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The development and validation of an ABL835 FLEX Blood Gas Analyser method for the quantitation of glucose, lactate, and electrolytes in post-mortem vitreous humour

Post-mortem biochemistry provides valuable insights into the biochemical status of an individual at the time of death. Vitreous humour (VH) has an anatomically isolated location within the body, making it less prone to the effects of putrefaction and autolysis after death. As such, VH has frequently...

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Main Author: Van Vuuren, Andrew
Other Authors: Mader, Jade
Format: Thesis
Language:English
English
Published: Department of Pathology 2026
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access_status_str Open Access
author Van Vuuren, Andrew
author2 Mader, Jade
author_browse Mader, Jade
Van Vuuren, Andrew
author_facet Mader, Jade
Van Vuuren, Andrew
author_sort Van Vuuren, Andrew
collection Thesis
description Post-mortem biochemistry provides valuable insights into the biochemical status of an individual at the time of death. Vitreous humour (VH) has an anatomically isolated location within the body, making it less prone to the effects of putrefaction and autolysis after death. As such, VH has frequently been described as the specimen of choice in biochemical forensic investigations to identify potential ante-mortem conditions and to estimate the post-mortem interval. The lack of a validated method for post-mortem biochemistry analysis using VH as part of routine toxicology testing within the Western Cape province of South Africa motivated the primary aim of this study, which was to develop and validate a method for the analysis of glucose, lactate, and electrolytes (potassium (K+), sodium (Na+), chloride (Cl-) and calcium (Ca2+)) using an ABL835 FLEX blood gas analyser. Method development included instrument verification and sample preparation optimisation, which assessed the effect of centrifugation and dilution. Validation included tests for accuracy, precision, sample stability, drug interferences and between-eye differences. Sample preparation experiments determined that untreated VH may be analysed directly or diluted in a 1:1 ratio with ultrapure water, when required. All analytes demonstrated acceptable bias, within-run and between-run precision at concentrations above 1.6 mmol/L. Results indicated suitable stability for K+, Na+, Cl-, glucose and lactate across all storage conditions over 31 days, while Ca2+ values decreased over time when frozen at -20°C. Drug interference was minimal for most analytes, with effects remaining within acceptable ranges (%error < ± 20%), with the exception of Ca2+. No statistically significant between-eye differences (p > 0.05) were observed for any analytes in both undiluted and diluted (1:1) samples. Overall, the method performed satisfactorily and was deemed fit for purpose for routine analysis. While important limitations regarding sample stability and potential interferences must be considered, this method provides a valuable resource for post-mortem biochemical analysis in cases of unnatural deaths in the Western Cape to support both individual case resolutions and broader public health insights.
format Thesis
id oai:open.uct.ac.za:11427/42803
institution University of Cape Town (South Africa)
language English
eng
last_indexed 2026-06-10T12:31:24.573Z
license_str Not specified — see source repository
provenance_str_mv Harvested via OAI-PMH from UCTD — University of Cape Town Open Access Repository
publishDate 2026
publishDateRange 2026
publishDateSort 2026
publisher Department of Pathology
publisherStr Department of Pathology
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source_str UCTD — University of Cape Town Open Access Repository
spelling oai:open.uct.ac.za:11427/42803 The development and validation of an ABL835 FLEX Blood Gas Analyser method for the quantitation of glucose, lactate, and electrolytes in post-mortem vitreous humour Van Vuuren, Andrew Mader, Jade Khotseng, Mmitsane Blood Gas Analyser glucose lactate electrolytes Post-mortem biochemistry provides valuable insights into the biochemical status of an individual at the time of death. Vitreous humour (VH) has an anatomically isolated location within the body, making it less prone to the effects of putrefaction and autolysis after death. As such, VH has frequently been described as the specimen of choice in biochemical forensic investigations to identify potential ante-mortem conditions and to estimate the post-mortem interval. The lack of a validated method for post-mortem biochemistry analysis using VH as part of routine toxicology testing within the Western Cape province of South Africa motivated the primary aim of this study, which was to develop and validate a method for the analysis of glucose, lactate, and electrolytes (potassium (K+), sodium (Na+), chloride (Cl-) and calcium (Ca2+)) using an ABL835 FLEX blood gas analyser. Method development included instrument verification and sample preparation optimisation, which assessed the effect of centrifugation and dilution. Validation included tests for accuracy, precision, sample stability, drug interferences and between-eye differences. Sample preparation experiments determined that untreated VH may be analysed directly or diluted in a 1:1 ratio with ultrapure water, when required. All analytes demonstrated acceptable bias, within-run and between-run precision at concentrations above 1.6 mmol/L. Results indicated suitable stability for K+, Na+, Cl-, glucose and lactate across all storage conditions over 31 days, while Ca2+ values decreased over time when frozen at -20°C. Drug interference was minimal for most analytes, with effects remaining within acceptable ranges (%error < ± 20%), with the exception of Ca2+. No statistically significant between-eye differences (p > 0.05) were observed for any analytes in both undiluted and diluted (1:1) samples. Overall, the method performed satisfactorily and was deemed fit for purpose for routine analysis. While important limitations regarding sample stability and potential interferences must be considered, this method provides a valuable resource for post-mortem biochemical analysis in cases of unnatural deaths in the Western Cape to support both individual case resolutions and broader public health insights. 2026-02-02T06:50:45Z 2026-02-02T06:50:45Z 2025 2026-02-02T06:39:06Z Thesis / Dissertation Masters Masters http://hdl.handle.net/11427/42803 en eng application/pdf Department of Pathology Faculty of Health Sciences University of Cape Town
spellingShingle Blood Gas Analyser
glucose
lactate
electrolytes
Van Vuuren, Andrew
The development and validation of an ABL835 FLEX Blood Gas Analyser method for the quantitation of glucose, lactate, and electrolytes in post-mortem vitreous humour
thesis_degree_str Master's
title The development and validation of an ABL835 FLEX Blood Gas Analyser method for the quantitation of glucose, lactate, and electrolytes in post-mortem vitreous humour
title_full The development and validation of an ABL835 FLEX Blood Gas Analyser method for the quantitation of glucose, lactate, and electrolytes in post-mortem vitreous humour
title_fullStr The development and validation of an ABL835 FLEX Blood Gas Analyser method for the quantitation of glucose, lactate, and electrolytes in post-mortem vitreous humour
title_full_unstemmed The development and validation of an ABL835 FLEX Blood Gas Analyser method for the quantitation of glucose, lactate, and electrolytes in post-mortem vitreous humour
title_short The development and validation of an ABL835 FLEX Blood Gas Analyser method for the quantitation of glucose, lactate, and electrolytes in post-mortem vitreous humour
title_sort development and validation of an abl835 flex blood gas analyser method for the quantitation of glucose lactate and electrolytes in post mortem vitreous humour
topic Blood Gas Analyser
glucose
lactate
electrolytes
url http://hdl.handle.net/11427/42803
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AT vanvuurenandrew developmentandvalidationofanabl835flexbloodgasanalysermethodforthequantitationofglucoselactateandelectrolytesinpostmortemvitreoushumour