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雾化混合纳米古脂质体:对A549细胞的抗炎活性、抗菌活性及细胞毒性

Nebulized Hybrid Nanoarchaeosomes: Anti-Inflammatory Activity, Anti-Microbial Activity and Cytotoxicity on A549 Cells.

作者信息

Stabile Sofia Giuliana Guerin, Perez Noelia, Jerez Horacio Emanuel, Simioni Yamila Roxana, Butassi Estefanía, Mizrahi Martin Daniel, Nobile Matias Leonardo, Perez Ana Paula, Morilla Maria Jose, Higa Leticia Herminia, Romero Eder Lilia

机构信息

Centro de Investigación y Desarrollo de Nanomedicinas (CIDeN), Departamento de Ciencia y Tecnología, Universidad Nacional de Quilmes, Roque Sáenz Peña 352, B1876 Bernal, Argentina.

Facultad de Ciencias Biológicas y Farmacéuticas, Universidad Nacional de Rosario, Suipacha 531, S2000 Rosario, Argentina.

出版信息

Int J Mol Sci. 2025 Jan 4;26(1):392. doi: 10.3390/ijms26010392.

Abstract

The properties of two hybrid nanoarchaeosomes (hybrid nanoARCs) made of archaeolipids extracted from the halophilic archaea and combining the properties of archaeolipid bilayers with metallic nanoparticles are explored here. BS-nanoARC, consisting of a nanoARC loaded with yerba mate ( extract (YME)-biogenic silver nanoparticles (BSs), and [BS + BS-nanoARC], consistent of a BS-nanoARC core covered by an outer shell of BSs, were structurally characterized and their therapeutic activities screened. By employing 109 ± 5 µg gallic acid equivalents (GAEs) and 73.4 µg chlorogenic acid/ YME mg as a silver reductive agent, spherical, heterogeneously sized (~80 nm diameter), -27 mV ζ potential, 90% Ag and λ 420 nm BSs were obtained. We further prepared ~100-200 nm diameter, -57 mV ζ potential BS-nanoARC and ~300 nm diameter, -37 mV ζ potential [BS + BS-nanoARCs]. Freshly prepared and nebulized BS-nanoARCs reduced the release of TNF-α, IL-6 and IL-8 by LPS-irritated THP-1-macrophages and were highly anti-planktonic against (MIC: 13 ± 0.8 µg Ag/mL). While the nanoARCs and BS-nanoARCs were innocuous, freshly prepared [BS + BS-nanoARCs] magnified the cytotoxicity of BSs (IC 12 µg Ag/mL vs. IC ~36 µg Ag/mL) on A549 cells. Such cytotoxicity remained after 30 days in the dark at 4 °C, while that of BSs was lost. Freshly prepared BSs also lost activity upon nebulization, whereas freshly prepared [BS + BS-nanoARCs] did not. However, the cytotoxicity of the [BS + BS-nanoARCs] was also lost when nebulized after 30 days of storage. Despite the harmful effects of storage and mechanical stress on the structure of the more active [BS + BS-nanoARCs], hybrid nanoARCs are promising examples of nanomedicines combining the properties of archaeolipids with antimicrobial silver nanoparticles and anti-inflammatory polyphenols that could complement oncologic therapies, reducing the usage of classical antitumoral agents, corticosteroids, and, importantly, of antibiotics, as well as their waste.

摘要

本文探索了两种由嗜盐古菌提取的古脂质制成的杂化纳米古菌脂质体(杂化纳米古菌脂质体),它们结合了古脂质双层与金属纳米颗粒的特性。BS - 纳米古菌脂质体由负载马黛茶提取物(YME) - 生物银纳米颗粒(BSs)的纳米古菌脂质体组成,而[BS + BS - 纳米古菌脂质体]由被BSs外壳覆盖的BS - 纳米古菌脂质体核心组成,对它们进行了结构表征并筛选了其治疗活性。以109±5μg没食子酸当量(GAEs)和73.4μg绿原酸/YME mg作为银还原剂,获得了球形、尺寸不均一(直径约80nm)、ζ电位为 - 27mV、含90%银且在420nm处有吸收峰的BSs。我们进一步制备了直径约100 - 200nm、ζ电位为 - 57mV的BS - 纳米古菌脂质体和约300nm直径、ζ电位为 - 37mV的[BS + BS - 纳米古菌脂质体]。新制备并雾化的BS - 纳米古菌脂质体可减少脂多糖刺激的THP - 1巨噬细胞释放TNF -α、IL - 6和IL - 8,并且对浮游菌具有高度抗菌活性(MIC:13±0.8μg Ag/mL)。虽然纳米古菌脂质体和BS - 纳米古菌脂质体无毒,但新制备的[BS + BS - 纳米古菌脂质体]会放大BSs对A549细胞的细胞毒性(IC 12μg Ag/mL对IC约36μg Ag/mL)。这种细胞毒性在4℃黑暗中储存30天后仍然存在,而BSs的细胞毒性则消失。新制备的BSs在雾化后也会失去活性,但新制备的[BS + BS - 纳米古菌脂质体]不会。然而,储存30天后雾化的[BS + BS - 纳米古菌脂质体]的细胞毒性也会消失。尽管储存和机械应力对活性更高的[BS + BS - 纳米古菌脂质体]的结构有有害影响,但杂化纳米古菌脂质体是将古脂质特性与抗菌银纳米颗粒和抗炎多酚相结合的有前景的纳米药物实例,可补充肿瘤治疗,减少传统抗肿瘤药物、皮质类固醇以及重要的抗生素的使用及其废弃物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/43ee/11721710/1b2de51491ba/ijms-26-00392-g001.jpg

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