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基于铜的金属有机框架作为一种潜在的治疗性气体载体:优化、合成、表征及计算研究

Copper-Based Metal-Organic Framework as a Potential Therapeutic Gas Carrier: Optimization, Synthesis, Characterization, and Computational Studies.

作者信息

Singh Chitrangda, Jha Chandan Bhogendra, Anand Avnika Singh, Kohli Ekta, Manav Neha, Varshney Raunak, Upadhyayula Sreedevi, Mathur Rashi

机构信息

Applied Chemistry and Nanomaterial Science Department, Institute of Nuclear Medicine and Allied Sciences, Defence Research and Development Organization, Timarpur, New Delhi 110054, India.

Department of Chemical Engineering, Indian Institute of Technology Delhi, Hauz Khas, New Delhi 110016, India.

出版信息

ACS Appl Bio Mater. 2025 Mar 17;8(3):2440-2458. doi: 10.1021/acsabm.4c01907. Epub 2025 Feb 19.

Abstract

The broad spectrum of health conditions and the global pandemic, leading to inadequate medical oxygen supply and management, has driven interest in developing porous nanocarriers for effective oxygenation strategies. We aim to develop an injectable oxygen carrier with regard to biocompatibility, safety, prehospital availability, and universal applicability. In this study, we have tried to identify important functional sites on metal-organic frameworks (MOFs) for gas binding with the help of Grand canonical Monte Carlo simulation. We have synthesized a copper-based MOF (Cu-BTC) with a 1,3,5-benzenetricarboxylic acid linker through a solvothermal approach as a competent porous adsorbent for oxygen storage and delivery. To optimize process variables, we performed statistical analysis using response surface methodology. A quadratic model was developed to study the interaction between independent variables and the response (i.e., maximizing surface area), whose adequacy is validated by the correlation between experimental and predicted values using the ANOVA method. The synthesized Cu-BTC, before and after oxygen loading, was characterized using X-ray diffraction, surface area, along with pore distribution measurement, particle size analysis, scanning electron microscopy, transmission electron microscopy, and gas adsorption studies. The Cu-BTC MOF exhibited an oxygen uptake of 4.6 mmol g, the highest among all the oxygen carriers reported in the literature under the same operating conditions. Overall, our findings suggest that this synthesized Cu-BTC with high surface area (1389 m g), high porosity, optimum oxygen uptake, and good biocompatibility would show potential toward efficient storage and delivery (direct to the targeted site) of medical oxygen to raise the blood oxygen saturation level.

摘要

广泛的健康状况和全球大流行导致医用氧气供应和管理不足,这激发了人们对开发用于有效氧合策略的多孔纳米载体的兴趣。我们旨在开发一种具有生物相容性、安全性、院前可用性和普遍适用性的可注射氧载体。在本研究中,我们试图借助巨正则蒙特卡罗模拟来确定金属有机框架(MOF)上与气体结合的重要功能位点。我们通过溶剂热法合成了一种以1,3,5-苯三甲酸为连接体的铜基金属有机框架(Cu-BTC),作为一种用于氧气存储和输送的高效多孔吸附剂。为了优化工艺变量,我们使用响应面方法进行了统计分析。建立了一个二次模型来研究自变量与响应(即最大化表面积)之间的相互作用,其充分性通过方差分析方法使用实验值和预测值之间的相关性进行验证。使用X射线衍射、表面积以及孔径分布测量、粒度分析、扫描电子显微镜、透射电子显微镜和气体吸附研究对加载氧气前后的合成Cu-BTC进行了表征。在相同操作条件下,Cu-BTC金属有机框架的氧气吸收量为4.6 mmol/g,是文献报道的所有氧载体中最高的。总体而言,我们的研究结果表明,这种具有高表面积(1389 m²/g)、高孔隙率、最佳氧气吸收量和良好生物相容性的合成Cu-BTC在有效存储和输送(直接到目标部位)医用氧气以提高血氧饱和度水平方面具有潜力。

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