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January 1, 2020International Journal of Medical Sciences11 citationsOpen Access

Therapeutic Hypothermia Protects Against Heat Stroke-Induced Arterial Hypotension via Promoting Left Ventricular Performance in Rats

WKWen‐Ching KoCLCheng‐Hsien LinJLJie-Jen Lee

Key Result

Therapeutic hypothermia protected against heat stroke-induced arterial hypotension (71 mmHg vs 30 mmHg) and promoted left ventricular performance, resulting in 100% survival compared to 0% in untreated rats.

Structured PICO

Does therapeutic hypothermia improve arterial hypotension and left ventricular performance in a rat model of heat stroke?

P
Population
60 adult male Sprague-Dawley rats subjected to whole-body heating to induce heat stroke and evaluate the cardioprotective effects of therapeutic hypothermia.
I
Intervention
Therapeutic hypothermia (TH)
C
Comparator
Heat stroke without therapeutic hypothermia
O
Outcome
Arterial hypotension and left ventricular performance (stroke volume, ejection fraction, relaxation factor, and arterial elastance)surrogate

Therapeutic hypothermia protects against heat stroke-induced arterial hypotension by promoting left ventricular performance and reducing myocardial injury in a rat model.

Main Result

Absolute Event Rate: 71% vs 30%

p-value: p=<0.01

Limitations

  • Only one temperature of therapeutic hypothermia (32°C) was tested.
  • Only male rats were used in the study.
  • The study focused mainly on cardiac protection, potentially missing other systemic effects.

Abstract

We aimed to ascertain whether therapeutic hypothermia (TH) acts as cardioprotective management for heat stroke (HS). Adult male rats under general anesthesia were exposed to whole-body heating (43°C for 70 min) to induce HS. Rats with HS displayed hyperthermia (core body temperature 42°C vs. 36°C); hypotension (30 mmHg vs. 90 mmHg mean arterial blood pressure); suppressed left ventricular (LV) performance (stroke volume 52 μl/min vs. 125 μl/min), ejection fraction (0.29% vs. 0.69%), relaxation factor (72 ms vs. 12 ms), and arterial elastance (0.31 mmHg/ μl vs. 10 mmHg/ μl); increased myocardial injury markers (e.g., creatine kinase-MB: 86 U/L vs. 24 U/L, cardiac troponin I: 3.08 ng/ml vs. 0.57 ng/ml); increased myocardial oxidative stress markers (e.g., malondialdehyde: 6.52 nmol/mg vs. 1.06 nmol/mg, thiobarbituric acid-reactive substances: 29 nmol/g vs. 2 nmol/g); decreased myocardial antioxidants (e.g., superoxide dismutase: 6 unit/mg vs. 17 unit/mg, reduced glutathione: 0.64 nmol/mg vs. 2.53 nmol/mg); increased myocardial proinflammatory cytokines (e.g., tumor necrosis factor-α 3200 pg/ml vs. 1000 pg/ml, interleukin-6: 668 pg/ml vs. 102 pg/ml); and increased cardiac damage scores (2.2 vs. 0.3). TH therapy significantly reversed the following conditions: HS-induced hyperthermia (37.5°C core body temperature), hypotension (71 mmHg), suppressed LV performance (stroke volume: 97 μl/min, ejection fraction: 0.65%, relaxation factor: 39 ms, and arterial elastance: 0.99 mmHg/μl), increased myocardial injury markers (e.g., creatine kinase-MB: 37 U/L, cardiac troponin I: 1.06 ng/ml), increased myocardial oxidative stress markers (e.g., malondialdehyde: 2.68 nmol/mg, thiobarbituric acid-reactive substances: 12.3 nmol/g), decreased myocardial antioxidants (e.g., superoxide dismutase: 13.3 unit/mg, reduced glutathione: 2.71 mmol/mg), increased myocardial proinflammatory cytokines (e.g., tumor necrosis factor-α 1500 pg/ml, interleukin-6: 108 ng/ml); and increased cardiac damage scores (0.9). We thus conclude that TH protects against HS-induced arterial hypotension by promoting LV performance in rats. These results add to the literature regarding the use of TH as cardioprotective management for HS.

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Cite This Study

Ko et al. (2020) studied Heat stroke (n=60). Therapeutic hypothermia vs. Non-therapeutic hypothermia (26°C for 30 min) was evaluated on Mean arterial blood pressure (p=<0.01). Therapeutic hypothermia protected against heat stroke-induced arterial hypotension (71 mmHg vs 30 mmHg) and promoted left ventricular performance, resulting in 100% survival compared to 0% in untreated rats.

synapsesocial.com/papers/6a563823326853a169274b21https://doi.org/10.7150/ijms.39745
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