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Degradable acetalated dextran microparticles for tunable release of an engineered hepatocyte growth factor fragment.


ABSTRACT: Injectable biomaterials are promising as new therapies to treat myocardial infarction (MI). One useful property of biomaterials is the ability to protect and sustain release of therapeutic payloads. In order to create a platform for optimizing the release rate of cardioprotective molecules we utilized the tunable degradation of acetalated dextran (AcDex). We created microparticles with three distinct degradation profiles and showed that the consequent protein release profiles could be modulated within the infarcted heart. This enabled us to determine how delivery rate impacted the efficacy of a model therapeutic, an engineered hepatocyte growth factor fragment (HGF-f). Our results showed that the cardioprotective efficacy of HGF-f was optimal when delivered over three days post-intramyocardial injection, yielding the largest arterioles, fewest apoptotic cardiomyocytes bordering the infarct and the smallest infarcts compared to empty particle treatment four weeks after injection. This work demonstrates the potential of using AcDex particles as a delivery platform to optimize the time frame for delivering therapeutic proteins to the heart.

SUBMITTER: Suarez SL 

PROVIDER: S-EPMC5761072 | biostudies-other | 2016 Feb

REPOSITORIES: biostudies-other

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Degradable acetalated dextran microparticles for tunable release of an engineered hepatocyte growth factor fragment.

Suarez Sophia L SL   Muñoz Adam A   Mitchell Aaron A   Braden Rebecca L RL   Luo Colin C   Cochran Jennifer R JR   Almutairi Adah A   Christman Karen L KL  

ACS biomaterials science & engineering 20151214 2


Injectable biomaterials are promising as new therapies to treat myocardial infarction (MI). One useful property of biomaterials is the ability to protect and sustain release of therapeutic payloads. In order to create a platform for optimizing the release rate of cardioprotective molecules we utilized the tunable degradation of acetalated dextran (AcDex). We created microparticles with three distinct degradation profiles and showed that the consequent protein release profiles could be modulated  ...[more]

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