Kumar Sushil, Kumar Punit, Sati Nitin
Drug Design and Medicinal Chemistry Research Laboratory, College of Pharmacy, IFTM, Moradabad, Uttar Pradesh, India.
J Pharm Bioallied Sci. 2012 Jul;4(3):246-9. doi: 10.4103/0975-7406.99066.
Schiff bases and azetidinones form an important structural class possessing wide spectrum of biological activities that include antibacterial and antifungal activity. A series of Schiff's bases N'-(substituted benzylidene)-2-(naphthalen-1-yloxy) acetohydrazides (3a-f) and azetidinones N-[3-chloro-2-oxo-4-(substituted phenyl)-azetidin-1-yl]-2-(naphthalen-1-yloxy) acetamides (4a-b) were synthesized and tested for antimicrobial activity.
The chemical structures of synthesized compounds were elucidated on the basis of IR and 1H NMR spectroscopy. The synthesized compounds were screened for antibacterial activity against E. coli (ESS 2231) and B. subtilis (MTCC 441). The compounds were also tested for antifungal activity against A. niger (NCIM 618) and C. albicans (NCIM 3557) by the cup diffusion method.
The in vitro antimicrobial activity results showed that the N-[3-chloro-2-oxo-4-(4-substitutedphenyl)-azetidin-1-yl]-2-(naphthalen-1-yloxy) acetamides (4a-b) exhibited better antibacterial activity than the synthesized N'-(substituted benzylidene)-2-(naphthalen-1-yloxy)-acetohydrazides (3a-f). Compound (4b) displayed potent antibacterial activity against the B. subtilis and E. coli (MIC values of 16-64 μg/mL). The antifungal activity of the synthesized compounds (3a-f and 4a-b) against the A. niger and C. albicans was relatively weak, most of the compounds showed poor activities (MIC >128μg/mL).
The antibacterial activity of the synthesized compounds was moderate to low and antifungal activity was relatively weak. Therefore, a further study with this class of compounds is necessary to elucidate the mechanism and structure activity relationship.
席夫碱和氮杂环丁烷酮构成了一类重要的结构类型,具有广泛的生物活性,包括抗菌和抗真菌活性。合成了一系列席夫碱N'-(取代亚苄基)-2-(萘-1-基氧基)乙酰肼(3a - f)和氮杂环丁烷酮N-[3-氯-2-氧代-4-(取代苯基)-氮杂环丁烷-1-基]-2-(萘-1-基氧基)乙酰胺(4a - b),并对其抗菌活性进行了测试。
根据红外光谱和1H核磁共振光谱对合成化合物的化学结构进行了阐明。对合成的化合物进行了针对大肠杆菌(ESS 2231)和枯草芽孢杆菌(MTCC 441)的抗菌活性筛选。还通过杯碟扩散法对这些化合物针对黑曲霉(NCIM 618)和白色念珠菌(NCIM 3557)的抗真菌活性进行了测试。
体外抗菌活性结果表明,N-[3-氯-2-氧代-4-(4-取代苯基)-氮杂环丁烷-1-基]-2-(萘-1-基氧基)乙酰胺(4a - b)表现出比合成的N'-(取代亚苄基)-2-(萘-1-基氧基)乙酰肼(3a - f)更好的抗菌活性。化合物(4b)对枯草芽孢杆菌和大肠杆菌显示出强效抗菌活性(最低抑菌浓度值为16 - 64μg/mL)。合成化合物(3a - f和4a - b)对黑曲霉和白色念珠菌的抗真菌活性相对较弱,大多数化合物表现出较差的活性(最低抑菌浓度>128μg/mL)。
合成化合物的抗菌活性为中度至低度,抗真菌活性相对较弱。因此,有必要对这类化合物进行进一步研究以阐明其作用机制和构效关系。