Search PubMed⌕ Search

PubMed · 3332221

Lactate metabolism.

Abstract

Lactate is the end product of the anaerobic metabolism of glucose, and its accumulation in the blood signals an increase in production or a decrease in utilization, or both. The most common etiology of lactic acidosis is hypoperfusion, which represents an imbalance between systemic oxygen demand and oxygen availability with resultant tissue hypoxia. A wide variety of other etiologies of hyperlactatemia have been identified or implicated. However, most of these are uncommon causes, and many actually represent an associated perfusion failure. Clinical recognition of hyperlactatemia is facilitated by an awareness of the clinical settings in which it is likely to occur. Serum electrolyte and arterial blood gas studies are helpful to recognize lactic acidosis, but direct assay of blood lactate is necessary to identify milder degrees of lactate elevation, to confirm and quantitate the severity of more severe degrees, and to monitor the progress of therapy. Therapy should be directed toward measures to ensure adequate systemic oxygen delivery and specific treatment of the underlying causes.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

J A Kruse, R W Carlson. 1987. Lactate metabolism.. https://pubmed.ncbi.nlm.nih.gov/3332221/

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

A previously undescribed leukodystrophy in Leigh syndrome associated with T9176C mutation of the mitochondrial ATPase 6 gene.

We report two male Taiwanese siblings in whom the T-->C point mutation at nucleotide 9176 of the mitochondrial ATPase 6 gene (m.9176T>C mutation) was associated with early onset hypotonia, lactic acidosis, and death due to respiratory arrest at 7 and 10 months old. Brain MRI showed lesions over diffuse white matter and the bilateral posterior limbs of the internal capsule. The m.9176T>C mutation is suggested as the cause of the bilateral striatal necrosis and Leigh syndrome. However, leukodystrophy in Leigh syndrome associated with m.9176T>C mutation has never been reported before. We suggest that m.9176T>C mutation could be a new aetiology for leukodystrophy in children with Leigh syndrome.

Acidosis, Lactic↗

Lactic acidosis in children with acute exacerbation of severe asthma.

This is a retrospective case series reporting lactic acidosis in four pediatric patients with acute severe asthma treated with nebulized beta2-agonists in a pediatric intensive care unit of a tertiary care teaching facility. During treatment with beta2-agonists, these patients developed lactic acidosis with a peak concentration of 5.2 to 13 mmol/l. Lactic acidosis improved within 24 h after discontinuation or decrease in the dosage of beta2-agonists. We conclude that the intensive use of beta2-agonists for acute severe asthma in children may be the primary and significant cause of lactic acidosis.

Acidosis, Lactic↗