EXPERIMENTS ON THE MODE OF INFECTION IN EPIDEMIC MENINGITIS

H L Amoss1, F Eberson

  • 1Laboratories of The Rockefeller Institute for Medical Research.

Insights

Lower monkeys exhibit high resistance to meningococcus infection via bloodstream but are susceptible via direct spinal fluid injection. Meningococci survive in blood for 72 hours but do not multiply or easily invade the central nervous system in these models.

Area of Science:

  • Microbiology
  • Infectious Diseases
  • Animal Models

Background:

  • Neisseria meningitidis (meningococcus) is a significant human pathogen causing meningitis.
  • Understanding the host-pathogen interactions and invasion routes is crucial for developing effective treatments.

Purpose of the Study:

  • To investigate the susceptibility of lower primates (Macacus rhesus monkeys) and rabbits to meningococcal infection.
  • To explore the potential routes of meningococcal invasion into the central nervous system from the bloodstream.

Main Methods:

  • Meningococcus cultures were introduced into the general blood and subarachnoid space of monkeys.
  • Experiments involved inducing aseptic meningitis and observing bacterial passage in rabbits.
  • Virulent meningococcal strains were passaged through monkeys to assess survival and infectivity.

Main Results:

  • Monkeys showed high resistance to blood-borne meningococcus but were more susceptible to direct subarachnoid inoculation.
  • Passaged meningococci survived in monkey blood for up to 72 hours but did not appear to multiply.
  • Meningococci did not readily invade the cerebrospinal meninges from the blood in monkeys, even with induced inflammation.
  • Rabbits showed meningococcal passage into spinal fluid only with physical meningeal breaks, not chemical inflammation.

Conclusions:

  • The high insusceptibility of monkeys limits their utility for studying human meningococcal invasion pathways.
  • The experiments do not support the hypothesis that early intraspinal antimeningococcus serum administration aids meningococcal diversion from blood to the subarachnoid space in humans.

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