BSLT and DPPH Methods to Determine the Potential Toxicity of Archidendron Pauciflorum Skin to Artemia Salina and the Antioxidant Potential as an Early Exploration of Anti-Cancer Drugs

Alfin Surya, Aqilah Awg Abdul Rahman, Zaiyar, Hest Marliza
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Abstract

Archidendron pauciflorum skin is a dense waste that pollutes the environment and can be a problem if not properly cleaned. According to previous research, Archidendron pauciflorum skin has a very high potential because it contains flavonoid components and polyphenols with anti-cancer and antibacterial properties. To evaluate the toxicity activity with the BSLT Method and the antioxidant DPPH Method, the scalp is cut into small pieces, dried in the oven at 60 °C, and then macerated for 24 hours in a mixture of methanol and ethyl acetate solvents as well as hexane to produce polar, semipolar, and non-polar chemicals. The fibre from each solvent is collected, and the rotary evaporator is used to evaporate it until a thick extract is produced. According to the final findings of the study, the LC50 value (μg/mL) for each solvent is: the methanol value is 111 ppm, while ethyl acetate is 192 ppm. While for the test of antioxidant activity, significant results were obtained on the methanol solvent with an IC50 value of 51.13 μg/mL The conclusion of this study is that the 24-hour maceration period is the most efficient solvent for toxicity to Artemia salina and antioxidants to continue further research in the search for anti-cancer drugs.
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用 BSLT 和 DPPH 方法确定弓形虫表皮对盐藻类的潜在毒性以及作为抗癌药物早期探索的抗氧化潜力
Archidendron pauciflorum 的表皮是一种致密的废物,会对环境造成污染,如果清洁不当,就会产生问题。根据以往的研究,白花蛇舌草皮具有很高的潜力,因为它含有黄酮类成分和多酚,具有抗癌和抗菌特性。为了用 BSLT 法和抗氧化 DPPH 法评估毒性活性,将头皮切成小块,在 60 °C 的烘箱中烘干,然后在甲醇、乙酸乙酯和正己烷的混合溶剂中浸渍 24 小时,以产生极性、半极性和非极性化学物质。收集每种溶剂中的纤维,然后用旋转蒸发仪进行蒸发,直至产生浓稠的提取物。根据研究的最终结果,每种溶剂的半数致死浓度值(μg/mL)分别为:甲醇为 111 ppm,乙酸乙酯为 192 ppm。这项研究的结论是,24 小时浸泡期是对盐蒿子和抗氧化剂毒性最有效的溶剂,可继续进一步研究寻找抗癌药物。
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