Please wait a minute...
文章检索
预防医学  2023, Vol. 35 Issue (10): 861-865    DOI: 10.19485/j.cnki.issn2096-5087.2023.10.007
  论著 本期目录 | 过刊浏览 | 高级检索 |
乳蛋白铁螯合物对大鼠缺铁性贫血的影响研究
陈济丽1, 李明慧1, 王梦莹1, 徐彩菊2, 张世鑫2, 严峻2, 泮雯霏1, 高鹤3, 李婕4, 王汉斌5, 马永庆6, 杨敏1
1.浙江大学公共卫生学院营养与食品卫生学系,浙江 杭州 310000;
2.浙江省疾病预防控制中心,浙江 杭州 310051;
3.浙江大学医学院附属第二医院临平院区,浙江 杭州 311100;
4.浙江省杭州市余杭区疾病预防控制中心,浙江 杭州 311113;
5.浙江大学医学院附属杭州市第一人民医院,浙江 杭州 310006;
6.中国食品发酵工业研究院有限公司,北京市蛋白功能肽工程技术研究中心,北京 100015
Effects of lactoprotein iron chelates on iron deficiency anaemia in rats
CHEN Jili1, LI Minghui1, WANG Mengying1, XU Caiju2, ZHANG Shixin2, YAN Jun2, PAN Wenfei1, GAO He3, LI Jie4, WANG Hanbin5, MA Yongqing6, YANG Min1
1. Department of Nutrition and Food Hygiene, School of Public Health, Zhejiang University, Hangzhou, Zhejiang 310000, China;
2. Zhejiang Provincial Center for Disease Control and Prevention, Hangzhou, Zhejiang 310051, China;
3. Linping Branch, the Second Affiliated Hospital of Zhejiang University School of Medicine, Hangzhou, Zhejiang 311100, China;
4. Yuhang District Center for Disease Control and Prevention, Hangzhou, Zhejiang 311113, China;
5. Hangzhou First People's Hospital, Zhejiang University School of Medicine, Hangzhou, Zhejiang 310006, China;
6. China Food Fermentation Industry Research Institute Co.,LTD., Beijing Engineering Research Center of Protein Functional Peptides, Beijing 100015, China
全文: PDF(757 KB)  
输出: BibTeX | EndNote (RIS)      
摘要 目的 探讨乳蛋白铁螯合物对大鼠缺铁性贫血(IDA)的影响,为新型补铁剂的开发利用提供依据。方法 70只SPF级初断乳雌性SD大鼠随机分为7组,每组10只;A正常对照组喂饲正常饲料,其他组喂饲贫铁饲料进行IDA造模,造模成功后随机纳入B模型对照组、C硫酸亚铁组、D乳铁蛋白组、E乳铁蛋白铁螯合物组、F酪蛋白低聚肽铁螯合物组和G乳清蛋白低聚肽铁螯合物组,分别给予相应干预物灌胃,每日1次,其中C、E、F、G组干预物铁离子浓度均为2.0 mg/kg,D、E、F、G组蛋白或低聚肽浓度为2 000 mg/kg。21 d干预期间每周测定大鼠体重和血红蛋白(Hb);干预结束后收集外周血样本,检测并比较各组血常规、铁代谢和肝功能指标变化。结果 干预后,与B组相比,IDA大鼠血常规指标中,C、E、F和G组的Hb、红细胞计数、红细胞平均体积和血细胞压积升高,游离原卟啉和红细胞平均血红蛋白浓度降低(均P<0.05);铁代谢指标中,C、E和G组的血清铁蛋白升高,C、E、F和G组的血清铁升高;C、D、E、F和G组的不饱和铁结合力和总铁结合力降低(均P<0.05);肝功能指标中,E和G组的谷丙转氨酶下降(均P<0.05)。结论 与传统补铁剂硫酸亚铁相比,单纯的乳铁蛋白补充未改善大鼠IDA状态,而乳蛋白铁螯合物尤其是乳清蛋白低聚肽铁螯合物在改善大鼠IDA状态、机体铁储备和肝功能受损方面效果更优。
服务
把本文推荐给朋友
加入引用管理器
E-mail Alert
RSS
作者相关文章
陈济丽
李明慧
王梦莹
徐彩菊
张世鑫
严峻
泮雯霏
高鹤
李婕
王汉斌
马永庆
杨敏
关键词 缺铁性贫血乳蛋白铁螯合物肝功能    
AbstractObjective To investigate the effects of lactoprotein iron chelates on rats with iron deficiency anaemia (IDA), so as to provide insights into developing and utilizing novel iron supplements. Methods Seventy weaning female SPF-graded rats of the SD strain were randomly divided into the control group (A), model group (B), ferrous sulfate group (C), lactoferrin group (D), lactoferrin iron chelate group (E), Casein oligopeptide iron chelate group (F) and whey protein oligopeptide iron chelate group (G), with 10 rats in each group. The rats in group A were fed with normal diet, and the others were fed with poor iron diet for IDA modeling. The corresponding interventions were given by intragastric administration once a day. The iron ion concentrations of group C, E, F and G were 2.0 mg/kg, and the protein and oligopeptide concentrations of group D, E, F and G were 2 000 mg/kg. Body weight and hemoglobin of rats were measured weekly during 21-day intervention. At the end, peripheral blood samples were collected, and blood routine, iron metabolism and liver function indicators were determined. Results After the intervention, among blood routine indicators, the rats in group C, E, F and G showed elevated hemoglobin, red blood cell, mean corpuscular volume and hematocrit, and decreased free protoporphyrin and mean corpuscular hemoglobin concentration when compared with the rats in group B (all P<0.05); among iron metabolism indicators, the rats in group C, E and G showed elevated serum ferritin, the rats in group C, E, F and G showed elevated serum iron, the rats in group C, D, E, F and G showed decreased unsaturated iron binding capacity and total iron binding capacity when compared with the rats in group B (all P<0.05); among liver function indicators, the rats in group E and G showed decreased alanine transaminase when compared with the rats in group B (both P<0.05). Conclusions Lactoprotein alone could not completely improve IDA in rats compared with traditional iron supplement (ferrous sulfate). Lactoprotein iron chelate, especially whey protein oligopeptide iron chelate, could significantly improve IDA, iron reserve and liver function damage in rats.
Key wordsiron deficiency anaemia    lactoprotein    iron chelate    liver function
收稿日期: 2023-04-27      修回日期: 2023-09-04      出版日期: 2023-10-10
中图分类号:  R556.3  
基金资助:中国食品发酵工业研究院有限公司&北京市蛋白功能肽工程技术研究中心开放课题(519600-I41802); 浙江省基础公益研究计划项目(LGF18H260009)
通信作者: 杨敏,E-mail:ymin36@zju.edu.cn   
作者简介: 陈济丽,硕士研究生在读
引用本文:   
陈济丽, 李明慧, 王梦莹, 徐彩菊, 张世鑫, 严峻, 泮雯霏, 高鹤, 李婕, 王汉斌, 马永庆, 杨敏. 乳蛋白铁螯合物对大鼠缺铁性贫血的影响研究[J]. 预防医学, 2023, 35(10): 861-865.
CHEN Jili, LI Minghui, WANG Mengying, XU Caiju, ZHANG Shixin, YAN Jun, PAN Wenfei, GAO He, LI Jie, WANG Hanbin, MA Yongqing, YANG Min. Effects of lactoprotein iron chelates on iron deficiency anaemia in rats. Preventive Medicine, 2023, 35(10): 861-865.
链接本文:  
http://www.zjyfyxzz.com/CN/10.19485/j.cnki.issn2096-5087.2023.10.007      或      http://www.zjyfyxzz.com/CN/Y2023/V35/I10/861
[1] KASSEBAUM N J,GBD 2013 ANEMIA COLLABORATORS.The global burden of anemia[J].Hematol Oncol Clin North Am,2016,30(2):247-308.
[2] PASRICHA S R,TYE-DIN J,MUCKENTHALER M U,et al.Iron deficiency[J].Lancet,2021,397(10270):233-248.
[3] LI W F,MA H H,YUAN S,et al.Production of pyracantha polysaccharide-iron(Ⅲ)complex and its biologic activity[J/OL].Molecules,2021,26(7)[2023-09-04].https://doi.org/10.3390/molecules26071949.
[4] 孙雪姣,李蕊,刘雨萌,等.乳中生物活性肽对人体健康影响的研究进展[J].乳业科学与技术,2018,41(3):42-46.
[5] TENENBAUM M,DERACINOIS B,DUGARDIN C,et al.Identification,production and bioactivity of casein phosphopeptides-A review[J/OL].Food Res Int,2022,157[2023-09-04].https://doi.org/10.1016/j.foodres.2022.111360.
[6] 王小丹,刘珊,徐海滨,等.重组人乳铁蛋白对缺铁性贫血大鼠铁营养状况的改善作用[J].卫生研究,2012,41(1):13-17,22.
[7] 房玥晖,冯鑫,徐昊,等.铁饱和重组人乳铁蛋白对大鼠缺铁性贫血的恢复作用[J].北京大学学报(医学版),2013,45(3):417-421.
[8] WALTERS M E,ESFANDI R,TSOPMO A.Potential of food hydrolyzed proteins and peptides to chelate iron or calcium and enhance their absorption[J/OL].Foods,2018,7(10)[2023-09-04].https://doi.org/10.3390/foods7100172.
[9] KRUZEL M L,OLSZEWSKA P,PAZDRAK B,et al.New insights into the systemic effects of oral lactoferrin:transcriptome profiling[J].Biochem Cell Biol,2021,99(1):47-53.
[10] GÓMEZ-GRIMALDOS N A,GÓMEZ-SAMPEDRO L J,ZAPATA-MONTOYA J E,et al.Bovine plasma hydrolysates' iron chelating capacity and its potentiating effect on ferritin synthesis in Caco-2 cells[J].Food Funct,2020,11(12):10907-10912.
[11] PATIL P J,USMAN M,ZHANG C,et al.An updated review on food-derived bioactive peptides:focus on the regulatory requirements,safety,and bioavailability[J].Compr Rev Food Sci Food Saf,2022,21(2):1732-1776.
[12] 黄梦君,许淑芳.食源性低聚肽的消化吸收机制及营养功能的研究进展[J].中国食物与营养,2021,27(10):55-58.
[13] CHAUD M V,IZUMI C,NAHAAL Z,et al.Iron derivatives from casein hydrolysates as a potential source in the treatment of iron deficiency[J].J Arg Food Chem,2002,50(4):871-877.
[14] XU Y,ALFARO-MAGALLANES V M,BABITT J L.Physiological and pathophysiological mechanisms of hepcidin regulation:clinical implications for iron disorders[J].Br J Haematol,2021,193(5):882-893.
[15] PAN W F,GAO H,YING X,et al.Food-derived bioactive oligopeptide iron complexes ameliorate iron deficiency anemia and offspring development in pregnant rats[J/OL].Front Nutr,2022,9[2023-09-04].https://doi.org/10.3389/fnut.2022.997006.
[16] WU W,YANG Y,SUN N,et al.Food protein-derived iron-chelating peptides:the binding mode and promotive effects of iron bioavailability[J/OL].Food Res Int,2020,131[2023-09-04].https://doi.org/10.1016/j.foodres.2020.108976.
[1] 胡海燕, 崔清荣, 余力, 罗赛飞, 葛君华, 裘丹红. 一例钩虫感染重度缺铁性贫血病例诊断分析[J]. 预防医学, 2022, 34(11): 1178-1180,1186.
[2] 朱周靓, 张世鑫, 郑云燕, 严峻, 孟真, 胡争艳. 决明子提取物对高脂血症大鼠血脂和肝肾功能的影响[J]. 预防医学, 2021, 33(12): 1290-1294.
[3] 鹿伟, 夏勇, 张世鑫, 宋燕华, 蔡德雷, 徐彩菊, 赵李丽. 5-HMF对早期2型糖尿病合并肝损伤小鼠糖脂代谢和肝功能影响的研究[J]. 预防医学, 2021, 33(11): 1109-1112.
[4] 夏勇, 蔡德雷, 傅剑云, 徐彩菊, 宋燕华, 孟真, 谢佳莹. 枸杞多糖对肝内胆汁淤积大鼠血液指标和肝组织形态的影响[J]. 预防医学, 2021, 33(10): 1003-1008.
[5] 蔡德雷, 张世鑫, 夏勇, 徐彩菊, 鹿伟, 傅剑云, 宋燕华. 灵芝多糖对小鼠肝纤维化过程肝功能、纤维蛋白原Ⅰ型和抗氧化的作用[J]. 预防医学, 2020, 32(8): 858-862.
[6] 邓敏, 吴云辉, 丁韧烨, 魏大海. 乙型肝炎病毒携带者外周血PD-1、PD-L1、M30、M65与肝脏炎症的相关性研究[J]. 预防医学, 2020, 32(12): 1242-1245.
[7] 黄玲玲, 蔡成松, 范超明. 缺铁性贫血合并幽门螺杆菌感染治疗效果的Meta分析[J]. 预防医学, 2019, 31(7): 688-692.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed