The potential modulatory impact of garlic-selenium nanoparticles coated with synthetic tocopherol polyethylene glycol-succinate against lead acetate toxicity in male rabbits

IF 2.3 3区 农林科学 Q3 FOOD SCIENCE & TECHNOLOGY Applied Biological Chemistry Pub Date : 2024-05-14 DOI:10.1186/s13765-024-00893-8
Mohamed Abdel Rida Yaseen, Madiha Hadj Ayed, Jabbar A. A. Al-Saaidi
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Abstract

Toxic heavy metal lead enters in the environment due to industrial and anthropogenic activity threatens ecosystems and public health. Natural garlic extract (GE) exhibits antioxidant properties and various applications against several ailments. Therefore, this study scrutinized the protective effects of tocopherol polyethylene glycol succinate-coated garlic selenium (TPGS-GSNP) against lead acetate (LA) toxicity in rabbits. Sixty-four mature male rabbits were involved and divided into 8 equal groups. They received distilled water (negative control; T1), 30 mg/kg bw of LA (positive control; T2), 800 mg/kg bw of GE (T3), GE + LA (T4), 1 mg/kg bw of TPGS-Selenium (T5), TPGS-S + LA (T6), 1 mg/kg bw of TPGS-GSNP (T7), and TPGS-GSNP + LA (T8). Consequently, treatments were administered three times a week for 12 weeks. Following the treatment period, serum oxidant-antioxidant, protein, and lipid profiles, liver and kidney function, histopathological findings of the adrenal, liver, and kidneys, femur bone marrow chromosomal aberrations, and mitotic activity were collected and analysed. LA exposure showed significant reductions in antioxidant levels, organ weights, and mitotic activity while increasing oxidative stress, corticosteroid levels, and chromosomal aberrations. Importantly, TPGS-GSNP administration significantly improved these markers compared to the LA group. In addition, histological analysis revealed structural improvements of the studied organs in the TPGS-GSNP group compared to the LA group, which displayed high cellular necrotic and degenerative changes. In conclusion, synthetic TPGS-GSNP demonstrated higher protective efficacy against LA-induced toxicity compared to natural GE or selenium alone. However, more future studies could be conducted to explore the potential of TPGS-GSNP as an anticancer or immunomodulatory agent.

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涂有合成生育酚聚乙二醇琥珀酸酯的大蒜硒纳米颗粒对雄性家兔乙酸铅毒性的潜在调节作用
由于工业和人类活动,有毒重金属铅进入环境,威胁着生态系统和公众健康。天然大蒜提取物(GE)具有抗氧化特性,可用于多种疾病的治疗。因此,本研究探讨了生育酚聚乙二醇琥珀酸酯包衣大蒜硒(TPGS-GSNP)对兔子乙酸铅(LA)毒性的保护作用。64 只成年雄兔被分成 8 组。它们分别接受蒸馏水(阴性对照组;T1)、30 毫克/千克体重的 LA(阳性对照组;T2)、800 毫克/千克体重的 GE(T3)、GE + LA(T4)、1 毫克/千克体重的 TPGS-硒(T5)、TPGS-S + LA(T6)、1 毫克/千克体重的 TPGS-GSNP (T7)和 TPGS-GSNP + LA(T8)。因此,治疗每周进行三次,持续 12 周。治疗期结束后,收集并分析了血清氧化抗氧化剂、蛋白质和脂质概况、肝肾功能、肾上腺、肝脏和肾脏的组织病理学结果、股骨骨髓染色体畸变和有丝分裂活性。接触 LA 后,抗氧化剂水平、器官重量和有丝分裂活性明显降低,同时氧化应激、皮质类固醇水平和染色体畸变增加。重要的是,与 LA 组相比,服用 TPGS-GSNP 能明显改善这些指标。此外,组织学分析显示,与 LA 组相比,TPGS-GSNP 组所研究器官的结构有所改善,而 LA 组则显示出较高的细胞坏死和退行性变化。总之,与天然 GE 或单独使用硒相比,合成 TPGS-GSNP 对 LA 诱导的毒性具有更高的保护效力。不过,今后还可以开展更多研究,探索 TPGS-GSNP 作为抗癌剂或免疫调节剂的潜力。
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来源期刊
Applied Biological Chemistry
Applied Biological Chemistry Chemistry-Organic Chemistry
CiteScore
5.40
自引率
6.20%
发文量
70
审稿时长
20 weeks
期刊介绍: Applied Biological Chemistry aims to promote the interchange and dissemination of scientific data among researchers in the field of agricultural and biological chemistry. The journal covers biochemistry and molecular biology, medical and biomaterial science, food science, and environmental science as applied to multidisciplinary agriculture.
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