Departamento de Ciencias de la Salud, Centro Universitario de los Altos, Universidad de Guadalajara, Tepatitlán de Morelos 47620, Mexico.
Instituto de Investigación de Cáncer en la Infancia y Adolescencia, Departamento de Fisiología, Centro Universitario de Ciencias de la Salud, Guadalajara 44340, Mexico.
Nutrients. 2024 Feb 19;16(4):566. doi: 10.3390/nu16040566.
The utilization of food as a therapeutic measure for various ailments has been a prevalent practice throughout history and across different cultures. This is exemplified in societies where substances like have been employed to manage health conditions like hypertension and elevated blood glucose levels. The inherent bioactive compounds found in this plant, namely, delphinidin-3-sambubioside (DS3), quercetin (QRC), and hibiscus acid (HA), have been linked to various health benefits. Despite receiving individual attention, the specific molecular targets for these compounds remain unclear. In this study, computational analysis was conducted using bioinformatics tools such as Swiss Target Prediction, ShinnyGo 0.77, KEGG, and Stringdb to identify the molecular targets, pathways, and hub genes. Supplementary results were obtained through a thorough literature search in PubMed. DS3 analysis revealed potential genetic alterations related to the metabolism of nitrogen and glucose, inflammation, angiogenesis, and cell proliferation, particularly impacting the PI3K-AKT signaling pathway. QRC analysis demonstrated interconnected targets spanning multiple pathways, with some overlap with DS3 analysis and a particular focus on pathways related to cancer. HA analysis revealed distinct targets, especially those associated with pathways related to the nervous system. These findings emphasize the necessity for focused research on the molecular effects of DS3, QRC, and HA, thereby providing valuable insights into potential therapeutic pathways.
将食物作为治疗各种疾病的一种疗法在历史上和不同文化中一直是一种普遍的做法。在一些社会中,像 这样的物质被用来控制高血压和高血糖等健康状况就是一个例证。这种植物中发现的固有生物活性化合物,即飞燕草素-3-桑布糖苷(DS3)、槲皮素(QRC)和芙蓉酸(HA),与各种健康益处有关。尽管这些化合物受到了单独的关注,但它们的特定分子靶点仍不清楚。在这项研究中,使用生物信息学工具,如 Swiss Target Prediction、ShinnyGo 0.77、KEGG 和 Stringdb 进行了计算分析,以确定分子靶点、途径和枢纽基因。通过在 PubMed 中进行全面的文献检索获得了补充结果。DS3 分析揭示了与氮和葡萄糖代谢、炎症、血管生成和细胞增殖相关的潜在遗传改变,特别是对 PI3K-AKT 信号通路有影响。QRC 分析表明,多个途径之间存在相互关联的靶点,与 DS3 分析有一些重叠,并且特别关注与癌症相关的途径。HA 分析揭示了独特的靶点,特别是那些与神经系统相关的途径。这些发现强调了对 DS3、QRC 和 HA 的分子效应进行有针对性研究的必要性,从而为潜在的治疗途径提供了有价值的见解。