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热超声处理、紫外线-C照射和高压处理:保存供体人乳中胰岛素的新技术。

Thermoultrasonication, ultraviolet-C irradiation, and high-pressure processing: Novel techniques to preserve insulin in donor human milk.

作者信息

Mank Elise, Kontopodi Eva, Heijboer Annemieke C, van Elburg Ruurd M, Hettinga Kasper, van Goudoever Johannes B, van Toledo Letty

机构信息

Amsterdam UMC, University of Amsterdam, Vrije Universiteit Amsterdam, Emma Children's Hospital, Department of Pediatrics-Neonatology, Amsterdam, the Netherlands.

Amsterdam UMC, University of Amsterdam, Vrije Universiteit Amsterdam, Emma Children's Hospital, Department of Pediatrics-Neonatology, Amsterdam, the Netherlands; Food Quality and Design Group, Wageningen University & Research, the Netherlands.

出版信息

Clin Nutr. 2021 Nov;40(11):5655-5658. doi: 10.1016/j.clnu.2021.09.028. Epub 2021 Sep 23.

Abstract

BACKGROUND & AIMS: Donor human milk (DHM) is recommended as the first alternative for preterm infants if their mother's own milk is not available or if the quantity is not sufficient. The most commonly used technique to eliminate microbial contaminants in DHM is holder pasteurization (HoP). However, the heating process during HoP partially destroys milk bioactive factors such as insulin. Therefore, innovative techniques have been developed as alternatives to HoP. The objective of this study was to determine the effect of HoP, high-temperature-short-time (HTST), thermoultrasonication (TUS), ultraviolet-C irradiation (UV-C), and high-pressure processing (HPP) on the insulin concentration in DHM.

METHODS

Milk samples from 28 non-diabetic mothers were collected. The milk samples were aliquoted and either left untreated or treated with HoP (62.5 °C; 30 min), HTST (72 °C; 15 s), TUS (60 W; 6 min), UV-C (4863 J/L), or HPP (500 MPa; 5 min).

RESULTS

The mean insulin concentration in untreated milk was 79 ± 41 pmol/L. The mean insulin retention rate was 67% for HoP, 78% for HTST, 97% for TUS, 94% for UV-C, and 106% for HPP. The mean insulin concentration in milk treated with HoP was significantly lower compared to untreated milk (p = 0.01).

CONCLUSION

TUS, UV-C, and HPP preserve insulin in DHM. The insulin concentration in DHM is affected to a larger extent by HoP than by HTST. These results indicate that TUS, UV-C, and HPP may serve as alternatives to HoP.

摘要

背景与目的

如果早产儿无法获得其母亲自己的母乳或母乳量不足,建议将捐赠人乳(DHM)作为首选替代品。消除DHM中微生物污染物最常用的技术是间歇式巴氏杀菌法(HoP)。然而,HoP过程中的加热会部分破坏胰岛素等乳生物活性因子。因此,已开发出创新技术作为HoP的替代方法。本研究的目的是确定HoP、高温短时(HTST)、热超声(TUS)、紫外线C照射(UV-C)和高压处理(HPP)对DHM中胰岛素浓度的影响。

方法

收集了28位非糖尿病母亲的乳汁样本。将乳汁样本进行等分,一部分不做处理,另一部分分别用HoP(62.5°C;30分钟)、HTST(72°C;15秒)、TUS(60瓦;6分钟)、UV-C(4863焦耳/升)或HPP(500兆帕;5分钟)处理。

结果

未处理乳汁中胰岛素的平均浓度为79±41皮摩尔/升。HoP处理后的胰岛素平均保留率为67%,HTST为78%,TUS为97%,UV-C为94%,HPP为106%。与未处理的乳汁相比,HoP处理的乳汁中胰岛素的平均浓度显著降低(p =0.01)。

结论

TUS、UV-C和HPP可保留DHM中的胰岛素。与HTST相比,HoP对DHM中胰岛素浓度影响更大。这些结果表明,TUS、UV-C和HPP可作为HoP的替代方法。

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