Tetrodotoxins in Tissues and Cells of Different Body Regions of Ribbon Worms Kulikovia alborostrata and K. manchenkoi from Spokoynaya Bay, Sea of Japan

Toxins (Basel). 2024 Apr 10;16(4):186. doi: 10.3390/toxins16040186.

Abstract

Nemerteans, or ribbon worms, possess tetrodotoxin and its analogues (TTXs), neurotoxins of bacterial origin, which they presumably use for capturing prey and self-defense. Most TTXs-containing nemertean species have low levels of these toxins and, therefore, have usually been neglected in studies of TTXs functions and accumulation. In the present study, Kulikovia alborostrata and K. manchenkoi, two closely related species, were analyzed for TTXs distribution in the body using the HPLC-MS/MS and fluorescence microscopy methods. The abundance of TTXs-positive cells was determined in the proboscis, integument, and digestive system epithelium. As a result, six TTXs-positive cell types were identified in each species; however, only four were common. Moreover, the proportions of the toxins in different body parts were estimated. According to the HPLC-MS/MS analysis, the TTXs concentrations in K. alborostrata varied from 0.91 ng/g in the proboscis to 5.52 ng/g in the precerebral region; in K. manchenkoi, the concentrations ranged from 7.47 ng/g in the proboscis to 72.32 ng/g in the posterior body region. The differences observed between the two nemerteans in the distribution of the TTXs were consistent with the differences in the localization of TTXs-positive cells. In addition, TTXs-positive glandular cell types were found in the intestine and characterized for the first time. TTXs in the new cell types were assumed to play a unique physiological role for nemerteans.

Keywords: HPLC–MS/MS; Kulikovia alborostrata; Kulikovia manchenkoi; Nemertea; immunohistochemistry; tetrodotoxin and its analogues.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Bays
  • Chromatography, High Pressure Liquid
  • Environmental Monitoring
  • Invertebrates / chemistry
  • Invertebrates / metabolism
  • Japan
  • Tandem Mass Spectrometry
  • Tetrodotoxin* / analysis
  • Tetrodotoxin* / metabolism
  • Tetrodotoxin* / toxicity

Substances

  • Tetrodotoxin

Grants and funding

This research received no funding.