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(葫芦科)在急性炎症小鼠模型中显示出强大的抗炎活性。

(Cucurbitaceae) Shows Strong Anti-Inflammatory Activity in Murine Models of Acute Inflammation.

作者信息

Andrade Maria Lorena de Oliveira, Marinho Pedro Artur Ferreira, Oliveira Alisson Macário de, Souza Thalisson Amorim de, Cibulski Samuel Paulo, Alves Harley da Silva

机构信息

Center of Biological and Health Sciences, Phytochemistry Laboratory, Post-Graduation Program in Pharmaceuticals Sciences, State University of Paraíba, Campina Grande 58429-500, Brazil.

Center of Biological and Health Sciences, Pharmacological Analysis Laboratory, Post-Graduation Program in Pharmaceuticals Sciences, State University of Paraíba, Campina Grande 58429-500, Brazil.

出版信息

Pharmaceutics. 2024 Oct 4;16(10):1298. doi: 10.3390/pharmaceutics16101298.

Abstract

is an endemic species from the semi-arid Brazilian, which has limited toxicological and pharmacological studies. This species belongs to a well-studied family known for its bioactive compounds used in treating inflammatory. This study aimed to identify secondary metabolites in the stems from , evaluate toxicity, and investigate the anti-inflammatory potential of the stem hydroalcoholic extract (SHE-Ag). qualitative and quantitative assays were employed to identify secondary metabolites, along with chromatographic analyses and H and C NMR. Toxicity was assessed through in vitro hemolytic toxicity, in vivo genotoxicity, and oral acute toxicity tests before the pharmacological assays were conducted. phytochemical screening, HPLC and NMR analyses suggested the presence of saponins of the norcucurbitacin class. The SHE-Ag exhibited no hemolytic activity and no mutagenic potential. However, in vivo toxicity at a dose of 2000 mg/kg revealed hematological and biochemical alterations, while the 500 mg/kg dose was safe. In the anti-inflammatory assays, SHE-Ag at 100 mg/kg reduced paw edema by 55.8%, and leukocyte and neutrophil migration by 62% and 68% in the peritonitis model, respectively; inflammatory cell migration by 70% in the air pouch model, outperforming indomethacin, which showed a 54% reduction. : these findings indicate that SHE-Ag is rich in saponins, confirmed through HPLC and H and C NMR analyses. The SHE-Ag also demonstrated low toxicity. The inflammation models used showed a reduction in inflammation, pro-inflammatory cells, and edema, highlighting the significant anti-inflammatory activity of hydroethanolic extract stems.

摘要

是一种来自巴西半干旱地区的特有物种,其毒理学和药理学研究有限。该物种属于一个经过充分研究的科,以其用于治疗炎症的生物活性化合物而闻名。本研究旨在鉴定该植物茎中的次生代谢产物,评估其毒性,并研究茎水醇提取物(SHE-Ag)的抗炎潜力。采用定性和定量分析方法鉴定次生代谢产物,并结合色谱分析以及氢核磁共振和碳核磁共振。在进行药理分析之前,通过体外溶血毒性、体内遗传毒性和口服急性毒性试验评估毒性。植物化学筛选、高效液相色谱和核磁共振分析表明存在降葫芦素类皂苷。SHE-Ag没有表现出溶血活性和致突变潜力。然而,2000mg/kg剂量的体内毒性显示出血液学和生化改变,而500mg/kg剂量是安全的。在抗炎试验中,100mg/kg的SHE-Ag在腹膜炎模型中使爪部水肿减少了55.8%,白细胞和中性粒细胞迁移分别减少了62%和68%;在气袋模型中炎症细胞迁移减少了70%,优于吲哚美辛,后者显示减少了54%。结论:这些发现表明SHE-Ag富含皂苷,通过高效液相色谱以及氢核磁共振和碳核磁共振分析得到证实。SHE-Ag也显示出低毒性。所使用的炎症模型显示炎症、促炎细胞和水肿减少,突出了茎水醇提取物显著的抗炎活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f0c0/11510368/f8a9246c5960/pharmaceutics-16-01298-g001.jpg

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