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Tetrodotoxin desensitization in aggregates of embryonic chick heart cells

Insights

Chick embryo heart cells develop tetrodotoxin (TTX) resistance over time, indicating a shift in ion channel function. This desensitization to TTX is protein synthesis-dependent and reversible.

Area of Science:

  • Cardiovascular Physiology
  • Developmental Biology
  • Pharmacology

Background:

  • Spontaneous cardiac electrical activity in early embryonic hearts is mediated by specific ion channels.
  • Tetrodotoxin (TTX) is a potent blocker of fast sodium channels, crucial for action potential upstroke velocity.

Purpose of the Study:

  • To investigate the phenomenon of desensitization to tetrodotoxin (TTX) in developing chick embryo heart cell aggregates.
  • To elucidate the underlying mechanisms and developmental changes in TTX sensitivity and action potential generation.

Main Methods:

  • Exposure of embryonic heart cell aggregates (4-7 days) to tetrodotoxin (TTX).
  • Measurement of spontaneous beating and action potential upstroke velocity (Vmax).
  • Inhibition of protein synthesis using cycloheximide; assessment of calcium and manganese effects.

Main Results:

  • 4-day aggregates initially blocked by TTX desensitize over 2-3 hours, with reduced Vmax.
  • Desensitization is dependent on protein synthesis and involves a shift from Na+-dependent to slower, Mn-sensitive channels.
  • 5-day aggregates show less desensitization; 6-7 day aggregates do not desensitize.

Conclusions:

  • Embryonic heart cells develop TTX resistance through a time-dependent, protein synthesis-dependent desensitization process.
  • This desensitization reflects a switch in the primary ion channel mechanism for action potential generation.
  • The desensitization process is reversible upon TTX removal, with a similar time course to its onset.

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