Li Zhenhao, Shi Yingqiu, Zhang Xiaohui, Xu Jing, Wang Hanbo, Zhao Lu, Wang Yi
Pharmaceutical Informatics Institute, College of Pharmaceutical Sciences, Zhejiang University, Hangzhou, China.
Zhejiang Engineering Research Center of Rare Medicinal Plants, Hangzhou, China.
Front Pharmacol. 2020 Mar 18;11:287. doi: 10.3389/fphar.2020.00287. eCollection 2020.
is a well-known herbal remedy widely used for treating various chronic diseases. Traditionally, the fruiting body is regarded as the medicinal part of this fungus, while recently, the therapeutic potentials of spore (GLS) is gaining increasing interests. However, detailed knowledge of chemical compositions and biological activities of the spore is still lacking. In this study, high-resolution mass spectrometry and molecular networking were employed for in-depth chemical profiling of GLS, sporoderm-broken GLS (BGLS) and sporoderm-removed GLS (RGLS), leading to the characterization of 109 constituents. The result also showed that RGLS contained more triterpenoids with much higher contents than BGLS and GLS. Moreover, the immunomodulatory activities of BGLS and RGLS were investigated in the zebrafish models of neutropenia or macrophage deficiency. RGLS exhibited more potent activities in alleviating vinorelbine-induced neutropenia or macrophage deficiency, and significantly enhanced phagocytic function of macrophages, which indicated the immunomodulatory activity of GLS was positively correlated with the content of triterpenoids. Further correlation analysis of chemical profiles of GLS and corresponding bioactivities by partial least squares regression identified the potential immunoactive compounds of GLS, including 20-hydroxylganoderic acid G, elfvingic acid A and ganohainanic acid C. Our findings suggest that combining mass spectrometry molecular networking with zebrafish-based bioassays and chemometrics is a feasible strategy to reveal complex chemical compositions of herbal medicines, as well as to discover their potential active constituents.
是一种广泛用于治疗各种慢性疾病的著名草药。传统上,子实体被视为这种真菌的药用部分,而最近,孢子(GLS)的治疗潜力越来越受到关注。然而,关于孢子的化学成分和生物活性的详细知识仍然缺乏。在本研究中,采用高分辨率质谱和分子网络技术对GLS、破壁孢子粉(BGLS)和去壁孢子粉(RGLS)进行深入的化学剖析,鉴定出109种成分。结果还表明,RGLS含有更多的三萜类化合物,其含量远高于BGLS和GLS。此外,在中性粒细胞减少或巨噬细胞缺陷的斑马鱼模型中研究了BGLS和RGLS的免疫调节活性。RGLS在减轻长春瑞滨诱导的中性粒细胞减少或巨噬细胞缺陷方面表现出更强的活性,并显著增强巨噬细胞的吞噬功能,这表明GLS的免疫调节活性与三萜类化合物的含量呈正相关。通过偏最小二乘回归对GLS的化学图谱和相应生物活性进行进一步的相关性分析,确定了GLS的潜在免疫活性化合物,包括20-羟基灵芝酸G、埃尔夫文酸A和海南灵芝酸C。我们的研究结果表明,将质谱分子网络与基于斑马鱼的生物测定和化学计量学相结合是一种可行的策略,可用于揭示草药的复杂化学成分,并发现其潜在的活性成分。