Development of a method for complex processing of thawed fruits of Aronia melanocarpa Elliot.

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Abstract

Introduction. The fresh fruits of Aronia melanocarpa Elliot. are characterized by a high content of vitamins and flavonoids (anthocyanins). The fresh fruits of Aronia melanocarpa Elliot. can be used to make juice. Syrup can be obtained on the basis of the pulp of Aronia melanocarpa Elliot. fruits. To obtain preparations of Aronia melanocarpa Elliot., it is possible to use fruits after freezing.

The aim of the work was to develop a comprehensive processing of fruits of Aronia melanocarpa Elliot., subjected to freezing.

Material and methods. The fruits of Aronia melanocarpa Elliot. were harvested on the territory of the Republic of Mari El in the autumn of 2023 and were frozen. Juice was obtained by direct pressing from thawed fruits. The pulp of Aronia melanocarpa Elliot. fruits was used to produce aronia fruit syrup. The fruits of Aronia melanocarpa Elliot. after defrosting, as well as juice, pulp and syrup, were examined for the amount of anthocyanins in terms of cyanidin-3-O-glucoside. An industrial sample of aronia fruit syrup was used as a comparison sample.

Results and discussion. The amount of anthocyanins in terms of cyanidin-3-O-glucoside was determined by direct spectrophotometry at a wavelength of 534 nm. The syrup obtained on the basis of the pulp of Aronia melanocarpa Elliot. fruits exceeds the amount of anthocyanins in the juice of aronia (0,38±0,02%). The content of the amount of anthocyanins in the syrup obtained on the basis of the pulp of aronia fruits (0,54±0,03%) is significantly higher than in the industrial sample of the syrup obtained on the basis of aqueous extraction from fruits (0,020±0,001%).

Conclusion. The possibility of complex processing of thawed fruits of Aronia melanocarpa Elliot. is shown, when juice and syrup of fruits can be obtained from one portion of fruits. The syrup and juice of the fruits of aronia can be used as medicines in the medical practice of the Russian Federation.

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About the authors

Arkady A. Andreev

Samara State Medical University

Author for correspondence.
Email: a.a.andreev@samsmu.ru
ORCID iD: 0000-0002-5328-1710

Postgraduate Student of the Department of Pharmacognosy with Botany and the Basics of Phytotherapy of the Institute of Pharmacy, Engineer-Chemist of the Centre for Research and Education in Pharmacy

Russian Federation, Samara

Vladimir A. Kurkin

Samara State Medical University

Email: v.a.kurkin@samsmu.ru
ORCID iD: 0000-0002-7513-9352

Doctor of Pharmaceutical Sciences, Professor, Head of the Department of Pharmacognosy with Botany and the Basics of Phytotherapy of the Institute of Pharmacy

Russian Federation, Samara

Olga E. Pravdivtseva

Samara State Medical University

Email: o.e.pravdivtseva@samsmu.ru
ORCID iD: 0000-0003-3318-3168

Doctor of Pharmaceutical Sciences, Professor of the Department of Pharmacognosy with Botany and the Bases of Phytotherapy of the Institute of Pharmacy

Russian Federation, Samara

Anna V. Egorova

Samara State Medical University

Email: a.v.egorova@samsmu.ru
ORCID iD: 0000-0002-3145-6786

PhD of Pharmaceutical Sciences, Associate Professor of the Department of Pharmaceutical Technology

Russian Federation, Samara

Alina V. Zhdanovа

Samara State Medical University

Email: a.v.zhdanova@samsmu.ru
ORCID iD: 0000-0002-5881-1784

PhD, Associate Professor of the Department of Fundamental and Clinical Biochemistry with Laboratory Diagnostics

Russian Federation, Samara

References

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Supplementary files

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2. Fig. 1. The electronic spectrum of an alcoholic solution of acidified extraction of freshly harvested fruits Aronia melanocarpa Elliot.

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3. Fig. 2. The electronic spectrum of alcohol solution of acidified extraction of thawed fruits Aronia melanocarpa Elliot.

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4. Fig. 3. The electronic spectrum of acidified aqueous solution of thawed fruit juice Aronia melanocarpa Elliot.

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5. Fig. 4. The electronic spectrum of acidified aqueous syrup solution based on thawed fruit pulp Aronia melanocarpa Elliot.

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