首页> 外文期刊>The Journal of Thoracic and Cardiovascular Surgery >Neutrophil gelatinase-associated lipocalin: a promising biomarker for detecting cardiac surgery-associated acute kidney injury.
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Neutrophil gelatinase-associated lipocalin: a promising biomarker for detecting cardiac surgery-associated acute kidney injury.

机译:中性粒细胞明胶酶相关的lipocalin:一种有前途的生物标志物,用于检测与心脏手术相关的急性肾脏损伤。

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摘要

Acute kidney injury is a common and significant problem that occurs in a wide variety of clinical settings. Cardiac surgery-associated acute kidney injury continues to be a well-recognized complication of cardiac surgery with associated morbidity and mortality. A lack of early biomarkers for acute kidney injury has prevented timely interventions to mitigate the effects of acute kidney injury. Because serum creatinine is not a timely marker of acute kidney injury, it cannot be used to institute potentially effective therapies to treat acute kidney injury in patients during phases when the injury is still potentially reversible. Neutrophil gelatinase-associated lipocalin has been identified as a promising biomarker for early detection of acute kidney injury. Several studies have shown that neutrophil gelatinase-associated lipocalin levels increase significantly in patients with acute kidney injury 24 to 48 hours before an increase in serum creatinine is detectable. Recent studies suggest that measurements of neutrophil gelatinase-associated lipocalin levels in patients at risk for cardiac surgery-associated acute kidney injury can facilitate its early diagnosis and allow clinicians to implement therapeutic adjustments that have the potential to reverse renal cellular damage and minimize further kidney injury.
机译:急性肾损伤是在许多临床环境中发生的普遍且显着的问题。心脏外科手术相关的急性肾损伤仍然是心脏外科手术公认的并发症,并伴有发病率和死亡率。缺乏用于急性肾损伤的早期生物标记物,阻止了及时干预以减轻急性肾损伤的影响。因为血清肌酐不是急性肾损伤的及时标志,所以不能用于建立潜在有效的疗法来治疗仍可能可逆的急性肾损伤患者。中性粒细胞明胶酶相关的脂蛋白已被鉴定为早期发现急性肾损伤的有前途的生物标志物。几项研究表明,在可检测到血清肌酐升高之前的24至48小时内,患有急性肾损伤的患者中性粒细胞明胶酶相关的脂蛋白水平显着增加。最近的研究表明,在有心脏手术相关的急性肾损伤风险的患者中测量中性粒细胞明胶酶相关的脂蛋白水平可以促进其早期诊断,并使临床医生能够进行治疗性调整,从而有可能逆转肾细胞损伤并最大程度地减少进一步的肾脏损伤。

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