{"id":{"repo_id":"uthsc","oai_identifier":"oai:digitalcommons.library.tmc.edu:utgsbs_dissertations-1166"},"canonical_url":"https://search.dev.ndltd.org/etd/uthsc/oai:digitalcommons.library.tmc.edu:utgsbs_dissertations-1166","repository":{"repo_id":"uthsc","name":"University of Texas Health Science Center at Houston","base_url":"https://digitalcommons.library.tmc.edu/do/oai/"},"display":{"title":"The Role of Il-6 In Adenosine-Mediated Pulmonary Fibrosis","abstract":"<p> <p>Adenosine is a purinergic signaling molecule that regulates various aspects of inflammation and has been implicated in the pathogenesis of chronic lung diseases. Previous studies have demonstrated that adenosine up-regulates IL-6 production through the engagement of the A<sub>2B</sub> adenosine receptor in various cell types, including alveolar macrophages. IL-6 is elevated in mouse models and humans with chronic lung disease, suggesting a potential role in disease progression. Furthermore, chronic elevation of adenosine in the lungs of adenosine deaminase deficient (<em>Ada<sup>-/-</sup></em>) mice leads to the development of pulmonary inflammation, alveolar destruction, and fibrosis, in conjunction with IL-6 elevation. Thus, it was hypothesized that IL-6 contributes to pulmonary inflammation and fibrosis in this model. To test this hypothesis, <em>Ada/IL-6</em> double knockout mice (<em>Ada/IL-6<sup>-/-</sup></em>) were generated to assess the consequences of genetically removing IL-6 on adenosine-dependent pulmonary injury. <em>Ada/IL-6<sup>-/- </sup></em>mice exhibited a significant reduction in inflammation, alveolar destruction, and pulmonary fibrosis. Next, <em>Ada<sup>-/-</sup></em> mice were treated systematically with IL-6 neutralizing antibodies to test the efficacy of blocking IL-6 on chronic lung disease. These treatments were associated with decreased pulmonary inflammation, alveolar destruction, and fibrosis. To determine the role of IL-6 in a second model of pulmonary fibrosis, wild type mice and <em>IL-6<sup>-/-</sup></em> mice were subjected to intraperitoneal injections of bleomycin twice a week for four weeks. Results demonstrated that <em>IL-6<sup>-/-</sup></em> mice developed reduced pulmonary fibrosis. To examine a therapeutic approach in this model, wild type mice exposed to bleomycin were treated with IL-6 neutralizing antibodies. Similar results were observed as with <em>Ada<sup>-/-</sup></em> mice, namely diminished pulmonary inflammation and fibrosis. In both models, elevations in IL-6 were associated with increased phosphorylated STAT-3 in the nuclei of numerous cell types in the airways, including type II alveolar epithelial cells (AEC). Genetic removal and neutralization of IL-6 in both models was associated with decreased STAT-3 activation in type II AEC. The mechanism of activation in these cells that lack the membrane bound IL-6Ra suggests IL-6 trans-signaling may play a role in regulating fibrosis. Characterization of this mechanism demonstrated that the soluble IL-6Ra (sIL-6Ra) is upregulated in both models during chronic conditions. <em>In vitro</em> studies in MLE-12 alveolar epithelial cells confirmed that IL-6, in combination with the sIL-6Ra, activates STAT-3 and TWIST in association with enhancement of epithelial-to-mesenchymal transition, which can contribute to fibrosis. Similarly, patients with idiopathic pulmonary fibrosis demonstrated a similar pattern of increased IL-6 expression, STAT-3 activation, and sIL-6Ra increases. These findings demonstrate that adenosine-dependent elevations in IL-6 contribute to the development and progression of pulmonary inflammation and fibrosis. The implications from these studies are that adenosine and/or IL-6 neutralizing agents represent novel therapeutic targets for the treatment of pulmonary disorders where fibrosis is a detrimental component.</p> </p>","abstract_html":"&lt;p&gt; &lt;p&gt;Adenosine is a purinergic signaling molecule that regulates various aspects of inflammation and has been implicated in the pathogenesis of chronic lung diseases. Previous studies have demonstrated that adenosine up-regulates IL-6 production through the engagement of the A&lt;sub&gt;2B&lt;/sub&gt; adenosine receptor in various cell types, including alveolar macrophages. IL-6 is elevated in mouse models and humans with chronic lung disease, suggesting a potential role in disease progression. Furthermore, chronic elevation of adenosine in the lungs of adenosine deaminase deficient (&lt;em&gt;Ada&lt;sup&gt;-/-&lt;/sup&gt;&lt;/em&gt;) mice leads to the development of pulmonary inflammation, alveolar destruction, and fibrosis, in conjunction with IL-6 elevation. Thus, it was hypothesized that IL-6 contributes to pulmonary inflammation and fibrosis in this model. To test this hypothesis, &lt;em&gt;Ada/IL-6&lt;/em&gt; double knockout mice (&lt;em&gt;Ada/IL-6&lt;sup&gt;-/-&lt;/sup&gt;&lt;/em&gt;) were generated to assess the consequences of genetically removing IL-6 on adenosine-dependent pulmonary injury. &lt;em&gt;Ada/IL-6&lt;sup&gt;-/- &lt;/sup&gt;&lt;/em&gt;mice exhibited a significant reduction in inflammation, alveolar destruction, and pulmonary fibrosis. Next, &lt;em&gt;Ada&lt;sup&gt;-/-&lt;/sup&gt;&lt;/em&gt; mice were treated systematically with IL-6 neutralizing antibodies to test the efficacy of blocking IL-6 on chronic lung disease. These treatments were associated with decreased pulmonary inflammation, alveolar destruction, and fibrosis. To determine the role of IL-6 in a second model of pulmonary fibrosis, wild type mice and &lt;em&gt;IL-6&lt;sup&gt;-/-&lt;/sup&gt;&lt;/em&gt; mice were subjected to intraperitoneal injections of bleomycin twice a week for four weeks. Results demonstrated that &lt;em&gt;IL-6&lt;sup&gt;-/-&lt;/sup&gt;&lt;/em&gt; mice developed reduced pulmonary fibrosis. To examine a therapeutic approach in this model, wild type mice exposed to bleomycin were treated with IL-6 neutralizing antibodies. Similar results were observed as with &lt;em&gt;Ada&lt;sup&gt;-/-&lt;/sup&gt;&lt;/em&gt; mice, namely diminished pulmonary inflammation and fibrosis. In both models, elevations in IL-6 were associated with increased phosphorylated STAT-3 in the nuclei of numerous cell types in the airways, including type II alveolar epithelial cells (AEC). Genetic removal and neutralization of IL-6 in both models was associated with decreased STAT-3 activation in type II AEC. The mechanism of activation in these cells that lack the membrane bound IL-6Ra suggests IL-6 trans-signaling may play a role in regulating fibrosis. Characterization of this mechanism demonstrated that the soluble IL-6Ra (sIL-6Ra) is upregulated in both models during chronic conditions. &lt;em&gt;In vitro&lt;/em&gt; studies in MLE-12 alveolar epithelial cells confirmed that IL-6, in combination with the sIL-6Ra, activates STAT-3 and TWIST in association with enhancement of epithelial-to-mesenchymal transition, which can contribute to fibrosis. Similarly, patients with idiopathic pulmonary fibrosis demonstrated a similar pattern of increased IL-6 expression, STAT-3 activation, and sIL-6Ra increases. These findings demonstrate that adenosine-dependent elevations in IL-6 contribute to the development and progression of pulmonary inflammation and fibrosis. The implications from these studies are that adenosine and/or IL-6 neutralizing agents represent novel therapeutic targets for the treatment of pulmonary disorders where fibrosis is a detrimental component.&lt;/p&gt; &lt;/p&gt;","abstract_has_math":false,"creators":["Pedroza, Mesias"],"institution":null,"degree_name":"Doctor of Philosophy (PhD)","degree_level":"Dissertation (PhD)","degree_discipline":null,"degree_department":null,"school":null,"contributors":["Michael R. Blackburn, PhD","Rodney E. Kellems, PhD","Sandeep K. Agarwal, MD/PhD"],"advisors":[],"committee_chairs":[],"committee_members":[],"year":2011,"date_issued":"2011-05-01T07:00:00Z","date_published":"2011-05-01T07:00:00Z","updated_at":"2026-07-24T05:50:09Z","subjects":["Adenosine","A2BR","IL-6","Chronic lung disease","Pulmonary Fibrosis","EMT","Biochemistry"],"languages":[],"rights":[],"rights_urls":[],"identifier_entries":[]},"links":{"outbound_url":"https://digitalcommons.library.tmc.edu/utgsbs_dissertations/142","outbound_label":"Repository record","outbound_source":"dc:identifier"},"metadata_groups":[{"id":"people","label":"People","entries":[{"key":"dc:contributor","label":"Contributor","values":["Michael R. Blackburn, PhD","Rodney E. Kellems, PhD","Sandeep K. Agarwal, MD/PhD"]},{"key":"dc:creator","label":"Author","values":["Pedroza, Mesias"]}]},{"id":"academic_context","label":"Academic Context","entries":[{"key":"dc:date.available","label":"Dc Date Available","values":["2011-05-05T07:00:00Z"]},{"key":"thesis:degree_level","label":"Degree Level","values":["Dissertation (PhD)"]},{"key":"thesis:degree_name","label":"Degree Name","values":["Doctor of Philosophy (PhD)"]}]},{"id":"subjects_keywords","label":"Subjects and Keywords","entries":[{"key":"dc:subject","label":"Dc Subject","values":["Adenosine","A2BR","IL-6","Chronic lung disease","Pulmonary Fibrosis","EMT","Biochemistry"]}]},{"id":"identifiers","label":"Identifiers","entries":[{"key":"dc:identifier","label":"Identifier","values":["https://digitalcommons.library.tmc.edu/utgsbs_dissertations/142"]}]},{"id":"additional","label":"Additional Metadata","entries":[{"key":"dc:description.abstract","label":"Abstract","values":["<p> <p>Adenosine is a purinergic signaling molecule that regulates various aspects of inflammation and has been implicated in the pathogenesis of chronic lung diseases. Previous studies have demonstrated that adenosine up-regulates IL-6 production through the engagement of the A<sub>2B</sub> adenosine receptor in various cell types, including alveolar macrophages. IL-6 is elevated in mouse models and humans with chronic lung disease, suggesting a potential role in disease progression. Furthermore, chronic elevation of adenosine in the lungs of adenosine deaminase deficient (<em>Ada<sup>-/-</sup></em>) mice leads to the development of pulmonary inflammation, alveolar destruction, and fibrosis, in conjunction with IL-6 elevation. Thus, it was hypothesized that IL-6 contributes to pulmonary inflammation and fibrosis in this model. To test this hypothesis, <em>Ada/IL-6</em> double knockout mice (<em>Ada/IL-6<sup>-/-</sup></em>) were generated to assess the consequences of genetically removing IL-6 on adenosine-dependent pulmonary injury. <em>Ada/IL-6<sup>-/- </sup></em>mice exhibited a significant reduction in inflammation, alveolar destruction, and pulmonary fibrosis. Next, <em>Ada<sup>-/-</sup></em> mice were treated systematically with IL-6 neutralizing antibodies to test the efficacy of blocking IL-6 on chronic lung disease. These treatments were associated with decreased pulmonary inflammation, alveolar destruction, and fibrosis. To determine the role of IL-6 in a second model of pulmonary fibrosis, wild type mice and <em>IL-6<sup>-/-</sup></em> mice were subjected to intraperitoneal injections of bleomycin twice a week for four weeks. Results demonstrated that <em>IL-6<sup>-/-</sup></em> mice developed reduced pulmonary fibrosis. To examine a therapeutic approach in this model, wild type mice exposed to bleomycin were treated with IL-6 neutralizing antibodies. Similar results were observed as with <em>Ada<sup>-/-</sup></em> mice, namely diminished pulmonary inflammation and fibrosis. In both models, elevations in IL-6 were associated with increased phosphorylated STAT-3 in the nuclei of numerous cell types in the airways, including type II alveolar epithelial cells (AEC). Genetic removal and neutralization of IL-6 in both models was associated with decreased STAT-3 activation in type II AEC. The mechanism of activation in these cells that lack the membrane bound IL-6Ra suggests IL-6 trans-signaling may play a role in regulating fibrosis. Characterization of this mechanism demonstrated that the soluble IL-6Ra (sIL-6Ra) is upregulated in both models during chronic conditions. <em>In vitro</em> studies in MLE-12 alveolar epithelial cells confirmed that IL-6, in combination with the sIL-6Ra, activates STAT-3 and TWIST in association with enhancement of epithelial-to-mesenchymal transition, which can contribute to fibrosis. Similarly, patients with idiopathic pulmonary fibrosis demonstrated a similar pattern of increased IL-6 expression, STAT-3 activation, and sIL-6Ra increases. These findings demonstrate that adenosine-dependent elevations in IL-6 contribute to the development and progression of pulmonary inflammation and fibrosis. The implications from these studies are that adenosine and/or IL-6 neutralizing agents represent novel therapeutic targets for the treatment of pulmonary disorders where fibrosis is a detrimental component.</p> </p>"]},{"key":"dc:title","label":"Title","values":["The Role of Il-6 In Adenosine-Mediated Pulmonary Fibrosis"]}]}],"canonical_facts":{"dc:contributor":["Michael R. Blackburn, PhD","Rodney E. Kellems, PhD","Sandeep K. Agarwal, MD/PhD"],"dc:creator":["Pedroza, Mesias"],"dc:date.available":["2011-05-05T07:00:00Z"],"dc:description.abstract":["<p> <p>Adenosine is a purinergic signaling molecule that regulates various aspects of inflammation and has been implicated in the pathogenesis of chronic lung diseases. Previous studies have demonstrated that adenosine up-regulates IL-6 production through the engagement of the A<sub>2B</sub> adenosine receptor in various cell types, including alveolar macrophages. IL-6 is elevated in mouse models and humans with chronic lung disease, suggesting a potential role in disease progression. Furthermore, chronic elevation of adenosine in the lungs of adenosine deaminase deficient (<em>Ada<sup>-/-</sup></em>) mice leads to the development of pulmonary inflammation, alveolar destruction, and fibrosis, in conjunction with IL-6 elevation. Thus, it was hypothesized that IL-6 contributes to pulmonary inflammation and fibrosis in this model. To test this hypothesis, <em>Ada/IL-6</em> double knockout mice (<em>Ada/IL-6<sup>-/-</sup></em>) were generated to assess the consequences of genetically removing IL-6 on adenosine-dependent pulmonary injury. <em>Ada/IL-6<sup>-/- </sup></em>mice exhibited a significant reduction in inflammation, alveolar destruction, and pulmonary fibrosis. Next, <em>Ada<sup>-/-</sup></em> mice were treated systematically with IL-6 neutralizing antibodies to test the efficacy of blocking IL-6 on chronic lung disease. These treatments were associated with decreased pulmonary inflammation, alveolar destruction, and fibrosis. To determine the role of IL-6 in a second model of pulmonary fibrosis, wild type mice and <em>IL-6<sup>-/-</sup></em> mice were subjected to intraperitoneal injections of bleomycin twice a week for four weeks. Results demonstrated that <em>IL-6<sup>-/-</sup></em> mice developed reduced pulmonary fibrosis. To examine a therapeutic approach in this model, wild type mice exposed to bleomycin were treated with IL-6 neutralizing antibodies. Similar results were observed as with <em>Ada<sup>-/-</sup></em> mice, namely diminished pulmonary inflammation and fibrosis. In both models, elevations in IL-6 were associated with increased phosphorylated STAT-3 in the nuclei of numerous cell types in the airways, including type II alveolar epithelial cells (AEC). Genetic removal and neutralization of IL-6 in both models was associated with decreased STAT-3 activation in type II AEC. The mechanism of activation in these cells that lack the membrane bound IL-6Ra suggests IL-6 trans-signaling may play a role in regulating fibrosis. Characterization of this mechanism demonstrated that the soluble IL-6Ra (sIL-6Ra) is upregulated in both models during chronic conditions. <em>In vitro</em> studies in MLE-12 alveolar epithelial cells confirmed that IL-6, in combination with the sIL-6Ra, activates STAT-3 and TWIST in association with enhancement of epithelial-to-mesenchymal transition, which can contribute to fibrosis. Similarly, patients with idiopathic pulmonary fibrosis demonstrated a similar pattern of increased IL-6 expression, STAT-3 activation, and sIL-6Ra increases. These findings demonstrate that adenosine-dependent elevations in IL-6 contribute to the development and progression of pulmonary inflammation and fibrosis. The implications from these studies are that adenosine and/or IL-6 neutralizing agents represent novel therapeutic targets for the treatment of pulmonary disorders where fibrosis is a detrimental component.</p> </p>"],"dc:identifier":["https://digitalcommons.library.tmc.edu/utgsbs_dissertations/142"],"dc:subject":["Adenosine","A2BR","IL-6","Chronic lung disease","Pulmonary Fibrosis","EMT","Biochemistry"],"dc:title":["The Role of Il-6 In Adenosine-Mediated Pulmonary Fibrosis"],"thesis:degree_level":["Dissertation (PhD)"],"thesis:degree_name":["Doctor of Philosophy (PhD)"]},"updated_at":"2026-07-24T05:50:09Z"}