Abstract

Introduction This study is aimed at investigating the immunological response after treating THP-1 cells with gold nanorods conjugated with a phosphatidylinositol 3-kinase (PI3Kα) inhibitor. Methodology. Gold nanorods were synthesized and functionalized with cholesterol-PEG-SH moiety, and the treatment groups were as follows: nanocomplex (a drug-conjugated gold nanorods), free drug (phosphatidylinositol 3-kinase (PI3Kα) inhibitor), and GNR (the nanocarrier; cholesterol-coated gold nanorods). THP-1 cells were differentiated into macrophages and characterized by measuring the expression of macrophage surface markers by flow cytometry. Then, differentiated cells were activated by lipopolysaccharide (LPS). Afterwards, activated macrophages were treated with the different treatments: nanocomplex, free drug, and GNR, for 24 hrs. After treatment, the production of the inflammatory cytokines measured at gene and protein levels by using qPCR and CBA array beads by flow cytometry. Results Our results show that THP-1 cells were successfully differentiated into macrophages. For inflammatory cytokine expression response, nanocomplex and free drug showed the same expression level of cytokines at gene level, as the expression of IL-1β, IL-6, and TNF-α was significantly downregulated (p < 0.0005, p < 0.0005, p < 0.00005), respectively, while IL-8, IL-10, and TGF-β were all upregulated in a significant manner for nanocomplex (p < 0.00005, p < 0.00005, p < 0.00005) and free drug treatment group (p < 0.00005, p < 0.05, p < 0.05) compared to the control untreated group. While in the GNR group, IL-6 and TNF-α were downregulated (p < 0.005, p < 0.00005), and IL-12p40 (p < 0.00005) was upregulated all in a statistically significant manner. While at protein level, cells were treated with our nanocomplex: IL-1β, IL-6, TNF-α, and IL-12p70 and were significantly decreased (p < 0.00005,p < 0.005,p < 0.05,p < 0.00005), and IL-10 was found to be significantly increased in culture compared to the untreated control group (p < 0.005). For free drug; IL-1β and IL-12p70 were significantly decreased (p < 0.00005, p < 0.00005), while a significant increase in the secretion levels of IL-10 only was noticed compared to the untreated group (p < 0.005). For GNR treatment groups, IL-1β, TNF-α, and IL-12p70 were significantly decreased (p < 0.00005, p < 0.05, p < 0.00005). Conclusion We can conclude that our nanocomplex is a potent effector that prevents tumoral progression by activating three main immunological strategies: switching the surface expression profile of the activated macrophages into a proinflammatory M1-like phenotype, downregulating the expression of proinflammatory cytokines, and upregulating the expression level of anti-inflammatory cytokines.

Highlights

  • This study is aimed at investigating the immunological response after treating THP-1 cells with gold nanorods conjugated with a phosphatidylinositol 3-kinase (PI3Kα) inhibitor

  • To confirm the success of differentiation from monocytes into macrophages, surface marker expression profile was evaluated by flow cytometry

  • There are no changes in the levels of IL-6, IL8, TNF-α, and TGF-β; on the other hand, for the GNR treatment group, the measured concentrations of IL-1β, TNF-α, and IL-12p70, for this treatment group, were significantly decreased (p < 0:00005,p < 0:05,p < 0:00005), respectively, while we demonstrate no changes in protein levels for the remaining cytokines investigated; IL-6, IL-8, and TGF-β (Figure 4)

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Summary

Introduction

This study is aimed at investigating the immunological response after treating THP-1 cells with gold nanorods conjugated with a phosphatidylinositol 3-kinase (PI3Kα) inhibitor. Cells were treated with our nanocomplex: IL-1β, IL-6, TNF-α, and IL12p70 and were significantly decreased (p < 0:00005,p < 0:005,p < 0:05,p < 0:00005), and IL-10 was found to be significantly increased in culture compared to the untreated control group (p < 0:005). We have conjugated our new promising phosphatidylinositol 3-kinase (PI3Kα) inhibitor to gold nanoparticles where they demonstrated enhanced cytotoxicity against MCF-7 breast cancer cell line [11]; our recent work showed that the conjugated nanoparticles system has modulated the expression of PI3Kα at both gene and protein levels in comparison to the drug or the gold nanorods separately [12]. The application of these new synthesized compounds in medicinal industry must be based on understanding all the biological properties of these compounds and being aware of all their toxicological effects, in addition to investigating their impact on different biological pathways that are involved in the characterization and functionalization of the cell [13, 14]

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