Assessment of the impact of γ-irradiation on the piperine content and microbial quality of black pepper

Author:

Bektashi Nora Limani12,Mladenoska Irina3,Popovska Olga1,Dimitrovski Darko3,Spasevska Hristina4,Reka Arianit A.25,Mašić Slobodan6

Affiliation:

1. Faculty of Technological Sciences, “Mother Teresa” University in Skopje , Skopje , Republic of North Macedonia

2. NanoAlb, Albanian Unit of Nanoscience and Nanotechnology, Academy of Sciences of Albania, Fan Noli square , 1000 Tirana , Albania

3. Faculty of Technology and Metallurgy, Ss. Cyril and Methodius University in Skopje , Skopje , Republic of North Macedonia

4. Faculty of Electrical Engineering and Informational Technology, Ss. Cyril and Methodius University in Skopje , Skopje , Republic of North Macedonia

5. Faculty of Natural Sciences and Mathematic, University of Tetovo , Tetovo , Republic of North Macedonia

6. Department of Radiation Chemistry and Physics, Vinca Institute of Nuclear Sciences , Belgrade , Republic of Serbia

Abstract

Abstract The major bioactive component of black pepper (Piper nigrum) is piperine which has demonstrated beneficial therapeutic properties. The purpose of this research was to investigate the effects of different irradiation doses on the content of piperine in black pepper. Samples were irradiated with 60Co γ-rays (at absorbed doses of 0.5, 1, 3, 5, 7, 10, and 12 kGy). Thin-layer chromatography (TLC) and UV–Vis spectrophotometry methods were used for measuring the piperine content in the samples. TLC was performed using three mobile phases (1. toluene:ethyl acetate, 7:3 v/v; 2. acetone:n-hexane, 6:4 v/v; 3. toluene:methanol, 8.5:1.5 v/v) and the retention factor (R f) value for piperine was equal to 0.66, 0.94, and 0.67, respectively. The content of piperine in γ-irradiated samples of black pepper was found to be between 0.04 and 1.05% w/w from the spectrophotometry analyses. Irradiation slightly decreased the piperine content of black pepper. It was found that piperine crude yield from black pepper was from 1.10 (the unirradiated sample) to 1.69, 1.07, 0.60, 0.90, 0.30, 1.20, 0.80% for irradiated samples, respectively. Microbiological analyses were performed with standard plate count method, which resulted in a decreasing number of the total cell count of microbial cells with increasing the radiation dose. Treatment with irradiation reduced the population of bacteria by 4 logs.

Publisher

Walter de Gruyter GmbH

Subject

Materials Chemistry,General Chemistry

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