Heat Shock Protein 90: From Molecular Chaperone Function to Therapeutic Targeting in Malignancies. [PDF]
Zhang B, Zou X, Zhou J, Sun Q, Chen D.
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Heat Shock Protein Inhibitor Tanespimycin (17AAG) Suppresses SARS-CoV-2 Main Protease Activity and Is More Potent Than Clinically Approved Antiviral Nirmatrelvir. [PDF]
Mukherjee G +4 more
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Adaptation to heat stress by diversification of the vertebrate heat shock transcription factor family. [PDF]
Takii R, Fujimoto M, Nakai A.
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Relationship between hair cortisol and plasma heat shock proteins in response to heat stress in tolerant and sensitive cattle breeds. [PDF]
Capela L +6 more
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Cellular Stress and Immune Activation in Celiac Disease: Is the Chaperone System a Key Player? [PDF]
Vergilio G +4 more
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[Expression of Concern] Novel insights into the role of HSP90 in cytoprotection of H<sub>2</sub>S against chemical hypoxia‑induced injury in H9c2 cardiac myocytes. [PDF]
Yang Z +9 more
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Heat intolerance: the challenge of returning to duty post-exertional heatstroke. [PDF]
Song J.
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The role of astragalus polysaccharides in alleviating transport stress in piglets. [PDF]
Liu P, Zuo J, Lu H, Wu C.
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Exogenous Heat Shock Proteins in Oncology: Biological Roles and Clinical Implications. [PDF]
Sokolenko A +7 more
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Emerging perspectives in proteostasis: bridging mechanisms and therapeutics for human diseases. [PDF]
Borlepawar A +7 more
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