Lipoprotein lipase transport in plasma: role of muscle and adipose tissues in regulation of plasma lipoprotein lipase concentrations.

Lipoprotein lipase (LPL) is synthesized in tissues involved in fatty acid metabolism such as muscle and adipose tissue. LPL is also found in the circulation, but is mostly lipolytically inactive. The proportion of active circulating LPL increases after a fatty meal. We investigated the release of ac...

ver descrição completa

Detalhes bibliográficos
Principais autores: Karpe, F, Olivecrona, T, Olivecrona, G, Samra, J, Summers, L, Humphreys, S, Frayn, K
Formato: Journal article
Idioma:English
Publicado em: 1998
_version_ 1826291995348303872
author Karpe, F
Olivecrona, T
Olivecrona, G
Samra, J
Summers, L
Humphreys, S
Frayn, K
author_facet Karpe, F
Olivecrona, T
Olivecrona, G
Samra, J
Summers, L
Humphreys, S
Frayn, K
author_sort Karpe, F
collection OXFORD
description Lipoprotein lipase (LPL) is synthesized in tissues involved in fatty acid metabolism such as muscle and adipose tissue. LPL is also found in the circulation, but is mostly lipolytically inactive. The proportion of active circulating LPL increases after a fatty meal. We investigated the release of active and inactive LPL from adipose tissue and muscle in the fasting and postprandial states. Arteriovenous concentration gradients of LPL across adipose tissue and forearm muscle were measured in male subjects before and after a fat-rich meal (n = 7) and before and during infusion of a triacylglycerol emulsion (Intralipid) (n = 6). Plasma LPL activity rose after the meal and more so during Intralipid infusion. Plasma LPL mass (>95% inactive LPL) increased after the meal but decreased after Intralipid infusion. In the fasting state (n = 13) muscle efflux of LPL activity was 0.263 +/- 0.098 mU/min per 100 ml of muscle tissue whereas there was an influx of LPL activity to adipose tissue of 0.085 +/- 0.100 mU/min per 100 g of adipose tissue (P < 0. 02 muscle vs. adipose tissue). Similarly in the postprandial state only muscle released LPL activity. Both tissues released LPL mass. In the fasting state efflux was 17.8 +/- 8.8 ng/min per 100 ml muscle and 55.2 +/- 21.3 ng/min per 100 g of adipose tissue (P < 0. 05 muscle vs. adipose tissue). Release of LPL, either active or inactive, was not correlated with levels of non-esterified fatty acids or plasma triacylglycerol. In conclusion, there is a substantial release of LPL from adipose tissue and muscle, most of which is inactive. A small proportion of active LPL seems to be redistributed from muscle to adipose tissue.
first_indexed 2024-03-07T03:07:53Z
format Journal article
id oxford-uuid:b32e11f7-0631-44a7-b75b-e6e1102deda0
institution University of Oxford
language English
last_indexed 2024-03-07T03:07:53Z
publishDate 1998
record_format dspace
spelling oxford-uuid:b32e11f7-0631-44a7-b75b-e6e1102deda02022-03-27T04:17:11ZLipoprotein lipase transport in plasma: role of muscle and adipose tissues in regulation of plasma lipoprotein lipase concentrations.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:b32e11f7-0631-44a7-b75b-e6e1102deda0EnglishSymplectic Elements at Oxford1998Karpe, FOlivecrona, TOlivecrona, GSamra, JSummers, LHumphreys, SFrayn, KLipoprotein lipase (LPL) is synthesized in tissues involved in fatty acid metabolism such as muscle and adipose tissue. LPL is also found in the circulation, but is mostly lipolytically inactive. The proportion of active circulating LPL increases after a fatty meal. We investigated the release of active and inactive LPL from adipose tissue and muscle in the fasting and postprandial states. Arteriovenous concentration gradients of LPL across adipose tissue and forearm muscle were measured in male subjects before and after a fat-rich meal (n = 7) and before and during infusion of a triacylglycerol emulsion (Intralipid) (n = 6). Plasma LPL activity rose after the meal and more so during Intralipid infusion. Plasma LPL mass (>95% inactive LPL) increased after the meal but decreased after Intralipid infusion. In the fasting state (n = 13) muscle efflux of LPL activity was 0.263 +/- 0.098 mU/min per 100 ml of muscle tissue whereas there was an influx of LPL activity to adipose tissue of 0.085 +/- 0.100 mU/min per 100 g of adipose tissue (P < 0. 02 muscle vs. adipose tissue). Similarly in the postprandial state only muscle released LPL activity. Both tissues released LPL mass. In the fasting state efflux was 17.8 +/- 8.8 ng/min per 100 ml muscle and 55.2 +/- 21.3 ng/min per 100 g of adipose tissue (P < 0. 05 muscle vs. adipose tissue). Release of LPL, either active or inactive, was not correlated with levels of non-esterified fatty acids or plasma triacylglycerol. In conclusion, there is a substantial release of LPL from adipose tissue and muscle, most of which is inactive. A small proportion of active LPL seems to be redistributed from muscle to adipose tissue.
spellingShingle Karpe, F
Olivecrona, T
Olivecrona, G
Samra, J
Summers, L
Humphreys, S
Frayn, K
Lipoprotein lipase transport in plasma: role of muscle and adipose tissues in regulation of plasma lipoprotein lipase concentrations.
title Lipoprotein lipase transport in plasma: role of muscle and adipose tissues in regulation of plasma lipoprotein lipase concentrations.
title_full Lipoprotein lipase transport in plasma: role of muscle and adipose tissues in regulation of plasma lipoprotein lipase concentrations.
title_fullStr Lipoprotein lipase transport in plasma: role of muscle and adipose tissues in regulation of plasma lipoprotein lipase concentrations.
title_full_unstemmed Lipoprotein lipase transport in plasma: role of muscle and adipose tissues in regulation of plasma lipoprotein lipase concentrations.
title_short Lipoprotein lipase transport in plasma: role of muscle and adipose tissues in regulation of plasma lipoprotein lipase concentrations.
title_sort lipoprotein lipase transport in plasma role of muscle and adipose tissues in regulation of plasma lipoprotein lipase concentrations
work_keys_str_mv AT karpef lipoproteinlipasetransportinplasmaroleofmuscleandadiposetissuesinregulationofplasmalipoproteinlipaseconcentrations
AT olivecronat lipoproteinlipasetransportinplasmaroleofmuscleandadiposetissuesinregulationofplasmalipoproteinlipaseconcentrations
AT olivecronag lipoproteinlipasetransportinplasmaroleofmuscleandadiposetissuesinregulationofplasmalipoproteinlipaseconcentrations
AT samraj lipoproteinlipasetransportinplasmaroleofmuscleandadiposetissuesinregulationofplasmalipoproteinlipaseconcentrations
AT summersl lipoproteinlipasetransportinplasmaroleofmuscleandadiposetissuesinregulationofplasmalipoproteinlipaseconcentrations
AT humphreyss lipoproteinlipasetransportinplasmaroleofmuscleandadiposetissuesinregulationofplasmalipoproteinlipaseconcentrations
AT fraynk lipoproteinlipasetransportinplasmaroleofmuscleandadiposetissuesinregulationofplasmalipoproteinlipaseconcentrations