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Effects of tuberculosis and HIV infection on whole-body protein metabolism during feeding, measured by the [15N]glycine method

Effects of tuberculosis and HIV infection on whole-body protein metabolism during feeding, measured by the [15N]glycine method
Effects of tuberculosis and HIV infection on whole-body protein metabolism during feeding, measured by the [15N]glycine method
Background: Tuberculosis (TB) and HIV infection are wasting diseases that frequently occur together and have severe consequences on nutritional status.
Objective: The objective was to determine the effects of TB and HIV, separately and together, on protein metabolism.
Design: Protein metabolism was determined in the fed state in 11 healthy control subjects, in 10 patients with HIV infection without TB or other active infection (HIV group), in 10 patients with active TB without HIV infection (TB group), and in 8 patients with HIV infection and active TB (HIVTB group) with the use of oral [15N]glycine and measurement of enrichment in urinary urea and ammonia.
Results: Whole-body protein flux and degradation were lower in the HIV group than in the control group (mean flux: 3.53 ± 0.40 compared with 4.75 ± 0.97 g · kg lean body mass-1 · 12 h-1; P = 0.002). Protein flux, synthesis, and degradation were not significantly different between the control group and the TB and HIVTB groups. Net protein balance was strongly anabolic in the control, HIV, and TB groups but was neutral in the HIVTB group (P < 0.001 for comparison between groups).
Conclusions: HIV infection was associated with a significant down-regulation of whole-body protein flux. TB alone was not associated with abnormal protein metabolism, but net anabolism in the fed state was impaired in the HIVTB group.
hiv, tuberculosis, infection, protein metabolism, glycine, wasting
0002-9165
319-325
Paton, Nicholas I.
21d164a5-4c1b-461f-b6fe-02899c9b5af5
Ng, Yau-Ming
4bfd57ec-d10d-4285-a0ac-e04007dd6036
Chee, Cynthia B.E.
e038b62e-a7a5-4175-b8f3-ac379de0c524
Persaud, Chandarika
a61532b0-9a23-46f5-9713-e73e0428e2dc
Jackson, Alan A.
c9a12d7c-b4d6-4c92-820e-890a688379ef
Paton, Nicholas I.
21d164a5-4c1b-461f-b6fe-02899c9b5af5
Ng, Yau-Ming
4bfd57ec-d10d-4285-a0ac-e04007dd6036
Chee, Cynthia B.E.
e038b62e-a7a5-4175-b8f3-ac379de0c524
Persaud, Chandarika
a61532b0-9a23-46f5-9713-e73e0428e2dc
Jackson, Alan A.
c9a12d7c-b4d6-4c92-820e-890a688379ef

Paton, Nicholas I., Ng, Yau-Ming, Chee, Cynthia B.E., Persaud, Chandarika and Jackson, Alan A. (2003) Effects of tuberculosis and HIV infection on whole-body protein metabolism during feeding, measured by the [15N]glycine method. American Journal of Clinical Nutrition, 78 (2), 319-325.

Record type: Article

Abstract

Background: Tuberculosis (TB) and HIV infection are wasting diseases that frequently occur together and have severe consequences on nutritional status.
Objective: The objective was to determine the effects of TB and HIV, separately and together, on protein metabolism.
Design: Protein metabolism was determined in the fed state in 11 healthy control subjects, in 10 patients with HIV infection without TB or other active infection (HIV group), in 10 patients with active TB without HIV infection (TB group), and in 8 patients with HIV infection and active TB (HIVTB group) with the use of oral [15N]glycine and measurement of enrichment in urinary urea and ammonia.
Results: Whole-body protein flux and degradation were lower in the HIV group than in the control group (mean flux: 3.53 ± 0.40 compared with 4.75 ± 0.97 g · kg lean body mass-1 · 12 h-1; P = 0.002). Protein flux, synthesis, and degradation were not significantly different between the control group and the TB and HIVTB groups. Net protein balance was strongly anabolic in the control, HIV, and TB groups but was neutral in the HIVTB group (P < 0.001 for comparison between groups).
Conclusions: HIV infection was associated with a significant down-regulation of whole-body protein flux. TB alone was not associated with abnormal protein metabolism, but net anabolism in the fed state was impaired in the HIVTB group.

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More information

Published date: August 2003
Additional Information: Original research communication
Keywords: hiv, tuberculosis, infection, protein metabolism, glycine, wasting

Identifiers

Local EPrints ID: 25894
URI: http://eprints.soton.ac.uk/id/eprint/25894
ISSN: 0002-9165
PURE UUID: c5d5239e-bdd2-414f-b5c3-9307048d1585

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Date deposited: 20 Apr 2006
Last modified: 15 Mar 2024 07:06

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Contributors

Author: Nicholas I. Paton
Author: Yau-Ming Ng
Author: Cynthia B.E. Chee
Author: Chandarika Persaud
Author: Alan A. Jackson

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