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Titlebook: Biomimetic Biomaterials for Tissue Regeneration and Drug Delivery; Mamoni Dash Book 2022 The Editor(s) (if applicable) and The Author(s),

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发表于 2025-3-21 16:13:06 | 显示全部楼层 |阅读模式
期刊全称Biomimetic Biomaterials for Tissue Regeneration and Drug Delivery
影响因子2023Mamoni Dash
视频video
发行地址Demonstrates the potential of biomimetics in medicine and healthcare.Discusses biomimetic approaches to tissue engineering applications.Highlights the application of biomimetics for enhancing drug eff
图书封面Titlebook: Biomimetic Biomaterials for Tissue Regeneration and Drug Delivery;  Mamoni Dash Book 2022 The Editor(s) (if applicable) and The Author(s),
影响因子.This book illustrates the influence of biomimetics in the field of tissue engineering and drug delivery. These two distinct fields of regenerative medicine have greatly benefited from the concept of biomimetics, which focuses on using or imitating nature to develop materials for improving human lives. The book begins by highlighting the relevance and recent advances in biomimetic biomaterials. An updated and innovative content has been presented in terms of biomimetic systems that are being utilized in controlled delivery and stem cell therapy. Further, the book reviews the role of these materials in enhanced capacity for drug loading, cellular uptake, and controlled release within the target cells.  The book includes advanced techniques for characterizing biomimetic biomaterials and highlights their pivotal role in providing three-dimensional templates and synthetic extracellular matrices. .
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Biomimetic via Exosome Mimetics in Regenerative Medicine and Therapeutics,tion in modern day medicine has been described briefly. Also a comparative analysis has been done among these nanosystems to prove the superiority of exosomes above all. Towards the end, the current challenges involved in these formulations have been depicted.
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Biomimetic Nanosystems in Targeted Drug Delivery,ate natural targeting due to the virtue of homotypic interaction with membrane proteins present on the host cell. In addition, they can also prevent immune recognition due to the presence of marker proteins that are often recognized as “self” by the body. There have been several achievements in this
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Austin Sarat,William L. F. Felstiner researchers must find a compromise. However, with the emergence of new bioprinting strategies, such as suspended layer additive manufacturing (SLAM), low viscosity materials can be easily printed into 3D constructs without compromising shape fidelity. In this short review, we cover the most recent
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