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Cardiovascular resistance to thrombosis in 13-lined ground squirrels.
Bonis, Alison; Anderson, Leah; Talhouarne, Gaëlle; Schueller, Emily; Unke, Jenna; Krus, Catherine; Stokka, Jordan; Koepke, Anna; Lehrer, Brittany; Schuh, Anthony; Andersen, Jeremiah J; Cooper, Scott.
Affiliation
  • Bonis A; Biology Department, University of Wisconsin-La Crosse, 1725 State St. La Crosse, La Crosse, WI, 54601, USA.
  • Anderson L; Biology Department, University of Wisconsin-La Crosse, 1725 State St. La Crosse, La Crosse, WI, 54601, USA.
  • Talhouarne G; Biology Department, University of Wisconsin-La Crosse, 1725 State St. La Crosse, La Crosse, WI, 54601, USA.
  • Schueller E; Biology Department, University of Wisconsin-La Crosse, 1725 State St. La Crosse, La Crosse, WI, 54601, USA.
  • Unke J; Biology Department, University of Wisconsin-La Crosse, 1725 State St. La Crosse, La Crosse, WI, 54601, USA.
  • Krus C; Biology Department, University of Wisconsin-La Crosse, 1725 State St. La Crosse, La Crosse, WI, 54601, USA.
  • Stokka J; Biology Department, University of Wisconsin-La Crosse, 1725 State St. La Crosse, La Crosse, WI, 54601, USA.
  • Koepke A; Biology Department, University of Wisconsin-La Crosse, 1725 State St. La Crosse, La Crosse, WI, 54601, USA.
  • Lehrer B; Biology Department, University of Wisconsin-La Crosse, 1725 State St. La Crosse, La Crosse, WI, 54601, USA.
  • Schuh A; Biology Department, University of Wisconsin-La Crosse, 1725 State St. La Crosse, La Crosse, WI, 54601, USA.
  • Andersen JJ; Gundersen Health System, La Crosse, WI, 54601, USA.
  • Cooper S; Biology Department, University of Wisconsin-La Crosse, 1725 State St. La Crosse, La Crosse, WI, 54601, USA. scooper@uwlax.edu.
J Comp Physiol B ; 189(1): 167-177, 2019 02.
Article in En | MEDLINE | ID: mdl-30317383
13-lined ground squirrels (Ictidomys tridecemlineatus) enter hibernation as a survival strategy during extreme environmental conditions. Typical ground squirrel hibernation is characterized by prolonged periods of torpor with significantly reduced heart rate, blood pressure, and blood flow, interrupted every few weeks by brief interbout arousals (IBA) during which blood flow fluctuates dramatically. These physiological conditions should increase the risk of stasis-induced blood clots and myocardial ischemia. However, ground squirrels have adapted to survive repeated bouts of torpor and IBA without forming lethal blood clots or sustaining lethal ischemic myocardial damage. The purpose of this study was to determine if ground squirrels are resistant to thrombosis and myocardial ischemia during hibernation. Blood markers of coagulation, fibrinolysis, thrombosis, and ischemia, as well as histological markers of myocardial ischemia were measured throughout the annual hibernation cycle. Hibernating ground squirrels were also treated with isoprenaline to induce myocardial ischemia. Thrombin-antithrombin complex levels were significantly reduced (p < 0.05) during hibernation, while D-dimer level remained unchanged throughout the annual cycle, both consistent with an antithrombotic state. During torpor, the ground squirrels were in a hyperfibrinolytic state with an elevated ratio of tissue plasminogen activator complexed with plasminogen activator inhibitor to total plasminogen activator inhibitor (p < 0.05). Histological markers of myocardial ischemia were reversibly elevated during hibernation with no increase in markers of myocardial cell death in the blood. These data suggest that ground squirrels do not form major blood clots during hibernation through suppression of coagulation and a hyperfibrinolytic state. These animals also demonstrate myocardial resistance to ischemia.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Sciuridae / Thrombosis / Blood Coagulation / Torpor Limits: Animals Language: En Journal: J Comp Physiol B Journal subject: BIOQUIMICA / FISIOLOGIA / METABOLISMO Year: 2019 Document type: Article Affiliation country: United States Country of publication: Germany

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Sciuridae / Thrombosis / Blood Coagulation / Torpor Limits: Animals Language: En Journal: J Comp Physiol B Journal subject: BIOQUIMICA / FISIOLOGIA / METABOLISMO Year: 2019 Document type: Article Affiliation country: United States Country of publication: Germany