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Harpreet Grewal

Publications and source records attributed to Harpreet Grewal.

2 recordsLinked to original sources

Role of OPRM1 A118G polymorphism in tramadol analgesia following third molar surgery: a pharmacogenomic study.

BACKGROUND: The OPRM1 A118G (rs1799971) polymorphism has been implicated in interindividual variability in opioid analgesic response, but its influence on tramadol efficacy remains uncertain. This study evaluated the association between OPRM1 A118G and postoperative analgesic response to tramadol following mandibular third molar surgery. METHODS: In this prospective pharmacogenomic study, 53 adults undergoing impacted mandibular third molar extraction were enrolled. Genomic DNA was analyzed for OPRM1 A118G (rs1799971) using amplification refractory mutation system polymerase chain reaction (ARMS-PCR). All procedures were performed under 2% lignocaine with adrenaline. Tramadol (50 mg) was administered after the onset of postoperative pain. Pain intensity was assessed using the Visual Analogue Scale (VAS) and Short-Form McGill Pain Questionnaire at 2, 4, and 6 hours. The primary outcome was summed pain intensity difference (SPID, 2-6 hours). RESULTS: Genotype frequencies were in Hardy-Weinberg equilibrium. No significant association was observed between OPRM1 genotype and SPID, VAS reduction, Pain Rating Index change, or responder status during the 6-hour observation period (all p > 0.05). CONCLUSION: OPRM1 A118G was not significantly associated with early tramadol analgesic response following third molar surgery. Larger studies incorporating both OPRM1 and CYP2D6 genotyping are needed to clarify the genetic determinants of tramadol analgesia as CYP2D6 gene is required for tramadol metabolism.

OPRM1

Pulmonary fibrosis after COVID-19 is characterized by airway abnormalities and elevated club cell secretory protein-16.

BACKGROUNDThere are no known serum biomarkers that provide mechanistic insight or prognostic enrichment for post-COVID-19 pulmonary fibrosis.METHODSWe tested associations of serum biomarkers with radiographic fibrosis-like abnormalities (reticulation, traction bronchiectasis, or honeycombing) on thoracic computed tomography (CT) scans 4 months, 15 months, and 3 years after hospitalization in an American discovery cohort of severe-to-critical COVID-19 survivors, and externally validated findings in 2 Canadian cohorts of moderate-to-critical COVID-19 survivors. In the discovery cohort, we investigated the dose-response relationship of the biomarker with CT-derived airway-to-lung ratio. We performed single-cell RNA sequencing (scRNA-seq) of transbronchial lung biopsies from COVID-19 survivors obtained 3 years after COVID-19 hospitalization and conducted immunofluorescence analysis of COVID-19 lung explants.RESULTSAmong 150 discovery cohort participants, only higher levels of circulating club cell secretory protein-16 (CC16, encoded by the SCGB1A1 gene) at hospital discharge, 4 months, 15 months, and 3 years were associated with thoracic CT fibrosis-like abnormalities in cross-sectional and longitudinal analyses. Higher CC16 levels were associated with thoracic CT fibrosis-like abnormalities in 2 validation cohorts (n = 56 and n = 37). CC16 levels were linearly associated with increased airway-to-lung ratio. scRNA-seq revealed increased proportions of epithelial cells expressing SCGB1A1 and SCGB1A1/MUC5B in COVID-19 survivors with fibrosis. Immunofluorescence analysis of COVID-19 lung explants demonstrated increased numbers of SCGB1A1-expressing epithelial cells only in small (<100 &#x3bc;m) airways, with 3-fold more CC16/MUC5B-coexpressing cells in respiratory bronchioles..CONCLUSION. Higher CC16 levels are associated with CT fibrosis-like abnormalities for up to 3 years following moderate-to-critical COVID-19. Increased CC16 reflects dysregulated small airway epithelial progenitor cell remodeling and increased expansion of CC16+MUC5B+ epithelial cells in respiratory bronchioles after COVID-19.TRIAL REGISTRATIONNot applicable.FUNDINGDepartment of Defense, NIH, and Japan Society for the Promotion of Science for Young Scientists.

Humans