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Delivery of Natural Agents by Means of Mesoporous Silica Nanospheres as a Promising Anticancer Strategy

期刊

PHARMACEUTICS
卷 13, 期 2, 页码 -

出版社

MDPI
DOI: 10.3390/pharmaceutics13020143

关键词

mesoporous silica nanoparticles; controlled release; drug delivery systems; anticancer natural prodrugs; natural products; cancer targeting; nanoformulations; nanomedicine applications

资金

  1. Institute of High Pressure Physics (IHPP), Polish Academy of Sciences (PAS), Poland
  2. IHPP

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Natural prodrugs from various natural sources, though historically used in traditional medicine for their anticancer properties, face challenges in solubility and targeting. Nanomedicine offers potential solutions to these limitations, allowing for effective cancer therapy using natural prodrugs.
Natural prodrugs derived from different natural origins (e.g., medicinal plants, microbes, animals) have a long history in traditional medicine. They exhibit a broad range of pharmacological activities, including anticancer effects in vitro and in vivo. They have potential as safe, cost-effective treatments with few side effects, but are lacking in solubility, bioavailability, specific targeting and have short half-lives. These are barriers to clinical application. Nanomedicine has the potential to offer solutions to circumvent these limitations and allow the use of natural pro-drugs in cancer therapy. Mesoporous silica nanoparticles (MSNs) of various morphology have attracted considerable attention in the search for targeted drug delivery systems. MSNs are characterized by chemical stability, easy synthesis and functionalization, large surface area, tunable pore sizes and volumes, good biocompatibility, controlled drug release under different conditions, and high drug-loading capacity, enabling multifunctional purposes. In vivo pre-clinical evaluations, a significant majority of results indicate the safety profile of MSNs if they are synthesized in an optimized way. Here, we present an overview of synthesis methods, possible surface functionalization, cellular uptake, biodistribution, toxicity, loading strategies, delivery designs with controlled release, and cancer targeting and discuss the future of anticancer nanotechnology-based natural prodrug delivery systems.

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