1 |
Morales-Ortíz J, Deal V, Reyes F, et al. Platelet-derived TLT-1 is a prognostic indicator in ALI/ARDS and prevents tissue damage in the lungs in a mouse model[J]. Blood, 2018, 132 (23): 2495-2505.
|
2 |
Butt Y, Kurdowska A, Allen TC. Acute lung injury: a clinical and molecular review[J]. Arch Pathol Lab Med, 2016, 140 (4): 345-350.
|
3 |
Modrykamien AM, Gupta P. The acute respiratory distress syndrome[J]. Proc (Bayl Univ Med Cent), 2015, 28 (2): 163-171.
|
4 |
任志慧,章志丹,穆恩,等.急性肺损伤/急性呼吸窘迫综合征的流行病学调查分析[J]//中华医学会第五次全国重症医学大会论文汇编,广州,2011.
|
5 |
Brown LM, Calfee CS, Matthay MA, et al. A simple classification model for hospital mortality in patients with acute lung injury managed with lung protective ventilation[J]. Crit Care Med, 2011, 39 (12): 2645-2651.
|
6 |
Hayes M, Curley G, Ansari B, et al. Clinical review: stem cell therapies for acute lung injury/acute respiratory distress syndrome-hope or hype?[J]. Crit Care, 2012, 16 (2): 205.
|
7 |
Murray DD, Itenov TS, Sivapalan P, et al. Biomarkers of acute lung injury the individualized approach: for phenotyping, risk stratification and treatment surveillance[J]. J Clin Med, 2019 (8): 1163.
|
8 |
Benrick A, Chanclón B, Micallef P, et al. Adiponectin protects against development of metabolic disturbances in a PCOS mouse model[J]. Proc Natl Acad Sci U S A, 2017, 114 (34): E7187-E7196.
|
9 |
廖世均,梁卫东.急性肺损伤保护措施进展研究[J].临床肺科杂志,2018,23(7):1321-1325.
|
10 |
Borges MC, Oliveira IO, Freitas DF, et al. Obesity-induced hypoadiponectinaemia: the opposite influences of central and peripheral fat compartments[J]. Int J Epidemiol, 2017, 46 (6): 2044-2055.
|
11 |
Hansson GK. Inflammation, atherosclerosis, and coronary artery disease[J]. N Engl J Med, 2005 (352): 1685-1695.
|
12 |
Holland WL, Miller RA, Wang ZV, et al. Receptor-mediated activation of ceramidase activity initiates the pleiotropic actions of adiponectin[J]. Nat Med, 2011, 17 (1): 55-63.
|
13 |
李爽,程波,王强,等.血小板与内皮细胞屏障功能[J/CD].中华危重症医学杂志(电子版),2019,12(1):56-60.
|
14 |
Kita S, Maeda N, Shimomura I. Interorgan communication by exosomes, adipose tissue, and adiponectin in metabolic syndrome[J]. J Clin Invest, 2019, 129 (10): 4041-4049.
|
15 |
Aleksandrova K, Mozaffarian D, Pischon T. Addressing the perfect storm: biomarkers in obesity and pathophysiology of cardiometabolic risk[J]. Clin Chem, 2018, 64 (1): 142-153.
|
16 |
Bai J, Cervantes C, Liu J, et al. DsbA-L prevents obesity-induced inflammation and insulin resistance by suppressing the mtDNA release-activated cGAS-cGAMP-STING pathway[J]. Proc Natl Acad Sci U S A, 2017, 114 (46): 12196-12201.
|
17 |
Hotamisligil GS. Inflammation and metabolic disorders[J]. Nature, 2006, 444 (7121): 860-867.
|
18 |
魏大臻,王本极,林孟相,等. Slit2/Robo4信号通路在输血相关急性肺损伤体外模型中的表达及作用[J/CD].中华危重症医学杂志(电子版),2018,11(3):145-150.
|
19 |
Spracklen CN, Karaderi T, Yaghootkar H, et al. Exome-derived adiponectin-associated variants implicate obesity and lipid biology[J]. Am J Hum Genet, 2019, 105 (3): 670-671.
|
20 |
Farias TDSM, Paixao RID, Cruz MM, et al. Melatonin supplementation attenuates the pro-inflammatory adipokines expression in visceral fat from obese mice induced by a high-fat diet[J]. Cells, 2019, 8 (9): 1041.
|
21 |
邢建东.血清脂联素和炎性因子对2型肥胖糖尿病患者肾脏病变的影响[J].山西大同大学学报(自然科学版),2017,33(2):48-49,54.
|
22 |
Labazi H, Trask AJ. Coronary microvascular disease as an early culprit in the pathophysiology of diabetes and metabolic syndrome[J]. Pharmacol Res, 2017 (123): 114-121.
|
23 |
Yuan T, Yang T, Chen H, et al. New insights into oxidative stress and inflammation during diabetes mellitus-accelerated atherosclerosis[J]. Redox Biol, 2019 (20): 247-260.
|
24 |
Waragai M, Ho G, Takamatsu Y, et al. Dual-therapy strategy for modification of adiponectin receptor signaling in aging-associated chronic diseases[J]. Drug Discov Today, 2018, 23 (6): 1305-1311.
|
25 |
Yokota T, Oritani K, Takahashi I, et al. Adiponectin, a new member of the family of soluble defense collagens, negatively regulates the growth of myelomonocytic progenitors and the functions of macrophages[J]. Blood, 2000, 96 (5): 1723-1732.
|
26 |
Fogarty S, Hawley SA, Green KA, et al. Calmodulin-dependent protein kinase kinase-beta activates AMPK without forming a stable complex: synergistic effects of Ca2+ and AMP[J]. Biochem J, 2010, 426 (1): 109-118.
|
27 |
Yamauchi T, Kamon J, Minokoshi Y, et al. Adiponectin stimulates glucose utilization and fatty-acid oxidation by activating AMP-activated protein kinase[J]. Nat Med, 2002, 8 (11): 1288-1295.
|
28 |
Konter JM, Parker JL, Baez E, et al. Adiponectin attenuates lipopolysaccharide-induced acute lung injury through suppression of endothelial cell activation[J]. J Immunol, 2012, 188 (2): 854-863.
|
29 |
Motoshima H, Wu X, Mahadev K, et al. Adiponectin suppresses proliferation and superoxide generation and enhances eNOS activity in endothelial cells treated with oxidized LDL[J]. Biochem Biophys Res Commun, 2004, 315 (2): 264-271.
|
30 |
Imai Y, Kuba K, Neely GG, et al. Identification of oxidative stress and Toll-like receptor 4 signaling as a key pathway of acute lung injury[J]. Cell, 2008, 133 (2): 235-249.
|
31 |
Lang JD, McArdle PJ, O'Reilly PJ, et al. Oxidant-antioxidant balance in acute lung injury[J]. Chest, 2002, 122 (6 Suppl): 314S-320S.
|
32 |
Cai L, Yi F, Dai Z, et al. Loss of caveolin-1 and adiponectin induces severe inflammatory lung injury following LPS challenge through excessive oxidative/nitrative stress[J]. Am J Physiol Lung Cell Mol Physiol, 2014, 306 (6): L566-L573.
|
33 |
Garrean S, Gao XP, Brovkovych V, et al. Caveolin-1 regulates NF-kappaB activation and lung inflammatory response to sepsis induced by lipopolysaccharide[J]. J Immunol, 2006, 177 (7): 4853-4860.
|
34 |
Mirza MK, Yuan J, Gao XP, et al. Caveolin-1 deficiency dampens Toll-like receptor 4 signaling through eNOS activation[J]. Am J Pathol, 2010, 176 (5): 2344-2351.
|
35 |
Xu L, Bao HG, Si YN, et al. Effects of adiponectin on acute lung injury in cecal ligation and puncture-induced sepsis rats[J]. J Surg Res, 2013, 183 (2): 752-759.
|
36 |
Li D, Song LL, Wang J, et al. Adiponectin protects against lung ischemia-reperfusion injury in rats with type 2 diabetes mellitus[J]. Mol Med Rep, 2018, 17 (5): 7191-7201.
|
37 |
Sliman SM, Patel RB, Cruff JP, et al. Adiponectin protects against hyperoxic lung injury and vascular leak[J]. Cell Biochem Biophys, 2013, 67 (2): 399-414.
|