Mitochondria-targeted CORM-401 nanoparticles inhibit A549 cells by triggering cuproptosis

  • BMC Biotechnol. 2026 Mar 31;26(1):64. doi: 10.1186/s12896-026-01149-7.
Li Shao  #  1 Zhicheng Song  #  1 Xiaoli Gong  1 Jianjun Ma  2 Shujing Ge  3
Affiliations
  • 1. Department of Integrated Chinese and Western Medicine, The Affiliated Yantai Yuhuangding Hospital of Qingdao University, Yantai, Shandong, China.
  • 2. Department of Oncology, 970th Hospital of the Joint Logistics Support Force of the Chinese People's Liberation Army, Yantai, 264002, China.
  • 3. Department of Disease Prevention and Control, 970th Hospital of the Joint Logistics Support Force of the Chinese People's Liberation Army, No.7, Zhichu South Road, Zhifu District, Yantai, Shandong, 264002, China. [email protected].
  • # Contributed equally.
Abstract

OBJECTIVE: In this study, mitochondrial-targeted nanoparticles containing CORM-401 were designed by using TPP and HA (named as CORM-TPP@HA). The effects of these nanoparticles on Cuproptosis in A549 cells were observed to confirm their function. METHODS: First, CORM-TPP micelles were formed by using CORM-401 and TPP-SH. Then, the micelles were encapsulated with HA to form nanoparticles (CORM-TPP@HA). The morphology, size distribution, stability, and release of CO from nanoparticles were analyzed to confirm their characterization. Meanwhile, the cellular uptake of nanoparticles was observed using a confocal microscope. The effects of the nanoparticles on cell viability, mitochondrial ROS, intracellular copper, and cuproptosis-related proteins in A549 cells were measured. Additionally, the impacts of nanoparticles on tumor growth and cuproptosis-related factors in tumor tissue were measured in vivo. RESULTS: The designed nanoparticles maintained stable formation, effectively preventing premature CO release from CORM-401. Furthermore, the nanoparticles were able to be taken up by A549 cells. Moreover, treatment with the designed nanoparticles induced Cuproptosis by increasing mitochondrial ROS, intracellular copper, and cuproptosis-related proteins in A549 cells. In line with the in vitro results, treatment with nanoparticles suppressed tumor growth and elevated the cuproptosis-related proteins in tumor tissues. CONCLUSION: The synthesized CORM-TPP@HA nanoparticles suppressed A549 cells via regulating mitochondrial Cuproptosis, providing a signaling mechanism of CO in NSCLC treatment.

Keywords
CORM-401; Carbon monoxide; Cuproptosis; NSCLC; Nanoparticles.
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