Induction of CD4+CD25+ Regulatory T Cells from In Vitro Grown Human Mononuclear Cells by Sparteine Sulfate and Harpagoside.
Nour Z AtwanySeyedeh-Khadijeh HashemiManju Nidagodu JayakumarMitzi NagarkattiPrakash NagarkattiMona Rushdi HassunehPublished in: Biology (2020)
Regulatory T cells (Tregs) are key players in the regulation of inflammatory responses. In this study, two natural molecules, namely, sparteine sulfate (SS) and harpagoside (Harp), were investigated for their ability to induce Tregs in human peripheral blood mononuclear cells (PBMCs). PBMCs were isolated from healthy volunteers and grown in the presence or absence of ConA, with TGF-beta, SS or Harp. Expression of the mRNA of FoxP3, TGF-beta, IL-10 and GAPDH was assessed via q-PCR. The expression of Treg markers including CD4, CD25, CD127 and FoxP3 was measured via flow cytometry. The secretion of IL-10 and TGF-beta by cultured cells was assessed by ELISA. Furthermore, the suppressive role of SS and Harp on PBMCs in vitro was tested via allogeneic mixed lymphocyte reaction (MLR). Data obtained show that both compounds increased the expression of FoxP3, TGF-beta and IL-10 mRNA in resting PBMCs but to a lesser extent in activated cells. Moreover, they significantly increased the percent of CD4+CD25+FoxP3+CD127- Tregs in activated and naïve PBMCs. Functionally, both compounds caused a significant reduction in the stimulation index in allogeneic MLR. Together, our data demonstrate for the first time that SS and Harp can induce human Tregs in vitro and therefore have great potential as anti-inflammatory agents.
Keyphrases
- regulatory t cells
- endothelial cells
- induced apoptosis
- dendritic cells
- poor prognosis
- cell cycle arrest
- transforming growth factor
- binding protein
- flow cytometry
- bone marrow
- anti inflammatory
- induced pluripotent stem cells
- electronic health record
- oxidative stress
- endoplasmic reticulum stress
- machine learning
- high resolution
- peripheral blood
- signaling pathway
- epithelial mesenchymal transition
- blood pressure
- cell death
- heart rate variability
- heart rate
- long non coding rna
- artificial intelligence
- data analysis
- pi k akt
- monoclonal antibody