Antimalarial activity and sensitization of chrysosplenetin against artemisinin-resistant genotype Plasmodium berghei K173 potentially via dual-mechanism of maintaining host P-glycoprotein homeostasis mediated by NF-κB p52 or PXR/CAR signaling pathways and regulating heme/haemozoin metabolism

  • Phytother Res. 2023 Jul;37(7):2939-2956. doi: 10.1002/ptr.7789.
Lirong Wang  1 Hongyan Ji  2 Shanhong Ni  3 Jinjing Xu  1 Yuanyuan Zhang  4 Xuesong Zhao  1 Xiuli Wu  4 Jingxuan Tian  1 Jing Chen  1  5  6
Affiliations
  • 1. Institute of Translational Medicine, Medical College, Yangzhou University, Yangzhou, China.
  • 2. Institute of Clinical Pharmacology, General Hospital of Ningxia Medical University, Yinchuan, China.
  • 3. Department of Public Health and Preventive Medicine, Kangda College of Nanjing Medical University, Lianyungang, China.
  • 4. College of Pharmacy, Ningxia Medical University, Yinchuan, China.
  • 5. Jiangsu Key Laboratory of Zoonosis, Yangzhou University, Yangzhou, China.
  • 6. Jiangsu Co-innovation Center for Prevention and Control of Important Animal Infectious Diseases and Zonoses, Yangzhou, China.
Abstract

This study investigated antimalarial efficacy and sensitization of chrysosplenetin against artemisinin-resistant Plasmodium berghei K173 and potential molecular mechanism. Our data indicated a risk of artemisinin resistance because a higher parasitaemia% and lower inhibition% under artemisinin treatment against resistant parasites than those in the sensitive groups were observed. Two non-antimalarial components, verapamil and chrysosplentin, being P-gp inhibitors, possessed a strong efficacy against resistant parasites but it was not the case for BCRP Inhibitor novobiocin. Artemisinin-chrysosplenetin combination improved artemisinin susceptibility of resistant P. berghei. Artemisinin activated intestinal P-gp and Abcb1/Abcg2 expressions and suppressed BCRP whereas chrysosplenetin reversed them. Resistant parasite Infection led to a decreased haemozoin in organs or an increased heme in peripheral bloods compared with the sensitives; however, that in Abcb1-deficient knockout (KO)-resistant mice reversely got increased or decreased versus wild type (WT)-resistant Animals. Chrysosplenetin as well as rifampin (nuclear receptor agonist) increased the transcription levels of PXR/CAR while showed a versatile regulation on hepatic and enternal PXR/CAR in WT- or KO-sensitive or -resistant parasites. Oppositely, hepatic and enteric NF-κB p52 mRNA decreased conformably in WT but increased in KO-resistant mice. NF-κB pathway potentially involved in the mechanism of chrysosplenetin on inhibiting P-gp expressions while PXR/CAR play a more complicated role in this mechanism.

Keywords
P-glycoprotein; PXR/CAR and NF-κB p52 signal pathways; Plasmodium berghei K173; artemisinin resistance; chrysosplenetin; heme/haemozoin metabolism.
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