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    <title>Tapalskiy D.V. on КМАХ</title>
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      <title>Antimutant activity of the combination of colistin and rifaximin in selective digestive decontamination: validation in a dynamic flow-through system</title>
      <link>http://cmac-journal.ru/en/publication/2026/1/cmac-2026-t28-n1-p131/</link>
      <pubDate>Thu, 28 May 2026 10:50:08 +0000</pubDate>
      
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&lt;h3 id=&#34;objective&#34;&gt;Objective.&lt;/h3&gt;

&lt;p&gt;Introduction. Selective digestive decontamination of the digestive tract (SDD) with non-absorbable antibiotics is considered a promising approach to reduce the risk of infections in critically ill patients. However, the widespread circulation of multidrug-resistant microorganisms, including carbapenemresistant &lt;em&gt;Klebsiella pneumoniae&lt;/em&gt; and &lt;em&gt;Pseudomonas aeruginosa&lt;/em&gt;, significantly reduces the efficacy of conventional SDD regimens based on colistin monotherapy. The key reason for failures is the wide «mutant selection window» – a range of antibiotic concentrations insufficient to suppress the growth of resistant subpopulations. The use of antimutant combinations of non-absorbable antibiotics may open new prospects for SDD optimization. Development and validation of a dynamic flow-through &lt;em&gt;in vitro&lt;/em&gt; system for pharmacokinetic/ pharmacodynamic (PK/PD) modeling of clinical SDD regimens and evaluation of the antimutant activity of the combination of non-absorbable antibiotics colistin and rifaximin against extremely antibiotic-resistant strains of &lt;em&gt;K. pneumoniae&lt;/em&gt; and &lt;em&gt;P. aeruginosa&lt;/em&gt;.&lt;/p&gt;

&lt;h3 id=&#34;materials-and-methods&#34;&gt;Materials and Methods.&lt;/h3&gt;

&lt;p&gt;The study included 10 clinical isolates of &lt;em&gt;K. pneumoniae&lt;/em&gt; (producers of NDM, KPC, OXA-48, KPC+NDM) and 10 clinical isolates of &lt;em&gt;P. aeruginosa&lt;/em&gt; (including 4 VIM carbapenemase producers). Minimum concentrations of colistin and rifaximin that prevent the selection of resistant mutants (MPC) were determined using agar plating with antibiotic. A single-chamber flow-through system was constructed that reproduces the pharmacokinetics of non-absorbable antibiotics during enteral administration. Clinical regimens of colistin, rifaximin, and their combination administration (every 8 hours for 7 days) were modeled.&lt;/p&gt;

&lt;h3 id=&#34;results&#34;&gt;Results.&lt;/h3&gt;

&lt;p&gt;MPC of colistin for &lt;em&gt;K. pneumoniae&lt;/em&gt; strains ranged from 64 to 128 mg/L, for &lt;em&gt;P. aeruginosa&lt;/em&gt; – 8 to 16 mg/L, which was 8–256 and 4–16 times higher than the MIC, respectively. MPC of rifaximin could not be determined within the tested concentrations for the vast majority of strains (MPC ≥256 mg/L). In the presence of rifaximin, the MPC of colistin decreased 4–8-fold for &lt;em&gt;K. pneumoniae&lt;/em&gt; and 2–8-fold for &lt;em&gt;P. aeruginosa&lt;/em&gt;. In static experiments, colistin (70 mg/L) and rifaximin (200 mg/L) did not prevent breakthrough growth of some strains within 24–48 hours, whereas the combination completely suppressed the growth of all strains for 7 days. In the dynamic flow-through system during monotherapy, adaptation of some microorganisms to colistin and rifaximin was observed; the combination of colistin and rifaximin ensured complete suppression of growth of all tested strains throughout the entire 7-day observation period.&lt;/p&gt;

&lt;h3 id=&#34;conclusions&#34;&gt;Conclusions.&lt;/h3&gt;

&lt;p&gt;The developed dynamic flow-through system is a convenient tool for preclinical evaluation of PK/PD parameters of antimutant combinations of non-absorbable antibiotics. The combination of colistin and rifaximin demonstrates high antimutant activity under conditions simulating SDD regimens against both &lt;em&gt;K. pneumoniae&lt;/em&gt; and &lt;em&gt;P. aeruginosa&lt;/em&gt;, which opens prospects for its clinical use in regions with high prevalence of antibiotic-resistant pathogens.&lt;/p&gt;
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