Redox Buffering Capacity of Nanomaterials as an Index of ROS-Based Therapeutics and Toxicity: A Preclinical Animal Study

被引:14
作者
Adhikari, Aniruddha [1 ]
Mondal, Susmita [1 ]
Das, Monojit [2 ,3 ]
Ghosh, Ria [4 ]
Biswas, Pritam [5 ]
Darbar, Soumendra [6 ]
Singh, Soumendra [4 ]
Das, Anjan Kumar [7 ]
Bhattacharya, Siddhartha Sankar [2 ]
Pal, Debasish [2 ]
Mallick, Asim Kumar [8 ]
Pal, Samir Kumar [1 ,2 ,4 ]
机构
[1] SN Bose Natl Ctr Basic Sci, Dept Chem Biol & Macromol Sci, Kolkata 700106, India
[2] Univ Calcutta, Uluberia Coll, Dept Zool, Howrah 711315, India
[3] Vidyasagar Univ, Dept Zool, Midnapore 721102, India
[4] SN Bose Natl Ctr Basic Sci, Tech Res Ctr, Kolkata 700106, India
[5] St Xaviers Coll, Dept Microbiol, Kolkata 700016, India
[6] Deys Med Stores Mfg Pvt Ltd, Res & Dev Div, Kolkata 700019, India
[7] Coochbehar Govt Med Coll & Hosp, Dept Pathol, Silver Jubilee Rd, Cooch Behar 736101, India
[8] Nil Ratan Sirkar Med Coll & Hosp, Dept Pediat Med, Kolkata 700014, India
关键词
redox buffering; redox therapeutics; nanotherapy; nanotoxicity; redox homeostasis; FUNCTIONALIZED MN3O4 NANOPARTICLES; OXIDATIVE STRESS; LEAD;
D O I
10.1021/acsbiomaterials.1c00402
中图分类号
TB3 [工程材料学]; R318.08 [生物材料学];
学科分类号
0805 ; 080501 ; 080502 ;
摘要
Precise control of intracellular redox status, i.e., maintenance of the physiological level of reactive oxygen species (ROS) for mediating normal cellular functions (oxidative eustress) while evading the excess ROS stress (distress), is central to the concept of redox medicine. In this regard, engineered nanoparticles with unique ROS generation, transition, and depletion functions have the potential to be the choice of redox therapeutics. However, it is always challenging to estimate whether ROS-induced intracellular events are beneficial or deleterious to the cell. Here, we propose the concept of redox buffering capacity as a therapeutic index of engineered nanomaterials. As a steady redox state is maintained for normal functioning cells, we hypothesize that the ability of a nanomaterial to preserve this homeostatic condition will dictate its therapeutic efficacy. Additionally, the redox buffering capacity is expected to provide information about the nanoparticle toxicity. Here, using citrate-functionalized trimanganese tetroxide nanoparticles (C-Mn3O4 NPs) as a model nanosystem, we explored its redox buffering capacity in erythrocytes. Furthermore, we went on to study the chronic toxic effect (if any) of this nanomaterial in the animal model to co-relate with the experimentally estimated redox buffering capacity. This study could function as a framework for assessing the capability of a nanomaterial as redox medicine (whether maintains eustress or damages by creating distress), thus orienting its application and safety for clinical use.
引用
收藏
页码:2475 / 2484
页数:10
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