Shao Ying-Ying, Yang Qiu-Hong, He Shu-Fen, Zhang Han-Bin, Han Wei-Chao, Xie Bao-Cheng, He Rui-Rong, Hong Wen-Xin
Department of Pharmacy, The Tenth Affiliated Hospital of Southern Medical University (Dongguan People's Hospital), Dongguan, China.
School of Pharmacy, Zunyi Medical University, Zunyi, China.
Front Oncol. 2025 May 29;15:1587856. doi: 10.3389/fonc.2025.1587856. eCollection 2025.
The cortex mori comes from the white endothelium of the young root of Morus alba L., and its medical value was first described in Shen Nong Ben Cao Jing (Classic on Materia Medical of Shennong). It was originally intended to purge lung, relieve asthma and reduce swelling. More and more studies reported that its pharmacological effects include analgesic, anti-inflammatory, antitussive, antiasthmatic, hypoglycemic, hypolipidemic and anti-diabetic peripheral neuropathy. Accumulating clinical evidences exhibited that it can treat asthma, pneumonia and lung cancer. However, a comprehensive mechanism of cortex mori in the treatment of lung cancer needs to be further elucidated.To investigate the effect of cortex mori and its active components against lung cancer and explore its action and mechanism through network pharmacological analysis combined with biological experiments and .
GeneCards database was searched for the disease targets of lung cancer, and a Chinese medicine database, Traditional Chinese Medicine Systems Pharmacology (TCMSP), was used to screen cortex mori for its active components and targets. Targets related to lung cancer and action targets related to cortex mori were crossed. Protein-protein interactions (PPI) and gene ontologies (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) were analyzed for intersection genes. In order to determine whether cortex mori affects lung cancer, MTS, wound healing, Western-blot, Hoechst assay, apoptosis assay and animal experiments were performed.
32 active ingredients and 434 targets of Chinese medicine cortex mori were obtained. Totally 2,3107 lung cancer related targets were collected, and 163 Chinese medicine-disease targets were derived from the intersection. The regulatory network of Chinese medicine-active ingredient-disease-targets showed that cortex mori acted on 163 disease targets of lung cancer mainly by cyclomolorusin, kuwanon D and Moracin A, etc. The core genes involving cortex mori treating lung cancer might consist of JUN, AKT1, etc. The core targets involved 162 biological processes, mainly including nuclear receptor activity, ligand-actived transcription factor activity, etc. The core study targeted 160 pathways, including AGE-RAGE signaling pathways associated with diabetes complications, fluid stress and atherosclerosis. Biologic cytological experiments showed that the effective active component cyclomorusin inhibited proliferation, inhibited migration and induced apoptosis of lung cancer through AKT-PI3K pathway. antitumor assay demonstrated that cyclomolorusin suppressed the tumor growth in mice.
Cortex mori acts on AKT and other related disease targets of lung cancer cells through effective components such as cyclomolorusin, and plays a role in the treatment of lung cancer by inhibiting the signaling pathway associated with lung cancer occurrence and development.
桑白皮来源于桑科植物桑(Morus alba L.)的幼根的白色内皮,其药用价值最早记载于《神农本草经》。其最初用于清肺、平喘、消肿。越来越多的研究报道其药理作用包括镇痛、抗炎、止咳、平喘、降血糖、降血脂及抗糖尿病周围神经病变。越来越多的临床证据表明其可治疗哮喘、肺炎及肺癌。然而,桑白皮治疗肺癌的综合机制仍需进一步阐明。为研究桑白皮及其活性成分对肺癌的作用,并通过网络药理学分析结合生物学实验探索其作用及机制。
通过GeneCards数据库检索肺癌的疾病靶点,利用中药系统药理学数据库(Traditional Chinese Medicine Systems Pharmacology,TCMSP)筛选桑白皮的活性成分及靶点。将肺癌相关靶点与桑白皮作用靶点进行交叉。对交集基因进行蛋白质-蛋白质相互作用(PPI)、基因本体论(GO)及京都基因与基因组百科全书(KEGG)分析。为确定桑白皮是否影响肺癌,进行了MTS、伤口愈合、蛋白质免疫印迹法(Western-blot)、Hoechst染色、凋亡检测及动物实验。
获得桑白皮32种活性成分及434个靶点。共收集到23107个肺癌相关靶点,通过交集得到163个中药-疾病靶点。中药-活性成分-疾病-靶点调控网络显示,桑白皮主要通过环桑皮素、桑酮D及桑根酮A等作用于163个肺癌疾病靶点。桑白皮治疗肺癌的核心基因可能包括JUN、AKT1等。核心靶点涉及162个生物学过程,主要包括核受体活性、配体激活转录因子活性等。核心研究涉及160条通路,包括与糖尿病并发症、流体应激及动脉粥样硬化相关的晚期糖基化终末产物受体(AGE-RAGE)信号通路。生物学细胞学实验表明,有效活性成分环桑皮素通过AKT-PI3K通路抑制肺癌细胞增殖、迁移并诱导凋亡。抗肿瘤实验表明环桑皮素可抑制小鼠肿瘤生长。
桑白皮通过环桑皮素等有效成分作用于肺癌细胞的AKT等相关疾病靶点,通过抑制与肺癌发生发展相关的信号通路发挥治疗肺癌的作用。