结合光散射和量热观察来理解壳寡糖和硫酸葡聚糖的黏液调节行为。

Understanding mucus modulation behavior of chitosan oligomers and dextran sulfate combining light scattering and calorimetric observations.

作者信息

Ferreira Leonardo M B, Cardoso Valéria M O, Dos Santos Pedriz Igor, Souza Maurício P C, Ferreira Natália N, Chorilli Marlus, Gremião Maria P D, Zucolotto Valtencir

机构信息

Nanomedicine and Nanotoxicology Group, São Carlos Institute of Physics, University of São Paulo (USP), 13566-590 São Carlos, Brazil.

Nanomedicine and Nanotoxicology Group, São Carlos Institute of Physics, University of São Paulo (USP), 13566-590 São Carlos, Brazil.

出版信息

Carbohydr Polym. 2023 Apr 15;306:120613. doi: 10.1016/j.carbpol.2023.120613. Epub 2023 Jan 24.

Abstract

This study reports the fundamental understanding of mucus-modulatory strategies combining charged biopolymers with distinct molecular weights and surface charges. Here, key biophysical evidence supports that low-molecular-weight (Mw) polycation chitosan oligosaccharides (COSs) and high-Mw polyanion dextran sulfate (DS) exhibit distinct thermodynamic signatures upon interaction with mucin (MUC), the main protein of mucus. While the COS → MUC microcalorimetric titrations released ~14 kcal/mol and ~60 kcal/mol, the DS → MUC titrations released ~1200 and ~1450 kcal/mol at pH of 4.5 and 6.8, respectively. The MPT-2 titrations of COS → MUC and DS → MUC indicated a greater zeta potential variation at pH = 4.5 (relative variation = 815 % and 351 %, respectively) than at pH = 6.8 (relative variation = 282 % and 136 %, respectively). Further, the resultant binary (COS-MUC) and ternary (COS-DS-MUC) complexes showed opposite behavior (aggregation and charge inversion events) according to the pH environment. Most importantly, the results indicate that electrostatics could not be the driving force that governs COS-MUC interactions. To account for this finding, we proposed a two-level abstraction model. Macro features emerge collectively from individual interactions occurring at the molecular level. Therefore, to understand the outcomes of mucus modulatory strategy based on charged biopolymers it is necessary to integrate both visions into the same picture.

摘要

本研究报告了对将具有不同分子量和表面电荷的带电生物聚合物相结合的黏液调节策略的基本理解。在此,关键的生物物理证据支持,低分子量(Mw)的聚阳离子壳寡糖(COSs)和高分子量的聚阴离子硫酸葡聚糖(DS)在与黏液的主要蛋白质黏蛋白(MUC)相互作用时表现出不同的热力学特征。虽然COS→MUC的微量热滴定分别释放出约14千卡/摩尔和约60千卡/摩尔,但在pH值为4.5和6.8时,DS→MUC滴定分别释放出约1200和1450千卡/摩尔。COS→MUC和DS→MUC的MPT-2滴定表明,在pH = 4.5时(相对变化分别为815%和351%)比在pH = 6.8时(相对变化分别为282%和136%)具有更大的ζ电位变化。此外,根据pH环境,所得的二元(COS-MUC)和三元(COS-DS-MUC)复合物表现出相反的行为(聚集和电荷反转事件)。最重要的是,结果表明静电作用可能不是控制COS-MUC相互作用的驱动力。为了解释这一发现,我们提出了一个两级抽象模型。宏观特征是由分子水平上发生的个体相互作用共同产生的。因此,要理解基于带电生物聚合物的黏液调节策略的结果,有必要将这两种观点整合到同一图景中。

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