Purpose: The aim of this study was to correlate the relationship between the pharmacokinetic behaviors and the toxicity of a new investigational anticancer agent CZ48, a C20-propionate ester of camptothecin (CPT) in mice.
Methods: In this study, the safety and pharmacokinetics of oral doses of CZ48 were compared with the oral doses of CPT. Mice were administered orally one of three single doses of CZ48 (50, 200 and 1000 mg/kg) and two single doses of CPT (1.5 mg/kg and 6.0 mg/kg). Blood samples were collected from all mice at the defined time points after drug administration for assessment of plasma CZ48 and CPT concentrations.
Results: The study showed that CZ48 was very stable in mouse blood and the majority of this agent stayed intact as the lactone form when in circulation, with only a small fraction of the CZ48 molecules metabolized into CPT. The concentration of the metabolite CPT measured in the mouse blood was only 3% of the concentration found for the maximum tolerated dose (6.0 mg/kg) of plain CPT. The stability difference between CZ48 and CPT in blood was structurally explained by the geometry of these two molecules.
Conclusion: The lack of toxicity of CZ48 at effective doses in mice is attributed to its enhanced stability in their blood.
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http://dx.doi.org/10.18433/j3b604 | DOI Listing |
Biology (Basel)
August 2024
State Key Laboratory of Chemical Oncogenomics, Peking University Shenzhen Graduate School, Shenzhen 518055, China.
Glioblastoma, a formidable brain tumor characterized by dysregulated NAD metabolism, poses a significant therapeutic challenge. The NAMPT inhibitor FK866, which induces NAD depletion, has shown promise in controlling tumor proliferation and modifying the tumor microenvironment. However, the clinical efficacy of FK866 as a single drug therapy for glioma is limited.
View Article and Find Full Text PDFNat Commun
December 2022
State Key Laboratory of Chemical Oncogenomics, Key Laboratory of Chemical Genomics, Peking University Shenzhen Graduate School, Shenzhen, 518055, China.
Sterile alpha (SAM) and Toll/interleukin-1 receptor (TIR) motif containing 1 (SARM1) is an autoinhibitory NAD-consuming enzyme that is activated by the accumulation of nicotinamide mononucleotide (NMN) during axonal injury. Its activation mechanism is not fully understood. Here, we generate a nanobody, Nb-C6, that specifically recognizes NMN-activated SARM1.
View Article and Find Full Text PDFFEBS J
December 2021
Department of Biology, College of Arts and Sciences, Saint Louis University, MO, USA.
SARM1, an executioner in axon degeneration, is an autoinhibitory NAD-consuming enzyme, composed of multiple domains. NMN and its analogs, CZ-48 and VMN, are the only known activators, which can release the inhibitory ARM domain from the enzymatic TIR domain. Here, we document that acid can also activate SARM1, even more efficiently than NMN, possibly via the protonation of the negative residues.
View Article and Find Full Text PDFInt J Nanomedicine
August 2019
International Ocular Surface Research Center and Institute of Ophthalmology, Jinan University Medical School, Guangzhou, China.
We have synthesized a novel lactone-stabilized camptothecin (CPT) analog named CZ48 and demonstrated its potent anticancer effects via bioconversion to the active CPT in earlier studies. Herein, we aimed to develop, optimize and characterize CZ48 nanosuspensions, for a sustained delivery of this drug in humans with an intravenous (i.v.
View Article and Find Full Text PDFiScience
May 2019
State Key Laboratory of Chemical Oncogenomics, Key Laboratory of Chemical Genomics, School of Chemical Biology and Biotechnology, Peking University Shenzhen Graduate School, Shenzhen 518055, China. Electronic address:
SARM1, an NAD-utilizing enzyme, regulates axonal degeneration. We show that CZ-48, a cell-permeant mimetic of NMN, activated SARM1 in vitro and in cellulo to cyclize NAD and produce a Ca messenger, cADPR, with similar efficiency as NMN. Knockout of NMN-adenylyltransferase elevated cellular NMN and activated SARM1 to produce cADPR, confirming NMN was its endogenous activator.
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