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Study on the Nano-scaled Molecules Used in Treatment for Melanoma Using Bio-chemical and Computational Analysis

机译:生化与计算分析研究用于治疗黑色素瘤的纳米分子

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When the production of Reactive Oxygen Species exceeds the capacity for anti-oxidation, the result is cell damage or cell death in melanoma caused by toxicity. This paper conducts a study on the chemo-preventive agents and the resulting chemoprevention. For example, plant polyphenols are examined for their potential to inhibit the process of reactive chain reactions in the UV-exposed skin. In addition, the paper analyzes the chemical and physical properties of the polyphenols that may be useful for skin diseases associated with solar UV radiation-induced inflammation and oxidative stress. Using computational programs, various information about molecules of polyphenols with functional groups is extracted. The optimization energies (kJ/mol) of the molecules are computed and used to determine the characteristics and stability of the molecules. Dipole moments (D) are used to determine the reactivity of the molecules. Measurement of the molecules' stability and reactivity allows evaluation of polyphenols and their ability to inhibit reactive chain reactions caused by Reactive Oxygen Species.
机译:当活性氧的产生超过抗氧化能力时,结果是毒性导致的黑色素瘤细胞损伤或细胞死亡。本文对化学预防剂及其化学预防方法进行了研究。例如,检查了植物多酚在紫外线暴露的皮肤中抑制反应性链反应过程的潜力。此外,本文分析了多酚的化学和物理性质,这些多酚可能对与太阳紫外线辐射引起的炎症和氧化应激有关的皮肤疾病有用。使用计算程序,提取有关具有官能团的多酚分子的各种信息。计算分子的最优化能量(kJ / mol),并将其用于确定分子的特性和稳定性。偶极矩(D)用于确定分子的反应性。分子稳定性和反应性的测量可以评估多酚及其抑制由活性氧引起的反应性链反应的能力。

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