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Ruth Duncan

Researcher at Cardiff University

Publications -  221
Citations -  26091

Ruth Duncan is an academic researcher from Cardiff University. The author has contributed to research in topics: N-(2-Hydroxypropyl) methacrylamide & Methacrylamide. The author has an hindex of 73, co-authored 221 publications receiving 24991 citations. Previous affiliations of Ruth Duncan include University of Greenwich & Keele University.

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The dawning era of polymer therapeutics

TL;DR: The successful clinical application of polymer–protein conjugates, and promising clinical results arising from trials with polymer–anticancer-drug conjugate, bode well for the future design and development of the ever more sophisticated bio-nanotechnologies that are needed to realize the full potential of the post-genomic age.
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Polymer conjugates as anticancer nanomedicines

TL;DR: There is growing optimism that ever more sophisticated polymer-based vectors will be a signficant addition to the armoury currently used for cancer therapy.
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Dendrimers: relationship between structure and biocompatibility in vitro, and preliminary studies on the biodistribution of 125I-labelled polyamidoamine dendrimers in vivo.

TL;DR: Dendrimers are highly branched macromolecules of low polydispersity that provide many exciting opportunities for design of novel drug-carriers, gene delivery systems and imaging agents but it is clear that dendrimer structure must also be carefully tailored to avoid rapid hepatic uptake if targeting elsewhere (e.g. tumour targeting).
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Dendrimer biocompatibility and toxicity.

TL;DR: Preclinical and clinical experience gained during the development of polymeric excipients, biomedical polymers and polymer therapeutics shows that judicious development of dendrimer chemistry for each specific application will ensure development of safe and important materials for biomedical and pharmaceutical use.
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Nanomedicine(s) under the Microscope

TL;DR: Both nanomedicines in clinical use and emerging nanosized drugs, drug delivery systems, imaging agents, and theranostics with unique properties that promise much for the future are reviewed.