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1.
Lab Chip ; 16(9): 1549-55, 2016 04 26.
Artículo en Inglés | MEDLINE | ID: mdl-27070224

RESUMEN

Cell-laden microgels with highly uniform sizes have significant potential in tissue engineering and cell therapy due to their capability to provide a physiologically relevant three-dimensional (3D) microenvironment for living cells. In this work, we present a simple and efficient microfluidic approach to produce monodisperse cell-laden microgels through the use of double emulsion drops with an ultra-thin oil shell as the sacrificial template. Specifically, the thin oil shell in double emulsion spontaneously dewets upon polymerization of the innermost precursor drop and subsequent transfer into an aqueous solution, resulting in direct dispersion of microgels in the aqueous phase. Compared to conventional single emulsion-based techniques for cell encapsulation, this one-step approach prevents prolonged exposure of cells to the oil phase, leading to high-throughput cell encapsulation in microgels without compromising the cell viability. Moreover, this approach allows us to culture cells within a 3D microgel which mimics the extracellular matrix, thus enabling long-term cell functionality. This microfluidic technique represents a significant step forward in high-throughput cell microencapsulation technology and offers a potentially viable option to produce cell-laden microgels for widespread applications in tissue engineering and cell therapies.


Asunto(s)
Materiales Biocompatibles/química , Técnicas de Cultivo de Célula/instrumentación , Células Inmovilizadas/citología , Microambiente Celular , Microfluídica/instrumentación , Animales , Supervivencia Celular , Perros , Emulsiones , Éteres/química , Estudios de Factibilidad , Compuestos de Flúor/química , Humanos , Hidrogeles , Interacciones Hidrofóbicas e Hidrofílicas , Células K562 , Células de Riñón Canino Madin Darby , Ratones , Aceite Mineral/química , Células 3T3 NIH , Propiedades de Superficie , Tensoactivos/química , Ingeniería de Tejidos/instrumentación
2.
Adv Mater ; 28(17): 3340-4, 2016 05.
Artículo en Inglés | MEDLINE | ID: mdl-26932778

RESUMEN

Triple emulsion drops with an ultrathin water layer are developed to achieve high encapsulation efficiency of hydrophobic cargo in a hydrophobic polymeric shell, directly dispersed in water. Furthermore, enhanced retention of volatile hydrophobic cargo is achieved by forming a hydrogel network within this water layer that serves as a physical barrier.

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