Edible Coating Based on Carnauba Wax Nanoemulsion and Cymbopogon martinii Essential Oil on Papaya Postharvest Preservation

Author:

Oliveira Filho Josemar Gonçalves deORCID,Silva Guilherme da Cruz,Oldoni Fernanda Campos Alencar,Miranda MarcelaORCID,Florencio Camila,Oliveira Raissa Moret Duarte de,Gomes Mariana de Paula,Ferreira Marcos DavidORCID

Abstract

Papaya is a fruit of great importance worldwide. However, significant losses during postharvest have been reported, which can be minimized by applying lipid nanoemulsions as edible coatings associated with natural antimicrobial compounds. These coatings provide a barrier to gases and water vapor, in addition to improving mechanical properties, thereby delaying natural senescence and minimizing deterioration by phytopathogens during storage. The aim of this study was to investigate the preservation potential of papaya fruits treated with an edible coating based on an association between carnauba wax nanoemulsion (CWN) and Cymbopogon martinii essential oil (CEO). Coatings formulated with CWN and/or CEO were applied to papaya fruits, and resulted in late ripening during the 12-day storage period, without negatively affecting postharvest fruit quality parameters. The coatings reduced weight loss and maintained firmness, in addition to delaying changes in fruit color during storage. Coatings formulated with CWN + CEO were the most efficient formulations in reducing the incidence and severity of fruit rots during storage. CWN coatings incorporating CEO present additional functionalities in maintaining postharvest quality parameters of papaya fruits.

Funder

Embrapa

FAPESP

CAPES

Brazilian National Council for Scientific and Technological Development-CNPq

CNPq/MCTI Sisnano

M.D.Ferreira CNPq Research Productivity fellowship

Publisher

MDPI AG

Subject

Materials Chemistry,Surfaces, Coatings and Films,Surfaces and Interfaces

Reference45 articles.

1. Molecular cloning, characterization and expression analysis of CpCBF2 gene in harvested papaya fruit under temperature stresses;Electron. J. Biotechnol.,2013

2. Effect of gaseous ozone on papaya anthracnose;Food Bioprocess Technol.,2013

3. Edible coatings in post-harvest papaya: Impact on physical–chemical and sensory characteristics;J. Food Sci. Technol.,2020

4. Extending and measuring the quality of fresh-cut fruit and vegetables: A review;Trends Food Sci. Technol.,2007

5. Improving food products’ quality and storability by using Layer by Layer edible coatings;Trends Food Sci. Technol.,2018

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