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Updated: Jun 27, 2026

Pre-clinical Orthotopic Murine Model of Human Prostate Cancer
Published on: August 29, 2016
Penetration of orally administered prulifloxacin into human prostate tissue
Claudio Giberti1, Fabrizio Gallo, Maria T Rosignoli
1Department of Surgery, Division of Urology, San Paolo Hospital, Savona, Italy.
Background And Objective:
Prulifloxacin, a fluoroquinolone antibacterial agent, may be a useful addition to the antimicrobial armamentarium against prostatitis once the ability of its active metabolite, ulifloxacin, to penetrate prostatic tissue has been determined. This study set out to evaluate ulifloxacin penetration into the prostate following administration of the oral fluoroquinolone prodrug prulifloxacin in patients undergoing transurethral resection of the prostate (TURP).
Methods:
This was a phase I, randomized, open-label, single-centre study involving 20 male Caucasian patients (mean age 63.1 years) requiring TURP for treatment of benign prostatic hyperplasia. Sixteen patients were randomized to receive prulifloxacin; the other four patients were not treated (controls) in order to validate the bioanalytical method. Patients in the active treatment groups were randomized to receive one or three once-daily doses of prulifloxacin 600 mg, with the last administration 3 hours prior to surgery. Central/transitional and peripheral zone prostatic tissue samples were obtained from the 6 o'clock and 9 o'clock positions in the prostate, and blood samples were collected concurrently. Ulifloxacin concentrations were determined in the tissue samples and plasma using liquid chromatography-tandem mass spectrometry. Safety was also assessed.
Results:
Prostatic tissue concentrations of ulifloxacin always exceeded those in plasma. Mean ulifloxacin concentrations measured in samples collected from the 6 o'clock central/transitional zone of the prostate were higher in patients who received prulifloxacin for 3 days than in those who received a single dose. Mean prostatic tissue/plasma ulifloxacin concentration ratios after single and repeated prulifloxacin administration ranged from 3.8 to 7.1 and from 3.9 to 9.5, respectively. The highest mean ratio was found in the 6 o'clock central/transitional zone after repeated dosing. Prostatic levels of ulifloxacin were above the minimum inhibitory concentrations for the most common causative pathogens of bacterial prostatitis. No treatment-related toxicities were reported.
Conclusion:
These findings confirm the ability of prulifloxacin to penetrate prostatic tissues, indicating high exposure of the target tissue to ulifloxacin and, therefore, a potential therapeutic role for prulifloxacin in the treatment of bacterial prostatic infections.
Insights
Prulifloxacin effectively penetrates prostate tissue, with its active metabolite ulifloxacin reaching concentrations above minimum inhibitory levels for common prostatitis pathogens. This suggests prulifloxacin is a promising treatment for bacterial prostatitis.
Area of Science:
- Pharmacology
- Urology
- Infectious Diseases
Background:
- Prulifloxacin is a fluoroquinolone prodrug whose active metabolite is ulifloxacin.
- Bacterial prostatitis treatment efficacy depends on antimicrobial penetration into prostatic tissue.
Purpose of the Study:
- To evaluate the penetration of ulifloxacin into prostatic tissue after oral administration of prulifloxacin.
- To determine ulifloxacin concentrations in central/transitional and peripheral zones of the prostate.
Main Methods:
- Phase I, randomized, open-label study in 20 male patients undergoing transurethral resection of the prostate (TURP).
- Patients received one or three daily doses of prulifloxacin 600 mg, with the last dose 3 hours before surgery.
- Ulifloxacin concentrations were measured in prostatic tissue and plasma samples using liquid chromatography-tandem mass spectrometry.
Main Results:
- Ulifloxacin concentrations in prostatic tissue consistently exceeded plasma concentrations.
- Mean prostatic tissue to plasma ulifloxacin concentration ratios ranged from 3.8 to 9.5.
- Prostatic ulifloxacin levels were above minimum inhibitory concentrations for common bacterial prostatitis pathogens; no treatment-related toxicities were reported.
Conclusions:
- Prulifloxacin demonstrates significant penetration into prostatic tissue.
- High exposure of prostatic tissue to ulifloxacin supports its potential therapeutic role in bacterial prostatitis.
- Further investigation into prulifloxacin for prostatitis treatment is warranted.
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