Datta Suhana, Verma Preeti, Dhara Bikram, Kundu Rita, Maitra Swastika, Mitra Arup Kumar, Khan Mohd Shahnawaz, Zughaibi Torki A, Tabrez Shams, Kumer Ajoy
Department of Microbiology, St. Xavier's College, Kolkata, West Bengal, India.
Department of Botany, Centre of Advanced Studies, University of Calcutta, Kolkata, West Bengal, India.
J Cell Mol Med. 2024 Apr;28(8):e18302. doi: 10.1111/jcmm.18302.
The evolving landscape of personalized medicine necessitates a shift from traditional therapeutic interventions towards precision-driven approaches. Embracing this paradigm, our research probes the therapeutic efficacy of the aqueous crude extract (ACE) of Calocybe indica in cervical cancer treatment, merging botanical insights with advanced molecular research. We observed that ACE exerts significant influences on nuclear morphology and cell cycle modulation, further inducing early apoptosis and showcasing prebiotic attributes. Characterization of ACE have identified several phytochemicals including significant presence of octadeconoic acid. Simultaneously, utilizing advanced Molecular Dynamics (MD) simulations, we deciphered the intricate molecular interactions between Vascular Endothelial Growth Factor (VEGF) and Octadecanoic acid to establish C.indica's role as an anticancer agent. Our study delineates Octadecanoic acid's potential as a robust binding partner for VEGF, with comprehensive analyses from RMSD and RMSF profiles highlighting the stability and adaptability of the protein-ligand interactions. Further in-depth thermodynamic explorations via MM-GBSA calculations reveal the binding landscape of the VEGF-Octadecanoic acid complex. Emerging therapeutic innovations, encompassing proteolysis-targeting chimeras (PROTACs) and avant-garde nanocarriers, are discussed in the context of their synergy with compounds like Calocybe indica P&C. This convergence underscores the profound therapeutic potential awaiting clinical exploration. This study offers a holistic perspective on the promising therapeutic avenues facilitated by C. indica against cervical cancer, intricately woven with advanced molecular interactions and the prospective integration of precision therapeutics in modern oncology.
个性化医疗不断演变的格局使得治疗干预需从传统方法转向精准驱动的方法。秉持这一范式,我们的研究探索了印度杯伞水提粗提物(ACE)在宫颈癌治疗中的疗效,将植物学见解与先进的分子研究相结合。我们观察到,ACE对细胞核形态和细胞周期调控有显著影响,进一步诱导早期凋亡并展现出益生元特性。对ACE的表征鉴定出了几种植物化学物质,包括大量的十八烷酸。同时,利用先进的分子动力学(MD)模拟,我们解析了血管内皮生长因子(VEGF)与十八烷酸之间复杂的分子相互作用,以确定印度杯伞作为抗癌剂的作用。我们的研究描绘了十八烷酸作为VEGF强大结合伴侣的潜力,来自均方根偏差(RMSD)和均方根波动(RMSF)曲线的综合分析突出了蛋白质-配体相互作用的稳定性和适应性。通过MM-GBSA计算进行的进一步深入热力学探索揭示了VEGF-十八烷酸复合物的结合情况。在与印度杯伞等化合物协同作用的背景下,讨论了包括蛋白酶靶向嵌合体(PROTAC)和前沿纳米载体在内的新兴治疗创新。这种融合强调了有待临床探索的巨大治疗潜力。本研究全面阐述了印度杯伞针对宫颈癌的有前景的治疗途径,这些途径与先进的分子相互作用以及精准治疗在现代肿瘤学中的潜在整合紧密相连。