The cardioprotective effects of Fruitflow® against Doxorubicin-induced toxicity in rat cardiomyoblast cells H9c2 (2-1) and high-fat diet-induced dyslipidemia and pathological alteration in cardiac tissue of Wistar Albino rats.

Diptimayee Das, Ganesan Jothimani, Antara Banerjee, Asim K Duttaroy, Surajit Pathak
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Abstract

Background: Natural compounds offer promising targets for cardioprotection, which could lead to enhanced clinical outcomes. We aimed to determine the cardioprotective effects of Fruitflow®, a water-soluble tomato extract known for its anti-platelet effects in doxorubicin-induced toxicity in rat cardiomyoblast cell line pathological alteration in heart tissue of high fat-fed Wistar Albino rats.

Methods: The cardioprotective effect of Fruitflow® was investigated using H9c2 (2-1) cells (rat cardiomyoblast cell line) and high-fat diet-fed Wistar Albino rats. We evaluated morphological changes, cell proliferation, cell migration, antioxidant activity, cell cycle progression, and mitochondrial membrane potential after the Fruitflow® treatment in the Doxorubicin-injured H9c2 (2-1) cell line. We studied lipid profiles, inflammation, oxidative stress, and cardiac function regulatory enzyme activity in the rat model.

Results: Fruitflow® dose-dependently stimulated cell proliferation and migration in Doxorubicin-injured H9c2 (2-1) cells, potentially promoting cardiac regeneration and supporting tissue repair. Fruitflow® modulated the cell cycle, improved mitochondrial function, and reduced oxidative stress. Furthermore, it significantly improved lipid profiles and enzyme activities and reduced inflammation and oxidative stress in high-fat-fed rats. Fruitflow® also modulated the expression of genes involved in cardiac remodeling, mitochondrial biogenesis, inflammation, and vascular function.

Conclusion: Our findings suggest Fruitflow® may have cardioprotective effects, making it a potential treatment option for cardiac ailments. Larger-scale clinical trials were recommended further to determine the efficacy and safety of Fruitflow® as a potential therapeutic agent for cardiac diseases, potentially in combination with other cardioprotective medications.

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Fruitflow® 对多柔比星诱导的大鼠心肌母细胞 H9c2(2-1)毒性和高脂饮食诱导的 Wistar Albino 大鼠血脂异常及心脏组织病理改变的心脏保护作用。
背景:天然化合物为心脏保护提供了前景广阔的靶点,可提高临床疗效。我们的目的是确定 Fruitflow® 的心脏保护作用,Fruitflow® 是一种水溶性番茄提取物,因其抗血小板作用而闻名,能抑制多柔比星诱导的大鼠心肌母细胞系毒性对高脂喂养的 Wistar Albino 大鼠心脏组织的病理改变:使用 H9c2(2-1)细胞(大鼠心肌母细胞系)和高脂饮食喂养的 Wistar Albino 大鼠研究了 Fruitflow® 对心脏的保护作用。我们评估了多柔比星损伤的 H9c2 (2-1) 细胞系经 Fruitflow® 处理后的形态变化、细胞增殖、细胞迁移、抗氧化活性、细胞周期进展和线粒体膜电位。我们还研究了大鼠模型的脂质概况、炎症、氧化应激和心脏功能调节酶活性:结果:Fruitflow® 能剂量依赖性地刺激多柔比星损伤的 H9c2 (2-1) 细胞的增殖和迁移,从而促进心脏再生并支持组织修复。Fruitflow® 可调节细胞周期,改善线粒体功能,减少氧化应激。此外,它还能明显改善高脂大鼠的血脂状况和酶活性,减少炎症和氧化应激。Fruitflow® 还能调节心脏重塑、线粒体生物生成、炎症和血管功能相关基因的表达:我们的研究结果表明,Fruitflow® 可能具有保护心脏的作用,使其成为治疗心脏疾病的潜在选择。建议进一步开展更大规模的临床试验,以确定 Fruitflow® 作为心脏疾病潜在治疗药物的有效性和安全性,并有可能与其他心脏保护药物联合使用。
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