| Literature DB >> 25139997 |
Yevgeny Brudno1, Eduardo A Silva2, Cathal J Kearney3, Sarah A Lewin4, Alex Miller5, Kathleen D Martinick4, Michael Aizenberg4, David J Mooney6.
Abstract
Local drug delivery depots have significant clinical utility, but there is currently no noninvasive technique to refill these systems once their payload is exhausted. Inspired by the ability of nanotherapeutics to target specific tissues, we hypothesized that blood-borne drug payloads could be modified to home to and refill hydrogel drug delivery systems. To address this possibility, hydrogels were modified with oligodeoxynucleotides (ODNs) that provide a target for drug payloads in the form of free alginate strands carrying complementary ODNs. Coupling ODNs to alginate strands led to specific binding to complementary-ODN-carrying alginate gels in vitro and to injected gels in vivo. When coupled to a drug payload, sequence-targeted refilling of a delivery depot consisting of intratumor hydrogels completely abrogated tumor growth. These results suggest a new paradigm for nanotherapeutic drug delivery, and this concept is expected to have applications in refilling drug depots in cancer therapy, wound healing, and drug-eluting vascular grafts and stents.Entities:
Keywords: DNA nanotechnology; biomaterials; controlled release; nanoparticle; targeting
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Year: 2014 PMID: 25139997 PMCID: PMC4156738 DOI: 10.1073/pnas.1413027111
Source DB: PubMed Journal: Proc Natl Acad Sci U S A ISSN: 0027-8424 Impact factor: 11.205