Molecular treatment trajectories within psoriatic T lymphocytes: a mini review

Martyna Kuczyńska1, Magdalena Gabig-Cimińska1, Marta Moskot1

  • 1Department of Medical Biology and Genetics, University of Gdańsk, Gdańsk, Poland.

PubMed

Insights

Psoriasis (Ps) involves complex T cell signaling pathways. Synthetic Small Molecule Drugs (SMDs) offer a promising therapeutic innovation for managing this chronic immune-mediated inflammatory disease by modulating specific molecular targets.

Area of Science:

  • Immunology
  • Dermatology
  • Pharmacology

Background:

  • Psoriasis (Ps) is a chronic immune-mediated inflammatory disease (IMID) involving complex biological processes in mammalian cells.
  • Key pathogenic mechanisms include molecular cascades in skin-resident and infiltrating T lymphocytes (T cells).
  • T cell signaling pathways like Ca2+/CaN/NFAT, MAPK/JNK, PI3K/Akt/mTOR, and JAK/STAT are implicated but not fully understood.

Purpose of the Study:

  • To explore the role of T cell signaling pathways in psoriasis pathogenesis.
  • To evaluate synthetic Small Molecule Drugs (SMDs) as a therapeutic strategy for psoriasis.
  • To highlight the potential of SMDs in modulating disease-associated molecular tracks.

Main Methods:

  • Review of current literature on T cell signaling in psoriasis.
  • Analysis of existing evidence on therapeutic interventions for psoriasis.
  • Discussion of the potential of SMDs in targeting specific pathway components.

Main Results:

  • T cell signaling pathways are critical in the development and progression of psoriasis.
  • SMDs show promise in modulating specific molecular targets within T cells for psoriasis treatment.
  • SMDs offer an alternative or complementary approach to biological therapies, addressing their limitations.

Conclusions:

  • Targeting specific T cell signaling pathways with SMDs represents a potential innovation in psoriasis management.
  • Precise targeting of molecular tracks is crucial due to intricate pathway crosstalk.
  • Further research is needed to fully understand pathway interactions and predict patient responses to SMD therapy for psoriasis.