outcomes of Henoch-Schönlein purpura nephritis in adults[J]. Mod Pathol, 2014, 27(7): 972-982.
doi: 10.1038/modpathol.2013.222
|
[19] |
Inagaki K, Kaihan AB, Hachiya A, et al. Clinical impact of endocapillary proliferation according to the Oxford classification among adults with Henoch-Schönlein purpura nephritis: a multicenter retrospective cohort study[J]. BMC Nephrol, 2018, 19(1): 208.
doi: 10.1186/s12882-018-1009-z
pmid: 30119643
|
[20] |
Li X, Tang M, Yao X, et al. A clinicopathological comparison between IgA nephropathy and Henoch-Schönlein purpura nephritis in children: use of the Oxford classification[J]. Clin Exp Nephrol, 2019, 23(12): 1382-1390.
doi: 10.1007/s10157-019-01777-8
pmid: 31468231
|
[21] |
Huang X, Ma L, Ren P, et al. Updated Oxford classification and the international study of kidney disease in children classification: application in predicting outcome of Henoch-Schönlein purpura nephritis[J]. Diagn Pathol, 2019, 14(1): 40.
doi: 10.1186/s13000-019-0818-0
pmid: 31077245
|
[22] |
Delbet JD, Geslain G, Auger M, et al. Histological prognostic factors in children with Henoch-Schönlein purpura nephritis[J]. Pediatr Nephrol, 2020, 35(2): 313-320.
doi: 10.1007/s00467-019-04363-y
|
[23] |
Hastings MC, Rizk DV, Kiryluk K, et al. IgA vasculitis with nephritis: update of pathogenesis with clinical implications[J]. Pediatr Nephrol, 2022, 37(4): 719-733.
doi: 10.1007/s00467-021-04950-y
|
[24] |
Hahn D, Hodson EM, Craig JC. Interventions for preventing and treating kidney disease in IgA vasculitis[J]. Cochrane Database Syst Rev, 2023, 2(2): Cd005128.
|
[25] |
Lai L, Liu S, Azrad M, et al. IgA vasculitis with nephritis in adults: histological and clinical assessment[J]. J Clin Med, 2021, 10(21): 4851.
doi: 10.3390/jcm10214851
|
[26] |
Edström Halling S, Söderberg MP, Berg UB. Predictors of outcome in Henoch-Schönlein nephritis[J]. Pediatr Nephrol, 2010, 25(6): 1101-1108.
doi: 10.1007/s00467-010-1444-y
pmid: 20174831
|
[27] |
Sobotka R, Čapoun O, Kalousová M, et al. Prognostic importance of vitamins A, E and retinol-binding protein 4 in renal cell carcinoma patients[J]. Anticancer Res, 2017, 37(7): 3801-3806.
pmid: 28668878
|
[28] |
Shi D, Chan H, Yang X, et al. Risk factors associated with IgA vasculitis with nephritis (Henoch-Schönlein purpura nephritis) progressing to unfavorable outcomes: a meta-analysis[J]. PLoS One, 2019, 14(10): e0223218.
doi: 10.1371/journal.pone.0223218
|