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Titlebook: Engineered Cell Manipulation for Biomedical Application; Misturu Akashi,Takami Akagi,Michiya Matsusaki Book 2014 Springer Japan 2014 Biode

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發(fā)表于 2025-3-21 17:07:04 | 只看該作者 |倒序瀏覽 |閱讀模式
書目名稱Engineered Cell Manipulation for Biomedical Application
編輯Misturu Akashi,Takami Akagi,Michiya Matsusaki
視頻videohttp://file.papertrans.cn/311/310679/310679.mp4
概述Treats this cutting-edge topic in the fields of biomaterials, drug delivery systems, tissue engineering and medicine.Assembles key contributions from the interdisciplinary areas of the engineering and
叢書名稱Nanomedicine and Nanotoxicology
圖書封面Titlebook: Engineered Cell Manipulation for Biomedical Application;  Misturu Akashi,Takami Akagi,Michiya Matsusaki Book 2014 Springer Japan 2014 Biode
描述This book is the first to summarize new technologies for engineered cell manipulation. The contents focus on control of cellular functions by nanomaterials and control of three-dimensional cell–cell interactions. Control of cellular functions is important for cell differentiation, maturation, and activation, which generally are controlled by the addition of soluble cytokines or growth factors into cell culture dishes. Target antigen molecules can be efficiently delivered to the cytosol of the dendritic cells using the nanoparticle technique described here, and cellular functions such as dendritic cell maturation can be controlled easily and with precision. This book describes basic preparation of the nanoparticles, activation control of dendritic cells, immune function control, and in vivo application for various vaccination systems. The second type of control,that of cell–cell interaction, is important for tissue engineering in order to develop three-dimensional cellular constructs. To achieve in vitro engineering of three-dimensional human tissue constructs, cell–cell interaction must be controlled in three dimensions, but typical biological cell manipulation technique cannot acc
出版日期Book 2014
關鍵詞Biodegradable Nanoparticles; Hierarchical Cell Manipulation; Layer-by-layer Nanofilms; Layered Tissue M
版次1
doihttps://doi.org/10.1007/978-4-431-55139-3
isbn_softcover978-4-431-56155-2
isbn_ebook978-4-431-55139-3Series ISSN 2194-0452 Series E-ISSN 2194-0460
issn_series 2194-0452
copyrightSpringer Japan 2014
The information of publication is updating

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Fourier Cosine Transforms (Tables I),of hepatic differentiation protocols. Moreover, we discuss the application of these protocols to three-dimensional culture systems in an attempt to induce hepatocyte-like cells with high hepatic functions.
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Stella Butter,Matthias Eitelmannrough analysis of the absorption, distribution, metabolism, and excretion (ADME) of nanoparticles is essential. In this chapter, we present the current understanding regarding the ADME profile of nanoparticles.
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Engineering Electrospun Scaffolds to Encourage Cell Infiltrationds to create larger pores, to increase porosity, and to integrate cells among the fibers. In this chapter, we survey recent efforts in modifying the electrospinning process to facilitate better cellular infiltration and tissue integration.
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Book 2014rials and control of three-dimensional cell–cell interactions. Control of cellular functions is important for cell differentiation, maturation, and activation, which generally are controlled by the addition of soluble cytokines or growth factors into cell culture dishes. Target antigen molecules can
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Hepatic Differentiation of Human Embryonic Stem Cells and Induced Pluripotent Stem Cells by Two- andof hepatic differentiation protocols. Moreover, we discuss the application of these protocols to three-dimensional culture systems in an attempt to induce hepatocyte-like cells with high hepatic functions.
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The Absorption, Distribution, Metabolism, and Excretion Profile of Nanoparticlesrough analysis of the absorption, distribution, metabolism, and excretion (ADME) of nanoparticles is essential. In this chapter, we present the current understanding regarding the ADME profile of nanoparticles.
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