黄芩苷纳米乳通过减轻氧化应激、炎症和恢复细胞完整性来减轻顺铂诱导的肝毒性。

IF 3.3 3区 医学 Q2 PHARMACOLOGY & PHARMACY Toxicology and applied pharmacology Pub Date : 2025-01-18 DOI:10.1016/j.taap.2025.117231
Hadir Farouk, Maha Nasr, Marawan Abd Elbaset, Marwa E Shabana, Omar A H Ahmed-Farid, Rania F Ahmed
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引用次数: 0

摘要

顺铂是一种广泛使用的化疗药物,但其临床应用受到影响不同系统和器官的副作用的限制,在某些情况下包括肝毒性。黄芩苷是黄芩中分离的一种黄酮类化合物,具有抗氧化、抗炎和保护肝脏的作用,但其生物利用度较低,限制了黄芩苷的临床应用。本研究旨在探讨黄芩苷纳米乳制剂是否能增强其对顺铂所致大鼠肝损伤的保护作用。每日口服黄芩苷纳米制剂(10或20 mg/kg体重/天)或常规制剂(100 mg/kg体重/天),持续12天。第6天和第12天分别腹腔注射顺铂(10 mg/kg体重)诱导肝损伤。第13天采集样品。评估血清标志物、氧化应激参数、炎症标志物、细胞能量状态、组织病理学和其他终点。结果显示,顺铂引起血清酶升高、氧化应激、炎症、DNA损伤、细胞能量水平降低,并引起严重的肝脏组织学改变。黄芩苷纳米乳特别是高剂量20 mg/kg时,显著改善了顺铂诱导的各参数异常。传统的黄芩苷悬浮液也提供了保护,尽管程度不如纳米乳。综上所述,黄芩苷纳米乳可增强其抗顺铂毒性的肝保护作用。研究结果表明,采用纳米乳剂配方可以提高黄芩苷的治疗效果。
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Baicalin nanoemulsion mitigates cisplatin-induced hepatotoxicity by alleviating oxidative stress, inflammation, and restoring cellular integrity.

Cisplatin is a widely used chemotherapeutic agent, but its clinical utility is limited by side effects affecting different systems and organs, including hepatotoxicity in some cases. Baicalin, a flavonoid isolated from Scutellaria baicalensis, possesses antioxidant, anti-inflammatory and hepatoprotective properties, but its low bioavailability limits its therapeutic use. This study aimed to investigate whether a nanoemulsion formulation of baicalin could enhance its efficacy against cisplatin-induced hepatic injury in rats. Rats were orally treated daily with baicalin either in nanoformulation (10 or 20 mg/kg body weight per day) or conventional form (100 mg/kg body weight per day) for 12 days. Cisplatin (10 mg/kg body weight) was injected intraperitoneally on day six and day twelve to induce hepatic injury. Samples were collected on day thirteen. Serum markers, oxidative stress parameters, inflammatory markers, cellular energy status, histopathology, and other endpoints were evaluated. Results revealed that cisplatin caused elevated serum enzymes, oxidative stress, inflammation, DNA damage, depleted cellular energy levels, and induced severe hepatic histological changes. The baicalin nanoemulsion especially the higher 20 mg/kg dose, significantly ameliorated cisplatin-induced abnormalities across the various parameters. The conventional baicalin suspension also provided protection, albeit to a lesser degree than the nanoemulsion. In conclusion, administering baicalin as a nanoemulsion potentiated its hepatoprotective effects against cisplatin toxicity. The nanoemulsion formulation strategy was proven promising for enhancing baicalin's therapeutic utility.

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来源期刊
CiteScore
6.80
自引率
2.60%
发文量
309
审稿时长
32 days
期刊介绍: Toxicology and Applied Pharmacology publishes original scientific research of relevance to animals or humans pertaining to the action of chemicals, drugs, or chemically-defined natural products. Regular articles address mechanistic approaches to physiological, pharmacologic, biochemical, cellular, or molecular understanding of toxicologic/pathologic lesions and to methods used to describe these responses. Safety Science articles address outstanding state-of-the-art preclinical and human translational characterization of drug and chemical safety employing cutting-edge science. Highly significant Regulatory Safety Science articles will also be considered in this category. Papers concerned with alternatives to the use of experimental animals are encouraged. Short articles report on high impact studies of broad interest to readers of TAAP that would benefit from rapid publication. These articles should contain no more than a combined total of four figures and tables. Authors should include in their cover letter the justification for consideration of their manuscript as a short article.
期刊最新文献
Cadmium-induced iron dysregulation contributes to functional impairment in brain endothelial cells via the ferroptosis pathway. Engineering human cerebral organoids to explore mechanisms of arsenic-induced developmental neurotoxicity. Assessing the impact of sub-chronic polyethylene terephthalate nanoplastic exposure on male reproductive health in mice. Baicalin nanoemulsion mitigates cisplatin-induced hepatotoxicity by alleviating oxidative stress, inflammation, and restoring cellular integrity. Hesperidin enhanced anti-breast cancer effect and alleviated cisplatin induced nephrotoxicity through silk fibroin delivery system.
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