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Cagir, A.

Publications and source records attributed to Cagir, A..

2 recordsLinked to original sources

Astragalus Saponins, Astragaloside VII and Newly Synthesized Derivatives, Induce Dendritic Cell Maturation and T Cell Activation Through IL-1β Production

Astragaloside VII (AST VII), a plant triterpenoid saponin isolated from Astragalus species, shows promise as vaccine adjuvant, as it supports a balanced Th1/Th2 immune response. However, the underlying mechanisms of its adjuvant activity have not been defined. Here we investigated the impact of AST VII and its newly synthesized semi-synthetic analogs on human whole blood cells, as well as on mouse bone marrow-derived dendritic cells (BMDCs). Cells were stimulated with AST VII and its derivatives in the presence or absence of LPS or PMA/ionomycin and the secretion of cytokines and the expression of activation markers were analyzed by ELISA and flow cytometry, respectively. AST VII and its analogs increased the production of IL-1{beta} in PMA/ionomycin stimulated human whole blood cells. In LPS-treated mouse BMDCs, AST VII increased the production of IL-1{beta} and IL-12, and the expression of MHC II, CD86, and CD80. The strength of the IL-1{beta} boost correlated directly with the hydrophobicity of the AST VII compounds. In mixed leukocyte reaction, AST VII and derivatives increased the expression of the activation marker CD44 on mouse CD4+ and CD8+ T cells. In conclusion, AST VII and its derivatives strengthen pro-inflammatory responses, support dendritic cell maturation, and T cell activation in vitro. Our results provide insights into the mechanisms of the adjuvant activities of AST VII and its analogs, which will be instrumental to improve their utility as vaccine adjuvant.

immunology

Target-driven design of a coumarinyl chalcone scaffold based novel EF2 Kinase inhibitor suppresses breast cancer growth in vivo

Eukaryotic elongation factor 2 kinase (eEF-2K), an unusual alpha kinase, is involved in protein synthesis through phosphorylation of elongation factor 2 (EF2). eEF-2K is indicated as one of the critical drivers of breast cancer and associated with poor clinical prognosis, representing a potential molecular target. The crystal structure of eEF-2K is unknown and there is no potent and effective eEF-2K inhibitor reported for clinical applications. To meet this challenge, we designed and synthesized several generations of potential inhibitor compounds and performed in silico studies. The effect of the inhibitors at the binding pocket of eEF-2K is analyzed after developing a 3D target model by homology modeling approaches using a domain of another -kinase called myosin heavy-chain kinase A (MHCKA) that is closely resembling eEF-2K. Our results showed that compounds with coumarin-chalcone cores have a high predicted binding affinity for binding to eEF-2K. Following in vitro studies, we identified a compound that was highly effective in inhibiting eEF-2K activity at submicromolar concentrations and inhibited proliferation of various breast cancer cells with different features (BT20, MDA-MB-231, MDA-MB-436 and MCF-7) by induction of apoptosis while sparing normal cells. In vivo systemic administration of the the lead inhibitor encapsulated in single lipid-based nanoparticles twice a week significantly supressed growth of MDA-MB-231 tumors in orthotopic breast cancer models in nude mice. In conclusion, our study provides the first in vivo effective small molecule eEF-2K inhibitor that may be used for molecularly targeted precison medicine strategies in breast cancer or other eEF-2K-dependent tumors.

cancer biology