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Experimental gram-negative bacterial sepsis: prevention of mortality not preventable by antibiotics alone
Abstract:
Outbred Swiss mice were inoculated intraperitoneally or intravenously with one 90 to 100% lethal dose of Escherichia coli O:18, Proteus mirabilis, or Klebsiella pneumoniae. After carefully timed intervals, aminoglycoside antibiotics were begun at dosages nnd intervals predetermined to constitute optimal therapy. With progressive increases in delay of antibiotic therapy, mortality rates increased progressively from 0% to 90 to 100%. Standardized models of infection were developed by selecting delay periods before initiating antibiotic therapy such that 50 to 70% mortalities resulted. Utilizing these models, agents with reputed anti-endotoxin activity were administered concomitantly with the delayed antibiotic therapy to determine if any could prevent gram-negative septic mortality no longer preventable by the antibiotics alone. The following were observed: (i) adrenal corticosteroids prevented mortality that was no longer preventable by optimal aminoglycoside antibiotics alone. The following were preventable by optimal aminoglycoside antibiotic therapy alone; (ii) specific antisera also did so, provided anaphylaxis was circumvented; (iii) in one model (P. mirabilis), such protection by adrenal corticosteroids and specific antiserum could be additive; (iv) adrenal corticosteroids and specific antiserum acted synergistically with the aminoglycoside antibiotics--no protection was achieved by delayed administration of the steroids or antiserum alone; (v) timing was crucial--the synergistic protective activity of adrenal corticosteroids and of specific antiserum with aminoglycosides declined rapidly as infection progressed; (vi) cyclophosphamide pretreatment markedly impaired the synergistic protective activity of specific antiserum and of adrenal corticosteroids with aminoglycosides; (vii) no reputed anti-endotoxin agents other than adrenal corticosteroids and specific antiserum proved capable of preventing mortality not preventable by aminoglycoside antibiotics alone. These included antisera to rough mutant Enterobacteriaceae of Rc, Rd, and Re chemotypes, anticoagulants (heparin), ascorbic acid, antiproteolytic agents (aprotinin), alpha adrenergic blockers (phenoxybenzamine), prostaglandin synthetase inhibitors (acetylsalicylic acid, sodium salicylate, indomethacin), nicotinamide, glucose, and insulin-glucose-potassium mixtures.
Insights
Adrenal corticosteroids and specific antisera can prevent fatal gram-negative bacterial infections when antibiotics alone fail. However, their effectiveness diminishes with delayed treatment and is impaired by immunosuppression.
Area of Science:
- Microbiology
- Pharmacology
- Immunology
Background:
- Gram-negative bacterial infections pose a significant mortality risk.
- Aminoglycoside antibiotics are a primary treatment, but resistance and delayed treatment can limit efficacy.
- The role of anti-endotoxin agents in severe sepsis requires further investigation.
Purpose of the Study:
- To evaluate the efficacy of various agents in preventing mortality from gram-negative septic shock when conventional antibiotic therapy is delayed.
- To determine if agents with purported anti-endotoxin activity can supplement suboptimal antibiotic treatment.
- To investigate the synergistic effects and timing dependencies of adjunctive therapies.
Main Methods:
- Standardized lethal infection models were established in mice using Escherichia coli, Proteus mirabilis, and Klebsiella pneumoniae.
- Aminoglycoside antibiotic therapy was initiated after predetermined delay intervals.
- Agents with reputed anti-endotoxin activity were administered concurrently with delayed antibiotic therapy.
Main Results:
- Mortality increased progressively with delayed antibiotic administration.
- Adrenal corticosteroids and specific antisera (circumventing anaphylaxis) prevented mortality when antibiotics alone were insufficient.
- These agents demonstrated synergistic protective effects with aminoglycosides, but only when administered early.
- Cyclophosphamide pretreatment significantly reduced the protective efficacy of corticosteroids and antisera.
- Other tested agents, including various antisera, anticoagulants, and metabolic modulators, did not prevent mortality beyond the effects of antibiotics alone.
Conclusions:
- Adrenal corticosteroids and specific antisera represent viable adjunctive therapies for severe gram-negative sepsis, particularly when antibiotic treatment is delayed.
- The timing of administration is critical for the synergistic protective effects of these agents with antibiotics.
- Immunosuppression can impair the efficacy of these adjunctive treatments.