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Titlebook: Biointerface Engineering: Prospects in Medical Diagnostics and Drug Delivery; Pranjal Chandra,Lalit M. Pandey Book 2020 Springer Nature Si

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期刊全称Biointerface Engineering: Prospects in Medical Diagnostics and Drug Delivery
影响因子2023Pranjal Chandra,Lalit M. Pandey
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发行地址Explores the role of surface chemistry of biomaterials for interactions with biomolecules.Highlights the interfacial phenomena at nano-bio interface.Discusses the strategies for improving biointerface
图书封面Titlebook: Biointerface Engineering: Prospects in Medical Diagnostics and Drug Delivery;  Pranjal Chandra,Lalit M. Pandey Book 2020 Springer Nature Si
影响因子.This book provides detailed information on the surface and surface chemistry of various biointerfaces for the understanding and development of biosensors, biocompatible devices, and drug delivery systems. It highlights the role of interfacial phenomena towards the behaviour of biomolecules on different surfaces and their significance in recent applications. The book also addresses various surface engineering techniques for the modification of biomaterials that are implemented for improving biocompatibility. It provides an updated scientific concept of various interactions of biological systems with surfaces/modified surfaces at the molecular and cellular level. The chapters include various in-vitro, in-vivo, ex-vivo models to illustrate various aspects of Biointerface Engineering. Finally, the book elucidates troubleshooting strategies and future prospects of Biointerface Engineering in Medical Diagnostics and Drug Delivery..
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Modulation of Physicochemical Properties of Polymers for Effective Insulin Delivery Systems,tes through subcutaneous insulin administration leads to occasional hypoglycemia in patients and bolus. Non-invasive means of insulin delivery, including transdermal, ocular, buccal, oral, and nasal, are currently being explored. However, the various factors limit these new insulin delivery routes,
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Organization of Bio-Molecules in Bulk and Over the Nano-Substrate: Perspective to the Molecular Dyne of various kinds such as folded, unfolded, helix, swollen, globule, and so forth. These organizations of bio-molecule also depend on the local surrounding environmental conditions like temperature, solvency, adsorption, and encapsulation. Variation in environmental conditions helps to manipulate a
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Bio-Nano-Interface Engineering Strategies of AuNPs Passivation for Next-Generation Biomedical Applient optoelectronic properties. The AuNPs, due to its easy synthesis process, tunability, biocompatibility, and cost-effectiveness, found enormous attention in biomedical applications. However, the bare-surfaced AuNPs have long been debated, especially in the biomedical/clinical application. Thus, to
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