Citation: | Jing WANG, Hongying MI, Yi ZHANG, Li LI, Jianhua YU, Liqiao LIU, Qingyu LIU, Liwei WANG. Pyrotosis Participates in the Pathogenesis of Necrotizing Enterocolitis in Early Offspring Rats[J]. Journal of Kunming Medical University, 2023, 44(1): 25-30. doi: 10.12259/j.issn.2095-610X.S20230124 |
[1] |
Meister A L,Doheny K K,Travagli R A. Necrotizing enterocolitis: It’s not all in the gut[J]. Exp Biol Med (Maywood),2020,245(2):85-95. doi: 10.1177/1535370219891971
|
[2] |
Thänert R, Keen E C, Dantas G, et al. Necrotizing enterocolitis and the microbiome: Current status and future directions[J]. J Infect Dis, 2021, 223(12 Suppl 2): S257-S263.
|
[3] |
Neu J. Necrotizing enterocolitis: The future[J]. Neonatology,2020,117(2):240-244. doi: 10.1159/000506866
|
[4] |
胡刘宏,余加林,艾青,等. 细胞焦亡在新生儿坏死性小肠结肠炎中的致病作用[J]. 第三军医大学学报,2017,39(14):1440-1444.
|
[5] |
Gao W,Li Y,Liu X,et al. TRIM21 regulates pyroptotic cell death by promoting gasdermin D oligomerization[J]. Cell Death Differ,2022,29(2):439-450. doi: 10.1038/s41418-021-00867-z
|
[6] |
Zhang K,Fang H,Ye Q,et al. Epithelial gasdermin D shapes the host-microbial interface by driving mucus layer formation[J]. Sci Immunol,2022,7(68):eabk2092. doi: 10.1126/sciimmunol.abk2092
|
[7] |
刘斌,阎静江,李晓霞. 新生鼠坏死性小肠结肠炎动物模型建立方法改进[J]. 中国现代医生,2015,53(35):22-25,161.
|
[8] |
Corsini I,Polvani S,Tarocchi M,et al. Peroxisome proliferator-activated receptor-γ agonist pioglitazone reduces the development of necrotizing enterocolitis in a neonatal preterm rat model[J]. Pediatr Res,2017,81(2):364-368. doi: 10.1038/pr.2016.214
|
[9] |
于广军, 陈津津, 程茜, 等. 高危儿管理[M]. 第1版. 北京: 人民卫生出版社, 2020: 59-60.
|
[10] |
Patel R M,Ferguson J,McElroy S J,et al. Defining necrotizing enterocolitis: Current difficulties and future opportunities[J]. Pediatr Res,2020,88(Suppl 1):10-15.
|
[11] |
王静,唐莲芳,顾美群,等. 新生儿坏死性小肠结肠炎的危险因素及早期临床特点[J]. 昆明医科大学学报,2021,42(11):99-104. doi: 10.12259/j.issn.2095-610X.S20211118
|
[12] |
Duchon J,Barbian M E,Denning P W. Necrotizing enterocolitis[J]. Clin Perinatol,2021,48(2):229-250. doi: 10.1016/j.clp.2021.03.002
|
[13] |
Nolan L S,Wynn J L,Good M. Exploring clinically-relevant experimental models of neonatal shock and necrotizing enterocolitis[J]. Shock,2020,53(5):596‐604.
|
[14] |
Ganji N,Li B,Ahmad I,et al. Remote ischemic conditioning in necrotizing enterocolitis: Study protocol of a multi-center phase II feasibility randomized controlled trial[J]. Pediatr Surg Int,2022,38(5):679-694. doi: 10.1007/s00383-022-05095-1
|
[15] |
Perrone S,Cremonini I,Marinelli F,et al. New strategies for necrotizing enterocolitis diagnosis and prevention in newborns[J]. Curr Pediatr Rev,2021,17(3):191-200.
|
[16] |
Hwang M,Tierradentro-García L O,Dennis R A,et al. The role of ultrasound in necrotizing enterocolitis[J]. Pediatr Radiol,2022,52(4):702-715. doi: 10.1007/s00247-021-05187-5
|
[17] |
De Fazio L,Beghetti I,Bertuccio S N,et al. Necrotizing enterocolitis: Overview on in vitro models[J]. Int J Mol Sci,2021,22(13):6761. doi: 10.3390/ijms22136761
|
[18] |
Duci M,Fascetti-Leon F,Erculiani M,et al. Neonatal independent predictors of severe NEC[J]. Pediatr Surg Int,2018,34(6):663‐669.
|
[19] |
Nagai H,Kirino Y,Nakano H,et al. Elevated serum gasdermin D N-terminal implicates monocyte and macrophage pyroptosis in adult-onset still's disease[J]. Rheumatology (Oxford),2021,60(8):3888-3895. doi: 10.1093/rheumatology/keaa814
|
[20] |
Zheng J,Wang D,Chen Q,et al. Hypertonic saccharide solution delays pyroptosis in murine macrophages regardless of the membrane binding of gasdermin D N-terminal[J]. Eur J Immunol,2020,50(3):464-467. doi: 10.1002/eji.201948230
|
[21] |
Bibo-Verdugo B,Snipas S J,Kolt S,et al. Extended subsite profiling of the pyroptosis effector protein gasdermin D reveals a region recognized by inflammatory caspase-11[J]. J Biol Chem,2020,295(32):11292-11302. doi: 10.1074/jbc.RA120.014259
|
[22] |
Cheng Q,Pan J,Zhou Z L,et al. Caspase-11/4 and gasdermin D-mediated pyroptosis contributes to podocyte injury in mouse diabetic nephropathy[J]. Acta Pharmacol Sin,2021,42(6):954-963. doi: 10.1038/s41401-020-00525-z
|
[23] |
王静,米弘瑛. 新生儿坏死性小肠结肠炎发病机制的研究进展[J]. 重庆医学,2021,50(4):694-697.
|
[24] |
Nolan L S,Wynn J L,Good M. Exploring clinically-relevant experimental models of neonatal shock and necrotizing enterocolitis[J]. Shock,2020,53(5):596-604.
|
[25] |
Hosfield B D,Drucker N A,Pecoraro A R,et al. The assessment of microbiome changes and fecal volatile organic compounds during experimental necrotizing enterocolitis[J]. J Pedia -tr Surg,2021,56(6):1220-1225. doi: 10.1016/j.jpedsurg.2021.02.043
|
[26] |
Griffiths V,Al Assaf N,Khan R. Review of claudin proteins as potential biomarkers for necrotizing enterocolitis[J]. Ir J Med Sci,2021,190(4):1465-1472.
|
[27] |
Gao L,Dong X,Gong W,et al. Acinar cell NLRP3 inflammasome and gasdermin D (GSDMD) activation mediates pyroptosis and systemic inflammation in acute pancreatitis[J]. Br J Pharmacol,2021,178(17):3533-3552. doi: 10.1111/bph.15499
|
[28] |
Booty L M,Bryant C E. Gasdermin D and beyond - gasdermin-mediated pyroptosis in bacterial infections[J]. J Mol Biol,2022,434(4):167409. doi: 10.1016/j.jmb.2021.167409
|
[29] |
Evidence-Based Medicine Group. Clinical guidelines for the diagnosis and treatment of neonatal necrotizing enterocolitis (2020)[J]. Zhongguo Dang Dai Er Ke Za Zhi,2021,23(1):1-11.
|
[30] |
Neu J. Prevention of necrotizing enterocolitis[J]. Clin Perinatol,2022,49(1):195-206.
|
[31] |
Pandeya A,Li L,Li Z,et al. Gasdermin D (GSDMD) as a new target for the treatment of infection[J]. Medchemcomm,2019,10(5):660-667. doi: 10.1039/C9MD00059C
|
[32] |
Kambara H,Liu F,Zhang X,et al. Gasdermin D exerts anti-inflammatory effects by promoting neutrophil death[J]. Cell Rep,2018,22(11):2924-2936. doi: 10.1016/j.celrep.2018.02.067
|
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