Department of Pharmacy, Banasthali Vidyapith, Banasthali, Rajasthan, India.
Department of Pharmacology, Saveetha College of Pharmacy, Saveetha Institute of Medical and Technical Sciences, Chennai, India.
Cell Biochem Biophys. 2024 Sep;82(3):2607-2624. doi: 10.1007/s12013-024-01374-x. Epub 2024 Jul 12.
Aconitum heterophyllum Wall ex Royle. (Ranunculaceae) is a traditional medicinal herb that has shown extensive pharmacological potential to treat cough, diarrhea, and infectious diseases but no scientific evidence is available to validate its antiasthmatic potential. In this study, we have investigated the tracheal relaxation and antiasthmatic activity of the selected bioactive fraction of A. heterophyllum. Chemical profiling of the most effective fraction obtained via bioassay-guided fractionation was done using LC-MS (Liquid chromatography-mass spectrometry, a technique utilized in the identification, separation, and quantification of known and unknown compounds). Molecular docking analysis of characterized constituents was performed to recognize the binding receptors, followed by an evaluation of the tracheal relaxation ability of active fraction. An acute oral toxicity study of the most effective fraction was done using OECD guidelines 423. Further, the therapeutic efficacy of the fraction was validated in asthma using a guinea pig model of ovalbumin (OVA) induced allergic asthma. The bio-guided activity revealed that hydro-methanolic extract of A. heterophyllum roots (F-1) was the most active fraction. LC-MS analysis of F-1 showed the presence of six major bioactive compounds in F-1. Molecular docking studies revealed strong binding affinities of identified constituents with histaminic receptor (H) and muscarinic receptor (M). The ex vivo study demonstrated smooth muscle relaxant activity of F-1 via dysregulating diverse signal transduction pathways viz. histaminic and muscarinic receptors antagonism (non-competitive), stimulation of β-adrenergic receptor pathway, and soluble guanylyl cyclase activation. The findings of acute oral toxicity studies revealed that F-1 had no toxicity up to the dose of 2000 mg/Kg. The anti-asthmatic therapeutic efficacy of F-1 was further confirmed by the amelioration of respiratory hyperresponsiveness in asthmatic guinea pigs. This is the first evidence-based study showing the antiasthmatic therapeutic potential of the traditionally used herb A. heterophyllum through, computational and animal studies.
乌头(Aconitum heterophyllum Wall ex Royle.)(毛茛科)是一种传统药用植物,具有广泛的治疗咳嗽、腹泻和传染病的药理潜力,但没有科学证据证明其具有抗哮喘的潜力。在这项研究中,我们研究了从乌头中选择的生物活性部位的气管松弛和抗哮喘活性。通过生物测定指导的分级分离获得的最有效部分的化学特征使用 LC-MS(液相色谱-质谱联用技术,用于鉴定、分离和定量已知和未知化合物的技术)进行。对鉴定出的特征成分进行分子对接分析,以识别结合受体,然后评估活性部分的气管松弛能力。使用 OECD 指南 423 进行最有效部分的急性口服毒性研究。进一步,使用卵清蛋白(OVA)诱导的变应性哮喘豚鼠模型验证该部分的治疗功效。生物指导活性表明,乌头根的水-甲醇提取物(F-1)是最活跃的部分。F-1 的 LC-MS 分析显示 F-1 中存在六种主要的生物活性化合物。分子对接研究表明,鉴定出的成分与组胺受体(H)和毒蕈碱受体(M)具有很强的结合亲和力。离体研究表明,F-1 通过调节不同的信号转导途径,如组胺和毒蕈碱受体拮抗(非竞争性)、刺激β-肾上腺素能受体途径和可溶性鸟苷酸环化酶激活,具有平滑肌松弛活性。急性口服毒性研究的结果表明,F-1 没有毒性,最高剂量可达 2000mg/Kg。F-1 的抗哮喘治疗效果通过改善哮喘豚鼠的呼吸高反应性得到进一步证实。这是第一项基于计算和动物研究的证据,表明传统使用的乌头具有抗哮喘的治疗潜力。