Zhu Jianjun, Zhang Jun, Gong Feng, Yu Qiong, Guo Xuan, Wang Yu
State Key Laboratory of NBC Protection for Civilian, Research Institute of Chemical Defense, Academy of Military Science, Beijing, China.
Department of Stem Cell and Regenerative Medicine Laboratory, Institute of Health Service and Transfusion Medicine, Beijing, China.
PLoS One. 2025 Mar 21;20(3):e0319810. doi: 10.1371/journal.pone.0319810. eCollection 2025.
Dha A, a biocatalyst with pronounced efficacy in the degradation of mustard gas, is constrained by its inherent instability, which impedes its broader application. In this study, we encapsulated Dha A within a poloxamer-based thermosensitive hydrogel, a widely utilized protein carrier, to assess its physicochemical characteristics, catalytic performance, and stability enhancement. The Dha A-loaded thermosensitive gel (Dha A@TSG) exhibited interactions between Dha A and poloxamer molecules via hydrogen bonding, with an optimal gelation temperature of 25°C. This encapsulation strategy significantly enhanced the solubility and catalytic efficiency of the mustard gas mimic, bis(2-chloroethyl) ether, surpassing the performance of the free Dha A solution. At 32°C, the poloxamer molecules within Dha A@TSG formed a tightly packed stereostucture, which substantially improved the storage and thermal stability of Dha A. Collectively, our findings offer valuable technical insights into the stabilization and catalytic efficiency enhancement of Dha A through the employment of poloxamer thermosensitive gels.
Dha A是一种在降解芥子气方面具有显著功效的生物催化剂,但其固有的不稳定性限制了它的广泛应用。在本研究中,我们将Dha A封装在基于泊洛沙姆的热敏水凝胶中,这是一种广泛使用的蛋白质载体,以评估其物理化学特性、催化性能和稳定性增强情况。负载Dha A的热敏凝胶(Dha A@TSG)通过氢键展示了Dha A与泊洛沙姆分子之间的相互作用,最佳凝胶化温度为25°C。这种封装策略显著提高了芥子气模拟物双(2-氯乙基)醚的溶解度和催化效率,超过了游离Dha A溶液的性能。在32°C时,Dha A@TSG中的泊洛沙姆分子形成了紧密堆积的立体结构,这大大提高了Dha A的储存和热稳定性。总体而言,我们的研究结果为通过使用泊洛沙姆热敏凝胶来稳定Dha A并提高其催化效率提供了有价值的技术见解。