The Molecular Characterization and Biological Assessment of the Leaves Extracts of Loofah Reveal their Nutraceutical Potential

Author:

Hlel Takoua Ben1,Belhadj Feten1,Gül Fatih2,Altun Muhammed3,Yağlıoğlu Ayşe Şahin4,Smaali Isaam1,Marzouki Mohammad Nejib1,Demirtaş Ibrahim5

Affiliation:

1. LIP-MB laboratory (LR11ES24), National Institute of Applied Sciences and Technology, Centre urbain nord de Tunis, Cedex Tunis - 1080, University of Carthage, Tunisia

2. Igdır University, Igdir Vocational School of Higher Education, Sehit Bulent Yurtseven Campus,Igdir 76000, Turkey

3. Department of Chemistry, Faculty of Science, Cankiri Karatekin University, Cankiri, Turkey

4. Department of Chemistry and Chemical Process Technology, Technical Sciences Vocational School, Amasya University, Amasya 05186, Turkey

5. Igdır University, Faculty of Arts and Sciences, Biochemistry Department, Sehit Bulent Yurtseven Campus, Igdir 76000, Turkey

Abstract

Background: Luffa cylindrica is a plant that is widely distributed in Africa and Asia and can be grown in regions with tropical or subtropical climates. Few patents dealt with Loofah biological properties, including some functional foods formulated from its leaves. Objective: This study aimed to structurally and functionally characterize the bioactive compounds of L. cylindrica leaves grown in two different environments. Methods: The extracts of L. cylindrica leaves collected from two Tunisian locations: Essouasi (LE), a semi-arid region and Medenine (LM), an arid region, were investigated for their phenolic compounds and fatty acids using HPLC/TOF-MS and GC-MS techniques, respectively. Furthermore, the antioxidant capacity was evaluated with DPPH, Chelating effect, Hydroxyl radical and Superoxide anion scavenging activities while the anticancer activity against HeLa cell lines was assessed using xCELLigence real time cell analyzer and lactate dehydrogenase cytotoxicity assay. Results: The antiproliferative capacity of both extracts was time and dose-dependent, with LE presenting the lowest HeLa cell index (CI = 0.035 ± 0.018, 250 μg/ml). LE also showed the best cytotoxic capacity (56.49 ± 0.8%) and antioxidant potential (IC50 = 54.41 ± 1.12 μg/ml for DPPH and 12.12 ± 0.07 μg/ml for chelating effect). 14 phenolic compounds were detected in LE, with ferulic acid being the major compound (5128.5 ± 4.09 μg Phenols/g), while LM had only 6 phenolics. GCMS analysis showed the presence of omega-3 fatty acids in LE. Conclusions: Our findings suggest that L. cylindrica leaves, especially when collected from semiarid regions, are promising for formulating nutraceuticals of interest.

Publisher

Bentham Science Publishers Ltd.

Subject

General Medicine

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