Biodegradable Polyphosphazenes For Drug Delivery Applications

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Biodegradable polyphosphazenes for drug delivery applications

    https://www.sciencedirect.com/science/article/pii/S0169409X03000395
    Apr 25, 2003 · Biodegradable polyphosphazenes for drug delivery applications 1. Introduction. The synthesis of polydichlorophosphazene was attempted as early as 1895 by H.N. 2. Mode of degradation of biodegradable polyphosphazenes. 3. Drug delivery applications of biodegradable polyphosphazenes. 4. Conclusions. ...Author: S Lakshmi, D.S Katti, C.T Laurencin

Biodegradable polyphosphazenes for drugdelivery applications

    https://www.researchgate.net/publication/10795281_Biodegradable_polyphosphazenes_for_drugdelivery_applications
    Biodegradable polyphosphazenes, due to their hydrolytic instability, nontoxic degradation products, ease of fabrication and matrix permeability, are an excellent platform for controlled drug...

Polyphosphazenes: Multifunctional, Biodegradable Vehicles ...

    https://www.mdpi.com/2073-4360/5/1/161/htm
    Poly[(organo)phosphazenes] are a unique class of extremely versatile polymers with a range of applications including tissue engineering and drug delivery, as hydrogels, shape memory polymers and as stimuli responsive materials. This review aims to divulge the basic principles of designing polyphosphazenes for drug and gene delivery...Author: Ian Teasdale, Oliver Brüggemann

Biodegradable polyphosphazenes for drug delivery applications

    https://www.deepdyve.com/lp/elsevier/biodegradable-polyphosphazenes-for-drug-delivery-applications-zLDB1OZsSD
    Apr 25, 2003 · Biodegradable polyphosphazenes, due to their hydrolytic instability, nontoxic degradation products, ease of fabrication and matrix permeability, are an excellent platform for controlled drug delivery applications.

Biodegradable polymers for drug delivery systems ...

    https://www.sciencedirect.com/science/article/pii/B9781845690700500047
    Biodegradable polymers have truly revolutionized controlled drug delivery design and biomaterial applications for implants and tissue engineering. With the help of biodegradable stents, clinicians can site-specifically control drug release to treat coronary artery disease through delivery of traditional small molecules and now gene therapy.Author: G. S. Kwon, D. Y. Furgeson

Polyphosphazenes: Multifunctional, Biodegradable Vehicles ...

    https://www.researchgate.net/publication/261610972_Polyphosphazenes_Multifunctional_Biodegradable_Vehicles_for_Drug_and_Gene_Delivery
    This review aims to divulge the basic principles of designing polyphosphazenes for drug and gene delivery and portray the huge potential of these extremely versatile materials for such applications.

Chapter 11 - Polyphosphazenes - ScienceDirect

    https://www.sciencedirect.com/science/article/pii/B9780123969835000120
    The superior biocompatibility of these novel polymers was further supported by the absence of implant fragmentation, fat necrosis, or granuloma formation [ 57 ]. Therefore, biodegradable polyphosphazenes are attractive candidate biomaterials for biomedical applications such as tissue engineering and drug delivery.

Biodegradable Polyphosphazene Biomaterials for Tissue ...

    https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4022062/
    Apr 29, 2014 · This study shows strong support of pH responsive and water-soluble polyphosphazene-based materials for their use in drug delivery applications. Thermoresponsive degradable polyphosphazenes containing lactic acid ester and methoxyethoxy ethoxy side chains for use in biomedical applications were investigated by Bi and coworkers . Three polymers were synthesized …Author: Amanda L. Baillargeon, Kibret Mequanint

Synthesis and in vitro degradation studies of substituted ...

    https://www.sciencedirect.com/science/article/pii/S1773224716301587
    Biodegradable polyphosphazenes are an excellent platform for controlled drug delivery applications due to their hydrolytic instability, nontoxic degradation products, ease of fabrication and matrix permeability .Author: Sahil Kumar, Rajesh K. Singh, D.N. Prasad, T.R. Bhardwaj

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