Suramin-induced neuropathy in an animal model

J W Russell1, J S Gill, E J Sorenson

  • 1University of Michigan, Department of Neurology, 4414 Kresge III, 200 Zina Pitcher Place, Ann Arbor, MI 48109-0588, USA. jruss@umich.edu

Insights

Suramin chemotherapy causes dose-dependent axonal sensorimotor polyneuropathy in rats. This study characterized suramin toxicity, revealing axonal degeneration and lysosomal inclusions, crucial for understanding treatment limitations.

Area of Science:

  • Neuroscience
  • Oncology
  • Pharmacology

Background:

  • Suramin is a chemotherapy agent used for hormone-refractory or metastatic prostate cancer.
  • Its clinical use is limited by dose-dependent polyneuropathy, difficult to distinguish from cancer-related neuropathy in humans.

Purpose of the Study:

  • To characterize suramin-induced peripheral neuropathy in a rat model.
  • To differentiate suramin toxicity from cancer-related neurological effects.

Main Methods:

  • Adult rats received weekly high-dose (500 mg/kg) or low-dose (50 mg/kg) suramin for 2 months.
  • Electrophysiology and peroneal/sural nerve morphometry were employed.
  • Transmission electron microscopy (TEM) examined nerve tissues.

Main Results:

  • High-dose suramin induced rapid sensorimotor neuropathy, affecting digital sensory responses and hind limb potentials, with axonal degeneration and atrophy.
  • Low-dose suramin also caused significant sensorimotor deficits and axonal degeneration.
  • TEM revealed lysosomal inclusion bodies in dorsal root ganglia and Schwann cells, with minimal demyelination.

Conclusions:

  • Suramin induces a length-, dose-, and time-dependent axonal sensorimotor polyneuropathy.
  • The neuropathy is characterized by axonal degeneration, atrophy, and glycolipid lysosomal inclusions.
  • This rat model provides insights into suramin's peripheral neurotoxicity, aiding in managing prostate cancer treatment.

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