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Updated: Jun 18, 2026

Quantifying Antibody-Dependent Cellular Cytotoxicity in a Tumor Spheroid Model: Application for Drug Discovery
Published on: April 26, 2024
Antitumor effect of N-succinyl-chitosan nanoparticles on K562 cells
Huiying Luo1, Juan Li, Xuan Chen
1Department of Pharmacology, Gansu College of Traditional Chinese Medicine, No. 35, Dingxi East Road, Lanzhou 730000, PR China. louria@vip.sina.com
Abstract:
Polymer nanoparticles have become attractive for its prominent property recent years. In this paper, antitumor effects of N-succinyl-chitosan nanoparticles (NSCNP), a nanoparticles derivated from chitosan, were evaluated in K562 cells, including cell viability comparison, cell morphology analysis, DNA fragmentation detection, cell surface potential and mitochondrial membrane potential (MMP) measurement, intracellular ROS and Ca(2+) concentration evaluation. Our results revealed NSCNP could inhibit the proliferation of K562 with an IC(50) of 14.26 μg/ml (24h); decrease the zeta potential; disrupt the mitochondrial membrane potential; increase ROS generation and Ca(2+) concentration. Cytomorphology study and DNA fragment analysis reveal characteristics of apoptosis and necrosis, indicating that the antitumor effect of NSCNP achieved by necrosis and apoptosis induction in K562 cells.
