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Pyrazinoic acid-Poly(malic acid) biodegradable nanoconjugate for efficient intracellular delivery

机译:吡唑酸 - 聚(苹果酸)可生物降解的纳米缀合物,用于高效的细胞内递送

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摘要

Tuberculosis is an infectious disease, affecting mostly lungs, that is still considered a health global problem as it causes millions of deaths worldwide. Current treatment is effective, however, associated with severe adverse effects due to the high doses of each anti-tuberculosis drug daily administrated by oral therapy. For the first time, a pyrazinoic acid biodegradable nanoconjugate was synthesized and developed for pulmonary administration in an attempt to reduce the administered doses by achieving a high drug payload and controlled release at the target site. The conjugate was synthesized by coupling pyrazinoic acid on carboxylic groups of poly(malic acid), which is a biodegradable and biocompatible polymer, and posteriorly self-assembled into nanoconjugates. Characterization confirmed the formation of nanometric, spherical and negatively charged pyrazinoic acid nanoconjugate (NC-PA). NC-PA was stable for 60 days at 4 and 37 ºC and able to deliver PA in a sustained release manner over time. On macrophages, they exhibited no cell toxicity for a wide range of concentrations (from 1 to 100 µg/mL), demonstrating the safety of NC-PA. In addition, the nanoconjugate was efficiently taken up by RAW 264.7 cells over 6 hours reaching a maximum value after 3h of incubation. In conclusion, innovative nanoconjugates are a promising alternative to deliver drugs directly to the lungs and contributing to improving tuberculosis therapy.
机译:结核病是一种感染性疾病,影响大多数肺部,仍被认为是卫生全球问题,因为它导致全世界数百万死亡。然而,由于口服治疗每天施用的每种抗结核药物的高剂量,目前的治疗是有效的。首次,合成吡唑酸可生物降解的纳米缀合物并开发用于肺部给药,以试图通过在靶位点实现高药物有效载荷和控制释放来减少施用剂量。通过在聚(苹果酸)的羧基上偶联吡唑酸合成缀合物,其是可生物降解的和生物相容性的聚合物,并在纳米缀合物中向后自组装成纳米缀合物。表征证实了纳米,球形和带负电荷的吡唑纳米缀合物(NC-PA)的形成。 NC-PA在4和37ºC下稳定60天,随着时间的推移,能够以持续的释放方式提供PA。在巨噬细胞上,它们没有针对各种浓度(1至100μg/ mL)表现出细胞毒性,证明了NC-PA的安全性。此外,纳米缀合物在孵育3小时后6小时以上达到最大值,有效地占据了原始264.7细胞。总之,创新的纳米jugates是一种有前途的替代方案,可以直接向肺部递送药物,并有助于改善结核病疗法。

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