Literature DB >> 20174993

Hsp-72, a candidate prognostic indicator of heatstroke.

Mohammed Dehbi1, Engin Baturcam, Abdelmoneim Eldali, Maqbool Ahmed, Aaron Kwaasi, Muhammad Azhar Chishti, Abderrezak Bouchama.   

Abstract

Exposure of rats to environmental heat enhances the expression of heat shock protein-72 (Hsp-72) in most of their organs proportionally to heat stress severity. Pre-induction or over-expression of Hsp-72 prevents organ damage and lethality, suggesting that heat shock proteins (Hsps) may have a pathogenic role in this condition. We investigated the expression profile of Hsps in baboons subjected to environmental heat stress until the core temperature attained 42.5 degrees C (moderate heatstroke) or occurrence of hypotension associated with core temperature > or = 43.5 degrees C (severe heatstroke). Western blot analysis demonstrated a differential induction of Hsp-72 among organs of heat-stressed animals with the highest induction in the liver and the lowest in lung. Hsp-60 and Hsc-70 expression was similar between control and heat-stressed animals. ELISA studies indicated a marked release of Hsp-72 into the circulation of baboons with severe heatstroke with a peak at 24 h post-heatstroke onset and remained sustained up to 72 h. Hsp-72 release was not associated with core temperature or systolic blood pressure, but correlated with markers of liver, myocardium, and skeletal muscle tissue necrosis. Non-survivors displayed significantly higher Hsp-72 levels than survivors. No Hsp-60 was detected in the circulation. These findings add further evidence that increased expression of Hsp-72 may be an important component of the host response to severe heatstroke. They also suggest that extracellular Hsp-72 is a marker of multiple organs tissue damage. Whether extracellular Hsp-72 plays a role in the host immune response to heat stress merits further studies.

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Year:  2010        PMID: 20174993      PMCID: PMC3006628          DOI: 10.1007/s12192-010-0172-3

Source DB:  PubMed          Journal:  Cell Stress Chaperones        ISSN: 1355-8145            Impact factor:   3.667


  40 in total

1.  Heat shock protein 72 overexpression protects against hyperthermia, circulatory shock, and cerebral ischemia during heatstroke.

Authors:  W C Lee; H C Wen; C P Chang; M Y Chen; M T Lin
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3.  Myocardial ischaemia and the inflammatory response: release of heat shock protein 70 after myocardial infarction.

Authors:  B Dybdahl; S A Slørdahl; A Waage; P Kierulf; T Espevik; A Sundan
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5.  Heat shock pretreatment may protect against heatstroke-induced circulatory shock and cerebral ischemia by reducing oxidative stress and energy depletion.

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6.  Splanchnic tissues undergo hypoxic stress during whole body hyperthermia.

Authors:  D M Hall; K R Baumgardner; T D Oberley; C V Gisolfi
Journal:  Am J Physiol       Date:  1999-05

7.  Identification of human heat shock protein 60 (Hsp60) and anti-Hsp60 antibodies in the peripheral circulation of normal individuals.

Authors:  A G Pockley; J Bulmer; B M Hanks; B H Wright
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8.  Inflammatory, hemostatic, and clinical changes in a baboon experimental model for heatstroke.

Authors:  A Bouchama; G Roberts; F Al Mohanna; R El-Sayed; B Lach; S Chollet-Martin; V Ollivier; R Al Baradei; A Loualich; S Nakeeb; A Eldali; D de Prost
Journal:  J Appl Physiol (1985)       Date:  2004-10-08

9.  Mortality of patients with heatstroke admitted to intensive care units during the 2003 heat wave in France: a national multiple-center risk-factor study.

Authors:  Benoît Misset; Bernard De Jonghe; Sylvie Bastuji-Garin; Olivier Gattolliat; Ezzeddine Boughrara; Djillali Annane; Pierre Hausfater; Maïté Garrouste-Orgeas; Jean Carlet
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10.  The expression of heat shock protein 70 decreases with cellular senescence in vitro and in cells derived from young and old human subjects.

Authors:  A Gutsmann-Conrad; A R Heydari; S You; A Richardson
Journal:  Exp Cell Res       Date:  1998-06-15       Impact factor: 3.905

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Review 2.  An overview of cytokines and heat shock response in polytraumatized patients.

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4.  Astaxanthin supplementation impacts the cellular HSP expression profile during passive heating.

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Review 6.  Biomarkers of heatstroke-induced organ injury and repair.

Authors:  Zachary J Schlader; Michael S Davis; Abderrezak Bouchama
Journal:  Exp Physiol       Date:  2022-06-14       Impact factor: 2.858

7.  Hospitalized dogs recovery from naturally occurring heatstroke; does serum heat shock protein 72 can provide prognostic biomarker?

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Review 8.  Classic and exertional heatstroke.

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9.  Limitations to Thermoregulation and Acclimatization Challenge Human Adaptation to Global Warming.

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10.  Patterns of gene expression associated with recovery and injury in heat-stressed rats.

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