Plant-derived exosome-like nanoparticles: A concise review on its extraction methods, content, bioactivities, and potential as functional food ingredient

Suharta, Sigit and Barlian, Anggraini and Hidajah, Atik Choirul and Notobroto, Hari Basuki and Ana, Ika Dewi and Indariani, Susi and Wungu, Triati Dewi Kencana and Wijaya, Christofora Hanny (2021) Plant-derived exosome-like nanoparticles: A concise review on its extraction methods, content, bioactivities, and potential as functional food ingredient. Journal of Food Science, 86 (7). 2838 – 2850. ISSN 00221147

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Abstract

Plant-derived exosome-like nanoparticles (PDENs) are small vesicles released by multivesicular bodies mainly to communicate between cells and regulate immunity against pathogen attack. Current studies have reported that PDENs could modulate gene expression in a cross-kingdom fashion. Therefore, PDENs could be a potential future functional food ingredient as their cross-kingdom communication abilities were reported to exert multiple health benefits. Macrophage and other cells have been reported to absorb PDENs in a manner regulated by the membrane lipid and protein profile and the intactness of the PDENs lipid bilayer. PDENs could be extracted from plant materials by various techniques such as ultracentrifugation, immunoaffinity, size-based isolation, and precipitation, though each method has its pros and cons. PDENs mainly contain lipid, protein, and genetic materials, mainly micro RNAs, which could exert multiple health benefits and functionalities when consumed in sufficient amounts. However, most studies on the health functionalities of PDENs were conducted through in-vitro and in-vivo studies, and its potency to be used as a functional ingredient remains a question as PDENs are sensitive to storage and processing condition and requires costly extraction method. This concise review features various exosome extraction methods, contents of PDENs and their roles, the health functionalities of PDENs, and its potency as a functional food ingredient. © 2021 Institute of Food Technologists®.

Item Type: Article
Additional Information: Cited by: 77; All Open Access, Bronze Open Access
Uncontrolled Keywords: Exosomes; Food Ingredients; Humans; Macrophages; Nanoparticles; Plants; Ultracentrifugation; food ingredient; nanoparticle; chemistry; exosome; human; immunology; macrophage; metabolism; plant; procedures; ultracentrifugation
Subjects: R Medicine > RK Dentistry
Divisions: Faculty of Dentistry > Dental Study Program Academic Phase
Depositing User: Sri JUNANDI
Date Deposited: 28 Oct 2024 01:37
Last Modified: 28 Oct 2024 01:37
URI: https://ir.lib.ugm.ac.id/id/eprint/5667

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