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Titlebook: Engineering Natural Silk; Applications and Fut Balasubramanian Kandasubramanian,Niranjana Jaya Pr Book 2025 The Editor(s) (if applicable) a

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https://doi.org/10.1007/978-3-658-14206-3erse formulations, properties and functionalization strategies. Emphasizing their versatility, and showcases the potential of silk-based bioinks in various bioprinting applications across cartilage, skin, bone, and nerve tissue engineering. Through a comprehensive analysis, the review underscores th
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https://doi.org/10.1057/9781137410429k, including doxorubicin-grafted silk fibroin (SF) particles, polyvinyl alcohol (PVA)/ silk hybrids, and a composite comprising graphene, SF, and calcium ions (Gr/SF/Ca.) are being discussed in this paper. The feasibility of advancing biomedical device development, including patient-specific injecta
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Migrant Domestic Workers in the Middle Easts on the physical, chemical, and biological characteristics of silk. Protective clothing, wound healing, temperature regulation, and responsive/adaptive textiles are some of the important application areas that are discussed.
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Silk Origins: Diving into Sources and Varieties,c is still in great demand. It is produced by silkworms—more especially, the larvae from various moth species—through an intricate method that involves their spinning delicate threads from their own silk glands. In particular, this exploration delves into the significance of both mulberry and non-mu
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Various Morphological Forms of Silk Fibroin,ssue engineering, food technology, photochemistry, and biosensing. This widespread interest stems from SF’s exceptional properties such as remarkable biocompatibility, tailorability, and versatility in chemical modifications. The process for obtaining the regenerated silk fibroin (RSF) includes seve
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