Femtosecond laser-ablative aqueous synthesis of multi-drug antiviral nanoparticles
收藏Taylor & Francis Group2025-04-01 更新2026-04-16 收录
下载链接:
https://tandf.figshare.com/articles/dataset/Femtosecond_laser-ablative_aqueous_synthesis_of_multi-drug_antiviral_nanoparticles/28588835/1
下载链接
链接失效反馈官方服务:
资源简介:
Nanomedicine offers a number of innovative strategies to address major public health burdens, including complex respiratory illnesses. In this work, we introduce a multi-drug nanoparticle fabricated using femtosecond laser ablation for the treatment of influenza, SARS-CoV-2, and their co-infections. The SARS-CoV-2 antiviral, remdesivir; the influenza antiviral, baloxavir marboxil; and the anti-inflammatory, dexamethasone, were co-crystalized and then ablated in aqueous media using a femtosecond pulsed laser and subsequently surface modified with the cationic polymer, chitosan, or poly-d-lysine. Physical and chemical properties were then characterized using multiple complimentary techniques. Finally, a clinically relevant <i>in vitro</i> primary mouse trachea epithelial cell-air-liquid interface culture model was used to analyze the antiviral effect of our nanoparticles against Influenza Virus A. Our final nanoparticle exhibited a positive zeta potential with a diameter of ~73 nm. Remdesivir, baloxavir marboxil, and dexamethasone were all present in the nanoparticle suspension at a 1:1:1 ratio. Notably, these particles exhibited a potent anti-influenza effect, decreasing the viral titer by ≈ 4 logs in comparison to vehicle controls. Overall, these findings demonstrate great promise both for the use of laser ablation to generate multi-drug nanoparticles and for the anti-viral effects of our nanoformulation against respiratory illness.
提供机构:
He, Dihua; Davidson, Bruce A.; Knight, Paul R.; Bulmahn, Julia C.; Prasad, Paras N.; He, Guang S.; Sambhara, Suryaprakash; Schmitt, Rebecca R.
创建时间:
2025-03-13



