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Surface plasmon resonance studies resolve the enigmatic endotoxin neutralizing activity of polymyxin B
C J Thomas1, N Surolia, A Surolia
1Molecular Biophysics Unit, Indian Institute of Science, Bangalore 560 012, India.
Abstract:
Polymyxin B (PMB), a cyclic cationic peptide antibiotic, despite its severe side effects continues to occupy a premiere position for treating endotoxicosis. Its mode of neutralization of endotoxin has remained elusive for the last three decades. Several synthetic peptide mimics of PMB, capable of binding endotoxin, have been made. However, the binding ability alone appears to be a deceptive indicator of endotoxin neutralizing activity as molecules with similar binding propensities could either sequester or opsonize the toxin. Hence identification of additional physical parameters which describe adequately the outcome of PMB-endotoxin interaction become imperative. Surface plasmon resonance (SPR) studies reported here show that several mimics of PMB despite exhibiting lipopolysaccharide binding affinities comparable with it but, unlike it, do not sequester the endotoxin. These studies thus provide a striking illustration of the difference in the behavior of PMB, vis a vis its mimics toward the endotoxin lamellae, and define further, in chemical terms, mechanism of the action of PMB and allow us to posit that the design of molecules as effective antidotes for sepsis should incorporate the ability to sequester endotoxin specifically.
Insights
Polymyxin B (PMB) effectively treats endotoxicosis, but its mechanism remains unclear. New research shows PMB sequesters endotoxin, unlike its mimics, guiding future sepsis antidote design.
Area of Science:
- Microbiology
- Biochemistry
- Pharmacology
Background:
- Polymyxin B (PMB) is crucial for treating endotoxicosis despite severe side effects.
- The endotoxin neutralization mechanism of PMB has been poorly understood for decades.
- Synthetic PMB mimics exist but their efficacy varies.
Purpose of the Study:
- To elucidate the mechanism of PMB's endotoxin neutralization.
- To differentiate the interaction of PMB and its mimics with endotoxin.
- To identify key physical parameters for effective endotoxin-neutralizing agents.
Main Methods:
- Surface Plasmon Resonance (SPR) was used to study PMB-endotoxin interactions.
- Comparative analysis of PMB and synthetic peptide mimics binding to endotoxin.
- Evaluation of endotoxin sequestration and opsonization by PMB and mimics.
Main Results:
- PMB mimics bind endotoxin comparably to PMB but do not sequester it.
- PMB actively sequesters endotoxin, a property absent in its tested mimics.
- SPR studies reveal distinct interaction dynamics between PMB and endotoxin.
Conclusions:
- Endotoxin sequestration is a critical factor in PMB's therapeutic action.
- Binding affinity alone is insufficient for predicting endotoxin-neutralizing activity.
- Future sepsis antidote design should prioritize endotoxin sequestration capability.