Synthesis of lactones from fatty acids by ring-closing metathesis and their biological evaluation

Vyshnavi Yelchuri, Thirupathi Azmeera, M. Karuna
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Abstract

The present study involves the synthesis of macrocyclic lactones by the esterification of unsaturated fatty acids (oleic acid, undecenoic acid, and erucic acid) with unsaturated alcohols (allyl alcohol, prop-2-ene-1-ol, oleyl alcohol, and undecenol) followed by a ring closing metathesis reaction employing Grubbs' second generation catalyst (1.0-1.5 mmol). The structure of the compounds was confirmed by 1H NMR, 13C NMR, FT-IR, and ESI-Mass spectral studies. The antibacterial activity of the synthesised lactones was evaluated. The larger ring-sized lactone, namely, erucic acid lactone, exhibited excellent antibacterial activity against three bacterial cell lines, namely, Staphylococcus aureus, Staphylococcus epidermidis, and Bacillus subtilis. Undecenoic acid-based lactones exhibited excellent antibacterial activity selectively against only Staphylococcus epidermidis. The assay of macrolactones for their in vitro anticancer activity was carried out by MTT for different cancer cell lines, namely, human prostate epithelial cancer cells (ATCC HTB-81), HepG2 derived from hepatic cancer cells (ATCC HB-8065), SKOV3 derived from human ovarian cancer cells (ATCC HTB-77), MDAMB-231 derived from human breast cancer cells (ATCC HTB-26) and Chinese hamster ovarian (CHO-K1) cell lines. The molecules selectively exhibited anticancer activity against Chinese hamster ovarian (CHO-K1) cell lines. Among macrolactones, (E)-oxacyclotridec-11-en-2-one (MALUN) was more active and its activity was much higher compared to others and on par with the reference standard Mitomycin C. This was followed by (E)-oxacyclotricos-14-en-2-one (MOLER) and (E)-oxacyclononadec-10-en-2-one (MOLOH). The fatty acid-based cyclic lactones with selective antibacterial and anticancer activities can be further explored for a variety of pharmaceutical formulations.
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脂肪酸合环复分解合成内酯及其生物学评价
本研究涉及不饱和脂肪酸(油酸、十一烯酸和芥酸)与不饱和醇(烯丙醇、丙烯醇、油醇和十一烯醇)的酯化反应,然后使用Grubbs第二代催化剂(1.0-1.5 mmol)进行合环复分解反应,合成大环内酯。化合物的结构经1H NMR、13C NMR、FT-IR和esi -质谱研究证实。对合成的内酯进行了抗菌活性评价。较大的环状内酯,即芥酸内酯,对金黄色葡萄球菌、表皮葡萄球菌和枯草芽孢杆菌三种细菌细胞系表现出优异的抗菌活性。十一烯酸基内酯仅对表皮葡萄球菌具有良好的选择性抗菌活性。采用MTT法对人前列腺上皮癌细胞(ATCC HTB-81)、肝癌细胞来源的HepG2 (ATCC HB-8065)、人卵巢癌细胞来源的SKOV3 (ATCC HTB-77)、人乳腺癌细胞来源的MDAMB-231 (ATCC HTB-26)和中国地鼠卵巢(CHO-K1)细胞系进行了体外抗肿瘤活性测定。这些分子选择性地对中国仓鼠卵巢(CHO-K1)细胞系表现出抗癌活性。在大内酯中,(E)- oxacyclotridos -11-en-2-one (MALUN)活性最高,与参比标准丝裂霉素c相当,其次是(E)-oxacyclotricos-14-en-2-one (MOLER)和(E)- oxacyclotridos -10-en-2-one (MOLOH)。具有选择性抗菌和抗癌活性的脂肪酸基环内酯可进一步开发用于多种药物制剂。
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