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Published on: August 21, 2021
Targeting matrix metalloproteinases with intravenous doxycycline in severe sepsis--A randomised placebo-controlled
Eija Nukarinen1, Taina Tervahartiala2, Miia Valkonen1
1Intensive Care Medicine, Department of Perioperative, Intensive Care and Pain Medicine University of Helsinki and Helsinki University Hospital, PB 340, 00029 HUS, Finland.
Abstract:
An overwhelming inflammatory process is the hallmark of severe sepsis and septic shock. Matrix metalloproteinases (MMPs)-8 and -9 are released from neutrophils and activated in sepsis to participate in inflammation in several ways. High levels of MMP-8 may associate with increased ICU mortality. The activity of MMP-8 and -9 is regulated by a natural inhibitor, tissue inhibitor of metalloproteinases-1 (TIMP-1). Moreover, MMPs are chemically inhibited by tetracycline-group antibiotics, such as doxycycline. We therefore aimed to study plasma concentration and MMP inhibition after intravenous doxycycline in critically ill patients with severe sepsis and septic shock in a prospective, randomised, placebo-controlled double-blinded pilot trial. Twenty-four patients with severe sepsis or septic shock were randomised in 3 groups. Group 1 received 200, 100 and 100mg, group 2 100, 50 and 50mg of intravenous doxycycline and group 3 placebo on three consecutive days. We measured doxycycline concentrations from baseline up to day 5. MMPs and TIMP-1 concentrations were measured from baseline up to day 10 of study and we compared their changes over time from baseline to 72 h and from baseline to 120 h. Data from 23 patients were analysed. At 72 h all patients in group 1 showed doxycycline concentrations >1 mg/l, whereas none in group 2 did. No serious adverse effects of the drug were recorded. We observed no differences over time up to 72 or up to 120 h in the concentrations or activities of MMP-8, -9 or TIMP-1 in any of the groups. We found intravenous doxycycline 100, 50 and 50mg to be adequate to achieve a sub-antimicrobial concentration in patients with severe sepsis or septic shock but having no impact on MMP-8, -9 or TIMP-1 concentrations or activities.
Insights
Intravenous doxycycline did not affect matrix metalloproteinases (MMPs) or TIMP-1 levels in severe sepsis patients. Sub-antimicrobial doses achieved therapeutic doxycycline concentrations but did not inhibit MMP-8 or MMP-9 activity.
Area of Science:
- Critical Care Medicine
- Pharmacology
- Biochemistry
Background:
- Severe sepsis and septic shock involve significant inflammatory processes.
- Matrix metalloproteinases (MMPs)-8 and -9 play a role in sepsis-induced inflammation.
- Tissue inhibitor of metalloproteinases-1 (TIMP-1) regulates MMP activity, and doxycycline can inhibit MMPs.
Purpose of the Study:
- To investigate plasma concentrations and MMP inhibition following intravenous doxycycline administration in critically ill patients with severe sepsis or septic shock.
- To evaluate the impact of different doxycycline dosing regimens on MMP-8, MMP-9, and TIMP-1 levels.
Main Methods:
- A prospective, randomized, placebo-controlled, double-blinded pilot trial involving 24 patients with severe sepsis or septic shock.
- Patients were randomized into three groups receiving different intravenous doxycycline doses or placebo over three consecutive days.
- Plasma doxycycline concentrations, MMP-8, MMP-9, and TIMP-1 levels were measured at various time points.
Main Results:
- Doxycycline concentrations exceeded 1 mg/l at 72 hours in the higher-dose group (Group 1), but not in the lower-dose group (Group 2).
- No serious adverse effects were observed.
- No significant differences in MMP-8, MMP-9, or TIMP-1 concentrations or activities were detected over time in any group.
Conclusions:
- Sub-antimicrobial intravenous doxycycline dosing (100, 50, 50mg) achieved adequate concentrations in severe sepsis patients.
- This dosing regimen did not impact MMP-8, MMP-9, or TIMP-1 concentrations or activities.
- Further research may be needed to explore different doxycycline dosages or treatment durations for potential anti-inflammatory effects in sepsis.
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