Jelusic M, Sestan M, Cimaz R, Ozen S (2019) Different histological classifications for Henoch-Schonlein purpura nephritis: which one should be used? Pediatr Rheumatol Online J 17:10. https://doi.org/10.1186/s12969-019-0311-z
Article PubMed PubMed Central Google Scholar
Samsonov D, Zolotnitskaya A, Matloff R, Pereira T, Solomon S (2022) Mycophenolate mofetil for severe IgA vasculitis nephropathy in children: an observational study. Kidney Med 4:100534. https://doi.org/10.1016/j.xkme.2022.100534
Article PubMed PubMed Central Google Scholar
Kurt-Sukur ED, Sekar T, Tullus K (2021) Biopsy-proven Henoch-Schonlein purpura nephritis: a single center experience. Pediatr Nephrol 36:1207–1215. https://doi.org/10.1007/s00467-020-04809-8
Shima Y, Mukaiyama H, Tanaka Y, Shimabukuro W, Nozu K, Kaito H, Tanaka R, Sako M, Iijima K, Tokuhara D, Yoshikawa N, Nakanishi K (2024) Factors related to recurrence of proteinuria in childhood IgA nephropathy. Pediatr Nephrol 39:463–471. https://doi.org/10.1007/s00467-023-06116-4
Counahan R, Winterborn MH, White RH, Heaton JM, Meadow SR, Bluett NH, Swetschin H, Cameron JS, Chantler C (1977) Prognosis of Henoch-Schonlein nephritis in children. Br Med J 2:11–14. https://doi.org/10.1136/bmj.2.6078.11
Article CAS PubMed PubMed Central Google Scholar
Jauhola O, Ronkainen J, Koskimies O, Ala-Houhala M, Arikoski P, Holtta T, Jahnukainen T, Rajantie J, Ormala T, Turtinen J, Nuutinen M (2010) Renal manifestations of Henoch-Schonlein purpura in a 6-month prospective study of 223 children. Arch Dis Child 95:877–882. https://doi.org/10.1136/adc.2009.182394
Yang XQ, Huang YJ, Zhai WS, Ren XQ, Guo QY, Zhang X, Yang M, Zhang J, Ding Y, Zhu S, Yamamoto T, Sun Y (2019) Correlation between endocapillary proliferative and nephrotic-range proteinuria in children with Henoch-Schonlein purpura nephritis. Pediatr Nephrol 34:663–670. https://doi.org/10.1007/s00467-018-4134-9
Kang Z, Xun M, Li Z, Yang Z (2022) Association of the clinicopathological characteristics and proteinuria remission of pediatric IgAV with nephrotic-range proteinuria: A retrospective cohort study. Front Pediatr 10:959212. https://doi.org/10.3389/fped.2022.959212
Article PubMed PubMed Central Google Scholar
Wakaki H, Ishikura K, Hataya H, Hamasaki Y, Sakai T, Yata N, Kaneko T, Honda M (2011) Henoch-Schonlein purpura nephritis with nephrotic state in children: predictors of poor outcomes. Pediatr Nephrol 26:921–925. https://doi.org/10.1007/s00467-011-1827-8
Hennies I, Gimpel C, Gellermann J, Moller K, Mayer B, Dittrich K, Buscher AK, Hansen M, Aulbert W, Wuhl E, Nissel R, Schalk G, Weber LT, Pohl M, Wygoda S, Beetz R, Klaus G, Fehrenbach H, Konig S, Staude H, Beringer O, Bald M, Walden U, von Schnakenburg C, Bertram G, Wallot M, Haffner K, Wiech T, Hoyer PF, Pohl M; German Society of Pediatric Nephrology (2018) Presentation of pediatric Henoch-Schonlein purpura nephritis changes with age and renal histology depends on biopsy timing. Pediatr Nephrol 33:277–286.https://doi.org/10.1007/s00467-017-3794-1
Feng D, Huang WY, Hao S, Niu XL, Wang P, Wu Y, Zhu GH (2017) A single-center analysis of Henoch-Schonlein purpura nephritis with nephrotic proteinuria in children. Pediatr Rheumatol Online J 15:15. https://doi.org/10.1186/s12969-017-0146-4
Article PubMed PubMed Central Google Scholar
Tian M, Liu C (2015) Heparin calcium treated Henoch-Schonlein purpura nephritis in children through inhibiting hyperfibrinolysis. Ren Fail 37:1100–1104. https://doi.org/10.3109/0886022X.2015.1061668
Article CAS PubMed Google Scholar
Nickavar A, Mehrazma M, Lahouti A (2012) Clinicopathologic correlations in Henoch-Schonlein nephritis. Iran J Kidney Dis 6:437–440
Cao Y, Shen T, Li Y, Shuai L, Chen Q, Mo S, Li C, Li X, Wang Y, Wu X (2022) A retrospective study on the characteristics of renal pathological grades in HSPN children with mild to moderate proteinuria. Front Pediatr 10:1029520. https://doi.org/10.3389/fped.2022.1029520
Article PubMed PubMed Central Google Scholar
Xu L, Li Y, Wu X (2022) IgA vasculitis update: Epidemiology, pathogenesis, and biomarkers. Front Immunol 13:921864. https://doi.org/10.3389/fimmu.2022.921864
Article CAS PubMed PubMed Central Google Scholar
Chan H, Tang YL, Lv XH, Zhang GF, Wang M, Yang HP, Li Q (2016) Risk factors associated with renal involvement in childhood Henoch-Schonlein purpura: a meta-analysis. PLoS One 11:e0167346. https://doi.org/10.1371/journal.pone.0167346
Hisano S, Matsushita M, Fujita T, Iwasaki H (2005) Activation of the lectin complement pathway in Henoch-Schonlein purpura nephritis. Am J Kidney Dis 45:295–302. https://doi.org/10.1053/j.ajkd.2004.10.020
Article CAS PubMed Google Scholar
Chua JS, Zandbergen M, Wolterbeek R, Baelde HJ, van Es LA, de Fijter JW, Bruijn JA, Bajema IM (2019) Complement-mediated microangiopathy in IgA nephropathy and IgA vasculitis with nephritis. Mod Pathol 32:1147–1157. https://doi.org/10.1038/s41379-019-0259-z
Article CAS PubMed Google Scholar
Narchi H (2005) Risk of long term renal impairment and duration of follow up recommended for Henoch-Schonlein purpura with normal or minimal urinary findings: a systematic review. Arch Dis Child 90:916–920. https://doi.org/10.1136/adc.2005.074641
Article CAS PubMed PubMed Central Google Scholar
Butani L, Morgenstern BZ (2007) Long-term outcome in children after Henoch-Schonlein purpura nephritis. Clin Pediatr (Phila) 46:505–511. https://doi.org/10.1177/0009922806298896
Shi D, Chan H, Yang X, Zhang G, Yang H, Wang M, Li Q (2019) Risk factors associated with IgA vasculitis with nephritis (Henoch-Schonlein purpura nephritis) progressing to unfavorable outcomes: A meta-analysis. PLoS One 14:e0223218. https://doi.org/10.1371/journal.pone.0223218
Barbour SJ, Coppo R, Er L, Pillebout E, Russo ML, Alpers CE, Fogo AB, Ferrario F, Jennette JC, Roberts ISD, Cook HT, Ding J, Su B, Zhong X, Fervenza FC, Zand L, Peruzzi L, Lucchetti L, Katafuchi R, Shima Y, Yoshikawa N, Ichikawa D, Suzuki Y, Murer L, Wyatt RJ, Park C, Nelson RD, Narus JH, Wenderfer S, Geetha D, Daugas E, Monteiro RC, Nakatani S, Mastrangelo A, Nuutinen M, Koskela M, Weber LT, Hackl A, Pohl M, Pecoraro C, Tsuboi N, Yokoo T, Takafumi I, Fujimoto S, Conti G, Santoro D, Materassi M, Zhang H, Shi S, Liu ZH, Tesar V, Maixnerova D, Avila-Casado C, Bajema I, Barreca A, Becker JU, Comstock JM, Cornea V, Eldin K, Hernandez LH, Hou J, Joh K, Lin M, Messias N, Muda AO, Pagni F, Diomedi-Camassei F, Tokola H, D’Armiento M, Seidl M, Rosenberg A, Sannier A, Soares MF, Wang S, Zeng C, Haas M (2024) Histologic and Clinical Factors Associated with Kidney Outcomes in IgA Vasculitis Nephritis. Clin J Am Soc Nephrol 19:438–451. https://doi.org/10.2215/CJN.0000000000000398
Kidney Disease: Improving Global Outcomes Diabetes Work Group (2022) KDIGO 2022 clinical practice guideline for diabetes management in chronic kidney disease. Kidney Int 102:S1–S127. https://doi.org/10.1016/j.kint.2022.06.008
Zhong X, Ding J (2023) Diagnosis and treatment of IgA nephropathy and IgA vasculitis nephritis in Chinese children. Pediatr Nephrol 38:1707–1715. https://doi.org/10.1007/s00467-022-05798-6
Ozen S, Marks SD, Brogan P, Groot N, de Graeff N, Avcin T, Bader-Meunier B, Dolezalova P, Feldman BM, Kone-Paut I, Lahdenne P, McCann L, Pilkington C, Ravelli A, van Royen A, Uziel Y, Vastert B, Wulffraat N, Kamphuis S, Beresford MW (2019) European consensus-based recommendations for diagnosis and treatment of immunoglobulin A vasculitis-the SHARE initiative. Rheumatology (Oxford) 58:1607–1616. https://doi.org/10.1093/rheumatology/kez041
Article CAS PubMed Google Scholar
Shi H, Deng P, Dong C, Lu R, Si G, Yang T (2022) Quality of evidence supporting the role of tripterygium glycosides for the treatment of diabetic kidney disease: an overview of systematic reviews and meta-analyses. Drug Des Devel Ther 16:1647–1665. https://doi.org/10.2147/DDDT.S367624
Article PubMed PubMed Central Google Scholar
Wu W, Cheng R, Boucetta H, Xu L, Pan JR, Song M, Lu YT, Hang TJ (2022) Differences in multicomponent pharmacokinetics, tissue distribution, and excretion of tripterygium glycosides tablets in normal and adriamycin-induced nephrotic syndrome rat models and correlations with efficacy and hepatotoxicity. Front Pharmacol 13:910923. https://doi.org/10.3389/fphar.2022.910923
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