AI Article Synopsis

  • Purple sweet potatoes are popular in Asia, especially among diabetics, due to their potential to lower blood glucose levels.
  • The study utilized artificial neural network (ANN) models to determine the best ultrasonic extraction conditions for maximizing the antioxidant and antiglycation activities of polysaccharides found in these tubers.
  • Results indicated optimal conditions of 200 W, 22°C, and 40 min for antioxidant activity, while different settings provided the best antiglycation results, highlighting the usefulness of ANN in predicting effective extraction methods for health benefits.

Article Abstract

Background: The purple sweet potato, , belongs to the family . It is one of the most widely consumed tubers in Asia and is found in many dishes. Many people with diabetes eat purple sweet potato tubers to help reduce blood glucose in China.

Objective: To predict the ultrasonic conditions for getting the optimal antioxidant and antiglycated activity of ultrasonic extracted polysaccharides from purple sweet potato () tubers, the artificial neural network (ANN) regression models was used in this study.

Materials And Methods: The antioxidant activity of polysaccharides was quantified by evaluating the hydroxyl radical scavenging effect after ultrasonic extraction, and the data were used in conjunction with optimized extraction conditions to train the predictive ANN models.

Results: The following conditions were predicted to yield optimal hydroxyl scavenging activity: 200 W, 22°C, and 40 min. In contrast, conditions of 230 W, 22°C, and 50 min yielded the greatest inhibitory effect on albumin nonenzymatic glycosylation. The accuracy and predictive ability of the models ranged from good to excellent, as indicated by values ranging from 0.953 to 0.998.

Conclusion: The results of the present study showed that ANN predictive models are useful in ultrasonic processing, which can rapidly and accurately predict the optimum extraction conditions for polysaccharides based on their antioxidant and antiglycated activities. In addition, the results of the present study suggest that the consumption of sweet potatoes may help reduce free radicals in the body and prevent or treat diabetes.

Summary: Ultrasonic extraction conditions were simulated and optimized using artificial neural networkBioactivities showed nonlinear relationship with ultrasonic conditionsThe optimal extraction conditions were 200 W, 22°C, and 40 min for the highest antioxidant capacityThe optimal extraction conditions were 230 W, 22°C, and 50 min for the highest antiglycated effect. IBP: Polysaccharide of ; RSM: response surface methodology; ANN: Artificial neural network; BSA: Bovine serum albumin.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5551373PMC
http://dx.doi.org/10.4103/0973-1296.211044DOI Listing

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