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Updated: Jul 10, 2026

Lymphocyte Isolation from Human Skin for Phenotypic Analysis and Ex Vivo Cell Culture
Published on: April 8, 2016
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.
Abstract:
Multiple biological processes in mammalian cells are implicated in psoriasis (Ps) development and progression, as well as in the pathogenic mechanisms associated with this chronic immune-mediated inflammatory disease (IMID). These refer to molecular cascades contributing to the pathological topical and systemic reactions in Ps, where local skin-resident cells derived from peripheral blood and skin-infiltrating cells originating from the circulatory system, in particular T lymphocytes (T cells), are key actors. The interplay between molecular components of T cell signalling transduction and their involvement in cellular cascades (i.e. throughout Ca2+/CaN/NFAT, MAPK/JNK, PI3K/Akt/mTOR, JAK/STAT pathways) has been of concern in the last few years; this is still less characterised than expected, even though some evidence has accumulated to date identifying them as potential objects in the management of Ps. Innovative therapeutic strategies for the use of compounds such as synthetic Small Molecule Drugs (SMDs) and their various combinations proved to be promising tools for the treatment of Ps via incomplete blocking, also known as modulation of disease-associated molecular tracks. Despite recent drug development having mainly centred on biological therapies for Ps, yet displaying serious limitations, SMDs acting on specific pathway factor isoforms or single effectors within T cell, could represent a valid innovation in real-world treatment patterns in patients with Ps. Of note, due to the intricate crosstalk between intracellular pathways, the use of selective agents targeting proper tracks is, in our opinion, a challenge for modern science regarding the prevention of disease at its onset and also in the prediction of patient response to Ps treatment.
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.
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