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    Targeted drug delivery to flow-obstructed blood vessels using mechanically activated nanotherapeutics

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    Authors
    Korin, Netanel
    Gounis, Matthew J.
    Wakhloo, Ajay K.
    Ingber, Donald E.
    UMass Chan Affiliations
    New England Center for Stroke Research
    Department of Radiology
    Document Type
    Journal Article
    Publication Date
    2015-01-01
    Keywords
    Cardiovascular Diseases
    Nanomedicine
    Nervous System Diseases
    Radiology
    Therapeutics
    
    Metadata
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    Link to Full Text
    http://dx.doi.org/10.1001/jamaneurol.2014.2886
    Abstract
    Obstruction of normal blood flow, which occurs in a variety of diseases, including thromboembolism in stroke and atherosclerosis, is a leading cause of death and long-term adult disability in the Western world. This review focuses on a novel nanotherapeutic drug-delivery platform that is mechanically activated within blood vessels by high-fluid shear stresses to selectively target drugs to sites of vascular obstruction. In vitro and in vivo studies have shown that this approach can be used to efficiently lyse clots using a significantly lower amount of thrombolytic drug than is required when administered in a soluble formulation. This nanotherapeutic strategy can potentially improve both the efficacy and safety of thrombolytic drugs, particularly in patients who are at high risk for brain hemorrhage, and thus provide a new approach for the treatment of many life-threatening and debilitating vascular disorders.
    Source
    JAMA Neurol. 2015 Jan;72(1):119-22. doi: 10.1001/jamaneurol.2014.2886. Link to article on publisher's site
    DOI
    10.1001/jamaneurol.2014.2886
    Permanent Link to this Item
    http://hdl.handle.net/20.500.14038/48009
    PubMed ID
    25365638
    Related Resources
    Link to Article in PubMed
    ae974a485f413a2113503eed53cd6c53
    10.1001/jamaneurol.2014.2886
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