Cytoprotective Effect of NOP Receptor Blockade in Primary Culture of Pulmonary Fibroblasts

E N Sazonova1,2, O G Repa3, Yu B Malofey4

  • 1Far-East State Medical University, Ministry of Health of the Russian Federation, Khabarovsk, Russia.

Insights

The NOP receptor blocker and NALE peptide protect fibroblast cells from oxidative stress. Their combined use shows a synergistic cytoprotective effect, preserving cell viability and function.

Area of Science:

  • Cell biology
  • Pharmacology
  • Oxidative stress research

Background:

  • Oxidative stress (OS) induces cellular damage in fibroblast cultures.
  • NOP receptors play a role in cellular responses to stress.
  • The cytoprotective mechanisms of NALE peptide are not fully understood.

Purpose of the Study:

  • To investigate the role of NOP receptors in fibroblast response to OS.
  • To elucidate the mechanisms behind the cytoprotective effects of NALE peptide.
  • To evaluate the combined effects of NOP receptor blockade and NALE peptide.

Main Methods:

  • Primary fibroblast cultures were subjected to oxidative stress.
  • Cells were pre-incubated with a NOP receptor blocker (J-113397) and/or NALE peptide.
  • Cell viability, nuclear morphology, and mitotic activity were assessed.

Main Results:

  • Oxidative stress decreased cell number and increased p53+ cells and nuclear area.
  • NOP receptor blocker and NALE peptide attenuated OS-induced damage.
  • Combined application showed synergistic protective effects, enhancing cell survival and mitotic activity.

Conclusions:

  • NOP receptors are involved in fibroblast response to oxidative stress.
  • NALE peptide exerts cytoprotective effects, partly through NOP receptor pathways.
  • Combined NOP receptor antagonism and NALE peptide treatment offer enhanced cellular protection.

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