Herb-CMap: a multimodal fusion framework for deciphering the mechanisms of action in traditional Chinese medicine using Suhuang antitussive capsule as a case study

Author:

Wang Yinyin1ORCID,Sui Yihang1,Yao Jiaqi1,Jiang Hong1,Tian Qimeng1,Tang Yun2ORCID,Ou Yongyu3,Tang Jing4ORCID,Tan Ninghua1

Affiliation:

1. China Pharmaceutical University Department of TCMs Pharmaceuticals, School of Traditional Chinese Pharmacy, , No. 639 Longmian Avenue, Nanjing 211198, PR China

2. East China University of Science and Technology Shanghai Key Laboratory of New Drug Design, School of Pharmacy, , No. 130 Meilong Road, Shanghai 200237, China

3. Beijing Haiyan Pharmaceutical Co., Ltd., Yangtze River Pharmaceutical Group , No. 16 Shengmingyuan Road, Beijing 102206, PR China

4. University of Helsinki Research Program in Systems Oncology, Faculty of Medicine, , Haartmaninkatu 8, Helsinki FI-00290, Finland

Abstract

Abstract Herbal medicines, particularly traditional Chinese medicines (TCMs), are a rich source of natural products with significant therapeutic potential. However, understanding their mechanisms of action is challenging due to the complexity of their multi-ingredient compositions. We introduced Herb-CMap, a multimodal fusion framework leveraging protein–protein interactions and herb-perturbed gene expression signatures. Utilizing a network-based heat diffusion algorithm, Herb-CMap creates a connectivity map linking herb perturbations to their therapeutic targets, thereby facilitating the prioritization of active ingredients. As a case study, we applied Herb-CMap to Suhuang antitussive capsule (Suhuang), a TCM formula used for treating cough variant asthma (CVA). Using in vivo rat models, our analysis established the transcriptomic signatures of Suhuang and identified its key compounds, such as quercetin and luteolin, and their target genes, including IL17A, PIK3CB, PIK3CD, AKT1, and TNF. These drug–target interactions inhibit the IL-17 signaling pathway and deactivate PI3K, AKT, and NF-κB, effectively reducing lung inflammation and alleviating CVA. The study demonstrates the efficacy of Herb-CMap in elucidating the molecular mechanisms of herbal medicines, offering valuable insights for advancing drug discovery in TCM.

Funder

Academy of Finland

Jiangsu Province Science Foundation for Youths

China Pharmaceutical University

Publisher

Oxford University Press (OUP)

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