{"id":{"repo_id":"wayne-thes","oai_identifier":"oai:digitalcommons.wayne.edu:oa_dissertations-2061"},"canonical_url":"https://search.dev.ndltd.org/etd/wayne-thes/oai:digitalcommons.wayne.edu:oa_dissertations-2061","repository":{"repo_id":"wayne-thes","name":"Wayne State University","base_url":"https://digitalcommons.wayne.edu/do/oai/"},"display":{"title":"Adenosine A2b Receptor Effects On Post-Mi Remodeling And Cardiac Fibroblast Function","abstract":"<p>Adenosine A<sub>2B</sub> receptor (A<sub>2B</sub>R) appear to contribute to chronic inflammation. This receptor is highly expressed in macrophages and cardiac fibroblasts, cells which play key roles in inflammation and healing following myocardial infarction (MI). A<sub>2B</sub>R have been shown to induce collagen production and promote organ fibrosis, although the reports of A<sub>2B</sub>R role on MI are limited and conflicting. The results of cardiac fibroblast (CF) studies however suggest that non-selective A<sub>2B</sub>R stimulation inhibits collagen expression. The hypothesis of the present study was that deletion of A<sub>2B</sub>R reduces adverse remodeling in post-MI, and selective activation of A<sub>2B</sub>R increases WT murine CF collagen and pro-inflammatory cytokines production. </p> <p>In our in vivo studies, MI was induced by permanent coronary artery occlusion in male WT and A<sub>2B</sub>R KO mice. Hearts were harvested at 5 or 28-day post-MI for semi quantitative RT-PCR assay or sectioned and stained for morphological and histological studies. In CF experments, effects of selective A<sub>2B</sub>R (BAY 60-6583, BAY) and A<sub>2A</sub>R (CGS-21680, CGS) agonists on signaling (10 min) and collagen expression (24 h) were assessed by western blots. Adenosine receptor expression and agonist effects (24 h) on pro-inflammatory cytokine expression were analyzed with semi-quantitative real time PCR.</p> <p> Mortality of total animals and 28-day infarct size did not differ between genotypes. A2BR expression was 2.7 fold greater in WT scar zone compared to remote zone. TNF-α and MMP-9 expressions in the scar zone and collagen 1 and 3 mRNA levels in the remote zone were much greater in 5-day WT group without any change in macrophage infiltration. A<sub>2B</sub>R KO hearts had greater scar thickness and lower infarct expansion. Our results indicated that ablation of A<sub>2B</sub>R significantly decreased collagen deposition in 28-day post-MI remote zone. We also found that this effect was not due to downregulation of myofibroblasts but related to decreased macrophage infiltration at 28-day. Our results from CF studies indicated that A<sub>2B</sub>R gene expression was two-fold greater than A<sub>2A</sub>R, which was comparable to angiotensin AT1R. The A<sub>2B</sub>R agonist BAY and the A<sub>2A</sub>R agonist CGS both increased ERK and CREB phosphorylation. BAY and CGS effects on signaling were blocked by deletion of A<sub>2B</sub>R and A<sub>2A</sub>R, respectively. TGFβ-induced increases in collagen-1 expression were not altered by adenosine receptor agonists; in contrast, selective A<sub>2B</sub>R and A<sub>2A</sub>R stimulation increased collagen-1 expression, effects which were blunted by MEK (U0126) and PKA (H89) inhibitors. BAY, but not CGS, increased IL-6 gene expression, but neither agonist showed an effect on IL-1β mRNA levels. </p> <p>Our findings that a large increase in expression of the pro-inflammatory A<sub>2B</sub>R occurs in the WT scar zone, and that A<sub>2B</sub>R deletion reducing adverse post-MI heart remodeling in both scar and remote zones, suggest a detrimental role for A<sub>2B</sub>R in this chronic pathological process, which could be, at least partially, through the effects on CF collagen and pro-inflammatory cytokine production.</p>","abstract_html":"&lt;p&gt;Adenosine A&lt;sub&gt;2B&lt;/sub&gt; receptor (A&lt;sub&gt;2B&lt;/sub&gt;R) appear to contribute to chronic inflammation. This receptor is highly expressed in macrophages and cardiac fibroblasts, cells which play key roles in inflammation and healing following myocardial infarction (MI). A&lt;sub&gt;2B&lt;/sub&gt;R have been shown to induce collagen production and promote organ fibrosis, although the reports of A&lt;sub&gt;2B&lt;/sub&gt;R role on MI are limited and conflicting. The results of cardiac fibroblast (CF) studies however suggest that non-selective A&lt;sub&gt;2B&lt;/sub&gt;R stimulation inhibits collagen expression. The hypothesis of the present study was that deletion of A&lt;sub&gt;2B&lt;/sub&gt;R reduces adverse remodeling in post-MI, and selective activation of A&lt;sub&gt;2B&lt;/sub&gt;R increases WT murine CF collagen and pro-inflammatory cytokines production. &lt;/p&gt; &lt;p&gt;In our in vivo studies, MI was induced by permanent coronary artery occlusion in male WT and A&lt;sub&gt;2B&lt;/sub&gt;R KO mice. Hearts were harvested at 5 or 28-day post-MI for semi quantitative RT-PCR assay or sectioned and stained for morphological and histological studies. In CF experments, effects of selective A&lt;sub&gt;2B&lt;/sub&gt;R (BAY 60-6583, BAY) and A&lt;sub&gt;2A&lt;/sub&gt;R (CGS-21680, CGS) agonists on signaling (10 min) and collagen expression (24 h) were assessed by western blots. Adenosine receptor expression and agonist effects (24 h) on pro-inflammatory cytokine expression were analyzed with semi-quantitative real time PCR.&lt;/p&gt; &lt;p&gt; Mortality of total animals and 28-day infarct size did not differ between genotypes. A2BR expression was 2.7 fold greater in WT scar zone compared to remote zone. TNF-α and MMP-9 expressions in the scar zone and collagen 1 and 3 mRNA levels in the remote zone were much greater in 5-day WT group without any change in macrophage infiltration. A&lt;sub&gt;2B&lt;/sub&gt;R KO hearts had greater scar thickness and lower infarct expansion. Our results indicated that ablation of A&lt;sub&gt;2B&lt;/sub&gt;R significantly decreased collagen deposition in 28-day post-MI remote zone. We also found that this effect was not due to downregulation of myofibroblasts but related to decreased macrophage infiltration at 28-day. Our results from CF studies indicated that A&lt;sub&gt;2B&lt;/sub&gt;R gene expression was two-fold greater than A&lt;sub&gt;2A&lt;/sub&gt;R, which was comparable to angiotensin AT1R. The A&lt;sub&gt;2B&lt;/sub&gt;R agonist BAY and the A&lt;sub&gt;2A&lt;/sub&gt;R agonist CGS both increased ERK and CREB phosphorylation. BAY and CGS effects on signaling were blocked by deletion of A&lt;sub&gt;2B&lt;/sub&gt;R and A&lt;sub&gt;2A&lt;/sub&gt;R, respectively. TGFβ-induced increases in collagen-1 expression were not altered by adenosine receptor agonists; in contrast, selective A&lt;sub&gt;2B&lt;/sub&gt;R and A&lt;sub&gt;2A&lt;/sub&gt;R stimulation increased collagen-1 expression, effects which were blunted by MEK (U0126) and PKA (H89) inhibitors. BAY, but not CGS, increased IL-6 gene expression, but neither agonist showed an effect on IL-1β mRNA levels. &lt;/p&gt; &lt;p&gt;Our findings that a large increase in expression of the pro-inflammatory A&lt;sub&gt;2B&lt;/sub&gt;R occurs in the WT scar zone, and that A&lt;sub&gt;2B&lt;/sub&gt;R deletion reducing adverse post-MI heart remodeling in both scar and remote zones, suggest a detrimental role for A&lt;sub&gt;2B&lt;/sub&gt;R in this chronic pathological process, which could be, at least partially, through the effects on CF collagen and pro-inflammatory cytokine production.&lt;/p&gt;","abstract_has_math":false,"creators":["Zhan, Enbo"],"institution":null,"degree_name":"Ph.D.","degree_level":"Open Access Dissertation","degree_discipline":"Physiology","degree_department":null,"school":null,"contributors":["Robert D. Lasley"],"advisors":[],"committee_chairs":[],"committee_members":[],"year":2014,"date_issued":"2014-01-01T08:00:00Z","date_published":"2014-01-01T08:00:00Z","updated_at":"2026-07-24T05:59:56Z","subjects":["Adenosine A2B receptor","adverse remodeling","cardiac fibroblast","collagen","inflammation","myocardial infarction","Pharmacology","Physiology"],"languages":[],"rights":[],"rights_urls":[],"identifier_entries":[]},"links":{"outbound_url":"https://digitalcommons.wayne.edu/oa_dissertations/1062","outbound_label":"Repository record","outbound_source":"dc:identifier"},"metadata_groups":[{"id":"people","label":"People","entries":[{"key":"dc:contributor","label":"Contributor","values":["Robert D. 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This receptor is highly expressed in macrophages and cardiac fibroblasts, cells which play key roles in inflammation and healing following myocardial infarction (MI). A<sub>2B</sub>R have been shown to induce collagen production and promote organ fibrosis, although the reports of A<sub>2B</sub>R role on MI are limited and conflicting. The results of cardiac fibroblast (CF) studies however suggest that non-selective A<sub>2B</sub>R stimulation inhibits collagen expression. The hypothesis of the present study was that deletion of A<sub>2B</sub>R reduces adverse remodeling in post-MI, and selective activation of A<sub>2B</sub>R increases WT murine CF collagen and pro-inflammatory cytokines production. </p> <p>In our in vivo studies, MI was induced by permanent coronary artery occlusion in male WT and A<sub>2B</sub>R KO mice. Hearts were harvested at 5 or 28-day post-MI for semi quantitative RT-PCR assay or sectioned and stained for morphological and histological studies. In CF experments, effects of selective A<sub>2B</sub>R (BAY 60-6583, BAY) and A<sub>2A</sub>R (CGS-21680, CGS) agonists on signaling (10 min) and collagen expression (24 h) were assessed by western blots. Adenosine receptor expression and agonist effects (24 h) on pro-inflammatory cytokine expression were analyzed with semi-quantitative real time PCR.</p> <p> Mortality of total animals and 28-day infarct size did not differ between genotypes. A2BR expression was 2.7 fold greater in WT scar zone compared to remote zone. TNF-α and MMP-9 expressions in the scar zone and collagen 1 and 3 mRNA levels in the remote zone were much greater in 5-day WT group without any change in macrophage infiltration. A<sub>2B</sub>R KO hearts had greater scar thickness and lower infarct expansion. Our results indicated that ablation of A<sub>2B</sub>R significantly decreased collagen deposition in 28-day post-MI remote zone. We also found that this effect was not due to downregulation of myofibroblasts but related to decreased macrophage infiltration at 28-day. Our results from CF studies indicated that A<sub>2B</sub>R gene expression was two-fold greater than A<sub>2A</sub>R, which was comparable to angiotensin AT1R. The A<sub>2B</sub>R agonist BAY and the A<sub>2A</sub>R agonist CGS both increased ERK and CREB phosphorylation. BAY and CGS effects on signaling were blocked by deletion of A<sub>2B</sub>R and A<sub>2A</sub>R, respectively. TGFβ-induced increases in collagen-1 expression were not altered by adenosine receptor agonists; in contrast, selective A<sub>2B</sub>R and A<sub>2A</sub>R stimulation increased collagen-1 expression, effects which were blunted by MEK (U0126) and PKA (H89) inhibitors. BAY, but not CGS, increased IL-6 gene expression, but neither agonist showed an effect on IL-1β mRNA levels. </p> <p>Our findings that a large increase in expression of the pro-inflammatory A<sub>2B</sub>R occurs in the WT scar zone, and that A<sub>2B</sub>R deletion reducing adverse post-MI heart remodeling in both scar and remote zones, suggest a detrimental role for A<sub>2B</sub>R in this chronic pathological process, which could be, at least partially, through the effects on CF collagen and pro-inflammatory cytokine production.</p>"]},{"key":"dc:title","label":"Title","values":["Adenosine A2b Receptor Effects On Post-Mi Remodeling And Cardiac Fibroblast Function"]}]}],"canonical_facts":{"dc:contributor":["Robert D. Lasley"],"dc:creator":["Zhan, Enbo"],"dc:date.available":["2014-01-01T08:00:00Z"],"dc:description.abstract":["<p>Adenosine A<sub>2B</sub> receptor (A<sub>2B</sub>R) appear to contribute to chronic inflammation. This receptor is highly expressed in macrophages and cardiac fibroblasts, cells which play key roles in inflammation and healing following myocardial infarction (MI). A<sub>2B</sub>R have been shown to induce collagen production and promote organ fibrosis, although the reports of A<sub>2B</sub>R role on MI are limited and conflicting. The results of cardiac fibroblast (CF) studies however suggest that non-selective A<sub>2B</sub>R stimulation inhibits collagen expression. The hypothesis of the present study was that deletion of A<sub>2B</sub>R reduces adverse remodeling in post-MI, and selective activation of A<sub>2B</sub>R increases WT murine CF collagen and pro-inflammatory cytokines production. </p> <p>In our in vivo studies, MI was induced by permanent coronary artery occlusion in male WT and A<sub>2B</sub>R KO mice. Hearts were harvested at 5 or 28-day post-MI for semi quantitative RT-PCR assay or sectioned and stained for morphological and histological studies. In CF experments, effects of selective A<sub>2B</sub>R (BAY 60-6583, BAY) and A<sub>2A</sub>R (CGS-21680, CGS) agonists on signaling (10 min) and collagen expression (24 h) were assessed by western blots. Adenosine receptor expression and agonist effects (24 h) on pro-inflammatory cytokine expression were analyzed with semi-quantitative real time PCR.</p> <p> Mortality of total animals and 28-day infarct size did not differ between genotypes. A2BR expression was 2.7 fold greater in WT scar zone compared to remote zone. TNF-α and MMP-9 expressions in the scar zone and collagen 1 and 3 mRNA levels in the remote zone were much greater in 5-day WT group without any change in macrophage infiltration. A<sub>2B</sub>R KO hearts had greater scar thickness and lower infarct expansion. Our results indicated that ablation of A<sub>2B</sub>R significantly decreased collagen deposition in 28-day post-MI remote zone. We also found that this effect was not due to downregulation of myofibroblasts but related to decreased macrophage infiltration at 28-day. Our results from CF studies indicated that A<sub>2B</sub>R gene expression was two-fold greater than A<sub>2A</sub>R, which was comparable to angiotensin AT1R. The A<sub>2B</sub>R agonist BAY and the A<sub>2A</sub>R agonist CGS both increased ERK and CREB phosphorylation. BAY and CGS effects on signaling were blocked by deletion of A<sub>2B</sub>R and A<sub>2A</sub>R, respectively. TGFβ-induced increases in collagen-1 expression were not altered by adenosine receptor agonists; in contrast, selective A<sub>2B</sub>R and A<sub>2A</sub>R stimulation increased collagen-1 expression, effects which were blunted by MEK (U0126) and PKA (H89) inhibitors. BAY, but not CGS, increased IL-6 gene expression, but neither agonist showed an effect on IL-1β mRNA levels. </p> <p>Our findings that a large increase in expression of the pro-inflammatory A<sub>2B</sub>R occurs in the WT scar zone, and that A<sub>2B</sub>R deletion reducing adverse post-MI heart remodeling in both scar and remote zones, suggest a detrimental role for A<sub>2B</sub>R in this chronic pathological process, which could be, at least partially, through the effects on CF collagen and pro-inflammatory cytokine production.</p>"],"dc:identifier":["https://digitalcommons.wayne.edu/oa_dissertations/1062"],"dc:subject":["Adenosine A2B receptor","adverse remodeling","cardiac fibroblast","collagen","inflammation","myocardial infarction","Pharmacology","Physiology"],"dc:title":["Adenosine A2b Receptor Effects On Post-Mi Remodeling And Cardiac Fibroblast Function"],"thesis:degree_discipline":["Physiology"],"thesis:degree_level":["Open Access Dissertation"],"thesis:degree_name":["Ph.D."]},"updated_at":"2026-07-24T05:59:56Z"}