Study Data


NMR Study

Project uploaded by: Neel Sarovar
Project ID: IMP_100005
Title: A longitudinal pilot study on hemodynamically stable isolated chest trauma patients reveals sustained dysregulation of oxidative metabolism
Project Description: Metabolomic dysregulation precedes clinical deterioration following injury. However, despite receiving comparable treatment, patients with similar injury severity often follow different clinical trajectories and outcomes. Metabolic profiling following an injury can aid in detecting systemic changes early and identifying novel biomarkers, enabling targeted interventions to improve patient outcomes. We hypothesized that metabolomic profiling in acutely injured patients would identify the perturbed metabolites and the physiological pathways within the first 72 hours of injury. Hence, this prospective study at a level 1 trauma centre analyzed the differentially regulated urine metabolites in patients with isolated blunt chest injuries and their longitudinal correlation with the severity of the injury. The study screened 1999 acutely injured patients with chest trauma between September 2019 and February 2023. Fifty hemodynamically stable patients with isolated chest trauma were recruited for the final analysis. Urine samples were collected on the injury's day 1, day 3, and day 7 day post-trauma. The study found that twenty metabolites were dysregulated in these patients (p-value <0.001). Twelve metabolites were upregulated, while the other eight showed downregulation. However, only five metabolites showed temporal association. These differentially regulated metabolites were involved in Glyoxylate and dicarboxylate metabolism pathways, glycine, serine, and threonine metabolism, and the Citrate cycle (TCA cycle). These metabolites could serve as biomarkers for early detection of systemic changes following chest injuries.
Research Area: Biological Sciences
Funding Source: ICGEB core funds, AIIMS core funds, SERB
Project Contributors: Arun Kumar Malaisamy, Ramesh Vaidyanathan, Abhinav Kumar and Neel Sarovar Bhavesh

Study uploaded by: Neel Sarovar
Study ID: IMS_100005
Title: A longitudinal pilot study on hemodynamically stable isolated chest trauma patients reveals sustained dysregulation of oxidative metabolism
Summary: Metabolomic dysregulation precedes clinical deterioration following injury. However, despite receiving comparable treatment, patients with similar injury severity often follow different clinical trajectories and outcomes. Metabolic profiling following an injury can aid in detecting systemic changes early and identifying novel biomarkers, enabling targeted interventions to improve patient outcomes. We hypothesized that metabolomic profiling in acutely injured patients would identify the perturbed metabolites and the physiological pathways within the first 72 hours of injury. Hence, this prospective study at a level 1 trauma centre analyzed the differentially regulated urine metabolites in patients with isolated blunt chest injuries and their longitudinal correlation with the severity of the injury. The study screened 1999 acutely injured patients with chest trauma between September 2019 and February 2023. Fifty hemodynamically stable patients with isolated chest trauma were recruited for the final analysis. Urine samples were collected on the injury's day 1, day 3, and day 7 day post-trauma. The study found that twenty metabolites were dysregulated in these patients (p-value &lt;0.001). Twelve metabolites were upregulated, while the other eight showed downregulation. However, only five metabolites showed temporal association. These differentially regulated metabolites were involved in Glyoxylate and dicarboxylate metabolism pathways, glycine, serine, and threonine metabolism, and the Citrate cycle (TCA cycle). These metabolites could serve as biomarkers for early detection of systemic changes following chest injuries.
Keywords: NMR spectroscopy, metabolomics, chest Trauma, oxidative metabolites, biomarker
Publication: https://link.springer.com/article/10.1007/s11306-025-02241-3
Release Date: July 10, 2025
Study Type: Nuclear Magnetic Resonance (NMR)
Data Type: Untargeted
IEC/IBSC Approval Number : IEC-636/06.09.2019, and ICGEB/IEC/2020/23

Sr.No Sample ID Sample Name Organism Source Sample Preparation Protocol Sample Type Experimental Condition Time of treatment Variant/Variety Gender Age Replicates Storage Conditions Extraction Protocol Number of files per sample
181 IMSM_100790 p30d2 Homo sapiens | 9687 Urine The urine samples were thawed during NMR measurements, and 0.5 ml of urine samples were transferred to a 1.5 ml centrifuge tube to eliminate contaminants of larger molecules. The samples were centrifuged at 10000g at 4 °C for 10 minutes to remove solid debris. Next, 180 µl of urine samples in the supernatant (metabolite) were transferred to a fresh centrifuge tube, and 20 µl NMR buffer (1.5 M KH2PO4, 2 mM NaN3, 5.8 mM sodium 3-(trimethylsilyl) propionate-2,2,3,3-d4 in D2O pH 7.4) was gently mixed. The resulting solutions were transferred to separate 3 mm NMR tubes. Trauma patients Male 45 N/A -80

N/A

182 IMSM_100791 p30d3 Homo sapiens | 9688 Urine The urine samples were thawed during NMR measurements, and 0.5 ml of urine samples were transferred to a 1.5 ml centrifuge tube to eliminate contaminants of larger molecules. The samples were centrifuged at 10000g at 4 °C for 10 minutes to remove solid debris. Next, 180 µl of urine samples in the supernatant (metabolite) were transferred to a fresh centrifuge tube, and 20 µl NMR buffer (1.5 M KH2PO4, 2 mM NaN3, 5.8 mM sodium 3-(trimethylsilyl) propionate-2,2,3,3-d4 in D2O pH 7.4) was gently mixed. The resulting solutions were transferred to separate 3 mm NMR tubes. Trauma patients Male 45 N/A -80

N/A

183 IMSM_100792 p31d1 Homo sapiens | 9689 Urine The urine samples were thawed during NMR measurements, and 0.5 ml of urine samples were transferred to a 1.5 ml centrifuge tube to eliminate contaminants of larger molecules. The samples were centrifuged at 10000g at 4 °C for 10 minutes to remove solid debris. Next, 180 µl of urine samples in the supernatant (metabolite) were transferred to a fresh centrifuge tube, and 20 µl NMR buffer (1.5 M KH2PO4, 2 mM NaN3, 5.8 mM sodium 3-(trimethylsilyl) propionate-2,2,3,3-d4 in D2O pH 7.4) was gently mixed. The resulting solutions were transferred to separate 3 mm NMR tubes. Trauma patients Male 52 N/A -80

N/A

184 IMSM_100793 p31d2 Homo sapiens | 9690 Urine The urine samples were thawed during NMR measurements, and 0.5 ml of urine samples were transferred to a 1.5 ml centrifuge tube to eliminate contaminants of larger molecules. The samples were centrifuged at 10000g at 4 °C for 10 minutes to remove solid debris. Next, 180 µl of urine samples in the supernatant (metabolite) were transferred to a fresh centrifuge tube, and 20 µl NMR buffer (1.5 M KH2PO4, 2 mM NaN3, 5.8 mM sodium 3-(trimethylsilyl) propionate-2,2,3,3-d4 in D2O pH 7.4) was gently mixed. The resulting solutions were transferred to separate 3 mm NMR tubes. Trauma patients Male 52 N/A -80

N/A

185 IMSM_100794 p31d3 Homo sapiens | 9691 Urine The urine samples were thawed during NMR measurements, and 0.5 ml of urine samples were transferred to a 1.5 ml centrifuge tube to eliminate contaminants of larger molecules. The samples were centrifuged at 10000g at 4 °C for 10 minutes to remove solid debris. Next, 180 µl of urine samples in the supernatant (metabolite) were transferred to a fresh centrifuge tube, and 20 µl NMR buffer (1.5 M KH2PO4, 2 mM NaN3, 5.8 mM sodium 3-(trimethylsilyl) propionate-2,2,3,3-d4 in D2O pH 7.4) was gently mixed. The resulting solutions were transferred to separate 3 mm NMR tubes. Trauma patients Male 52 N/A -80

N/A

186 IMSM_100795 p32d1 Homo sapiens | 9692 Urine The urine samples were thawed during NMR measurements, and 0.5 ml of urine samples were transferred to a 1.5 ml centrifuge tube to eliminate contaminants of larger molecules. The samples were centrifuged at 10000g at 4 °C for 10 minutes to remove solid debris. Next, 180 µl of urine samples in the supernatant (metabolite) were transferred to a fresh centrifuge tube, and 20 µl NMR buffer (1.5 M KH2PO4, 2 mM NaN3, 5.8 mM sodium 3-(trimethylsilyl) propionate-2,2,3,3-d4 in D2O pH 7.4) was gently mixed. The resulting solutions were transferred to separate 3 mm NMR tubes. Trauma patients Male 42 N/A -80

N/A

187 IMSM_100796 p32d2 Homo sapiens | 9693 Urine The urine samples were thawed during NMR measurements, and 0.5 ml of urine samples were transferred to a 1.5 ml centrifuge tube to eliminate contaminants of larger molecules. The samples were centrifuged at 10000g at 4 °C for 10 minutes to remove solid debris. Next, 180 µl of urine samples in the supernatant (metabolite) were transferred to a fresh centrifuge tube, and 20 µl NMR buffer (1.5 M KH2PO4, 2 mM NaN3, 5.8 mM sodium 3-(trimethylsilyl) propionate-2,2,3,3-d4 in D2O pH 7.4) was gently mixed. The resulting solutions were transferred to separate 3 mm NMR tubes. Trauma patients Male 42 N/A -80

N/A

188 IMSM_100797 p32d3 Homo sapiens | 9694 Urine The urine samples were thawed during NMR measurements, and 0.5 ml of urine samples were transferred to a 1.5 ml centrifuge tube to eliminate contaminants of larger molecules. The samples were centrifuged at 10000g at 4 °C for 10 minutes to remove solid debris. Next, 180 µl of urine samples in the supernatant (metabolite) were transferred to a fresh centrifuge tube, and 20 µl NMR buffer (1.5 M KH2PO4, 2 mM NaN3, 5.8 mM sodium 3-(trimethylsilyl) propionate-2,2,3,3-d4 in D2O pH 7.4) was gently mixed. The resulting solutions were transferred to separate 3 mm NMR tubes. Trauma patients Male 42 N/A -80

N/A

189 IMSM_100798 p3d1 Homo sapiens | 9695 Urine The urine samples were thawed during NMR measurements, and 0.5 ml of urine samples were transferred to a 1.5 ml centrifuge tube to eliminate contaminants of larger molecules. The samples were centrifuged at 10000g at 4 °C for 10 minutes to remove solid debris. Next, 180 µl of urine samples in the supernatant (metabolite) were transferred to a fresh centrifuge tube, and 20 µl NMR buffer (1.5 M KH2PO4, 2 mM NaN3, 5.8 mM sodium 3-(trimethylsilyl) propionate-2,2,3,3-d4 in D2O pH 7.4) was gently mixed. The resulting solutions were transferred to separate 3 mm NMR tubes. Trauma patients Male 50 N/A -80

N/A

190 IMSM_100799 p3d2 Homo sapiens | 9696 Urine The urine samples were thawed during NMR measurements, and 0.5 ml of urine samples were transferred to a 1.5 ml centrifuge tube to eliminate contaminants of larger molecules. The samples were centrifuged at 10000g at 4 °C for 10 minutes to remove solid debris. Next, 180 µl of urine samples in the supernatant (metabolite) were transferred to a fresh centrifuge tube, and 20 µl NMR buffer (1.5 M KH2PO4, 2 mM NaN3, 5.8 mM sodium 3-(trimethylsilyl) propionate-2,2,3,3-d4 in D2O pH 7.4) was gently mixed. The resulting solutions were transferred to separate 3 mm NMR tubes. Trauma patients Male 50 N/A -80

N/A

Sr.No NMR Exp ID Sample Name/ID Reference Standard NMR Instrument Name NMR Instrument Type NMR Experiment Type NMR Spectrometer Frequency NMR Probe NMR Probe temperature NMR Solvent NMR tube size Data Transformation (Software/s Used)
121 IME_100187 p10d2 / IMSM_100730 DSS Bruker Avance Neo Solution NMR 1D 1H 500 cryogenic 5 mm TCI probe head 298k D2O 3mm topspin
122 IME_100188 p10d3 / IMSM_100731 DSS Bruker Avance Neo Solution NMR 1D 1H 500 cryogenic 5 mm TCI probe head 298k D2O 3mm topspin
123 IME_100189 p11d1 / IMSM_100732 DSS Bruker Avance Neo Solution NMR 1D 1H 500 cryogenic 5 mm TCI probe head 298k D2O 3mm topspin
124 IME_100190 p11d2 / IMSM_100733 DSS Bruker Avance Neo Solution NMR 1D 1H 500 cryogenic 5 mm TCI probe head 298k D2O 3mm topspin
125 IME_100191 p11d3 / IMSM_100734 DSS Bruker Avance Neo Solution NMR 1D 1H 500 cryogenic 5 mm TCI probe head 298k D2O 3mm topspin
126 IME_100192 p12d1 / IMSM_100735 DSS Bruker Avance Neo Solution NMR 1D 1H 500 cryogenic 5 mm TCI probe head 298k D2O 3mm topspin
127 IME_100193 p12d2 / IMSM_100736 DSS Bruker Avance Neo Solution NMR 1D 1H 500 cryogenic 5 mm TCI probe head 298k D2O 3mm topspin
128 IME_100194 p12d3 / IMSM_100737 DSS Bruker Avance Neo Solution NMR 1D 1H 500 cryogenic 5 mm TCI probe head 298k D2O 3mm topspin
129 IME_100195 p14d2 / IMSM_100738 DSS Bruker Avance Neo Solution NMR 1D 1H 500 cryogenic 5 mm TCI probe head 298k D2O 3mm topspin
130 IME_100196 p14d3 / IMSM_100739 DSS Bruker Avance Neo Solution NMR 1D 1H 500 cryogenic 5 mm TCI probe head 298k D2O 3mm topspin

Sr.No First name Last name Email Organization Designation
1 Neel Sarovar Bhavesh neelsb@icgeb.res.in International Centre for Genetic Engineering and Biotechnology, New Delhi principal_investigator
2 Abhinav Kumar drabhinav1975@gmail.com All India Institute of Medical Sciences Delhi, New Delhi co_principal_investigator
3 Ramesh Vaidyanathan v17.ramesh@gmail.com All India Institute of Medical Sciences Delhi, New Delhi research_scholar
4 Arun Kumar Malaisamy makias191@gmail.com International Centre for Genetic Engineering and Biotechnology, New Delhi research_scholar

Sr.No ftprun ID NMR Exp ID NMR Data Files
1 IMR_100066 IME_100067 c1.zip
2 IMR_100667 IME_100068 c10.zip
3 IMR_100668 IME_100069 c11.zip
4 IMR_100669 IME_100070 c12.zip
5 IMR_100670 IME_100071 c13.zip
6 IMR_100671 IME_100072 c14.zip
7 IMR_100672 IME_100073 c15.zip
8 IMR_100673 IME_100074 c16.zip
9 IMR_100674 IME_100075 c17.zip
10 IMR_100675 IME_100076 c18.zip

Download Metabolite/Compound

Sr.No Structure Details