Photoswitchable vesicles

Vesicles are self-assembled nanosized structures that result from the auto-organization of amphiphilic compounds into closed bilayers. These systems are highly attractive subjects of fundamental research owing to their role as biomimetic models of cell membranes and compartmentalization systems. Ves...

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Published inCurrent opinion in colloid & interface science Vol. 32; pp. 29 - 38
Main Authors Basílio, Nuno, García-Río, Luis
Format Journal Article
LanguageEnglish
Published Elsevier Ltd 01.11.2017
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ISSN1359-0294
1879-0399
DOI10.1016/j.cocis.2017.09.004

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Abstract Vesicles are self-assembled nanosized structures that result from the auto-organization of amphiphilic compounds into closed bilayers. These systems are highly attractive subjects of fundamental research owing to their role as biomimetic models of cell membranes and compartmentalization systems. Vesicles also display very interesting features and properties for practical applications, namely as superior nanocontainers for encapsulation of functional molecules and materials. Exerting control over the formation, dissociation and permeability of these containers is therefore of paramount importance for many of their potentials applications. Being light the stimulus of choice for remote spatiotemporal control, we have compiled and revised selected published works on photoresponsive vesicles with the aim of providing an overview of the main strategies, advantages and limitations of such systems. [Display omitted]
AbstractList Vesicles are self-assembled nanosized structures that result from the auto-organization of amphiphilic compounds into closed bilayers. These systems are highly attractive subjects of fundamental research owing to their role as biomimetic models of cell membranes and compartmentalization systems. Vesicles also display very interesting features and properties for practical applications, namely as superior nanocontainers for encapsulation of functional molecules and materials. Exerting control over the formation, dissociation and permeability of these containers is therefore of paramount importance for many of their potentials applications. Being light the stimulus of choice for remote spatiotemporal control, we have compiled and revised selected published works on photoresponsive vesicles with the aim of providing an overview of the main strategies, advantages and limitations of such systems.
Vesicles are self-assembled nanosized structures that result from the auto-organization of amphiphilic compounds into closed bilayers. These systems are highly attractive subjects of fundamental research owing to their role as biomimetic models of cell membranes and compartmentalization systems. Vesicles also display very interesting features and properties for practical applications, namely as superior nanocontainers for encapsulation of functional molecules and materials. Exerting control over the formation, dissociation and permeability of these containers is therefore of paramount importance for many of their potentials applications. Being light the stimulus of choice for remote spatiotemporal control, we have compiled and revised selected published works on photoresponsive vesicles with the aim of providing an overview of the main strategies, advantages and limitations of such systems. [Display omitted]
Author Basílio, Nuno
García-Río, Luis
Author_xml – sequence: 1
  givenname: Nuno
  surname: Basílio
  fullname: Basílio, Nuno
  email: nuno.basilio@fct.unl.pt
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  givenname: Luis
  surname: García-Río
  fullname: García-Río, Luis
  email: luis.garcia@usc.es
  organization: Centro de Investigación en Química Biológica y Materiales Moleculares (CIQUS), Departamento de Química Física, Universidad de Santiago de Compostela, 15782 Santiago de Compostela, Spain
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Snippet Vesicles are self-assembled nanosized structures that result from the auto-organization of amphiphilic compounds into closed bilayers. These systems are highly...
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SubjectTerms biomimetics
cell membranes
containers
dissociation
encapsulation
permeability
Title Photoswitchable vesicles
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