2015
DOI: 10.1039/c5ra16403f
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Selecting analytical tools for characterization of polymersomes in aqueous solution

Abstract: Selecting the appropriate analytical methods for characterizing the assembly and morphology of polymer-based vesicles, or polymersomes are required to reach their full potential in biotechnology. This work presents and compares 17 different techniques for their ability to adequately report size, lamellarity, elastic properties, bilayer surface charge, thickness and polarity of polybutadienepolyethylene oxide (PB-PEO) based polymersomes. The techniques used in this study are broadly divided into scattering tech… Show more

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Cited by 43 publications
(51 citation statements)
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“…Drying may cause morphological changes. Freeze‐fracture cryogenic electron microscopy (FF‐Cryo‐SEM or ‐TEM) can overcome vacuum‐induced sample deformation . Thus, noninvasive, fast, and reliable methods are searched for to characterize the polymeric network and its inhomogeneity.…”
Section: Introductionmentioning
confidence: 99%
“…Drying may cause morphological changes. Freeze‐fracture cryogenic electron microscopy (FF‐Cryo‐SEM or ‐TEM) can overcome vacuum‐induced sample deformation . Thus, noninvasive, fast, and reliable methods are searched for to characterize the polymeric network and its inhomogeneity.…”
Section: Introductionmentioning
confidence: 99%
“…This simplified model described the SANS data rather well with a reduced χ 2 of 3.5. The scattering in the local structures of vesicles (around 0.1Å -1 ) [16,25], such as the conformation of the PEG chains, was difficult to extract due to very low polymer concentration. This, in turn, prohibited applying more sophisticated models to analyze the data.…”
Section: Resultsmentioning
confidence: 99%
“…This, in turn, prohibited applying more sophisticated models to analyze the data. Since the quality of the fit was good, a core-shell model with three layers in the shell [16] was not adopted. More sophisticated models will not lead to a unique set of parameters.…”
Section: Resultsmentioning
confidence: 99%
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“…O mesmo trabalho divide as técnicas em cinco grupos: técnicas de espalhamento, métodos visuais, manipulação física e eletromagnética, ensaios de purificação e ferramentas de simulação. 65 O tamanho fornecido pela técnica de espalhamento de luz dinâmico (do inglês dynamic light scattering, DLS) baseia-se no espalhamento da luz incidente a partir de um laser a uma intensidade induzida pelo movimento Browniano das partículas em solução, fornecendo o raio ou diâmetro hidrodinâmico a partir da equação de Stokes-Einstein, e assim deve ser correlacionado com análises microscópicas. 66 Resultados de DLS podem sugerir agregação dos sistemas ou indicar mudanças nos tamanhos dos sistemas mediante alterações de condições experimentais.…”
Section: Principais Técnicas De Caracterizaçãounclassified