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Towards hybrid microrobots using pH- and photo-responsive hydrogels for cancer targeting and drug delivery

机译:迈向使用pH和光响应水凝胶进行癌症靶向和药物递送的混合微型机器人

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This work is towards targeted drug delivery using microrobots functionalized to navigate towards naturally occurring pH gradients caused by cancer cells, and to release a payload in response to a light stimulus. Stimuli-responsive microrobots for the localization of specific cell types and targeted drug delivery could provide a new and promising therapy to prevent and treat the spread of cancer. In this work, we present two novel biocompatible photoresists for the fabrication of hybrid microrobots using two-photon polymerization (TPP) for medical applications. One biomarker for cancerous cells is that they exhibit lower pH compared to surrounding healthy tissue. In this work, a pH-responsive resist was developed and demonstrated to automatically seek a low-pH solid in a microfluidic channel, simulating metastatic cells within a vessel. The second resist, a hydrogel-based photoresist, was created to contract in response to light. The two resists were combined together in a two-step printing process to create a microswimmer with potential for tumor localization and drug release capabilities in the human circulatory system.
机译:这项工作是针对使用微型机器人的靶向药物递送,该微型机器人的功能是导航至由癌细胞引起的自然存在的pH梯度,并响应光刺激释放有效载荷。用于特定细胞类型定位和靶向药物递送的刺激应答性微型机器人可以提供一种新的有前途的疗法来预防和治疗癌症的扩散。在这项工作中,我们提出了两种新颖的生物相容性光致抗蚀剂,用于制造用于医疗应用的使用双光子聚合(TPP)的混合微型机器人。癌细胞的一种生物标记是与周围健康组织相比,它们的pH值较低。在这项工作中,开发了一种具有pH响应能力的抗蚀剂,并被证明可以在微流体通道中自动寻找低pH值的固体,从而模拟血管内的转移细胞。产生第二抗蚀剂,即基于水凝胶的光致抗蚀剂,以响应光而收缩。在两个步骤的印刷过​​程中将这两种抗蚀剂组合在一起,以创建一种微扫描器,该微扫描器具有在人体循环系统中实现肿瘤定位和药物释放能力的潜力。

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