Related Experiment Video
Updated: Jan 20, 2026

Isolation and Identification of Waterborne Antibiotic-Resistant Bacteria and Molecular Characterization of their Antibiotic Resistance Genes
Published on: March 3, 2023
ZTW-41, a Potent Indolizinoquinoline-5,12-Dione Derivative Against Drug-Resistant Staphylococci and Enterococci
Chong-Fa Lai1,2, Wei-Bin Xiao2, Hua-Cheng Yan3
1Southern Medical University, Guangzhou, China.
Abstract:
ZTW-41, an indolizinoquinoline-5,12-dione derivative, was investigated for antibacterial activity against Gram-positive bacteria, especially methicillin-resistant Staphylococcus aureus (MRSA). In our study, the MIC90s (minimum inhibitory concentrations) of ZTW-41 against MRSA (MRSA, n = 200), methicillin-sensitive S. aureus (MSSA, n = 100), Enterococcus faecalis (E. faecalis, n = 32), and Enterococcus faecium (E. faecium n = 32) were 0.25, 0.25, 0.125, and 8 μg/mL, respectively, whereas the MBC90s (minimum bactericidal concentrations) were 2, 1, 1, and >32 μg/mL, respectively. ZTW-41 maintained its potency at different pH levels (range 5-9) and in starting inoculum size up to 107 CFU/mL. The presence of human serum (25-75%) increased ZTW-41 MICs by two- to eightfold. Time-kill curves showed that ZTW-41 had bactericidal activity against MRSA, MSSA, and E. faecalis strains within 8 hours, and rebound growth occurred after 8 hours except at higher multiples of the MIC (4 × and 8 × ). In the acute toxicity study, no mortality or signs of toxicity was noted in mice after 14 days of observation at doses <50 mg/kg. ZTW-41 exhibited good selectivity indices (SIs) (SI = IC50/MIC90) ranging from 1.12 to 71.76 against clinical isolates, demonstrating excellent therapeutic selectivity in MRSA, MSSA, and E. faecalis strains. Moreover, the in vivo efficacy (effective dose [ED]50 = 6.59 mg/kg) of ZTW-41 was found comparable with vancomycin. Collectively, our favorable results supported ZTW-41 as a promising investigational candidate for treating drug-resistant bacteria infection.
Insights
ZTW-41 demonstrates potent antibacterial activity against Gram-positive bacteria, including methicillin-resistant Staphylococcus aureus (MRSA). This compound shows excellent therapeutic selectivity and promising in vivo efficacy, supporting its potential for treating drug-resistant infections.
Area of Science:
- Microbiology
- Pharmacology
- Medicinal Chemistry
Background:
- Antibiotic resistance is a growing global health threat, necessitating the development of novel antibacterial agents.
- Gram-positive bacteria, particularly MRSA, remain significant pathogens causing difficult-to-treat infections.
Purpose of the Study:
- To evaluate the antibacterial activity and therapeutic potential of ZTW-41, an indolizinoquinoline-5,12-dione derivative.
- To assess the efficacy and safety profile of ZTW-41 against various Gram-positive bacteria, including drug-resistant strains.
Main Methods:
- Minimum Inhibitory Concentrations (MICs) and Minimum Bactericidal Concentrations (MBCs) were determined for clinical isolates.
- Time-kill kinetics, pH stability, serum potentiation, and acute toxicity studies in mice were performed.
- In vivo efficacy was evaluated and compared to vancomycin.
Main Results:
- ZTW-41 exhibited potent activity against MRSA (MIC90 = 0.25 μg/mL) and other Gram-positive bacteria.
- The compound demonstrated bactericidal activity within 8 hours and maintained potency across a pH range of 5-9.
- ZTW-41 showed good selectivity indices and comparable in vivo efficacy to vancomycin with no observed toxicity at tested doses.
Conclusions:
- ZTW-41 is a promising investigational candidate with broad-spectrum activity against Gram-positive bacteria, including MRSA.
- Its favorable safety profile and in vivo efficacy support further development for treating resistant bacterial infections.
Related Concept Videos
Resistivity
Resistance
The Roles of Bacteria and Fungi in Plant Nutrition
Resistance and Conductance
Various factors impact the resistance of a conductor. Spiraling in stranded conductors increases their...
Equivalent Resistance
The Tree of Life - Bacteria, Archaea, Eukaryotes

