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1.
Adv Mater ; 34(5): e2107177, 2022 Feb.
Artículo en Inglés | MEDLINE | ID: mdl-34699649

RESUMEN

There has been considerable interest in developing synthetic micromotors with biofunctional, versatile, and adaptive capabilities for biomedical applications. In this perspective, cell membrane-functionalized micromotors emerge as an attractive platform. This new class of micromotors demonstrates enhanced propulsion and compelling performance in complex biological environments, making them suitable for various in vivo applications, including drug delivery, detoxification, immune modulation, and phototherapy. This article reviews various proof-of-concept studies based on different micromotor designs and cell membrane coatings in these areas. The review focuses on the motor structure and performance relationship and highlights how cell membrane functionalization overcomes the obstacles faced by traditional synthetic micromotors while imparting them with unique capabilities. Overall, the cell membrane-functionalized micromotors are expected to advance micromotor research and facilitate its translation towards practical uses.


Asunto(s)
Sistemas de Liberación de Medicamentos , Membrana Celular
2.
Nano Lett ; 19(11): 7816-7826, 2019 11 13.
Artículo en Inglés | MEDLINE | ID: mdl-31588746

RESUMEN

As the most common nutritional disorder, iron deficiency represents a major public health problem with broad impacts on physical and mental development. However, treatment is often compromised by low iron bioavailability and undesired side effects. Here, we report on the development of active mineral delivery vehicles using Mg-based micromotors, which can autonomously propel in gastrointestinal fluids, aiding in the dynamic delivery of minerals. Iron and selenium are combined as a model mineral payload in the micromotor platform. We demonstrate the ability of our mineral-loaded micromotors to replenish iron and selenium stores in an anemic mouse model after 30 days of treatment, normalizing hematological parameters such as red blood count, hemoglobin, and hematocrit. Additionally, the micromotor platform exhibits no toxicity after the treatment regimen. This proof-of-concept study indicates that micromotor-based active delivery of mineral supplements represents an attractive approach toward alleviating nutritional deficiencies.


Asunto(s)
Anemia Ferropénica/tratamiento farmacológico , Portadores de Fármacos/química , Hierro/administración & dosificación , Magnesio/química , Selenio/administración & dosificación , Oligoelementos/administración & dosificación , Anemia Ferropénica/sangre , Animales , Hierro/uso terapéutico , Masculino , Ratones , Selenio/uso terapéutico , Oligoelementos/uso terapéutico
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