Recent Advances of Proteomics in Management of Acute Kidney Injury

被引:1
作者
Pejchinovski, Ilinka [1 ]
Turkkan, Sibel [1 ]
Pejchinovski, Martin [2 ]
机构
[1] Nikkiso Europe GmbH, Dept Qual Assurance, D-30885 Langenhagen, Germany
[2] Dept Analyt Instruments Grp, Thermo Fisher Sci, D-82110 Germering, Germany
基金
英国科研创新办公室;
关键词
acute kidney injury; proteomics; biomarkers; clinical application; C-REACTIVE PROTEIN; HISTIDINE-RICH GLYCOPROTEIN; RETINOL-BINDING-PROTEIN; THERAPEUTIC TARGET; CRITICALLY-ILL; POOR SURVIVAL; CYSTATIN C; COMPLEMENT; EXPRESSION; BIOMARKER;
D O I
10.3390/diagnostics13162648
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Acute Kidney Injury (AKI) is currently recognized as a life-threatening disease, leading to an exponential increase in morbidity and mortality worldwide. At present, AKI is characterized by a significant increase in serum creatinine (SCr) levels, typically followed by a sudden drop in glomerulus filtration rate (GFR). Changes in urine output are usually associated with the renal inability to excrete urea and other nitrogenous waste products, causing extracellular volume and electrolyte imbalances. Several molecular mechanisms were proposed to be affiliated with AKI development and progression, ultimately involving renal epithelium tubular cell-cycle arrest, inflammation, mitochondrial dysfunction, the inability to recover and regenerate proximal tubules, and impaired endothelial function. Diagnosis and prognosis using state-of-the-art clinical markers are often late and provide poor outcomes at disease onset. Inappropriate clinical assessment is a strong disease contributor, actively driving progression towards end stage renal disease (ESRD). Proteins, as the main functional and structural unit of the cell, provide the opportunity to monitor the disease on a molecular level. Changes in the proteomic profiles are pivotal for the expression of molecular pathways and disease pathogenesis. Introduction of highly-sensitive and innovative technology enabled the discovery of novel biomarkers for improved risk stratification, better and more cost-effective medical care for the ill patients and advanced personalized medicine. In line with those strategies, this review provides and discusses the latest findings of proteomic-based biomarkers and their prospective clinical application for AKI management.
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页数:24
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共 210 条
[71]   The role of complement activation in rhabdomyolysis-induced acute kidney injury [J].
Huang, XuDong ;
Zhao, Wei ;
Zhang, LiXia ;
Yang, XinJun ;
Wang, LiHui ;
Chen, YunShuang ;
Wang, JingHua ;
Zhang, Chao ;
Wu, GuangLi .
PLOS ONE, 2018, 13 (02)
[72]   A clinical, proteomics, and artificial intelligence-driven model to predict acute kidney injury in patients undergoing coronary angiography [J].
Ibrahim, Nasrien E. ;
McCarthy, Cian P. ;
Shrestha, Shreya ;
Gaggin, Hanna K. ;
Mukai, Renata ;
Magaret, Craig A. ;
Rhyne, Rhonda F. ;
Januzzi, James L., Jr. .
CLINICAL CARDIOLOGY, 2019, 42 (02) :292-298
[73]   Acute-phase proteins: As diagnostic tool [J].
Jain, Sachin ;
Gautam, Vidhi ;
Naseem, Sania .
JOURNAL OF PHARMACY AND BIOALLIED SCIENCES, 2011, 3 (01) :118-127
[74]   Discovery of Serotransferrin Glycoforms: Novel Markers for Diagnosis of Liver Periductal Fibrosis and Prediction of Cholangiocarcinoma [J].
Jamnongkan, Wassana ;
Lebrilla, Carlito B. ;
Barboza, Mariana ;
Techasen, Anchalee ;
Loilome, Watcharin ;
Sithithaworn, Paiboon ;
Khuntikeo, Narong ;
Pairojkul, Chawalit ;
Chamadol, Nittaya ;
Thanan, Raynoo ;
Yongvanit, Puangrat .
BIOMOLECULES, 2019, 9 (10)
[75]   Proficient Novel Biomarkers Guide Early Detection of Acute Kidney Injury: A Review [J].
Jana, Sahadeb ;
Mitra, Palash ;
Roy, Suchismita .
DISEASES, 2023, 11 (01)
[76]   Alpha1-antitrypsin binds hemin and prevents oxidative activation of human neutrophils: putative pathophysiological significance [J].
Janciauskiene, Sabina ;
Tumpara, Srinu ;
Wiese, Malgorzata ;
Wrenger, Sabine ;
Vijayan, Vijith ;
Gueler, Faikah ;
Chen, Rongjun ;
Madyaningrana, Kukuh ;
Mahadeva, Ravi ;
Welte, Tobias ;
Immenschuh, Stephan ;
Chorostowska-Wynimko, Joanna .
JOURNAL OF LEUKOCYTE BIOLOGY, 2017, 102 (04) :1127-1141
[77]   The discovery of α1-antitrypsin and its rote in health and disease [J].
Janciauskiene, Sabina M. ;
Bals, Robert ;
Koczulla, Rembert ;
Vogelmeier, Claus ;
Koehnlein, Thomas ;
Welte, Tobias .
RESPIRATORY MEDICINE, 2011, 105 (08) :1129-1139
[78]   Protective Effect of Alpha 1-Antitrypsin on Renal Ischemia-Reperfusion Injury [J].
Jeong, Kye-Hwa ;
Lim, Jeong-Hoon ;
Lee, Kyung-Hee ;
Kim, Min-Jung ;
Jung, Hee-Yeon ;
Choi, Ji-Young ;
Cho, Jang-Hee ;
Park, Sun-Hee ;
Kim, Yong-Lim ;
Kim, Chan-Duck .
TRANSPLANTATION PROCEEDINGS, 2019, 51 (08) :2814-2822
[79]   Identification of urinary candidate biomarkers of cisplatin-induced nephrotoxicity in patients with carcinoma [J].
Jiang, Wenjuan ;
Ma, Tai ;
Zhang, Chaoxue ;
Tang, Xiaohan ;
Xu, Qingqing ;
Meng, Xiaoming ;
Ma, Taotao .
JOURNAL OF PROTEOMICS, 2020, 210
[80]   Feasibility of singlicate-based analysis in bridging ADA assay on Meso-Scale Discovery platform: comparison with duplicate analysis [J].
Jiang, Zhihua ;
Kamerud, John ;
You, Zhiping ;
Basak, Soma ;
Seletskaia, Elena ;
Steeno, Gregory S. ;
Gorovits, Boris .
BIOANALYSIS, 2021, 13 (14) :1123-1134