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Tofacitinib and Baricitinib Are Taken up by Different Uptake Mechanisms Determining the Efficacy of Both Drugs in RA

Jan Amrhein, Susanne Drynda, Lukas Schlatt, Uwe Kärst, Christoph H. Lohmann, Giuliano Ciarimboli, Jessica Bertrand

2020International Journal of Molecular Sciences25 citationsDOIOpen Access PDF

Abstract

BACKGROUND: Rheumatoid arthritis (RA) is a systemic autoimmune disease in which synovial fibroblasts (SF) play a key role. Baricitinib and Tofacitinib both act intracellularly, blocking the ATP-binding side of JAK proteins and thereby the downstream signalling pathway via STAT-3. Therefore, we investigated the role of organic cation transporters (OCTs) in Baricitinib and Tofacitinib cellular transport. METHODS: OCT expression was analysed in SF isolated from RA and osteoarthritis (OA) patients, as well as peripheral blood mononuclear cells. The interaction of Baricitinib and Tofacitinib with OCTs was investigated using quenching experiments. The intracellular accumulation of both drugs was quantified using LC/MS. Target inhibition for both drugs was tested using Western blot for phosphorylated JAK1 and STAT3 upon stimulation with IL-6. RESULTS: MATE-1 expression increased in OASF compared to RASF. The other OCTs were not differentially expressed. The transport of Baricitinib was not OCT dependent. Tofacitinib; however, was exported from RASF in a MATE-1 dependent way. Tofacitinib and Baricitinib showed comparable inhibition of downstream signalling pathways. CONCLUSION: We observed different cellular uptake strategies for Baricitinib and Tofacitinib. Tofacitinib was exported out of healthy cells due to the increased expression of MATE1. This might make Tofacitinib the favourable drug.

Topics & Concepts

TofacitinibRheumatoid arthritisMedicineWestern blotPharmacologyIntracellularChemistryImmunologyBiochemistryGeneDrug Transport and Resistance MechanismsRheumatoid Arthritis Research and TherapiesCytokine Signaling Pathways and Interactions
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