Poly(organo)phosphazenes: recent progress in the synthesis and applications in tissue engineering and drug delivery
It is a highly desirable goal of researchers to develop effective biomaterials with minimum recovery time and affordable treatment expense for tissue engineering and drug delivery. In this scenario, numerous synthetic and natural polymers have been used. Among those synthetic polymers, polyorganophosphazenes (POPs) have got much attention as highly promising candidates for applications in tissue engineering and drug delivery. Polyorganophosphazenes are hybrid polymers containing inorganic backbone consisting of alternating nitrogen and phosphorus atoms with two organic side groups. POPs possess a wide range of unique properties, i.e., synthetic flexibility, biocompatibility, osteocompatibility, osteoinductivity, sustainability and degradability into harmless end products with predictable degradation rate and adjustable mechanical strength. Moreover, their tunable hydrophilic/hydrophobic and stimuli responsive properties add extra points to their use in biomedical applications. In addition, their various polymeric forms, i.e., microspheres, nano/microfibres, micelles, membranes, polymersomes, hydrogels and nano-conjugate linear polymers provide different carriers to efficiently deliver various hydrophilic/hydrophobic therapeutic agents both in vitro and in vivo. This review focuses on the most recent progress that has been made in the synthesis and applications of POPs in tissue engineering and their different polymeric forms used for drug delivery. Moreover, we have also summarized the effect of different side groups on the overall efficiency of POPs.
The bibliography includes 239 references.
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Journal of Applied Polymer Science
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Molecules
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Macromolecular Research
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Journal of Materials Science
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IOP Conference Series: Materials Science and Engineering
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Nano Research
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Mendeleev Communications
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Polymer
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Journal of the Mechanical Behavior of Biomedical Materials
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Journal of Molecular Structure
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Journal of Biomedical Materials Research - Part B Applied Biomaterials
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International Journal of Polymeric Materials and Polymeric Biomaterials
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International Journal of Nanomedicine
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Polymer Science - Series C
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Advanced Science
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Results in Engineering
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Высокомолекулярные соединения С
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Издатели
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Elsevier
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Wiley
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Springer Nature
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MDPI
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Polymer Society of Korea
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IOP Publishing
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Taylor & Francis
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Pleiades Publishing
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The Russian Academy of Sciences
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