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纤维素纳米晶-肉桂精油-壳聚糖复合涂膜制备及其对黄山楂金如意的保鲜效果 被引量:3

Preparation of cellulose nanocrystal cinnamon essential oil chitosan composite coating and its effect on fruit preservation
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摘要 【目的】优化涂膜性能,提高其保鲜效果,用于改善黄山楂金如意贮藏品质。【方法】利用肉桂精油与咖啡酸修饰的纤维素纳米晶合成皮克林乳液,选取壳聚糖为成膜剂,制备纤维素纳米晶-肉桂精油-壳聚糖复合涂膜用于黄山楂保鲜。对涂膜力学性能、气体阻隔能力、抗菌、抗氧化性能进行测试。测定贮藏过程中黄山楂果实硬度、失重率、腐烂率,以及可溶性固形物、维生素C和可滴定酸含量等生理指标的变化。【结果】皮克林乳液的添加可以极大改善涂膜材料的力学性能、抗菌和抗氧化能力,提高其气体阻隔性能。随着乳液添加量的提高,涂膜对黄山楂金如意保鲜效果逐渐增强。当乳液体积分数为5%时制备的涂膜保鲜性能最优,在贮藏40 d后,山楂果实失重率和腐烂率显著降低,硬度可达5.4 kg·cm^(-2),可溶性固形物、维生素C和可滴定酸消耗量显著降低。【结论】向壳聚糖中加入皮克林乳液制备复合涂膜,可以极大改善涂膜保鲜性能,延缓黄山楂营养物质流失,最终提高黄山楂金如意采后贮藏品质。 【Objective】The abundant vitamins,mineral elements,organic acids,pectin and flavonoids made hawthorn be conducive to cardiovascular health via promoting blood circulation and removing blood stasis.However,hawthorn might rapidly deteriorate at ambient temperature due to water loss,microbial invasion,and oxidization.Thus,efficient preservation method is crucial to improvement of the nutritional and commercial value of hawthorn.This study aimed at developing high performance conformal coating using chitosan and cinnamon essential oil(CEO)for hawthorn postharvest storage and exploring the effects of the coating on the storage quality of hawthorn.【Methods】Chitosan(Ch)and CEO were used as film-forming agent and antibacterial components for the preparation of conformal coating to reduce the dehydration and nutrition loss of the fruits of C.pinnatifida Bge.var.major N.E.Br.and prolong its shelf life.3.0 g caffeic acid(CA)was dissolved in 100 g cellulose nanocrystals(CNC)dispersion(3%wt).The pH of the mixture was adjusted to 9.0 and stirred at room temperature for 12 h.After freezing drying,the CA-modified CNC(CA@CNC)was obtained.Then 1 g solid powder of CA@CNC and 0.5 mL CEO were dispersed in water(15 mL)with stirring and ultrasonic cell crusher to obtain Pickering emulsion(CA@CNC-CEO),which was then added in Ch solution to form conformal coatings(CA@CNC-CEO-Ch).By altering the contents of pickering emulsion,a series of conformal coatings were finally obtained and the mechanical properties,gas barrier ability,and oxidation resistance of conformal coatings were investigated.The pure chitosan coating(Ch)and the coating with essential oil added directly(Ch-CEO)were set as control group.The diameters of Pickering emulsion were observed and calculated.The viscosity of the mixed solution of coating was tested.The mechanical property,transmission rate of the water vapor and oxygen,DPPH free radical scavenging activity,antibacterial properties,and cell viability of the conformal coatings were determined.The fresh hawthorn fruits were washed and immersed in the coating solution for 2 min and naturally dried.The samples were then stored in PE bags at 20℃ with 60% relative humidity to evaluate the preservation activities of the conformal coatings by measuring the hardness,weight loss,decay ratio,the contents of soluble solid,vitamin C and titratable acid(TA)of the hawthorn fruits every 10 days.【Results】CA@CNC was used as stabilizer to improve the dispersity and stability of CEO.The diameter of CA@CNC-CEO decreased to 160 nm and could maintain stable for over 10 days.The viscosity of the prepared coating solution dramatically decreased as the shear rate increased,showing obvious shear thinning behavior,which was conducive to spray and mold.The fracture strain and stress obviously increased comparing with the pure Ch and Ch-CEO coating,which could reach to 30.3 MPa and 4.1%,respectively.Owing to the increasing crosslinking interaction between the chitosan and CA@CNC-CEO,the inner structure of the coating became denser and the water vapor and O_(2) transmission rate decreased to 668 g·m^(-2)·d^(-1) and 672 g·m^(-2)·d^(-1),respectively.The imposed CA could also improve the oxidation resistance of the conformal coatings,thus the DPPH radical scavenging activity of the CA@CNC-CEO-Ch increased from 25.9% to 32.2%.In addition,the CA@CNC-CEO-Ch coating showed great antibacterial activity due to the synergistic effect of the chitosan and CEO.The diameter of inhibition zone against Staphylococcus aureus and Escherichia coli reached to 25.4 and 14.3 mm,which increased more than 25%.The natural origin raw material endowed the coating with good biocompatibility.The cell viability of the freezingdried coating samples was over 92% when the solid content was 2 mg·mL^(-1).The obtained conformal coatings were used for C.pinnatifida Bge.var.major N.E.Br.preservation.By investigating multiple indicators treated with different coating,CA@CNC-CEO-Ch-3(chitosan mass fraction=2%,CA@CNCCEO volume fraction=5%)showed best preservation capacity due to the high relative content of the CA@CNC-CEO,which contributed to ensure the integrality and increased the cross-linking density,oxidation resistance,antibacterial properties,and gas barrier capacity of the coating.The dense structure of the CA@CNC-CEO-Ch-3 could reduce water loss and oxidation.The hardness and soluble solids were up to 5.4 kg·cm^(-2) and 13.9%,respectively.The shelf life of the fruits could reach 40 days when treated with the CA@CNC-CEO-Ch-3.The soluble solid,vitamin C and titratable acid(TA)contents of the fruits when treated with CA@CNC-CEO-Ch-3 was test to be 13.9%,71.2 mg·100 g^(-1) and 9.4%,respectively.【Conclusion】The resultant conformal coating could improve the postharvest fruit quality during storage of C.pinnatifida Bge.var.major N.E.Br.The CA@CNC-CEO-Ch-3 showed the best preservation performance.The conformal coating could reduce the decline of fruit hardness,water loss and other nutrient content like soluble solids,TA,and vitamin C through physical barrier,antibacterial and antioxidant properties.This study would provide theoretical basis and technical support for the preservation of the fruits of C.pinnatifida Bge.var.major N.E.Br.
作者 李娜 张海锋 曹金锋 滕慧颖 王庆辉 聂宗省 LI Na;ZHANG Haifeng;CAO Jinfeng;TENG Huiying;WANG Qinghui;NIE Zongsheng(Yuanshi Xuanxin Agricultural Ecological Park Co,Ltd,Shijiazhuang 051130,Hebei,China;Beijing Forestry University,Beijing 100083,China;The Science and Technology Innovation Service Center of Hebei Province,Shijiazhuang 050061,Hebei,China;Feixian Damen Hawthorn Research Institute,Feixian 273400,Shandong,China)
出处 《果树学报》 CAS CSCD 北大核心 2023年第3期556-565,共10页 Journal of Fruit Science
基金 河北省农业科技成果转化资金项目(21626805D)。
关键词 黄山楂金如意 壳聚糖 纤维素纳米晶 肉桂精油 咖啡酸 保鲜 Crataegus pinnatifida Bge.var.major N.E.Br. Chitosan Cellulose nanocrystals Cinnamon essential oil Caffeic acid Preservation
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