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1.
Nat Commun ; 9(1): 2564, 2018 07 02.
Artigo em Inglês | MEDLINE | ID: mdl-29967443

RESUMO

The vapor deposition of polymers on regular stationary substrates is widely known to form uniform thin films. Here we report porous polymer particles with sizes controllable down to the nanometer scale can be produced using a fabrication process based on chemical vapor deposition (CVD) on a dynamic substrate, i.e., sublimating ice particles. The results indicate that the vapor deposition of a polymer is directed by the sublimation process; instead of forming a thin film polymer, the deposited polymers replicated the size and shape of the ice particle. Defined size and porosity of the polymer particles are controllable with respect to varying the processing time. Extendable applications are shown to install multiple functional sites on the particles in one step and to localize metals/oxides forming composite particles. In addition, one fabrication cycle requires approximately 60 min to complete, and potential scaling up the production of the porous particles is manageable.

2.
Macromol Biosci ; 17(4)2017 04.
Artigo em Inglês | MEDLINE | ID: mdl-27786421

RESUMO

A multicomponent functional polymer is synthesized to support specific reactivity for successful conjugation with the vast array of functionality present in biological systems and the flexibility to conjugate biomolecules without requiring additional modification to install a terminal functional group. The multifunctional surface is realized using a novel coating composed of distinct N-hydroxysuccinimide (NHS) ester and benzoyl functionalities, which can provide accessibility to both the NHS ester-amine coupling reaction and the photochemically induced benzophenone crosslinking reaction, respectively. In addition, the multifunctional polymer is fabricated and transformed to form nanoscale colloids through the solvent displacement of a water/DMF system due to solubility characteristics of the resulting polymer with high polarity. A facile and efficient fabrication approach using the multifunctional nanocolloid is thus demonstrated to create a drug carrier by installing paclitaxel and folic acid for targeted cancer therapy.


Assuntos
Materiais Biocompatíveis/farmacologia , Polimerização , Células 3T3 , Animais , Apoptose/efeitos dos fármacos , Difusão Dinâmica da Luz , Fluorescência , Células HeLa , Humanos , Camundongos , Microscopia Eletrônica de Varredura , Paclitaxel/farmacologia , Polímeros/síntese química , Polímeros/química , Succinimidas/química , Propriedades de Superfície , Sus scrofa , Xilenos/síntese química , Xilenos/química
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