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Development of Nanomaterials from Natural Resources for Biosensing and Biomedical Technology,gnostics, and biomedical applications. The trend has since leaned toward sustainable manufacturing of such materials from renewable resources (polysaccharides, plant extracts, cellulose, etc.) as readily cost-effective technology. This chapter discusses the green synthesis of nanomaterials from natu狂怒 发表于 2025-3-25 23:11:21
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Sustainable Biomaterials for 3D Printing,nology, applying a patient’s specific implant in craniofacial reconstruction may reduce the surgery time. However, not all alloplast implants are suitable for 3D printing. This chapter covers the utilisation of selected polymeric biomaterials such as alloplastic material that are suitable for 3D prisemiskilled 发表于 2025-3-26 06:09:35
Biowaste as Candidates for Future Bone Materials,ocompatibility properties. CMS also provides good mechanical strength and controllable resorbability compared to calcium phosphate-based bioceramics. This bioceramic can be easily formulated and synthesised via various chemical routes. Interestingly, many biowastes such as eggshells, cockleshells, rASTER 发表于 2025-3-26 11:39:38
Hybrid Bioscaffolds Formation Using Natural and Synthetic Materials for Cartilage Tissue Engineerinexibility has made this synthetic copolymer convenient to use. Since the human body can metabolise lactic and glycolic acid monomers, minimal systemic toxicity has been reported associated with PLGA’s acidic degradation. PLGA by-products reduce local pH low enough to create an autocatalytic environmNEEDY 发表于 2025-3-26 13:55:59
Sustainable Design of Natural and Synthetic Biomaterials for Wound Healing Applications,ecially materials. The fabrication of new synthetic and natural renewable biomaterials is the fastest-growing field in biomedical applications. In well-known biomedical applications such as tissue engineering, implants, and drug delivery systems, renewable materials now have new opportunities due toConflict 发表于 2025-3-26 18:15:43
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