<?xml version="1.0" encoding="UTF-8"?>
<urlset xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xmlns="http://www.sitemaps.org/schemas/sitemap/0.9" xmlns:mobile="http://www.google.com/schemas/sitemap-mobile/1.0" xmlns:pagemap="http://www.google.com/schemas/sitemap-pagemap/1.0" xmlns:xhtml="http://www.w3.org/1999/xhtml" xsi:schemaLocation="http://www.sitemaps.org/schemas/sitemap/0.9 http://www.sitemaps.org/schemas/sitemap/0.9/sitemap.xsd">
  <url>
    <loc>https://parasmishralab.owlstown.net</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/projects</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/people</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/courses</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/posts</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/pages</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/cv</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/contact_form</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/60940-untitled</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/41630-untitled</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28412-deciphering-mmp9-s-dual-role-in-regulating-sod3-through-protein-protein-interaction</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28291-ironing-out-the-details-ferroptosis-and-its-relevance-to-diabetic-cardiomyopathy</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28293-differential-effects-of-cmv-infection-on-the-viability-of-cardiac-cells</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28292-genome-editing-and-diabetic-cardiomyopathy</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28298-microcirculatory-and-skeletal-muscle-mitochondrial-function-in-peripheral-artery-disease</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28295-guidelines-on-models-of-diabetic-heart-disease</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28294-impaired-microcirculatory-function-mitochondrial-respiration-and-oxygen-utilization-in-skeletal-muscle-of-claudicating-patients-with-peripheral-artery-disease</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28296-metabolites-and-genes-behind-cardiac-metabolic-remodeling-in-mice-with-type-1-diabetes-mellitus</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28297-mir-133a-mitigates-ferroptosis-by-attenuating-fatty-acid-metabolism-in-the-diabetic-heart</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28299-editorial-autophagy-mediated-cell-survival-and-death-in-disease-progression-and-treatment</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28303-guidelines-for-the-use-and-interpretation-of-assays-for-monitoring-autophagy-4th-edition-1</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28302-cardiomyocyte-specific-transgenic-mmp9-overexpression-induces-cardiac-remodeling</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28300-generating-ins2-mir-133atg-mice-to-model-mirna-driven-cardioprotection-of-human-diabetic-heart</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28304-infarct-in-the-heart-what-s-mmp-9-got-to-do-with-it</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28305-intracellular-matrix-metalloproteinase-9-mediates-epigenetic-modifications-and-autophagy-to-regulate-differentiation-in-human-cardiac-stem-cells</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28301-regulating-polyamine-metabolism-by-mirnas-in-diabetic-cardiomyopathy</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28308-diabetes-and-covid-19-risk-an-mirna-perspective</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28306-acute-mitochondrial-antioxidant-intake-improves-endothelial-function-antioxidant-enzyme-activity-and-exercise-tolerance-in-peripheral-artery-disease-patients</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28310-mmp9-mediates-acute-hyperglycemia-induced-human-cardiac-stem-cell-death-by-upregulating-apoptosis-and-pyroptosis-in-vitro</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28316-erratum-guidelines-for-evaluating-myocardial-cell-death-american-journal-of-physiology-heart-and-circulatory-physiology-2019-317-h891-h922-doi-10-1152-ajpheart-00259-2019</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28317-guidelines-for-evaluating-myocardial-cell-death</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28314-editorial-the-non-coding-genome-and-cardiovascular-disease</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28319-exercise-training-promotes-cardiac-hydrogen-sulfide-biosynthesis-and-mitigates-pyroptosis-to-prevent-high-fat-diet-induced-diabetic-cardiomyopathy</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28313-hydrogen-sulfide-ameliorates-homocysteine-induced-cardiac-remodeling-and-dysfunction</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28320-hydrogen-sulfide-mediated-regulation-of-cell-death-signaling-ameliorates-adverse-cardiac-remodeling-and-diabetic-cardiomyopathy</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28312-isolation-characterization-and-differentiation-of-cardiac-stem-cells-from-the-adult-mouse-heart</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28318-regulating-inflammatory-cytokines-in-the-diabetic-heart</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28311-transgenic-expression-of-mir-133a-in-the-diabetic-akita-heart-prevents-cardiac-remodeling-and-cardiomyopathy</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28325-epitope-mapping-of-serca2a-identifies-an-antigenic-determinant-that-induces-mainly-atrial-myocarditis-in-a-j-mice</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28321-mir-133a-mimic-alleviates-t1dm-induced-systolic-dysfunction-in-akita-an-mri-based-study</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28324-targeting-mirna-for-therapy-of-juvenile-and-adult-diabetic-cardiomyopathy</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28322-isolation-characterization-and-differentiation-of-mouse-cardiac-progenitor-cells</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28323-ablation-of-mmp9-prevents-cardiac-pyroptosis-of-ins2-t1dm-mice-heart</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28329-mtor-signaling-in-cardiometabolic-disease-cancer-and-aging-2018</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28332-cardiovascular-neurohormonal-regulation-a-novel-role-for-mir-133-a-in-centrally-mediated-activation-of-the-renin-angiotensin-system-in-congestive-heart-failure</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28331-a-novel-role-for-mir-133a-in-centrally-mediated-activation-of-the-renin-angiotensin-system-in-congestive-heart-failure</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28335-diabetic-cardiomyopathy-an-immunometabolic-perspective</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28328-stem-cell-derived-exosomes-autophagy-extracellular-matrix-turnover-and-mirnas-in-cardiac-regeneration-during-stem-cell-therapy</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28330-hydrogen-sulfide-controls-cbs-cth-feedback-regulation-by-inducing-mir-133a-and-suppressing-sp1-in-a-dose-dependent-manner-in-cardiomyocytes</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28334-ablation-of-mmp9-upregulates-autophagic-flux-in-the-diabetic-heart</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28326-h2s-and-homocysteine-control-a-novel-feedback-regulation-of-cystathionine-beta-synthase-and-cystathionine-gamma-lyase-in-cardiomyocytes</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28333-cardiac-transcriptome-profiling-of-diabetic-akita-mice-using-microarray-and-next-generation-sequencing</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28336-emerging-role-of-hydrogen-sulfide-microrna-crosstalk-in-cardiovascular-diseases</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28337-lack-of-mir-133a-decreases-contractility-of-diabetic-hearts-a-role-for-novel-cross-talk-between-tyrosine-aminotransferase-and-tyrosine-hydroxylase</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28341-reduced-mir-133a-results-in-upregulation-of-angiotensinogen-in-the-paraventricular-nucleusof-rats-with-chronic-heart-failure</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28339-induction-of-autophagy-markers-is-associated-with-attenuation-of-mir-133a-in-diabetic-heart-failure-patients-undergoing-mechanical-unloading</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28344-harnessing-fetal-and-adult-genetic-reprograming-for-therapy-of-heart-disease</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28342-mir-133a-mitigates-mitophagy-in-ins2-diabetic-heart</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28343-mdivi-1-mitigates-ros-and-mitophagy-improves-healthy-mitochondrial-pool-in-hyperglycemic-cardiomyocytes</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28338-hydrogen-sulfide-mitigates-homocysteine-mediated-pathological-remodeling-by-inducing-mir-133a-in-cardiomyocytes</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28340-exercise-ameliorates-high-fat-diet-induced-cardiac-dysfunction-by-increasing-interleukin-10</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28350-attenuated-dopaminergic-tone-in-the-paraventricular-nucleus-contributing-to-sympathoexcitation-in-rats-with-type-2-diabetes</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28346-is-mir-133a-a-promising-therapeutic-target-for-heart-failure</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28347-mdivi-1-mitigates-cardiac-dysfunction-by-attenuating-mitophagy-in-diabetes-1155-3</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28348-micrornomics-of-diabetic-cardiomyopathy</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28352-mir-133a-alleviates-cardiac-autophagy-by-targeting-ampk-in-ins2-diabetic-mice-868-3</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28345-mir-133a-ameliorates-cardiac-dysfunction-in-diabetes-possibly-by-restoring-adrenergic-receptor-function-and-expression-1078-6</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28349-generating-double-knockout-mice-to-model-genetic-intervention-for-diabetic-cardiomyopathy-in-humans</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28355-mitochondrial-division-inhibitor-mdivi-i-ameliorates-post-myocardial-infarction-via-stimulating-stem-cell-by-elevating-level-of-mir-499-in-diabetes</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28354-cardiac-stem-cell-niche-mmp9-and-culture-and-differentiation-of-embryonic-stem-cells</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28359-cardiac-matrix-a-clue-for-future-therapy</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28358-ablation-of-mmp9-ameliorates-epigenetic-modifications-and-mitigates-diabetic-cardiomyopathy</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28361-exercise-ameliorates-high-fat-diet-mediated-inflammation-dna-methylation-and-heart-failure-in-female-mice</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28360-mir-133a-ameliorates-cardiac-stem-cells-survival-and-differentiation-in-insulin2-mutant-diabetic-mice</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28353-predictors-and-prevention-of-diabetic-cardiomyopathy</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28357-differential-expression-of-dicer-mirnas-and-inflammatory-markers-in-diabetic-ins2-akita-hearts</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28363-hydrogen-sulfide-mitigates-cardiac-remodeling-during-myocardial-infarction-via-improvement-of-angiogenesis</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28367-epigenetic-reprogramming-of-mitochondrial-dysfunction-in-hyperhomocysteinemia</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28372-exercise-mitigates-beta-2-adrenergic-receptor-dysfunction-by-decreasing-homocysteine-in-diabetes</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28371-role-of-mmp9-in-cardiac-stem-cell-differentiation-and-autophagy</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28368-ablation-of-mmp9-induces-survival-and-differentiation-of-cardiac-stem-cells-into-cardiomyocytes-in-the-heart-of-diabetics-a-role-of-extracellular-matrix</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28366-p59-h2s-ameliorates-homocysteine-mediated-attenuation-of-mir-133a-and-2-ar-in-diabetic-hearts</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28374-increased-endogenous-h2s-generation-by-cbs-cse-and-3mst-gene-therapy-improves-ex-vivo-renovascular-relaxation-in-hyperhomocysteinemia</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28365-increased-endogenous-h-2-s-generation-by-cbs-cse-and-3-mst-1-gene-therapy-improves-ex-vivo-renovascular-relaxation-in-2-hyperhomocysteinemia</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28364-mir-133-as-an-epigenetic-regulator-of-diabetic-heart-failure</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28373-microrna-133a-regulates-dna-methylation-in-diabetic-cardiomyocytes</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28379-synergy-of-microrna-and-stem-cell-a-novel-therapeutic-approach-for-diabetes-mellitus-and-cardiovascular-diseases</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28375-hydrogen-sulfide-improves-angiogenesis-and-regulates-cardiac-function-and-structure-during-myocardial-infarction-in-mice</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28381-hydrogen-sulfide-ameliorates-mitochondrial-mmp-9-mediated-mitochondria-remodeling-in-cerebral-ischemia</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28380-exercise-ameliorates-diabetic-cardiomyopathy-by-inducing-beta2-adrenergic-receptors-and-mir-133a-and-attenuating-mmp-9</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28378-exercise-mitigates-homocysteine-2-adrenergic-receptor-interactions-to-ameliorate-contractile-dysfunction-in-diabetes</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28376-chronic-hyperhomocysteinemia-causes-vascular-remodelling-by-instigating-vein-phenotype-in-artery</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28377-synergism-between-arrhythmia-and-hyperhomo-cysteinemia-in-structural-heart-disease</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28382-hydrogen-sulfide-mitigates-homocysteine-mediated-mitophagy</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28410-ddah-2-enos-in-mesenteric-vascular-remodeling-role-of-fenugreek</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28389-oxidative-and-proteolytic-stress-in-homocysteine-associated-cardiovascular-diseases</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28411-folic-acid-mitigated-homocysteine-mediated-decrease-in-bone-blood-flow-and-bone-remodeling</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28387-tetrahydrocurcumin-ameliorates-mtmmp-9-mediated-mitophagy-and-mitochondria-remodeling-in-stroke</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28388-mmp-9-gene-ablation-and-timp-4-mitigate-par-1-mediated-cardiomyocyte-dysfunction-a-plausible-role-of-dicer-and-mirna</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28391-h2s-ameliorates-oxidative-and-proteolytic-stresses-and-protects-the-heart-against-adverse-remodeling-in-chronic-heart-failure</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28386-attenuation-of-beta2-adrenergic-receptors-and-homocysteine-metabolic-enzymes-cause-diabetic-cardiomyopathy</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28383-role-of-dicer-in-diabetic-cardiomyopathy-through-dysregulation-of-mmp-9-and-timp-4</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28393-stem-cells-as-a-therapeutic-target-for-diabetes</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28385-blood-flow-regulates-vasculature-by-maintaining-collagen-elastin-and-mmp-timp-ratio</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28384-mmp-2-timp-2-timp-4-versus-mmp-9-timp-3-in-transition-from-compensatory-hypertrophy-and-angiogenesis-to-decompensatory-heart-failure</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28392-functional-heterogeneity-in-vascular-remodeling-mmp-9-and-par-1-in-hyperhomocysteinemic-cbs-and-diabetic-akita-ins2-mice</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28390-homocysteine-to-hydrogen-sulfide-or-hypertension</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28407-restoration-of-contractility-in-hyperhomocysteinemia-by-cardiac-specific-deletion-of-nmda-r1</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28403-cerebroprotective-role-of-tetrahydro-curcumin-in-hyperhomocysteinemic-ischemic-mice-by-regulating-nf-kappa-b</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28405-homocysteine-hydrogen-sulfide-h2s-and-nmda-receptor-in-heart-failure</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28406-activation-of-gaba-a-receptor-protects-mitochondria-and-reduces-cerebral-ischemia</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28409-role-of-micrornas-in-homocysteine-induced-oxidative-stress</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28402-micrornas-as-a-therapeutic-target-for-cardiovascular-diseases</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28408-micrornas-are-involved-in-homocysteine-induced-cardiac-remodeling</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28404-nitrotyrosinylation-remodeling-and-endothelial-myocyte-uncoupling-in-inos-cystathionine-beta-synthase-cbs-knockouts-and-inos-cbs-double-knockout-mice</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28401-homocysteine-decreases-blood-flow-to-the-brain-due-to-vascular-resistance-in-carotid-artery</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28400-assessing-the-putative-roles-of-x-autosome-and-x-y-interactions-in-hybrid-male-sterility-of-the-drosophila-bipectinata-species-complex</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28397-genetic-interactions-underlying-hybrid-male-sterility-in-the-drosophila-bipectinata-species-complex</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28398-unique-phenotypes-and-variation-in-the-sex-comb-patterns-and-their-evolutionary-implications-in-the-drosophila-bipectinata-species-complex-diptera-drosophilidae</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28399-drosophila-bipectinata-species-complex-study-of-phylogenetic-relationship-among-four-members-through-the-analysis-of-morphology-of-testes-and-seminal-vesicles</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28396-why-hybrid-males-are-sterile-in-drosophila</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/publications/28395-genetic-basis-of-hybrid-male-sterility-among-three-closely-related-species-of-drosophila</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/projects/3182-microrna-133a-a-novel-cardioprotective-agent-in-diabetic-cardiomyopathy</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/projects/3183-mmp9-targeting-a-key-enzyme-in-diabetic-heart-disease</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/projects/3184-hydrogen-sulfide-in-diabetic-cardiomyopathy-a-potential-cardioprotective-therapy</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/people/2413-paras-kumar-mishra</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/people/2414-trainees</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/courses/2435-molecular-mechanisms-of-cardiovascular-pathophysiology-mep-916</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/pages/5064-highlighted-publications</loc>
  </url>
  <url>
    <loc>https://parasmishralab.owlstown.net/pages/5063-photos</loc>
  </url>
</urlset>
