Nguyen Trung Quang, Mechler Adam, Vo Quan V
The University of Danang - University of Science and Education Da Nang 550000 Vietnam.
Quality Assurance and Testing Center 2 Da Nang 550000 Vietnam.
RSC Adv. 2024 Jul 29;14(33):23629-23637. doi: 10.1039/d4ra03260h. eCollection 2024 Jul 26.
Coumarinolignans such as cleomiscosin A (CMA), cleomiscosin B (CMB), and cleomiscosin C (CMC) are secondary metabolites that were isolated from diverse plant species. Cleomiscosins (CMs) have numerous interesting biological activities, including noteworthy cytotoxicity of cancer cell lines along with hepatoprotective and assumed antioxidant activities. In this present study, the antioxidant properties of three cleomiscosins were investigated with a focus on the structure-activity relationship using thermodynamic and kinetic calculations with the M06-2X/6-311++G(d,p) method. The results show that CMs, including CMA, CMB, and CMC, are weak antioxidants in apolar environments, with of 7.52 × 10 to 6.28 × 10 M s for the HOO˙ radical scavenging reaction in the gas phase and 3.47 × 10 to 6.44 × 10 M s in pentyl ethanoate. Remarkably, the difference in the fusion of phenylpropanoid structure with coumarin two -hydroxyl groups (CMA and CMB) does not cause any noticeable effect on their antioxidant activity, while the presence of a methoxy substitute on the aromatic ring of phenylpropanoid units (CMC) increases the reaction rate to about 61 to 84 times faster than that of CMA. In contrast, the studied CMs exhibit a good antioxidant capacity in polar environments, with a range from 4.03 × 10 to 8.66 × 10 M s, 10-10 times faster than that of Trolox, equal to that of ascorbic acid and resveratrol. The angular fusion of the phenylpropanoid and coumarin structures, as well as the methoxy substitution on the aromatic ring of the phenylpropanoid unit of the studied CMs, do not have any considerable effect on their antioxidant activity under the studied conditions.
香豆素木脂素,如臭荠素A(CMA)、臭荠素B(CMB)和臭荠素C(CMC),是从多种植物物种中分离出来的次生代谢产物。臭荠素(CMs)具有许多有趣的生物活性,包括对癌细胞系显著的细胞毒性以及肝脏保护和假定的抗氧化活性。在本研究中,使用M06 - 2X/6 - 311++G(d,p)方法,通过热力学和动力学计算,重点研究了三种臭荠素的抗氧化性能及其构效关系。结果表明,CMs,包括CMA、CMB和CMC,在非极性环境中是弱抗氧化剂,在气相中清除HOO˙自由基反应的速率常数为7.52×10至6.28×10 M⁻¹s⁻¹,在乙酸戊酯中为3.47×10至6.44×10 M⁻¹s⁻¹。值得注意的是,苯丙烷结构与香豆素两个羟基融合(CMA和CMB)的差异对其抗氧化活性没有任何显著影响,而苯丙烷单元芳香环上存在甲氧基取代基(CMC)使反应速率比CMA快约61至84倍。相比之下,所研究的CMs在极性环境中表现出良好的抗氧化能力,速率常数范围为4.03×10至8.66×10 M⁻¹s⁻¹,比Trolox快10⁻¹⁰倍,与抗坏血酸和白藜芦醇相当。在所研究的条件下,所研究的CMs中苯丙烷和香豆素结构的角融合以及苯丙烷单元芳香环上的甲氧基取代对其抗氧化活性没有任何显著影响。