1987•Journal of Medical MicrobiologyRequires access

A morphological study of the action of equine anti-lipopolysaccharide plasma on gram-negative bacteria

S L Gaffin, Matthew Wells

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Abstract

Three strains of gram-negative bacteria--one each of Escherichia coli, Klebsiella pneumoniae and Enterobacter sp.--were treated with anti-lipopolysaccharide hyperimmune equine plasma (anti-LPS) or non-immune control plasma and examined by scanning electronmicroscopy. Within a few minutes of treatment with anti-LPS, bacteria were agglutinated. Evidence of cell membrane destruction was observed shortly thereafter and total cell disintegration and disruption occurred within 1-2 h. In contrast, non-immune plasma had no effect on cell morphology. This confirms the findings in previous microbiological studies that specific antibodies in anti-LPS bind to lipopolysaccharide (LPS endotoxin), and thereby initiate the destruction of gram-negative bacteria.

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What this paper is about

Three strains of gram-negative bacteria--one each of Escherichia coli, Klebsiella pneumoniae and Enterobacter sp.--were treated with anti-lipopolysaccharide hyperimmune equine plasma (anti-LPS) or non-immune control plasma and examined by scanning electronmicroscopy. Within a few minutes of treatment with anti-LPS, bacteria were agglutinated. Evidence of cell membrane destruction was observed shortly thereafter and total cell disintegration and disruption occurred within 1-2 h. In contrast, non-immune plasma had no effect on cell morphology. This confirms the findings in previous microbiological studies that specific antibodies in anti-LPS bind to lipopolysaccharide (LPS endotoxin), and thereby initiate the destruction of gram-negative bacteria.

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Available abstract

Three strains of gram-negative bacteria--one each of Escherichia coli, Klebsiella pneumoniae and Enterobacter sp.--were treated with anti-lipopolysaccharide hyperimmune equine plasma (anti-LPS) or non-immune control plasma and examined by scanning electronmicroscopy. Within a few minutes of treatment with anti-LPS, bacteria were agglutinated. Evidence of cell membrane destruction was observed shortly thereafter and total cell disintegration and disruption occurred within 1-2 h. In contrast, non-immune plasma had no effect on cell morphology. This confirms the findings in previous microbiological studies that specific antibodies in anti-LPS bind to lipopolysaccharide (LPS endotoxin), and thereby initiate the destruction of gram-negative bacteria.

Key concepts: Lipopolysaccharide, Gram-negative bacteria, Bacteria, Microbiology, Klebsiella pneumoniae, Immune system, Antibody, Biology

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