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Titlebook: Biomedical Nanotechnology; Methods and Protocol Sarah Hurst Petrosko,Emily S. Day Book 2017Latest edition Springer Science+Business Media L

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發(fā)表于 2025-3-21 17:54:08 | 只看該作者 |倒序瀏覽 |閱讀模式
期刊全稱Biomedical Nanotechnology
期刊簡稱Methods and Protocol
影響因子2023Sarah Hurst Petrosko,Emily S. Day
視頻videohttp://file.papertrans.cn/189/188076/188076.mp4
發(fā)行地址Includes cutting-edge methods and protocols.Provides step-by-step detail essential for reproducible results.Contains key notes and implementation advice from the experts.Includes supplementary materia
學(xué)科分類Methods in Molecular Biology
圖書封面Titlebook: Biomedical Nanotechnology; Methods and Protocol Sarah Hurst Petrosko,Emily S. Day Book 2017Latest edition Springer Science+Business Media L
影響因子.This second edition volume provides an overview of some of the types of nanostructures commonly used in nanobiomedicine. The chapters in this book discuss practical information on the synthesis and characterization of a variety of solution-phase and surface-bound nanomaterials, with examples of how they can be used in sensing, imaging, and therapeutics. Specific topics include the synthesis and characterization of molecule and biomolecule-functionalized nanoconjugates with gold, iron oxide, or polymeric cores; the development of biosensing, imaging, and therapeutic applications of multicomponent/multifunctional nanostructures; and the application of flow cytometry in nanobiomedicine. Written in the highly successful .Methods in Molecular Biology. series format, chapters include introductions to their respective topics, lists of the necessary materials and reagents, step-by-step, readily reproducible laboratory protocols, and tips on troubleshooting and avoiding known pitfalls.<.Thorough and comprehensive, .Biomedical Nanotechnology: Methods and Protocols, Second Edition. is a useful resource for scientists and researchers at all levels who are interested in working in a new area o
Pindex Book 2017Latest edition
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Ligand Exchange and 1H NMR Quantification of Single- and Mixed-Moiety Thiolated Ligand Shells on Goistry is through mass action ligand exchange, where ligand exchange can be used to expand the functionality of the resulting nanoparticle conjugates. Specifically, the quantity, identity, and arrangement of the molecules in the resulting ligand shell each can be tuned significantly. Here, we describ
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Magnetic Characterization of Iron Oxide Nanoparticles for Biomedical Applications,magnetic properties. Magnetization measurements in constant and time-varying magnetic field are often carried out to quantify key properties of iron oxide nanoparticles. This chapter describes the importance of thorough magnetic characterization of iron oxide nanoparticles intended for use in biomed
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Preparation of Magnetic Nanoparticles for Biomedical Applications,netic properties, and ease of functionalization. Potential applications for functionalized magnetic nanoparticles span biomedical imaging, treatment via magnetic hyperthermia, drug delivery, and biosensing. This chapter provides detailed procedures for the synthesis, PEGylation, and bioconjugation o
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Brain-Penetrating Nanoparticles for Analysis of the Brain Microenvironment,ases. The systemic delivery of therapeutic carriers to the central nervous system (CNS) is hindered by both the blood–brain barrier (BBB) and the porous and electrostatically charged brain extracellular matrix (ECM), which acts as a steric and adhesive barrier. Therapeutic delivery to the brain is i
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qFlow Cytometry-Based Receptoromic Screening: A High-Throughput Quantification Approach Informing Ber to target, as most diseases present several biomarkers. Biomarker-targeting decisions can be informed via an understanding of biomarker expression. Currently, immunohistochemistry (IHC) is the accepted standard for profiling biomarker expression. While IHC provides a relative mapping of biomarker
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Evaluating Nanoparticle Binding to Blood Compartment Immune Cells in High-Throughput with Flow Cytoive medical imaging, or delivery vehicles for macromolecular agents such as DNA or proteins. However, they possess many physical and chemical properties that cause them to become rapidly recognized by the immune system as a foreign body, leading to their clearance and elimination, even before they m
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