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Mechanisms underlying stress-induced hyperglycemia in critically ill patients

医学 病危 应激性高血糖 重症监护医学 内科学 胰岛素
作者
Farshad Kajbaf,Mojtaba Mojtahedzadeh,Mohammad Abdollahı
出处
期刊:Therapy [Future Medicine]
卷期号:4 (1): 97-106 被引量:65
标识
DOI:10.2217/14750708.4.1.97
摘要

Critical illnesses associate with alteration in metabolic status. Insulin resistance and enhanced blood glucose levels occur during stressful situations, such as acute illnesses. These disturbances associate with poor prognostic events. Intensive insulin therapy and maintaining normoglycemia reduce the morbidity and mortality rate in critically ill patients. We aim to give an overview of the current insights in hyperglycemia and insulin resistance in critical illnesses. A search of the literature was conducted using Pubmed articles in English. Most of the recent and relevant articles were studied, reviewed and summarized with categorization of causes, pathophysiology and adverse events. To introduce better conception regarding stress-induced hyperglycemia and its management, the most viable mechanisms and therapeutic goals are discussed. Hyperglycemia and insulin resistance are common in critically ill patients, particularly in trauma, postmyocardial infarction, following major surgery and among those with sepsis. These complications occur in patients with or without a history of diabetes. Multiple pathogenic mechanisms, such as increased release of proinflammatory cytokines and counterregulatory hormones, have been suggested. The resulting metabolic alteration is associated with significant adverse events and poor prognostic outcomes. Strict glycemic control and intensive insulin therapy could improve the survival rate in critically ill patients. Tight glycemic control by intensive insulin therapy has a pivotal role in the treatment of such patients. Every medication or intervention that could prevent the inflammatory process and insulin resistance might be considered as therapeutic strategies for the improvement of critically ill patients with acute hyperglycemia.
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