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Titlebook: Emerging Technologies for Nanoparticle Manufacturing; Jayvadan K. Patel,Yashwant V. Pathak Book 2021 Springer Nature Switzerland AG 2021 p

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发表于 2025-3-21 17:59:31 | 显示全部楼层 |阅读模式
书目名称Emerging Technologies for Nanoparticle Manufacturing
编辑Jayvadan K. Patel,Yashwant V. Pathak
视频video
概述Addresses the need for a reference book that focuses on polymeric and lipid nanoparticles and discusses the recent progress in the field.Focuses on the major aspects of the emerging technologies.Provi
图书封面Titlebook: Emerging Technologies for Nanoparticle Manufacturing;  Jayvadan K. Patel,Yashwant V. Pathak Book 2021 Springer Nature Switzerland AG 2021 p
描述.This book provides an overview of nanoparticle production methods, scale-up issues drawing attention to industrial applicability, and addresses their successful applications for commercial use.  There is a need for a reference book which will address various aspects of recent progress in the methods of development of nanoparticles with a focus on polymeric and lipid nanoparticles, their scale-up techniques, and challenges in their commercialization. ..There is no consolidated reference book that discusses the emerging technologies for nanoparticle manufacturing.  This book focuses on the following major aspects of emerging technologies for nano particle manufacturing..I.  .Introduction and Biomedical Applications of Nanoparticles.II. .Polymeric Nanoparticles.III. .Lipid Nanoparticles.IV. .Metallic Nanoparticles.V.  .Quality Control forNanoparticles.VI. .Challenges in Scale-Up Production of Nanoparticles..VII. .Injectable Nanosystems.VIII. .Future Directions and Challenges.Leading scientists are selected as chapter authors who have contributed significantly in this field and they focus more on emerging technologies for nanoparticle manufacturing, future directions, and challenges..
出版日期Book 2021
关键词polymeric nanoparticles; salting out; supercritical fluids; nanocrystallization; nanoemulsions; lipid nan
版次1
doihttps://doi.org/10.1007/978-3-030-50703-9
isbn_softcover978-3-030-50705-3
isbn_ebook978-3-030-50703-9
copyrightSpringer Nature Switzerland AG 2021
The information of publication is updating

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Nanocrystallization and Nanoprecipitation Technologiesmitations of drugs that dissolve poorly in water. Nanocrystals are produced in the form of nanosuspensions using top-down (e.g., wet milling) and bottom-up methods (e.g., antisolvent precipitation) in FDA-approved drug products. An ultra cryo-milling technique using liquid nitrogen and dry ice beads
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Microfluidics Technology for Nanoparticles and Equipmenton techniques has resulted in slow translation from research to clinical applications. Production of nanoparticles in commercial scale is an existing active challenge which could be overcome by the exciting opportunities of microfluidic technology to develop easy, safe and cost-effective drug delive
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Nanogel Synthesis by Irradiation of Aqueous Polymer Solutionsby gamma rays or accelerated electrons. This simple, ecofriendly, and cost-effective manufacturing method eliminates the purification step and provides the possibility to produce clean nanogels with desired sizes at room temperature. In the formation of nanogels, the degree of crosslinking can be co
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Production of Nanofibers, Environmental Challenges and Solutions for nanofibers enriches it with wide scope of research and development. This chapter aims to present detailed study of applications of nanofibers in various fields along with considering their hazardous toxicity to the environment. A brief explanation on patent aspect of nanofiber is also described
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High-Pressure Homogenization Techniques for Nanoparticlesbased nanosystems such as nanoemulsions, solid lipid nanoparticles (SLNs), nanostructured lipid carriers (NLCs), nanocrystals, as well as polymeric nanoparticles. The chapter has summarized the effect of various processing and product variables on characteristics of the aforementioned nanoparticle f
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Solvent Emulsification Evaporation and Solvent Emulsification Diffusion Techniques for Nanoparticlesed on whether the particle formation undergoes a polymerization reaction or a nanoparticle forms directly from a preformed polymer or ionic gelation method. The choice of method for the preparation of nanoparticle is highly dependent on the physicochemical properties of both the polymer and the drug
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