Author:
Kunjiappan Selvaraj,Ramasamy Lokesh Kumar,Kannan Suthendran,Pavadai Parasuraman,Theivendren Panneerselvam,Palanisamy Ponnusamy
Abstract
AbstractPlant materials are a rich source of polyphenolic compounds with interesting health-beneficial effects. The present study aimed to determine the optimized condition for maximum extraction of polyphenols from grape seeds through RSM (response surface methodology), ANFIS (adaptive neuro-fuzzy inference system), and machine learning (ML) algorithm models. Effect of five independent variables and their ranges, particle size (X1: 0.5–1 mm), methanol concentration (X2: 60–70% in distilled water), ultrasound exposure time (X3: 18–28 min), temperature (X4: 35–45 °C), and ultrasound intensity (X5: 65–75 W cm−2) at five levels (− 2, − 1, 0, + 1, and + 2) concerning dependent variables, total phenolic content (y1; TPC), total flavonoid content (y2; TFC), 2, 2-diphenyl-1-picrylhydrazyl free radicals scavenging (y3; %DPPH*sc), 2,2′-azino-bis(3-ethylbenzothiazoline-6-sulfonic acid) free radicals scavenging (y4; %ABTS*sc) and Ferric ion reducing antioxidant potential (y5; FRAP) were selected. The optimized condition was observed at X1 = 0.155 mm, X2 = 65% methanol in water, X3 = 23 min ultrasound exposure time, X4 = 40 °C, and X5 = 70 W cm−2 ultrasound intensity. Under this situation, the optimal yields of TPC, TFC, and antioxidant scavenging potential were achieved to be 670.32 mg GAE/g, 451.45 mg RE/g, 81.23% DPPH*sc, 77.39% ABTS*sc and 71.55 μg mol (Fe(II))/g FRAP. This optimal condition yielded equal experimental and expected values. A well-fitted quadratic model was recommended. Furthermore, the validated extraction parameters were optimized and compared using the ANFIS and random forest regressor-ML algorithm. Gas chromatography-mass spectroscopy (GC–MS) and liquid chromatography–mass spectroscopy (LC–MS) analyses were performed to find the existence of the bioactive compounds in the optimized extract.
Publisher
Springer Science and Business Media LLC
Reference73 articles.
1. Zhou, K. & Raffoul, J. J. Potential anticancer properties of grape antioxidants. J. Oncol. 2012, 1–8 (2012).
2. Ilyas, T. et al. Sustainable green processing of grape pomace for the production of value-added products: An overview. Environ. Technol. Innov. 23, 101592 (2021).
3. Spinei, M. & Oroian, M. The potential of grape pomace varieties as a dietary source of pectic substances. Foods 10, 867 (2021).
4. Kunjiappan, S. et al. Design, graph theoretical analysis and bioinformatic studies of proanthocyanidins encapsulated ethyl cellulose nanoparticles for effective anticancer activity. Biomed. Phys. Eng. Exp. 5, 025004 (2019).
5. Hussein, S. & Abdrabba, S. Physico-chemical characteristics, fatty acid, composition of grape seed oil and phenolic compounds of whole seeds, seeds and leaves of red grape in Libya. Int. J. Appl. Sci. Math. 2, 2394–2894 (2015).