Alnuqaydan Abdullah M, Almutary Abdulmajeed, Bhat Gh Rasool, Mir Tanveer Ahmad, Wani Shadil Ibrahim, Rather Mohd Younis, Mir Shabir Ahmad, Alshehri Bader, Alnasser Sulaiman, Ali Zainy Faten M, Rah Bilal
Department of Medical Biotechnology, College of Applied Medical Sciences, Qassim University, Buraidah 51452, Saudi Arabia.
Advanced Centre for Human Genetics, Sher-i-Kashmir Institute of Medical Sciences, Srinagar 190011, Jammu and Kashmir, India.
Pharmaceutics. 2022 Jun 13;14(6):1256. doi: 10.3390/pharmaceutics14061256.
(1) Background: Inflammation is one of the primary responses of the immune system and plays a key role in the pathophysiology of various diseases. Recent reports suggest that various phytochemicals exhibit promising anti-inflammatory and immunomodulation activities with relatively few undesirable effects, thus offering a viable option to deal with inflammation and associated diseases. The current study evaluates the anti-inflammatory and immunomodulatory effects of withaferin A (WA) in immune cells extracted from BALB/c mice. (2) Methods: MTT assays were performed to assess the cell viability of splenocytes and anti-inflammatory doses of WA. Under aseptic conditions, the isolation of macrophages and splenocytes from BALB/c mice was performed to investigate the anti-inflammatory effects of WA. Analysis of the expression of proinflammatory cytokines and associated signaling mediators was performed using proinflammatory assay kits, real-time polymerase chain reaction (RT-PCR), and immunoblotting, while the quantification of B and T cells was performed by flow cytometry. (3) Results: Our results demonstrated that WA exhibits anti-inflammatory and immunomodulatory effects in LPS-stimulated macrophages and splenocytes derived from BALB/c mice, respectively. Mechanistically, we found that WA promotes an anti-inflammatory effect on LPS-stimulated macrophages by attenuating the secretion and expression of proinflammatory cytokines TNF-α, IL-1β, IL-6, and the inflammation modulator NO, both at the transcriptional and translational level, respectively. Further, WA inhibits LPS-stimulated inflammatory signaling by dephosphorylation of p-Akt-Ser473 and p-ERK1/2. This dephosphorylation does not allow IĸB-kinase activation to disrupt IĸB-NF-ĸB interaction. The consistent interaction of IĸB with NF-ĸB in WA-treated cells attenuates the activation of downstream inflammatory signaling mediators Cox-2 and iNOS expression, which play crucial roles in inflammatory signaling. Additionally, we observed significant immunomodulation of LPS-stimulated spleen-derived lymphocytes by suppression of B (CD19) and T (CD4/CD8) cell populations after treatment with WA. (4) Conclusion: WA exhibits anti-inflammatory and immunomodulatory activity by modulating Akt/ERK/NF-kB-mediated inflammatory signaling in macrophages and immunosuppression of B (CD19) and T cell (CD4/CD8) populations in splenocytes after LPS stimulation. These results suggest that WA could act as a potential anti-inflammatory/immunomodulatory molecule and support its use in the field of immunopharmacology to modulate immune system cells.
(1)背景:炎症是免疫系统的主要反应之一,在多种疾病的病理生理学中起关键作用。最近的报道表明,各种植物化学物质具有良好的抗炎和免疫调节活性,且不良影响相对较少,从而为应对炎症及相关疾病提供了一个可行的选择。本研究评估了睡茄内酯A(WA)对从BALB/c小鼠提取的免疫细胞的抗炎和免疫调节作用。(2)方法:进行MTT试验以评估脾细胞的细胞活力及WA的抗炎剂量。在无菌条件下,从BALB/c小鼠分离巨噬细胞和脾细胞,以研究WA的抗炎作用。使用促炎检测试剂盒、实时聚合酶链反应(RT-PCR)和免疫印迹分析促炎细胞因子及相关信号介质的表达,同时通过流式细胞术对B细胞和T细胞进行定量分析。(3)结果:我们的结果表明,WA分别对来自BALB/c小鼠的LPS刺激的巨噬细胞和脾细胞具有抗炎和免疫调节作用。从机制上讲,我们发现WA通过在转录和翻译水平上分别减弱促炎细胞因子TNF-α、IL-1β、IL-6以及炎症调节因子NO的分泌和表达,从而对LPS刺激的巨噬细胞产生抗炎作用。此外,WA通过使p-Akt-Ser473和p-ERK1/2去磷酸化来抑制LPS刺激的炎症信号传导。这种去磷酸化不允许IκB激酶激活来破坏IκB-NF-κB相互作用。在经WA处理的细胞中,IκB与NF-κB的持续相互作用减弱了下游炎症信号介质Cox-2和iNOS表达的激活,这在炎症信号传导中起关键作用。此外,我们观察到在用WA处理后,通过抑制B(CD19)和T(CD4/CD8)细胞群体,WA对LPS刺激的脾源性淋巴细胞具有显著的免疫调节作用。(4)结论:WA通过调节Akt/ERK/NF-κB介导的巨噬细胞炎症信号传导以及LPS刺激后脾细胞中B(CD19)和T细胞(CD4/CD8)群体的免疫抑制,表现出抗炎和免疫调节活性。这些结果表明,WA可能作为一种潜在的抗炎/免疫调节分子,并支持其在免疫药理学领域用于调节免疫系统细胞。