跳转至内容
Merck
CN
  • Targeted elimination of intracellular reactive oxygen species using nanoparticle-like chitosan- superoxide dismutase conjugate for treatment of monoiodoacetate-induced osteoarthritis.

Targeted elimination of intracellular reactive oxygen species using nanoparticle-like chitosan- superoxide dismutase conjugate for treatment of monoiodoacetate-induced osteoarthritis.

International journal of pharmaceutics (2020-10-09)
Xin Gao, Yaqing Ma, Guijiao Zhang, Fengyan Tang, Jingjing Zhang, Jichao Cao, Chunhui Liu
摘要

In our previous work, cationic functionalized chitosan was chemically conjugated with superoxide dismutase (SOD) to yield a unique nanoparticle-like conjugate O-HTCC-SOD that has demonstrated superior potential in treating reactive oxygen species (ROS)-related disorders to SOD. Considering contribution of ROS to pathogenesis of osteoarthritis, O-HTCC-SOD was firstly measured for effect on rat chondrocytes exposure to monoiodoacetate (MIA). O-HTCC-SOD was nontoxic to chondrocytes and had more long-acting and intracellular protection effects on chondrocytes against MIA-induced oxidative damage due to its superior elimination of intracellular ROS to SOD. Pharmacokinetic analysis demonstrated that O-HTCC-conjugated SOD significantly prolonged half-life and residence in rat joint cavity, and improved bioavailability compared with unmodified SOD. Intra-articular injection of O-HTCC-SOD significantly attenuated mechanical allodynia in MIA-induced osteoarthritis rats, dramatically suppressed gross morphological and histological lesions of articular cartilage, and greatly enhanced in vivo antioxidant capacity and anti-inflammatory effect. But native SOD had no obvious therapeutic effects. Consequently, the nanoparticle-like conjugate O-HTCC-SOD of the excellent efficacy resulted from its targeted intracellular ROS clearance capability and improved pharmacokinetic profiles, opening up a novel avenue for disease-modifying osteoarthritis drugs.

材料
产品编号
品牌
产品描述

Sigma-Aldrich
氯化缩水甘油基三甲基铵, technical, ≥90% (calc. based on dry substance, AT)