BIOCHEMICAL MARKERS IN VITREOUS HUMOR: AN EFFECTIVE METHOD FOR POSTMORTEM INTERVAL ESTIMATION

Authors

  • Mamta Kumari Dept of Forensic Medicine, K.D. Medical College, Hospital and Research Center, Akbarpur, Mathura – 281406
  • Rajeev Kumar Dept of Forensic Medicine, SHKM Govt. Medical College, Nalhar, Nuh, Haryana - 122107
  • Praveen Dixit Dept of Forensic Medicine, United Institute of Medical Sciences, Rawatpur, Jhalwa, Prayagraj - 211012
  • Aravindan U Dept of Forensic Medicine, AIIMS, Madurai, Tamil Nadu – 623503
  • Hitesh Chawla Dept of Forensic Medicine, SHKM Govt. Medical College, Nalhar, Nuh, Haryana - 122107
  • Shipra Kumari Faculty of Commerce and Management, SGT University, Gurugram –122505

DOI:

https://doi.org/10.48165/jfmt.2025.42.1.2

Keywords:

Post-mortem interval, Vitreous humor, Biochemical markers, Sodium, Potassium, Chloride

Abstract

Background: Estimating the post-mortem interval (PMI) also referred as time since death (TSD) is a challenging task for forensic experts during autopsies. Among various bodily fluids, vitreous humor offers advantages, including ease of access, low contamination risk, and stability. This study aims to determine the time since death using biochemical markers in vitreous humor. Methods: This research was conducted at the Department of Forensic Medicine, Shaheed Hasan Khan Mewati Government Medical College, Nuh, Haryana. A total of 81 medico-legal autopsies with a known time of death were included. Upon collection, vitreous humor samples were immediately centrifuged. Several biochemical markers, including sodium, potassium, and chloride concentrations, were analyzed using appropriate techniques. Results: Significant correlations were found between the concentrations of sodium, potassium, and chloride in vitreous humor, specifically within the first 40 hours post-mortem. These markers demonstrated a reliable pattern for estimating the time since death. Conclusion: The biochemical analysis of vitreous humor, particularly the concentrations of sodium, potassium, and chloride, provides valuable information for estimating the post-mortem interval. This study highlights the potential of vitreous humor as an effective and accessible sample for forensic investigations. Further research with larger sample sizes and diverse conditions is recommended to enhance the accuracy of PMI estimation.

References

Modi JP. A textbook of Medical Jurisprudence and Toxicology. 25th ed. Gurgoan: Lexis Nexis; 2015. p.356.

Surender, Sharma S. An overview on biochemical methods used for estimation of time since death. Int J Inf Comput Sci. 2018;5(9):88–98.

Madea B. Is there recent progress in the estimation of the postmortem interval by means of thanatochemistry? Forensic Sci Int. 2005 Jul 16;151(2-3):139–49.

Shono T, Okahara M, Ikeda I, Kimura K, Tamura H. Sodium-selective PVC membrane electrodes based on bis(12-crown-4)s. J Electroanal Chem Interfacial Electrochem. 1982 Jan 25;132:99–105.

Lavinia A, Pioda R, Stankova V. Highly selective potassium ion responsive liquid-membrane electrode. Anal Lett. 1969;2(12):665–74.

Hartman K, Luterotti S, Osswald HF, Oehme M, Meier PC, Ammann D, Simon W. Chloride-selective liquid-membrane electrodes based on lipophilic methyl-tri-N-alkyl-ammonium compounds and their applicability to blood serum measurements. Microchim Acta. 1978;70:235–46.

Swain R, Kumar A, Sahoo J, Lakshmy R, Gupta SK, Bhardwaj DN, et al. Estimation of post-mortem interval: A comparison between cerebrospinal fluid and vitreous humor chemistry. J Forensic Leg Med. 2015;36:144–8.

Mahesh CM, Kumar R, Anisha S, Saloni C. Estimation of time since death by vitreous humor electrolytes concentration. Int J Forens Sci. 2019;4(4):1–7.

Siddamsetty AK, Verma SK, Kohli A, Puri D, Singh A. Estimation of time since death from electrolyte, glucose and calcium analysis of postmortem vitreous humor in semi-arid climate. Med Sci Law. 2014;54(3):158–66.

Rao MR, Ravishankar R. Estimation of time since death using vitreous humour potassium values. Indian J Forensic Med Toxicol. 2021;15(2):2751–7.

Chandrakanth HV, Kanchana T, Balaraj BM, Virupaksha HS, Chandrasaker TN. Postmortem vitreous chemistry—An evaluation of sodium, potassium and chloride levels in estimation of time since death. J Forensic Leg Med. 2013;20:211–6.

Ajay T, Harish T, Vijay J, Punpale T. Correlation between vitreous electrolytes and time since death: An autopsy-based study. Indian J Forensic Med Pathol. 2017;10(2):122–8.

Jashnani KD, Kale SA, Rupani AB. Vitreous humour: biochemical constituents in estimation of postmortem interval. J Forensic Sci. 2010;55(6):1523–7.

Tumram NK, Ambade VN, Dongre AP. Thanatochemistry: Study of synovial fluid potassium. Alexandria J Med. 2014;50(4):369–72.

Madea B, Musshoff F. Postmortem biochemistry. Forensic Sci Int. 2007 Jan 17;165(2-3):165–71.

Published

2025-04-30

How to Cite

BIOCHEMICAL MARKERS IN VITREOUS HUMOR: AN EFFECTIVE METHOD FOR POSTMORTEM INTERVAL ESTIMATION. (2025). Journal of Forensic Medicine & Toxicology, 42(1), 5-11. https://doi.org/10.48165/jfmt.2025.42.1.2