Alotaibi Bader S, Hakami Mohammed Ageeli, Hazazi Ali, Alsaiari Ahad Amer, Khalid Mohammad, Beg Anam
Department of Clinical Laboratory Sciences, College of Applied Medical Sciences, Shaqra University, Al- Quwayiyah-19257, Riyadh, Saudi Arabia.
Department of Pathology and Laboratory Medicine, Security Forces Hospital Program, Riyadh, Saudi Arabia.
Saudi J Biol Sci. 2024 Aug;31(8):104035. doi: 10.1016/j.sjbs.2024.104035. Epub 2024 May 31.
Interleukin-8 (IL-8) is a chemokine, a type of signaling molecule that has a role in immunological responses and inflammation. In recent years, IL-8 is additionally related to cancer growth and recurrence. Breast cancer growth, progression, and metastatic development are all linked to IL-8. Breast cancer cells are known to develop faster when IL-8 stimulates their proliferation and survival. It can also cause angiogenesis, or the creation of new blood vessels, which is necessary for tumor nutrition and growth. IL-8 and curcumin have been subjects of interest in drug design, particularly in the context of inflammation-related disorders and cancer. This study aims to give an overview of the role of IL-8. Inhibitor-based treatment approaches were being used to target IL-8 with curcumin. Molecular docking method was employed to find a potential interaction to supress competitive inhibition of IL-8 with curcumin. PASS analysis and ADMET characteristics were also being carried out. In the end, IL-8 complexed with curcumin is chosen for MD simulations. Overall, our results showed that during the simulation, the complex stayed comparatively stable. It is also possible to investigate curcumin further as a possible treatment option. The combined results imply that IL-8 and their genetic alterations can be studied in precision cancer therapeutic treatments, utilizing target-driven therapy and early diagnosis.
白细胞介素-8(IL-8)是一种趋化因子,是一类在免疫反应和炎症中起作用的信号分子。近年来,IL-8还与癌症的生长和复发有关。乳腺癌的生长、进展和转移发展都与IL-8相关。已知当IL-8刺激乳腺癌细胞增殖和存活时,它们会生长得更快。它还可导致血管生成,即新血管的形成,这对肿瘤的营养供应和生长是必需的。IL-8和姜黄素一直是药物设计领域的研究热点,尤其是在与炎症相关的疾病和癌症方面。本研究旨在概述IL-8的作用。基于抑制剂的治疗方法被用于以姜黄素靶向IL-8。采用分子对接方法寻找潜在的相互作用,以抑制姜黄素对IL-8的竞争性抑制。还进行了PASS分析和ADMET特性研究。最后,选择与姜黄素复合的IL-8进行分子动力学模拟。总体而言,我们的结果表明,在模拟过程中,该复合物保持相对稳定。进一步研究姜黄素作为一种可能的治疗选择也是可行的。综合结果表明,利用靶向驱动治疗和早期诊断,可在精准癌症治疗中研究IL-8及其基因改变。