Morphological and quantitative comparison between infectious and non-infectious forms of influenza virus

Insights

Non-infectious influenza virus particles with hemagglutinin activity were observed in mouse brains. These particles, morphologically distinct from infectious virus, arise from viral multiplication.

Area of Science:

  • Virology
  • Microbiology
  • Electron Microscopy

Background:

  • Influenza virus hemagglutinin levels can increase in mouse brains after inoculation with non-neurotropic strains.
  • This hemagglutinin increase is not linked to a rise in infectious viral titer.
  • The phenomenon resembles "incomplete" influenza virus produced via serial passage in chick embryos.

Purpose of the Study:

  • To identify the morphological entity responsible for increased hemagglutinin in mouse brains.
  • To compare the morphology of non-infectious hemagglutinating virus from mouse brains and allantoic fluids with standard infectious influenza virus.

Main Methods:

  • Electron microscopy was used to study viral particle morphology.
  • A selective adsorption method using saponin-lysed fowl erythrocyte ghosts was employed.
  • Morphological comparisons were made between infectious virus, "undiluted passage" virus, and mouse brain-derived virus.

Main Results:

  • Standard infectious influenza virus particles were uniform, spherical, with smooth surfaces.
  • Non-infectious hemagglutinating virus from allantoic sacs and mouse brains was pleomorphic, appearing as disintegrating, flattened, bag-like particles with rough surfaces.
  • A significant percentage of non-infectious particles from mouse brains exceeded the size of parent strain particles, indicating structural differences.

Conclusions:

  • Non-infectious, hemagglutinating influenza virus particles in mouse brains exhibit distinct morphology compared to infectious virus.
  • These non-infectious particles are functionally equivalent to standard virus on a particle-for-particle basis for hemagglutination.
  • Quantitative data support the conclusion that non-infectious virus arises in mouse brains as a product of viral multiplication.

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