Botwina Pawel, Obłoza Magdalena, Zatorska-Płachta Maria, Kamiński Kamil, Mizusaki Masanobu, Yusa Shin-Ichi, Szczubiałka Krzysztof, Pyrc Krzysztof, Nowakowska Maria
Microbiology Department, Faculty of Biochemistry, Biophysics and Biotechnology, Jagiellonian University, 30-387 Krakow, Poland.
Virogenetics Laboratory of Virology, Malopolska Centre of Biotechnology, Jagiellonian University, 30-387 Krakow, Poland.
Pharmaceutics. 2022 Jan 27;14(2):309. doi: 10.3390/pharmaceutics14020309.
A series of anionic homopolymers, poly(sodium 2-(acrylamido)-2-methyl-1-propanesulfonate) (PAMPS) and amphiphilic copolymers of AMPS and sodium 11-(acrylamido)undecanoate (AaU), both block (PAMPS-b-PAaU), and random (P(AMPS-co-AaU)), were synthesized and their antiviral activity against Zika virus (ZIKV) was evaluated. Interestingly, while the homopolymers showed limited antiviral activity, the copolymers are very efficient antivirals. This observation was explained considering that under the conditions relevant to the biological experiments (pH 7.4 PBS buffer) the macromolecules of these copolymers exist as negatively charged (zeta potential about -25 mV) nanoparticles (4-12 nm) due to their self-organization. They inhibit the ZIKV replication cycle by binding to the cell surface and thereby blocking virus attachment to host cells. Considering good solubility in aqueous media, low toxicity, and high selectivity index (SI) of the PAMPS-b-PAaU copolymers, they can be considered promising agents against ZIKV infections.
合成了一系列阴离子均聚物聚(2-(丙烯酰胺基)-2-甲基-1-丙烷磺酸钠)(PAMPS)以及AMPS与11-(丙烯酰胺基)十一烷酸钠(AaU)的两亲性共聚物,包括嵌段共聚物(PAMPS-b-PAaU)和无规共聚物(P(AMPS-co-AaU)),并评估了它们对寨卡病毒(ZIKV)的抗病毒活性。有趣的是,虽然均聚物显示出有限的抗病毒活性,但共聚物却是非常有效的抗病毒剂。考虑到在与生物学实验相关的条件下(pH 7.4的PBS缓冲液),这些共聚物的大分子由于自组装而以带负电荷(zeta电位约为-25 mV)的纳米颗粒(4-12 nm)形式存在,从而解释了这一观察结果。它们通过与细胞表面结合来抑制ZIKV复制周期,从而阻止病毒附着于宿主细胞。鉴于PAMPS-b-PAaU共聚物在水性介质中的良好溶解性、低毒性和高选择性指数(SI),它们可被视为对抗ZIKV感染的有前景的药物。