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阐明硫酸化纤维二糖-聚赖氨酸树枝状聚合物的抗 HIV 机制。

Elucidation of anti-HIV mechanism of sulfated cellobiose-polylysine dendrimers.

机构信息

Department of Bio and Environmental Chemistry, Kitami Institute of Technology, 165 Koen-cho, Kitami, Hokkaido, 090-8507, Japan.

Showa Pharmaceutical University, 3-3165 Higashi-Tamagawagakuen, Machida, Tokyo, 194-8543, Japan.

出版信息

Carbohydr Res. 2020 Sep;495:108084. doi: 10.1016/j.carres.2020.108084. Epub 2020 Jun 24.

Abstract

Three new spherical sulfated cellobiose-polylysine dendrimers of increasing generations bearing negatively charged sulfate groups were prepared by sulfating the corresponding cellobiose-polylysine dendrimers. The first, second, and third-generation derivatives exhibited potent anti-HIV activity with EC values of 3.7, 0.6, and 1.5 μg/mL, respectively, in constant to sulfated oligosaccharides with low anti-HIV activity, while the second-generation sulfated dendrimer was the most active. Surface plasmon resonance measurements with poly-l-lysine bearing positively charged amino acids as a model of the HIV surface glycoprotein gp120, indicated that the second-generation dendrimer had the lowest dissociation constant (K = 1.86 × 10 M). Both the particle size and ζ potential increased in the presence of poly-l-lysine. It was proven that the moderate distance between the terminal sulfated cellobiose units in the second-generation dendrimer favored the high anti-HIV activity, owing to the electrostatic interactions developed due to the cluster effect.

摘要

三种新型的、带有负电荷硫酸根的、代数递增的球形硫酸化纤维二糖-聚赖氨酸树枝状聚合物是通过对相应的纤维二糖-聚赖氨酸树枝状聚合物进行硫酸酯化得到的。第一代、第二代和第三代衍生物均表现出很强的抗 HIV 活性,其 EC 值分别为 3.7、0.6 和 1.5μg/mL,与低抗 HIV 活性的硫酸化低聚糖相比,第二代硫酸化树枝状聚合物的活性最高。与带有正电荷氨基酸的聚 L-赖氨酸作为 HIV 表面糖蛋白 gp120 的模型进行表面等离子体共振测量表明,第二代树枝状聚合物具有最低的解离常数(K=1.86×10-6M)。在聚 L-赖氨酸存在的情况下,颗粒大小和 ζ 电位均增加。证明了第二代树枝状聚合物中末端硫酸化纤维二糖单元之间的适度距离有利于获得高抗 HIV 活性,这归因于由于簇效应而产生的静电相互作用。

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