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Biodegradable Optode-Based Nanosensors for in Vivo Monitoring

机译:可生物降解的基于光电二极管的纳米传感器,用于体内监测

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Optode-based fluorescent nanosensors are being developed for monitoring important disease states such as hyponatremia and diabetes. However, traditional optode-based sensors are composed of nonbiodegradable polymers such as poly(vinyl chloride) (PVC) raising toxicity concerns for long-term in vivo use. Here, we report the development of the first biodegradable optode-based nanosensors that maintain sensing characteristics similar to those of traditional optode sensors. The polymer matrix of these sensors is composed of polycaprolactone (PCL) and a citric acid ester plasticizer. The PCL-based nanosensors yielded a dynamic and reversible response to sodium, were tuned to respond to extracellular sodium concentrations, and had a lifetime of at least 14 days at physiological temperature. When in the presence of lipase, the nanosensors degraded within 4 h at lipase concentrations found in the liver but were present after 3 days at lipase concentrations found in serum. The development of biodegradable nanosensors is not only a positive step towards their future use in in vivo applications, but they also represent a new sensor platform that can be extended to other sensing mechanisms.
机译:正在开发基于光电二极管的荧光纳米传感器,以监测重要的疾病状态,例如低钠血症和糖尿病。但是,传统的基于光电二极管的传感器由不可生物降解的聚合物(例如聚氯乙烯)组成,因此长期体内使用会引起毒性问题。在这里,我们报告了第一个可生物降解的基于光电的纳米传感器的发展,该传感器保持类似于传统光电传感器的传感特性。这些传感器的聚合物基质由聚己内酯(PCL)和柠檬酸酯增塑剂组成。基于PCL的纳米传感器对钠产生动态且可逆的响应,已调整为对细胞外钠浓度做出响应,并且在生理温度下的寿命至少为14天。当存在脂肪酶时,纳米传感器在肝脏中发现的脂肪酶浓度下在4小时内降解,但在血清中发现的脂肪酶浓度下3天后出现。可生物降解纳米传感器的发展不仅是其在体内应用中的未来迈出了积极的一步,而且还代表了可以扩展到其他传感机制的新传感器平台。

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