Nguyen Phuoc Vinh, Aubry Clémentine, Boudaoud Narimane, Gaubert Alexandra, Langlois Marie-Hélène, Marchivie Mathieu, Gaudin Karen, Arpin Corinne, Barthélémy Philippe, Kauss Tina
ARNA, Inserm U1212, CNRS 5320, University of Bordeaux, 146 rue Léo Saignat, CEDEX, 33076 Bordeaux, France.
UMR 5026, University of Bordeaux, CNRS, Bordeaux-INP, ICMCB, 87 Avenue du Dr Albert Schweitzer, CEDEX, 33608 Pessac, France.
Pharmaceutics. 2022 Jan 27;14(2):299. doi: 10.3390/pharmaceutics14020299.
Antibiotic resistance has become a major issue in the global healthcare system, notably in the case of Gram-negative bacteria. Recent advances in technology with oligonucleotides have an enormous potential for tackling this problem, providing their efficient intrabacterial delivery. The current work aimed to apply this strategy by using a novel nanoformulation consisting of DOTAU, a nucleolipid carrier, in an attempt to simultaneously deliver antibiotic and anti-resistance oligonucleotides. Ceftriaxone, a third-generation cephalosporin, was formulated with DOTAU to form an ion pair, and was then nanoprecipitated. The obtained solid nanocapsules were characterized using FT-IR, XRD, HPLC, TEM and DLS techniques and further functionalized by the anti-resistance ONα sequence. To obtain an optimal anti-resistance activity and encapsulation yield, both the formulation protocol and the concentration of ONα were optimized. As a result, monodispersed negatively charged nanoparticles of CFX-DOTAU-ONα with a molar ratio of 10:24:1 were obtained. The minimum inhibitory concentration of these nanoparticles on the resistant strain was significantly reduced (by 75%) in comparison with that of non-vectorized ONα. All aforementioned results reveal that our nanoformulation can be considered as an efficient and relevant strategy for oligonucleotide intrabacterial delivery in the fight against antibiotic resistance.
抗生素耐药性已成为全球医疗保健系统中的一个主要问题,在革兰氏阴性菌的情况下尤为明显。寡核苷酸技术的最新进展在解决这一问题方面具有巨大潜力,前提是它们能够有效地递送至细菌内部。当前的工作旨在通过使用一种由核脂质载体DOTAU组成的新型纳米制剂来应用这一策略,试图同时递送抗生素和抗耐药性寡核苷酸。第三代头孢菌素头孢曲松与DOTAU形成离子对,然后进行纳米沉淀。使用傅里叶变换红外光谱(FT-IR)、X射线衍射(XRD)、高效液相色谱(HPLC)、透射电子显微镜(TEM)和动态光散射(DLS)技术对所得固体纳米胶囊进行表征,并通过抗耐药性ONα序列进一步功能化。为了获得最佳的抗耐药活性和包封率,对制剂方案和ONα的浓度进行了优化。结果,获得了摩尔比为10:24:1的CFX-DOTAU-ONα单分散带负电纳米颗粒。与未载体化的ONα相比,这些纳米颗粒对耐药菌株的最低抑菌浓度显著降低(降低了75%)。所有上述结果表明,我们的纳米制剂可被视为一种在对抗抗生素耐药性中用于寡核苷酸细菌内递送的有效且相关的策略。