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Cellular Nanosponges for Biological Neutralization

期刊

ADVANCED MATERIALS
卷 34, 期 13, 页码 -

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/adma.202107719

关键词

cell-membrane-coated nanoparticle; countermeasures; detoxification; nanomedicine; nanotechnology

资金

  1. Defense Threat Reduction Agency Joint Science and Technology Office for Chemical and Biological Defense [HDTRA1-18-1-0014, HDTRA1-21-1-0010]
  2. National Science Foundation [DMR-1904702]

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Cellular nanosponges, as host decoys, have shown great potential for biological neutralization applications. By mimicking susceptible host cells, they can create function-driven and broad-spectrum neutralization solutions against various pathological agents.
Biological neutralization represents a general strategy that deploys therapeutic agents to bind with harmful molecules or infectious pathogens, block their bioactivity, and thus prevent them from causing the diseases. Here, a comprehensive review of using cell-membrane-coated nanoparticles, namely cellular nanosponges, as host decoys for a wide range of biological neutralization applications is provided. Compared to traditional neutralization strategies, the cellular nanosponges stand out by mimicking susceptible host cells rather than accommodating the structures of the causative agents for the design of therapeutics. As all pathological agents must interact with host cells for bioactivity, nanosponges bypass the diversity of these agents and create function-driven and broad-spectrum neutralization solutions. The review focuses on the recent progress of using this new nanomedicine platform for neutralization against five primary pathological agents, including bacterial toxins, chemical toxicants, inflammatory cytokines, pathological antibodies, and viruses. Existing studies have established cellular nanosponges as versatile tools for biological neutralization. A thorough review of the cellular nanosponge technology is expected to inspire more refined cellular nanosponge designs and unique neutralization applications to address unsolved medical problems.

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