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载银多功能金属超分子纳米凝胶用于高效抗菌治疗和选择性抗癌治疗。

Multi-Biofunctional Silver-Containing Metallosupramolecular Nanogels for Efficient Antibacterial Treatment and Selective Anticancer Therapy.

机构信息

Graduate Institute of Applied Science and Technology, National Taiwan University of Science and Technology, Taipei 10607, Taiwan.

Graduate Institute of Applied Science and Technology, National Taiwan University of Science and Technology, Taipei 10607, Taiwan.

出版信息

Acta Biomater. 2022 Oct 1;151:576-587. doi: 10.1016/j.actbio.2022.07.065. Epub 2022 Aug 3.

Abstract

We develop a simple and efficient route for the fabrication of water-soluble metallosupramolecular polymers. We demonstrate that the introduction of environment-responsive metal-organic complexes within supramolecular polymers endows the resulting self-assembled nano-objects with outstanding antibacterial activity and may significantly improve the efficacy and safety of selective cancer therapy. Herein, we successfully developed a silver-containing supramolecular polymer (Ag-Cy-J) possessing a hydrophilic Jeffamine backbone and highly sensitive pH-responsive cytosine-silver-cytosine (Cy-Ag-Cy) linkages, which spontaneously self-assemble to produce sterically stabilized spherical nanogels in water. The resulting nanogels exhibit several attractive features such as unique fluorescence behavior in water, highly stable self-assembled structures in biological media, significant antihemolytic capability, highly sensitive pH-responsiveness and broad-spectrum antibacterial activity against various bacteria strains. Importantly, in vitro cellular assays clearly demonstrated Ag-Cy-J nanogels highly selectively target and induce cytotoxicity in cancer cells, without affecting normal cells. The selective cytotoxic activity in cancer cells is attributed to rapid dissociation of the Cy-Ag-Cy complexes within the nanogels in the cancer cell microenvironment, followed by the intracellular release of silver ions and induction of rapid, massive apoptosis. Overall, the pH-sensitive Cy-Ag-Cy complexes within this supramolecular nanogel system may provide a route to remarkably improve the efficacy of both antibacterial and cancer drug therapies. STATEMENT OF SIGNIFICANCE: We present a significant breakthrough in the development of a water-soluble silver-containing metallosupramolecular polymer (Ag-Cy-J) that spontaneously self-assembles in water into a spherical nanogel with unique physical characteristics due to the existence of highly sensitive pH-responsive cytosine-silver-cytosine (Cy-Ag-Cy) linkages within the nanogels. Importantly, a series of in vitro antibacterial and anticancer assays demonstrated the Ag-Cy-J nanogels not only exert strong antibacterial activity against various bacterial strains, but also exhibit a high degree of selective uptake and rapidly induce massive apoptosis in cancer cells without harming normal cells. Thus, this newly discovered supramolecular system may potentially provide a multi-biofunctional soft nanomaterial for efficient and safe antibacterial and cancer therapies.

摘要

我们开发了一种简单高效的方法来制备水溶性金属超分子聚合物。我们证明,在超分子聚合物中引入环境响应型金属有机配合物,赋予所得自组装纳米物体出色的抗菌活性,并可能显著提高选择性癌症治疗的疗效和安全性。在这里,我们成功开发了一种含有银的超分子聚合物(Ag-Cy-J),它具有亲水性 Jeffamine 主链和高度敏感的 pH 响应胞嘧啶-银-胞嘧啶(Cy-Ag-Cy)键,可自发自组装在水中产生空间稳定的球形纳米凝胶。所得纳米凝胶具有独特的水荧光行为、生物介质中高度稳定的自组装结构、高抗溶血能力、高 pH 响应性和广谱抗多种细菌的抗菌活性等多种吸引人的特性。重要的是,体外细胞试验清楚地表明,Ag-Cy-J 纳米凝胶高度选择性地靶向并诱导癌细胞产生细胞毒性,而不影响正常细胞。在癌细胞中表现出的选择性细胞毒性归因于纳米凝胶在癌细胞微环境中快速解离 Cy-Ag-Cy 配合物,随后细胞内释放银离子并诱导快速大量细胞凋亡。总的来说,这种超分子纳米凝胶系统中的 pH 敏感 Cy-Ag-Cy 配合物可能为显著提高抗菌和抗癌药物治疗的疗效提供了一种途径。

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