Silicon Foliar Fertilisation Ameliorates Olive Leaves Polyphenolic Compounds Levels and Elevates Its Potential towards Different Cancer Cells

Author:

Pasković Igor1ORCID,Franić Mario1ORCID,Polić Pasković Marija1ORCID,Talhaoui Nassima2,Marcelić Šime3ORCID,Lukić Igor14ORCID,Fredotović Željana5ORCID,Žurga Paula6ORCID,Major Nikola1ORCID,Goreta Ban Smiljana14ORCID,Vidović Nikolina7,Rončević Sanda8ORCID,Nemet Ivan8ORCID,Džafić Natalija9ORCID,Soldo Barbara10ORCID

Affiliation:

1. Department of Agriculture and Nutrition, Institute of Agriculture and Tourism, Karla Huguesa 8, 52440 Poreč, Croatia

2. Science Department, Chiltern Academy, Gipsy Lane, Luton LU1 3GF, UK

3. Department for Ecology, Agronomy and Aquaculture, University of Zadar, Trg Kneza Višeslava 9, 23000 Zadar, Croatia

4. Centre of Excellence for Biodiversity and Molecular Plant Breeding, Svetošimunska 25, 10000 Zagreb, Croatia

5. Department of Biology, Faculty of Science, University of Split, Rudera Boškovića 33, 21000 Split, Croatia

6. Teaching Institute of Public Health of Primorsko-Goranska County, Krešimirova 52a, 51000 Rijeka, Croatia

7. Faculty of Biotechnology and Drug Development, Radmile Matejčić 2, 51000 Rijeka, Croatia

8. Department of Chemistry, Faculty of Science, University of Zagreb, Horvatovac 102a, 10000 Zagreb, Croatia

9. Branch Veterinary Institute Rijeka, Croatian Veterinary Institute, Podmurvice 29, 51000 Rijeka, Croatia

10. Department of Chemistry, Faculty of Science, University of Split, Rudera Boškovića 33, 21000 Split, Croatia

Abstract

It is not yet clear how adding silicon foliar fertilisation affects olive leaf (OL) phenolics and their potential to impact different cancer cells. Thus, we conducted a field trial to study the effect of foliar Si biostimulant fertilisation on the OL phenolic content of the ‘Leccino’ (LE) and ‘Istarska Bjelica’ (IB) cultivars. The experiment compared untreated Control (C) and three distinct levels of silicon (Si1, Si2, Si3) with Si concentrations of 0.55 g/L, 1.1 g/L, and 2.2 g/L, respectively. Si3 application resulted in the highest levels of oleuropein, apigenin-7-O-glucoside, luteolin-4-O-glucoside, rutin, and tyrosol compared to the C treatment. The polyphenols showed high cytotoxic activity in three cancer cell lines tested: cervical adenocarcinoma (HeLa), colon cancer (HCT116), and osteosarcoma (U2OS). The strongest inhibition of cell growth was observed in the HCT116 cell line. All cancer cells tested were more sensitive to treatment with polyphenols isolated from plants with added Si than those without added Si. The cytotoxic activity of the extracts on the healthy cell line RPE1 was similar to that on the cancer cell line HCT116 and U2OS.

Funder

Croatian Science Foundation

ARIS

“Young researchers career development project—training of doctoral students” program

Publisher

MDPI AG

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