LOCALIZATION OF THE VIRUS AND PATHOGENESIS OF EPIDEMIC POLIOMYELITIS

S Flexner1, H L Amoss

  • 1Laboratories of The Rockefeller Institute for Medical Research.

Insights

Poliomyelitis virus enters the central nervous system via lymphatics, not blood, causing neural infection. Early intervention with immune serum can prevent paralysis by neutralizing the virus.

Area of Science:

  • Virology
  • Neuroscience
  • Immunology

Background:

  • Poliomyelitis virus can reach central nervous organs without apparent retinal injury.
  • The virus initially targets spleen and bone marrow after blood injection, not kidneys, spinal cord, or brain.

Purpose of the Study:

  • To investigate the pathway of poliomyelitis virus entry into the central nervous system.
  • To understand the role of inflammation and immune response in poliomyelitis infection.
  • To determine the origin of histological lesions in human poliomyelitis.

Main Methods:

  • Intravenous and intraspinous injections of poliomyelitis virus in animal models.
  • Induction of aseptic inflammation using horse serum.
  • Administration of immune serum via intraspinous injection.
  • Histological examination of nervous tissues and choroid plexus.
  • Introduction of carmine pigment to study cellular uptake.

Main Results:

  • Nervous tissues do not remove the virus from blood until choroid plexus and blood vessels are injured.
  • Intervertebral ganglia remove the virus from blood before the spinal cord and brain.
  • Aseptic inflammation facilitates virus passage to the central nervous organs, increasing paralysis risk.
  • Virus in blood inconsistently enters the spinal cord and brain; if unsuccessful, it's destroyed, reducing virulence.
  • Virus entry into the central nervous system involves lymphatic invasion of the choroid plexus and perivascular infiltration.
  • Histological lesions in human poliomyelitis resemble those from intraneural infection in monkeys.
  • Intraspinous immune serum neutralizes the virus in cerebrospinal fluid, preventing paralysis.
  • Pre-existing inflammation or virus injury enhances ependymal cell uptake of introduced substances.

Conclusions:

  • Poliomyelitis infection in humans is likely local and neural, entering via lymphatics from the upper respiratory tract, not through the bloodstream.
  • The study supports a neural, lymphatic route of infection, challenging a purely hematogenous spread theory.
  • Therapeutic strategies targeting lymphatic pathways and enhancing immune response in the central nervous system may be crucial for poliomyelitis treatment.

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