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A novel approach for emerging and antibiotic resistant infections: Innate defense regulators as an agnostic therapy.


ABSTRACT: Innate Defense Regulators (IDRs) are short synthetic peptides that target the host innate immune system via an intracellular adaptor protein which functions at key signaling nodes. In this work, further details of the mechanism of action of IDRs have been discovered. The studies reported here show that the lead clinical IDR, SGX94, has broad-spectrum activity against Gram-negative and Gram-positive bacterial infections caused by intracellular or extracellular bacteria and also complements the actions of standard of care antibiotics. Based on in vivo and primary cell culture studies, this activity is shown to result from the primary action of SGX94 on tissue-resident cells and subsequent secondary signaling to activate myeloid-derived cells, resulting in enhanced bacterial clearance and increased survival. Data from non-clinical and clinical studies also show that SGX94 treatment modulates pro-inflammatory and anti-inflammatory cytokine levels, thereby mitigating the deleterious inflammatory consequences of innate immune activation. Since they act through host pathways to provide both broad-spectrum anti-infective capability as well as control of inflammation, IDRs are unlikely to be impacted by resistance mechanisms and offer potential clinical advantages in the fight against emerging and antibiotic resistant bacterial infections.

SUBMITTER: North JR 

PROVIDER: S-EPMC4867239 | biostudies-literature | 2016 May

REPOSITORIES: biostudies-literature

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A novel approach for emerging and antibiotic resistant infections: Innate defense regulators as an agnostic therapy.

North John R JR   Takenaka Shunsuke S   Rozek Annett A   Kielczewska Agnieszka A   Opal Steven S   Morici Lisa A LA   Finlay B Brett BB   Schaber Christopher J CJ   Straube Richard R   Donini Oreola O  

Journal of biotechnology 20160323


Innate Defense Regulators (IDRs) are short synthetic peptides that target the host innate immune system via an intracellular adaptor protein which functions at key signaling nodes. In this work, further details of the mechanism of action of IDRs have been discovered. The studies reported here show that the lead clinical IDR, SGX94, has broad-spectrum activity against Gram-negative and Gram-positive bacterial infections caused by intracellular or extracellular bacteria and also complements the ac  ...[more]

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