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April 1, 2015Blood259 citationsOpen Access

Activated protein C: biased for translation

JGJohn H. GriffinVascular Medicine
Berislav V. Zloković
Berislav V. ZlokovićUniversity of Southern California
LMLaurent O. MosnierScripps Research Institute

Structured PICO

P
Population
Preclinical injury models (ischemia/reperfusion in brain, heart, and kidney; pulmonary, kidney, and gastrointestinal inflammation; sepsis; Ebola virus; diabetes; and total lethal body radiation)
I
Intervention
Recombinant human and murine activated protein C (APC) and engineered variants (e.g., 3K3A-APC)

Activated protein C and its engineered variants with reduced anticoagulant activity show broad cytoprotective and regenerative potential in preclinical models, providing a foundation for novel therapies like 3K3A-APC for ischemic stroke.

Abstract

The homeostatic blood protease, activated protein C (APC), can function as (1) an antithrombotic on the basis of inactivation of clotting factors Va and VIIIa; (2) a cytoprotective on the basis of endothelial barrier stabilization and anti-inflammatory and antiapoptotic actions; and (3) a regenerative on the basis of stimulation of neurogenesis, angiogenesis, and wound healing. Pharmacologic therapies using recombinant human and murine APCs indicate that APC provides effective acute or chronic therapies for a strikingly diverse range of preclinical injury models. APC reduces the damage caused by the following: ischemia/reperfusion in brain, heart, and kidney; pulmonary, kidney, and gastrointestinal inflammation; sepsis; Ebola virus; diabetes; and total lethal body radiation. For these beneficial effects, APC alters cell signaling networks and gene expression profiles by activating protease-activated receptors 1 and 3. APC's activation of these G protein-coupled receptors differs completely from thrombin's activation mechanism due to biased signaling via either G proteins or β-arrestin-2. To reduce APC-associated bleeding risk, APC variants were engineered to lack >90% anticoagulant activity but retain normal cell signaling. Such a neuroprotective variant, 3K3A-APC (Lys191-193Ala), has advanced to clinical trials for ischemic stroke. A rich data set of preclinical knowledge provides a solid foundation for potential translation of APC variants to future novel therapies.

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Cite This Study

Griffin et al. (2015) studied this question.

synapsesocial.com/papers/6a02e48abc3ffe278e653257https://doi.org/10.1182/blood-2015-02-355974
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