The versatile biomedical applications of bismuth-based nanoparticles and composites: therapeutic, diagnostic, biosensing, and regenerative properties
Разнообразные биомедицинские применения наночастиц и композитов на основе висмута: терапевтические, диагностические, биосенсорные и регенеративные свойства
2020-01-01
SCID: 54.1/9xy4c9dq
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NIR laser radiationbismuth chalcogenidesbismuth-based nanoparticlesbone regenerationphotothermal tumor suppression
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Abstract (AI)
, where X is Cl, Br or I) and bismuth chalcogenides, including bismuth oxide, bismuth sulfide, bismuth selenide, and bismuth telluride, have been heavily investigated for therapeutic purposes. The pharmacokinetics of these BiNPs can be easily improved via the facile modification of their surfaces with biocompatible polymers and proteins, resulting in enhanced colloidal stability, extended blood circulation, and reduced toxicity. Desirable antibacterial effects, bone regeneration potential, and tumor growth suppression under NIR laser radiation are the main biomedical research areas involving BiNPs that have opened up a new paradigm for their future clinical translation. This review emphasizes the synthesis and state-of-the-art progress related to the biomedical applications of BiNPs with different structures, sizes, and compositions. Furthermore, a comprehensive discussion focusing on challenges and future opportunities is presented.
Key Findings
1
Biomedical performance depends on nanoparticle structure, size, and composition, motivating broad investigation of their synthesis and application-specific properties.
2
Bismuth nanoparticles demonstrate antibacterial activity, bone regeneration potential, and tumor growth suppression under near-infrared laser irradiation.
3
Bismuth-based nanoparticles and composites, including bismuth halides and chalcogenides, are extensively investigated for diverse biomedical applications.
4
Challenges and future opportunities remain important for advancing bismuth-based nanoparticles toward clinical translation.
5
Surface functionalization with biocompatible polymers and proteins improves nanoparticle pharmacokinetics by enhancing colloidal stability, extending blood circulation, and reducing toxicity.
Research Object
Bismuth-based nanoparticles and composites (BiNPs and bismuth chalcogenides such as bismuth oxide, sulfide, selenide, telluride, and bismuth halides)
Research Subject
Their therapeutic, diagnostic, biosensing, and regenerative biomedical properties and applications, including pharmacokinetics, antibacterial activity, bone regeneration, and tumor suppression under NIR irradiation
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2020-01-01
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