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用于癌症化疗的铁蛋白包封药物的一步构建。

One-step construction of ferritin encapsulation drugs for cancer chemotherapy.

作者信息

Inoue Ippei, Chiba Mayumi, Ito Kenichiro, Okamatsu Yoriko, Suga Yasuyo, Kitahara Yoshiro, Nakahara Yuichi, Endo Yuta, Takahashi Kazutoshi, Tagami Uno, Okamoto Naofumi

机构信息

Research Institute for Bioscience Products & Fine Chemicals, Ajinomoto Co., Inc. 1-1, Suzuki-cho, Kawasaki-ku, Kawasaki-shi, Kanagawa 210-8681, Japan.

出版信息

Nanoscale. 2021 Jan 28;13(3):1875-1883. doi: 10.1039/d0nr04019c.

Abstract

Conventionally, a disassembly and reassembly method has been used for encapsulation of drug molecules in ferritin protein nano-cages. However, clinical applications of ferritin have been greatly restricted by its limited drug-loading capacity and process complexity. Here, we establish a simple high yield process for preparing high drug-loaded ferritin nanomedicine for industrial production. A complex of ferritin and a target drug was obtained by incubating the mixture at an appropriate pH. An electrostatic charge potential and small ferritin cavity facilitates the passage of drug molecules through the pores, traversing the ferritin shell and enabling deposition of the drug in the ferritin cavity. Compared to the disassembly/reassembly method, the loading capacity of a doxorubicin-loaded ferritin heavy chain (DOX-FTH), constructed by our novel method, was over 3-fold higher, while doxorubicin recovery was 10-fold higher. Results of transmission electron microscopy, size exclusion chromatography, dynamic light scattering, and zeta potential indicate that DOX-FTH exhibits the same physicochemical characteristics of natural apo-ferritin. Moreover, DOX-FTH can be taken up and induce apoptosis of cancer cells overexpressing TfR1. Here, we have demonstrated the successful introduction of more than ten drug molecule types into ferritin nano-cages using a novel method. These results demonstrate that this one-step method is a powerful production process to construct a drug-loading ferritin drug delivery system carrier.

摘要

传统上,药物分子在铁蛋白蛋白纳米笼中的包封采用拆卸和重新组装方法。然而,铁蛋白的临床应用因其有限的载药量和工艺复杂性而受到极大限制。在此,我们建立了一种简单的高产率工艺,用于制备用于工业生产的高载药铁蛋白纳米药物。通过在适当的pH下孵育混合物,获得铁蛋白与目标药物的复合物。静电电荷电位和小的铁蛋白腔有利于药物分子通过孔道,穿过铁蛋白外壳,并使药物沉积在铁蛋白腔内。与拆卸/重新组装方法相比,我们的新方法构建的载阿霉素铁蛋白重链(DOX-FTH)的载药量高出3倍以上,而阿霉素回收率高出10倍。透射电子显微镜、尺寸排阻色谱、动态光散射和zeta电位结果表明,DOX-FTH具有与天然脱铁铁蛋白相同的物理化学特性。此外,DOX-FTH可以被过表达TfR1的癌细胞摄取并诱导其凋亡。在此,我们已经证明使用一种新方法成功地将十多种药物分子类型引入铁蛋白纳米笼中。这些结果表明,这种一步法是构建载药铁蛋白药物递送系统载体的强大生产工艺。

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