[1] |
程晔, 应佳云, 刘彦婷, 等. 《2020拯救脓毒症运动国际指南:儿童脓毒性休克和脓毒症相关器官功能障碍管理》解读[J]. 中国小儿急救医学, 2020, 27(4): 241-248.
|
[2] |
Weiss SL, Peters MJ, Alhazzani W, et al. Surviving Sepsis Campaign International Guidelines for the Management of Septic Shock and Sepsis-Associated Organ Dysfunction in Children[J]. Pediatr Crit Care Med, 2020, 21(2): e52-e106.
doi: 10.1097/PCC.0000000000002198
|
[3] |
Balamuth F, Weiss SL, Neuman MI, et al. Pediatric severe sepsis in U.S. children's hospitals[J]. Pediatr Crit Care Med, 2014, 15(9): 798-805.
doi: 10.1097/PCC.0000000000000225
|
[4] |
Singer M, Deutschman CS, Seymour CW, et al. The third international consensus definitions for sepsis and septic shock (Sepsis-3)[J]. JAMA, 2016, 315(8): 801-810.
doi: 10.1001/jama.2016.0287
pmid: 26903338
|
[5] |
Piccioni A, Santoro MC, de Cunzo T, et al. Presepsin as early marker of sepsis in emergency department: a narrative review[J]. Medicina (Kaunas), 2021, 57(8): 770.
|
[6] |
Ward TL, Goto K, Altosaar I. Ingested soluble CD14 contributes to the functional pool of circulating sCD14 in mice[J]. Immunobiology, 2014, 219(7): 537-546.
doi: 10.1016/j.imbio.2014.03.008
pmid: 24703105
|
[7] |
Ackland GL, Prowle JR. Presepsin: solving a soluble (CD14) problem in sepsis?[J]. Intensive Care Med, 2015, 41(2): 351-353.
doi: 10.1007/s00134-014-3642-8
pmid: 25608923
|
[8] |
李丹, 陈兴明, 胡志娜, 等. Presepsin对脓毒症3.0定义下脓毒症诊断价值的meta分析[J]. 标记免疫分析与临床, 2022, 29(5): 731-735.
|
[9] |
Lee S, Song J, Park DW, et al. Diagnostic and prognostic value of presepsin and procalcitonin in non-infectious organ f ailure, sepsis, and septic shock: a prospective observational study according to the sepsis-3 definitions[J]. BMC Infect Dis, 2022, 22(1): 8.
doi: 10.1186/s12879-021-07012-8
|
[10] |
Chen M, Zhu Y. Utility of sTREM-1 and Presepsin (sCD14-ST) as diagnostic and prognostic markers of sepsis[J]. Clin Lab, 2020, 66(4). doi: 10.7754/Clin.Lab.2019.190508.
|
[11] |
Maddaloni C, De Rose DU, Santisi A, et al. The emerging role of presepsin (P-SEP) in the diagnosis of sepsis in the critically ill infant: a literature review[J]. Int J Mol Sci, 2021, 22(22): 12154.
doi: 10.3390/ijms222212154
|
[12] |
Poggi C, Lucenteforte E, Petri D, et al. Presepsin for the diagnosis of neonatal early-onset sepsis: a systematic review and meta-analysis[J]. JAMA Pediatr, 2022, 176(8): 750-758.
doi: 10.1001/jamapediatrics.2022.1647
pmid: 35639395
|
[13] |
林巧, 王华. 血清presepsin(sCD14-ST)检测对新生儿败血症诊断价值的meta分析[J]. 中华妇幼临床医学杂志(电子版), 2021, 17(6): 699-708.
|
[14] |
Golovnya EG, Kharitidi TY, Sotnikov AV, et al. Diagnostic levels of sepsis biomarkers in children with oncological diseases[J]. Klin Lab Diagn, 2022, 67(1): 13-18.
doi: 10.51620/0869-2084-2022-67-1
|
[15] |
Arıkan K, Karadag-Oncel E, Aytac S, et al. Usage of plasma presepsin, C-reactive protein, procalcitonin and proadrenomedullin to predict bacteremia in febril neutropenia of pediatric hematological malignancy patients[J]. Lab Med, 2021, 52(5): 477-484.
doi: 10.1093/labmed/lmab002
pmid: 33851202
|
[16] |
Tanır Basaranoglu S, Karadag-Oncel E, Aykac K, et al. Presepsin: a new marker of catheter related blood stream infections in pediatric patients[J]. J Infect Chemother, 2018, 24(1): 25-30.
doi: S1341-321X(17)30191-5
pmid: 28919353
|
[17] |
刘新光, 李清涛, 张玉东, 等. 儿童血流感染病原菌分布情况及mNAP、Presepsin、TREM-1的早期预测价值[J]. 疑难病杂志, 2021, 20(4): 378-382.
|
[18] |
Yoon SH, Kim EH, Kim HY, et al. Presepsin as a diagnostic marker of sepsis in children and adolescents: a systemic review and meta-analysis[J]. BMC Infect Dis, 2019, 19(1): 760.
doi: 10.1186/s12879-019-4397-1
pmid: 31470804
|
[19] |
Hu B, Tao Y, Shao Z, et al. A comparison of blood pathogen detection among droplet digital PCR, metagenomic next-generation sequencing, and blood culture in critically ill patients with suspected bloodstream infections[J]. Front Microbiol, 2021, 12: 641202.
doi: 10.3389/fmicb.2021.641202
|
[20] |
杨梅, 钱素云. 提高精准抗感染诊疗能力,改善儿童脓毒症预后[J]. 中华急诊医学杂志, 2022, 31(6): 711-713.
|
[21] |
Okamura Y, Yokoi H. Development of a point-of-care assay system for measurement of presepsin (sCD14-ST)[J]. Clin Chim Acta, 2011, 412(23-24): 2157-2161.
doi: 10.1016/j.cca.2011.07.024
pmid: 21839732
|
[22] |
Volanakis JE. Human C-reactive protein: expression, structure, and function[J]. Mol Immunol, 2001, 38(2-3): 189-197.
doi: 10.1016/s0161-5890(01)00042-6
pmid: 11532280
|
[23] |
刘霜, 惠奕, 李宁, 等. 血清Presepsin在儿童脓毒症诊断及病情评估中的应用[J]. 中国小儿急救医学, 2021, 28(12): 1082-1088.
|
[24] |
刘晖, 赵培然, 官丽梅, 等. 脓毒症患儿血清Presepsin和炎症因子与预后的相关性分析[J]. 中华医院感染学杂志, 2020, 30(3): 438-442.
|
[25] |
占刘英, 陈见南. 可溶性白细胞分化抗原14亚型、降钙素原及乳酸在脓毒症患儿诊断与预后评估中的价值[J]. 中国医刊, 2021, 56(3): 287-290.
|
[26] |
Hassuna NA, Elgezawy E, Mousa SO, et al. Diagnostic value of monocyte chemoattractant Protein-1, soluble mannose receptor, Presepsin, and Procalcitonin in critically ill children admitted with suspected sepsis[J]. BMC Pediatr, 2021, 21(1): 458.
doi: 10.1186/s12887-021-02930-7
pmid: 34666725
|
[27] |
王芳, 黄声雷, 林见敏, 等. 血清降钙素原可溶性白细胞分化抗原14亚型联合血培养应用对脓毒症的诊断价值[J]. 中国药物与临床, 2022, 22(1): 29-31.
|
[28] |
Sakyi SA, Enimil A, Adu DK, et al. Individual and combined bioscore model of presepsin, procalcitonin, and high sensitive C - reactive protein as biomarkers for early diagnosis of paediatric sepsis[J]. Heliyon, 2020, 6(9): e04841.
doi: 10.1016/j.heliyon.2020.e04841
|
[29] |
杨帆, 刘君, 王丹, 等. Presesin联合降钙素原对脓毒症患儿28d病死率预测价值研究[J]. 临床急诊杂志, 2021, 22(1): 15-20.
|
[30] |
Xiao H, Wang G, Wang Y, et al. Potential Value of Presepsin Guidance in Shortening Antibiotic Therapy in Septic Patients: a multicenter, prospective cohort trial[J]. Shock, 2022, 57(1): 63-71.
doi: 10.1097/SHK.0000000000001870
|
[31] |
Velissaris D, Zareifopoulos N, Karamouzos V, et al. Presepsin as a diagnostic and prognostic biomarker in sepsis[J]. Cureus, 2021, 13(5): e15019.
|
[32] |
朱孟沙, 张贵英, 赵清娟, 等. 血浆Presepsin在小儿脓毒症早期诊断及预后评估中的临床应用[J]. 中国医药, 2020, 15(7): 1102-1105.
|
[33] |
黄文辉, 何轶群, 李娟, 等. sTREM-1、Presepsin对儿童脓毒症诊断和预后评估的价值[J]. 中国现代医学杂志, 2021, 31(19): 7-13.
|
[34] |
Miyoshi M, Inoue Y, Nishioka M, et al. Usefulness of presepsin / creatinine ratio as a new index that corrects for renal function[J]. J Med Invest, 2021, 68(1.2): 105-111.
doi: 10.2152/jmi.68.105
|
[35] |
Kobayashi S, Amano H, Terawaki H, et al. Prediction of presepsin concentrations through commensurate decline in kidney function in the elderly[J]. Clin Chim Acta, 2020, 500: 1-9.
doi: S0009-8981(19)32050-9
pmid: 31593686
|
[36] |
Miyoshi M, Inoue Y, Nishioka M, et al. Clinical evaluation of presepsin considering renal function[J]. PLoS One, 2019, 14(9): e0215791.
doi: 10.1371/journal.pone.0215791
|
[37] |
Tanimura S, Fujieda Y, Kono M, et al. Clinical significance of plasma presepsin levels in patients with systemic lupus erythematosus[J]. Mod Rheumatol, 2018, 28(5): 865-871.
doi: 10.1080/14397595.2017.1408755
pmid: 29239264
|
[38] |
Echeverri A, Naranjo-Escobar J, Posso-Osorio I, et al. Neutrophil CD64 expression, procalcitonin and presepsin are useful to differentiate infections from flares in SLE patients with SIRS[J]. Lupus, 2018, 27(7): 1130-1139.
doi: 10.1177/0961203318763740
pmid: 29540108
|
[39] |
Ikegame A, Kondo A, Kitaguchi K, et al. Presepsin production in monocyte/macrophage-mediated phago-cytosis of neutrophil extracellular traps[J]. Sci Rep, 2022, 12(1): 5978.
doi: 10.1038/s41598-022-09926-y
|
[40] |
Takeshita S, Nakatani K, Tsujimoto H, et al. Increased levels of circulating soluble CD14 in Kawasaki disease[J]. Clin Exp Immunol, 2000, 119(2): 376-381.
pmid: 10632678
|