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Characterization of Transcutaneous Protein Delivery by a Hydrogel Patch in Animal, Human, and Tissue-Engineered Skin Models

机译:在动物,人类和组织工程的皮肤模型中,通过水凝胶补丁透皮蛋白传递的表征

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摘要

The development of a simple, easy-to-use, and noninvasive vaccination system is in high demand. For transcutaneous immunization (TCI), we previously reported that a hydrogel patch was an effective TCI device that accelerates antigen penetration through the stratum corneum in mouse and rat models. The present study was performed to characterize the transcutaneous protein delivery induced by the hydrogel patch in mouse, guinea pig, LWD pig, human, or tissue-engineered skin models, and to assess the activity of proteins delivered into the skin. The hydrogel patch promoted protein penetration through the stratum corneum in all skin models, indicating that our original hydrogel patch might have practical application for use in humans. In addition, proteins delivered into the skin by the hydrogel patch retained their activity, suggesting that the hydrogel patch is applicable for the delivery of therapies for other diseases as well. On the basis of these results, translational research in human is now in progress.
机译:迫切需要开发一种简单,易于使用且无创的疫苗接种系统。对于经皮免疫(TCI),我们先前曾报道水凝胶贴片是一种有效的TCI装置,可在小鼠和大鼠模型中加速抗原穿过角质层的渗透。进行本研究以表征由水凝胶贴剂在小鼠,豚鼠,LWD猪,人或组织工程化的皮肤模型中诱导的经皮蛋白质传递,并评估传递至皮肤的蛋白质的活性。水凝胶贴剂在所有皮肤模型中都促进了蛋白质穿过角质层的渗透,表明我们最初的水凝胶贴剂可能在人类中具有实际应用。另外,通过水凝胶贴剂递送到皮肤中的蛋白质保留了它们的活性,这表明水凝胶贴剂也适用于递送其他疾病的疗法。基于这些结果,目前正在进行人类翻译研究。

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