Department of Chemical and Biomolecular Engineering, University of California at Los Angeles, Los Angeles, California 90095, USA.
Nat Nanotechnol. 2010 Jan;5(1):48-53. doi: 10.1038/nnano.2009.341. Epub 2009 Nov 22.
An average cell contains thousands of proteins that participate in normal cellular functions, and most diseases are somehow related to the malfunctioning of one or more of these proteins. Protein therapy, which delivers proteins into the cell to replace the dysfunctional protein, is considered the most direct and safe approach for treating disease. However, the effectiveness of this method has been limited by its low delivery efficiency and poor stability against proteases in the cell, which digest the protein. Here, we show a novel delivery platform based on nanocapsules consisting of a protein core and a thin permeable polymeric shell that can be engineered to either degrade or remain stable at different pHs. Non-degradable capsules show long-term stability, whereas the degradable ones break down their shells, enabling the core protein to be active once inside the cells. Multiple proteins can be delivered to cells with high efficiency while maintaining low toxicity, suggesting potential applications in imaging, therapy and cosmetics fields.
平均每个细胞中都含有数千种参与正常细胞功能的蛋白质,大多数疾病都与这些蛋白质中的一种或多种功能失调有关。蛋白质疗法是将蛋白质递送到细胞中以替代功能失调的蛋白质,被认为是治疗疾病最直接和安全的方法。然而,这种方法的有效性受到其递送效率低和对细胞蛋白酶稳定性差的限制,蛋白酶会消化蛋白质。在这里,我们展示了一种基于纳米胶囊的新型递药平台,该纳米胶囊由蛋白质核心和薄的可渗透聚合物壳组成,可以设计为在不同 pH 值下降解或保持稳定。不可降解的胶囊具有长期稳定性,而可降解的胶囊则会分解其外壳,使核心蛋白在进入细胞后能够发挥作用。多种蛋白质可以高效递送到细胞中,同时保持低毒性,这表明其在成像、治疗和化妆品领域具有潜在的应用。