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Updated: Feb 2, 2026

Improved Enzyme Protection Assay to Study Staphylococcus aureus Internalization and Intracellular Efficacy of Antimicrobial Compounds
Published on: September 8, 2021
Iclaprim activity against wild-type and corresponding thymidine kinase-deficient Staphylococcus aureus in a mouse
David B Huang1,2, Jee Hyun Park3, Timothy M Murphy4
1Motif BioSciences, 125th Park Avenue, 25th Floor, New York, NY, 10017, USA. david.huang@motifbio.com.
Abstract:
The in vitro and in vivo antimicrobial activities of dihydrofolate reductase (DHFR) inhibitors are inhibited in the presence of free thymidine in the growth milieu and in rodent efficacy models. However, for thymidine kinase (TK) deficient mutant bacteria, the presence of free thymidine does not impact the activity of DHFR inhibitors, and these mutants were used to assess the in vivo efficacy of the DHFR inhibitor, iclaprim. The efficacies of iclaprim, trimethoprim, and vancomycin were evaluated in a systemic mouse infection model. Female CD-1 mice were infected intraperitoneally (IP) with wild-type Staphylococcus aureus ATCC 25923 (MSSA) or AW 6 (MRSA) or their corresponding isogenic TK-deficient mutant S. aureus strains AH 1246 and AH 1252. Iclaprim showed potent antibacterial activity against both the TK-deficient mutant S. aureus strains, with PD50 values of 1.8 and < 0.5 mg/kg, respectively, for strains AH 1246 and AH 1252. In contrast, poor antibacterial activity was observed against corresponding wild-type (TK competent) S. aureus strains, with PD50 values of 10.8 and 2.2 mg/kg, respectively, for strains ATCC 25923 and AW 6. This study confirms that thymidine plays an important antagonistic role when determining the efficacy of DHFR inhibitors in vivo. This is the first study to show that iclaprim is active against TK-deficient S. aureus strains in a systemic mouse infection model, and that TK-deficient mutants may be used to evaluate iclaprim's activity in rodent models in vivo.
Insights
Thymidine hinders dihydrofolate reductase (DHFR) inhibitors like iclaprim in vivo. However, thymidine kinase (TK)-deficient bacteria are susceptible, enabling iclaprim efficacy evaluation in mouse models.
Area of Science:
- Microbiology
- Pharmacology
- Infectious Diseases
Background:
- Dihydrofolate reductase (DHFR) inhibitors are crucial antimicrobials.
- Free thymidine antagonizes DHFR inhibitor activity in vitro and in vivo.
- Thymidine kinase (TK)-deficient bacteria lack this susceptibility, offering a model for drug evaluation.
Purpose of the Study:
- To assess the in vivo efficacy of the DHFR inhibitor iclaprim against Staphylococcus aureus.
- To evaluate the impact of thymidine kinase (TK) deficiency on iclaprim's antibacterial activity.
- To validate the use of TK-deficient mutants for in vivo assessment of DHFR inhibitors.
Main Methods:
- A systemic mouse infection model was employed.
- Female CD-1 mice were infected with wild-type and TK-deficient Staphylococcus aureus strains (MSSA and MRSA).
- The antibacterial efficacies of iclaprim, trimethoprim, and vancomycin were determined using PD50 values.
Main Results:
- Iclaprim demonstrated potent activity against TK-deficient S. aureus strains (PD50 < 0.5-1.8 mg/kg).
- Activity was significantly reduced against wild-type (TK-competent) S. aureus strains (PD50 2.2-10.8 mg/kg).
- Thymidine's antagonistic role in DHFR inhibitor efficacy was confirmed in vivo.
Conclusions:
- TK-deficient S. aureus strains are susceptible to iclaprim in vivo.
- TK-deficient mutants are valuable tools for evaluating DHFR inhibitor efficacy in rodent models.
- This study highlights iclaprim's potential against specific bacterial populations and validates a novel evaluation method.
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