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1.
Carbohydr Polym ; 267: 118136, 2021 Sep 01.
Article in English | MEDLINE | ID: mdl-34119125

ABSTRACT

Cellulose and its forms are widely used in biomedical applications due to their biocompatibility, biodegradability and lack of cytotoxicity. It provides ample opportunities for the functionalization of supported magnetic nanohybrids (CSMNs). Because of the abundance of surface hydroxyl groups, they are surface tunable in either homogeneous or heterogeneous solvents and thus act as a substrate or template for the CSMNs' development. The present review emphasizes on the synthesis of various CSMNs, their physicomagnetic properties, and potential applications such as stimuli-responsive drug delivery systems, MRI, enzyme encapsulation, nucleic acid extraction, wound healing and tissue engineering. The impact of CSMNs on cytotoxicity, magnetic hyperthermia, and folate-conjugates is highlighted in particular, based on their structures, cell viability, and stability. Finally, the review also discussed the challenges and prospects of CSMNs' development. This review is expected to provide CSMNs' development roadmap in the context of 21st-century demands for biomedical therapeutics.


Subject(s)
Cellulose/chemistry , Magnetite Nanoparticles/chemistry , Animals , Drug Carriers/chemistry , Enzymes, Immobilized/chemistry , Humans , Magnetic Phenomena , Magnetic Resonance Imaging , Nucleic Acids/isolation & purification , Smart Materials/chemistry , Solid Phase Extraction/methods , Tissue Engineering/methods , Tissue Scaffolds/chemistry , Wound Healing
2.
Chem Asian J ; 16(11): 1281-1297, 2021 Jun 01.
Article in English | MEDLINE | ID: mdl-33871151

ABSTRACT

New and emerging demand for polyurethane (PU) continues to rise over the years. The harmful isocyanate binding agents and their integrated PU products are at the height of environmental concerns, in particular PU (macro and micro) pollution and their degradation problems. Non-isocyanate poly(hydroxy urethane)s (NIPUs) are sustainable and green alternatives to conventional PUs. Since the introduction of NIPU in 1957, the market value of NIPU and its hybridized materials has increased exponentially in 2019 and is expected to continue to rise in the coming years. The secondary hydroxyl groups of these NIPU's urethane moiety have revolutionized them by allowing for adequate pre/post functionalization. This minireview highlights different strategies and advances in pre/post-functionalization used in biobased NIPU. We have performed a comprehensive evaluation of the development of new ideas in this field to achieve more efficient synthetic biobased hybridized NIPU processes through selective and kinetic understanding.


Subject(s)
Polyurethanes/chemical synthesis , Amines/chemistry , Carbonates/chemistry , Kinetics , Lignin/chemistry , Nanoparticles/chemistry , Plant Oils/chemistry , Polyamines/chemistry , Polyurethanes/chemistry
3.
Carbohydr Polym ; 253: 117245, 2021 Feb 01.
Article in English | MEDLINE | ID: mdl-33279000

ABSTRACT

Cellulose with ample hydroxyl groups is considered as a promising supportive biopolymer for fabricating cellulose supported promising magnetic sorbents (CMS) for magnetic solid-phase extraction (MSPE). The easy recovery via external magnetic field, and recyclability of CMS, associated with different types and surface modifications of cellulose has made them a promising sorbent in the field of solid-phase extraction. CMS based sorbent can offer improved adsorption and absorption capabilities due to its high specific surface area, porous structure, and magnetic attraction feature. This review mainly focuses on the fabrication strategies of CMS using magnetic nanoparticles (MNPs) and various forms of cellulose as a heterogeneous and homogeneous solution either in alkaline mediated urea or Ionic liquids (ILs). Moreover, CMS will be elaborated based on their structures, synthesis, physical performance, and chemical attraction of MNPs and their MSPE in details. The advantages, challenges, and prospects of CMS in future applications are also presented.

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