Lipid Nanoparticle Interactions and Assemblies

Lipid Nanoparticle Interactions and Assemblies PDF Author: Matthew Ryan Preiss
Publisher:
ISBN:
Category : Lipids
Languages : en
Pages : 426

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Book Description

Lipid Nanoparticle Interactions and Assemblies

Lipid Nanoparticle Interactions and Assemblies PDF Author: Matthew Ryan Preiss
Publisher:
ISBN:
Category : Lipids
Languages : en
Pages : 426

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Book Description


Advances in Biomembranes and Lipid Self-Assembly

Advances in Biomembranes and Lipid Self-Assembly PDF Author:
Publisher: Elsevier
ISBN: 0323992471
Category : Science
Languages : en
Pages : 132

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Book Description
Advances in Biomembranes and Lipid Self-Assembly, Volume 38 in this updated series, highlights new advances in the field, with this new volume presenting interesting chapters on Interaction of inorganic debris particles with cells, Interactions between biomembrane embedded nanoparticles mediated by lipid bilayer, Topological defect driven nanoparticle assemblies, and more. Provides the authority and expertise of leading contributors from an international board of authors Presents the latest release in Advances in Biomembranes and Lipid Self-Assembly Updated release includes the latest information on the Interaction of inorganic debris particles with cells, Interactions between biomembrane embedded nanoparticles mediated by lipid bilayer, and more

Lipids in Nanotechnology

Lipids in Nanotechnology PDF Author: Moghis U. Ahmad
Publisher: Elsevier
ISBN: 0128043458
Category : Technology & Engineering
Languages : en
Pages : 303

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Book Description
Nanotechnology is a rapidly expanding field which includes fundamental nanoscale phenomena and processes, nanomaterials, nanoscale devices and systems, nanomanufacturing, and benefits and risks of nanotechnology. This book serves as a valuable reference and resource for those interested in the field of nanotechnology – from basic research to engineering aspects of nanoparticles. It covers thermodynamics to engineering aspects of nanoparticles or nanoemulsions; synthesis and applications of surface active lipids to food and cosmetics; and pharmaceutical applications to nanomedicine. Lipids in Nanotechnology will be useful to scholars, scientists, and technologists who are interested in the field of lipid nanotechnology. Discusses an overview of the opportunities and challenges of lipids in nanotechnology Presents applications of nanotechnology for use in drug delivery, nanomedicine, and pharmaceutical developments Explores the potential for lipids to act as encapsulation agents or delivery vehicles of bioactive compounds

Lipid Nanoparticles: Production, Characterization and Stability

Lipid Nanoparticles: Production, Characterization and Stability PDF Author: Rohan Shah
Publisher: Springer
ISBN: 3319107119
Category : Medical
Languages : en
Pages : 105

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Book Description
​What are lipid nanoparticles? How are they structured? How are they formed? What techniques are best to characterize them? How great is their potential as drug delivery systems? These questions and more are answered in this comprehensive and highly readable work on lipid nanoparticles. This work sets out to provide the reader with a clear and understandable understanding of the current practices in formulation, characterization and drug delivery of lipid nanoparticles. A comprehensive description of the current understanding of synthesis, characterization, stability optimization and drug incorporation of solid lipid nanoparticles is provided. Nanoparticles have attracted great interest over the past few decades with almost exponential growth in their research and application. Their small particle size and subsequent high surface area make them ideal in many uses, but particularly as drug carrier systems. Nanoparticles made from lipids are especially attractive because of their enhanced biocompatibility imparted by the lipid. The work provides a detailed description of the types of lipid nanoparticles available (e.g. SLN, NLC, LDC, PLN) and how they range from imperfect crystalline to amorphous in structure. Current thoughts on where drugs are situated (e.g. in the core, or at the interface) and how this can be manipulated are discussed. The many techniques for production, including the author’s own variant of microwave heating, are fully discussed. Techniques for measuring arguably the most important characteristics of particle size and polydispersity are discussed, along with techniques to measure crystallinity, shape and drug capacity. Finally, a full chapter on techniques for measuring stability, both in the absence and presence of drugs, is discussed, along with suggestions on how to optimize that stability. This work appeals to students of colloid science, practitioners of research into drug delivery and academics alike.

Lipid Bilayer-nanoparticle Interactions in Nanotoxicology and Nanomedicine

Lipid Bilayer-nanoparticle Interactions in Nanotoxicology and Nanomedicine PDF Author: Yanjing Chen
Publisher:
ISBN:
Category : Bilayer lipid membranes
Languages : en
Pages : 314

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Fundamentals and Applications of Nanoparticle Interactions and Self-assembly

Fundamentals and Applications of Nanoparticle Interactions and Self-assembly PDF Author: Peter M. Tessier
Publisher:
ISBN:
Category : Colloids
Languages : en
Pages : 534

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Protein-Nanoparticle Interactions

Protein-Nanoparticle Interactions PDF Author: Masoud Rahman
Publisher: Springer Science & Business Media
ISBN: 3642375553
Category : Science
Languages : en
Pages : 95

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Book Description
In recent years, the fabrication of nanomaterials and exploration of their properties have attracted the attention of various scientific disciplines such as biology, physics, chemistry, and engineering. Although nanoparticulate systems are of significant interest in various scientific and technological areas, there is little known about the safety of these nanoscale objects. It has now been established that the surfaces of nanoparticles are immediately covered by biomolecules (e.g. proteins, ions, and enzymes) upon their entrance into a biological medium. This interaction with the biological medium modulates the surface of the nanoparticles, conferring a “biological identity” to their surfaces (referred to as a “corona”), which determines the subsequent cellular/tissue responses. The new interface between the nanoparticles and the biological medium/proteins, called “bio-nano interface,” has been very rarely studied in detail to date, though the interest in this topic is rapidly growing. In this book, the importance of the physiochemical characteristics of nanoparticles for the properties of the protein corona is discussed in detail, followed by comprehensive descriptions of the methods for assessing the protein-nanoparticle interactions. The advantages and limitations of available corona evaluation methods (e.g. spectroscopy methods, mass spectrometry, nuclear magnetic resonance, electron microscopy, X-ray crystallography, and differential centrifugal sedimentation) are examined in detail, followed by a discussion of the possibilities for enhancing the current methods and a call for new techniques. Moreover, the advantages and disadvantages of protein-nanoparticle interaction phenomena are explored and discussed, with a focus on the biological impacts.

Lipid Nanoparticles as a Novel Strategy to Deliver Bioactive Molecules

Lipid Nanoparticles as a Novel Strategy to Deliver Bioactive Molecules PDF Author: Alan Talevi
Publisher: Frontiers Media SA
ISBN: 2889666972
Category : Science
Languages : en
Pages : 135

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Book Description


Simulation Study of Lipid Bilayer/nanoparticle Interactions

Simulation Study of Lipid Bilayer/nanoparticle Interactions PDF Author: Corey Evan Musolff
Publisher:
ISBN: 9781303631030
Category : Bilayer lipid membranes
Languages : en
Pages : 111

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Book Description


Self-Assembly

Self-Assembly PDF Author: Ramanathan Nagarajan
Publisher: John Wiley & Sons
ISBN: 1119001366
Category : Science
Languages : en
Pages : 364

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Book Description
An introduction to the state-of-the-art of the diverse self-assembly systems Self-Assembly: From Surfactants to Nanoparticles provides an effective entry for new researchers into this exciting field while also giving the state of the art assessment of the diverse self-assembling systems for those already engaged in this research. Over the last twenty years, self-assembly has emerged as a distinct science/technology field, going well beyond the classical surfactant and block copolymer molecules, and encompassing much larger and complex molecular, biomolecular and nanoparticle systems. Within its ten chapters, each contributed by pioneers of the respective research topics, the book: Discusses the fundamental physical chemical principles that govern the formation and properties of self-assembled systems Describes important experimental techniques to characterize the properties of self-assembled systems, particularly the nature of molecular organization and structure at the nano, meso or micro scales. Provides the first exhaustive accounting of self-assembly derived from various kinds of biomolecules including peptides, DNA and proteins. Outlines methods of synthesis and functionalization of self-assembled nanoparticles and the further self-assembly of the nanoparticles into one, two or three dimensional materials. Explores numerous potential applications of self-assembled structures including nanomedicine applications of drug delivery, imaging, molecular diagnostics and theranostics, and design of materials to specification such as smart responsive materials and self-healing materials. Highlights the unifying as well as contrasting features of self-assembly, as we move from surfactant molecules to nanoparticles. Written for students and academic and industrial scientists and engineers, by pioneers of the research field, Self-Assembly: From Surfactants to Nanoparticles is a comprehensive resource on diverse self-assembly systems, that is simultaneously introductory as well as the state of the art.