A Potential 3‐in‐1 Combined AntiSARS‐CoV‐2 Therapy Using Pulmonary MIL‐100(Fe) Formulation

背景(考古学) 体内分布 2019年冠状病毒病(COVID-19) 药物输送 医学 法维皮拉维 药品 纳米技术 药理学 材料科学 重症监护医学 传染病(医学专业) 体内 疾病 内科学 生物 古生物学 生物技术
作者
Beatrice Fodor,Inés Álvarez‐Miguel,Catalina Biglione,Guillermo G. López,África González‐Fernández,Fabrice Salles,Tania Hidalgo,Patricia Horcajada
出处
期刊:Advanced Healthcare Materials [Wiley]
卷期号:14 (26): e2403988-e2403988 被引量:3
标识
DOI:10.1002/adhm.202403988
摘要

The emergence and rapid propagation of infectious diseases, including the COVID-19 pandemic, has evidenced the vulnerabilities in global health surveillance, the ease of transmission, and the imperative need for effective treatments. In this context, nanomedicines based on metal-organic frameworks (MOFs) have garnered great relevance as promising drug delivery platforms in a large range of complex diseases (e.g., cancer, and infections). However, most research has focused on sensing with scarce examples in antiviral therapies. Hence, here a pioneer combined 3-in-1 effect anti-COVID pulmonary multitherapy based on the mesoporous iron(III) carboxylate MIL-100(Fe) nanoparticles is proposed, with the proven intrinsic MOF effect, associated with favipiravir drug into their porosity and heparin on their external surface. A significant antiviral effect against a real scenario of COVID-19 infection is demonstrated (≈70% inhibition), ensuring a suitable cellular viability. Further, a convenient pulmonary formulation is prepared based on mannitol-based microspheres, testing its safety and biodistribution in healthy mice. No significant side effects are observed, reaching successfully the deep lungs, emphasizing a reduced immunological response compared to their controls. Therefore, these promising results open new horizons for future (pre)clinical trials targeting challenging infectious/pulmonary pathologies, enhancing the feasibility of designing customized therapeutic MOF platforms.
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