Objectives: Physiological changes occurring in patients with diabetes may affect the pharmacokinetics and penetration of antimicrobial agents into peripheral tissue. We examined the pharmacokinetics and the penetration of moxifloxacin into perinecrotic tissue of diabetic foot lesions in patients with diabetic foot infections (DFI).
Patients And Methods: Adult patients suffering from type 2 diabetes mellitus and hospitalized for DFI (Texas classification of at least B2) were treated with 400 mg moxifloxacin intravenously (IV) or orally (PO) once daily. The pharmacokinetics of moxifloxacin and its concentration 3 h after administration in samples of perinecrotic tissue resected from infected diabetic foot wounds were determined at steady state (days 4-8).
Results: A total of 53 patients with diabetes mellitus type 2 (mean age 69.4 ± 10.8 years) were included in the study, of whom 28 received PO and 25 IV moxifloxacin therapy for a median of 8 days. In the PO and IV subgroups, the mean maximum observed plasma concentration (C (max)) in plasma was 2.69 and 4.77 mg/l at a median of 2 [time to reach C (max) (T (max)) range 1.0-8.0 h] and 1 h after administration, respectively. A mean area under the plasma concentration-time curve from time 0 until the last quantifiable plasma concentration (AUC(0-24 h)) of 29.36 mg h/l (PO) and 27.09 mg h/l (IV) was achieved. Mean moxifloxacin concentrations in perinecrotic tissue of infected diabetic foot wounds following PO or IV administration were 1.79 ± 0.82 and 2.20 ± 1.54 μg/g, thus exceeding the MIC(90) (minimum inhibitory concentration required to inhibit growth of 90% of organisms) for Staphylococcus aureus (0.25 mg/l) by seven- and eightfold and the MIC(90) for Escherichia coli (0.06 mg/l) by 29-fold and 36-fold, respectively. The mean tissue-to-plasma ratios of moxifloxacin concentration 3 h after administration were 1.01 ± 0.57 (PO) and 1.09 ± 0.69 (IV). Significant differences between the routes of administration were observed for T (max) and C (max) (P < 0.01), but not for other clinically relevant parameters (AUC(0-24); moxifloxacin DFI tissue concentration).
Conclusions: The plasma concentration-time curve of moxifloxacin in diabetic patients is similar to that of healthy volunteers. We also observed a good penetration of moxifloxacin into inflamed DFI tissue which taken together with the possibility of sequential IV/PO therapy suggest that moxifloxacin 400 mg once daily is a therapeutic option in the treatment of DFI caused by susceptible organisms.
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http://dx.doi.org/10.1007/s00228-010-0903-5 | DOI Listing |
Wound Repair Regen
December 2024
Department of Dermatology, University of California Davis School of Medicine, Sacramento, California, USA.
Bacterial biofilms represent a formidable challenge in the treatment of chronic wounds, largely because of their resistance to conventional antibiotics. The emergence of multidrug-resistant (MDR) bacterial strains exacerbates this issue, necessitating a shift towards exploring alternative therapeutic approaches. In response to this urgent need, there has been a surge in research efforts aimed at identifying effective non-antibiotic treatments.
View Article and Find Full Text PDFWest Afr J Med
August 2024
Iwosan-Lagoon Hospital, 17 Bourdilon Road. Ikoyi. Lagos State. Nigeria.
Background: This review article describes the chronic complications of diabetes mellitus (DM). The chronic complications of DM are diverse, often progressive and difficult to manage or reverse.
Objective: The aim of this review is to highlight the current concepts in the pathogenic mechanisms of the chronic complications of diabetes mellitus, with a view to educate doctors and specialists on the management of these problems.
Ann Vasc Surg
December 2024
Department of Vascular Surgery, Haga Teaching Hospital, the Hague, the Netherlands.
Objectives: Diabetic foot ulcers (DFU) are one of the most serious chronic diabetes related complications. Since medial arterial calcification (MAC) can be present in patients with a DFU, toe pressure (TP) measurements are advised to grade potential ischemia. However, the value of TP to predict clinical outcomes in this group of patients is poorly understood.
View Article and Find Full Text PDFBackground: Type 2 diabetes mellitus (T2DM) significantly affects the quality of life (QoL), necessitating comprehensive management strategies. In resource-limited settings such as Nigeria, managing diabetes can be challenging due to limited access to medications, which impacts patients' QoL. Diabetes Self-Management Education (DSME) empowers patients through knowledge and skills, potentially improving their QoL.
View Article and Find Full Text PDFJ Pain Res
December 2024
Department of Hand and Podiatric, Microsurgery, Huizhou Central People's Hospital, Huizhou, People's Republic of China.
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