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DLS and zeta potential - What they are and what they are not?

TLDR
This review tries to address the issue while providing the fundamental principles of these techniques, summarizing the core mathematical principles and offering practical guidelines on tackling commonly encountered problems while running DLS and ZP measurements.
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This article is published in Journal of Controlled Release.The article was published on 2016-08-10. It has received 2215 citations till now.

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Nanoprecipitation process: From encapsulation to drug delivery

TL;DR: In general, in vitro drug release from nanoparticles prepared by nanoprecipitation includes two phases: a first phase of "burst release" which is followed by a second phase of prolonged release.
Journal ArticleDOI

Comparative analysis of exosome isolation methods using culture supernatant for optimum yield, purity and downstream applications.

TL;DR: The efficacy of four kits from Invitrogen, 101Bio, Wako and iZON along with conventional ultracentrifugation-based method for exosome yield, purity and quality are compared to serve as a guide to choose and further optimize exosomal isolation methods for their desired downstream applications.
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Benchmarking Cellulose Nanocrystals: From the Laboratory to Industrial Production

TL;DR: Of the sulfuric acid-extracted C NCs examined, industrially produced material compared well with laboratory-made CNCs, exhibiting similar charge density, colloidal and thermal stability, crystallinity, morphology, and self-assembly behavior, suggesting that the evolution to commercial-scale applications will not be hindered by CNC production.
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Stability of nanofluid: A review

TL;DR: In this paper, a review of different aspects of nanofluid stability starting from the preparation stage till implementation in practical applications is presented, focusing on the stability as a function of operating conditions such as high temperature, pressure, confinement, composition, salinity, external magnetic field and shear rate.
References
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Journal ArticleDOI

Principles of nanoparticle design for overcoming biological barriers to drug delivery

TL;DR: By successively addressing each of the biological barriers that a particle encounters upon intravenous administration, innovative design features can be rationally incorporated that will create a new generation of nanotherapeutics, realizing a paradigmatic shift in nanoparticle-based drug delivery.
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Drug delivery and nanoparticles:applications and hazards

TL;DR: An overview on some of the currently used systems for drug delivery, varying from biological substances like albumin, gelatine and phospholipids for liposomes, and more substances of a chemical nature like various polymers and solid metal containing nanoparticles is provided.
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Factors Affecting the Clearance and Biodistribution of Polymeric Nanoparticles

TL;DR: These factors have been shown to substantially affect the biodistribution and blood circulation half-life of circulating nanoparticles by reducing the level of nonspecific uptake, delaying opsonization, and increasing the extent of tissue specific accumulation.
Journal Article

Factors Affecting the Clearance and Biodistribution of Polymeric Nanoparticles

TL;DR: In this article, the authors discuss the factors which can influence nanoparticle blood residence time and organ specific accumulation, including interactions with biological barriers and tunable nanoparticle parameters, such as composition, size, core properties, surface modifications (pegylation and surface charge), and targeting ligand functionalization.
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Monodisperse α-Fe2O3 Mesoporous Microspheres: One-Step NaCl-Assisted Microwave-Solvothermal Preparation, Size Control and Photocatalytic Property

TL;DR: A simple one-step NaCl-assisted microwave-solvothermal method has been developed for the preparation of monodisperse α-Fe2O3 mesoporous microspheres, and high photocatalytic activities in the degradation of salicylic acid are observed.
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