探索双胎妊娠的基础代谢率和饮食充分性:VENERE研究。

IF 3.9 2区 医学 Q2 NUTRITION & DIETETICS Nutrition & Metabolism Pub Date : 2024-12-02 DOI:10.1186/s12986-024-00881-1
Monica Dinu, Antonia Napoletano, Ilaria Giangrandi, Sofia Lotti, Agostino Ruotolo, Irene Renda, Luca Nardone, Irene Paternò, Viola Seravalli, Marta Tristan Asensi, Giuditta Pagliai, Barbara Colombini, Mariarosaria Di Tommaso, Francesco Sofi
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引用次数: 0

摘要

背景:双胎妊娠对孕产妇保健提出了独特的挑战。然而,目前的指南主要针对单胎妊娠,导致对其特定代谢和饮食需求的知识差距。本研究旨在跟踪双胎妊娠妇女的三个孕期,评估基础代谢率(BMR)、饮食摄入量和饮食质量。方法:在意大利佛罗伦萨AOU Careggi医院进行了一项为期两年的前瞻性观察研究,涉及35名双胞胎孕妇,其中32名完成了研究。参与者在妊娠早期(8-13周)、中期(14-27周)和晚期(28-34周)接受了量热、人体测量和饮食评估。用间接量热法测量BMR,并与预测方程进行比较。使用7天饮食日记和medii - lite依从性评分来评估饮食摄入量。结果:间接量热法显示BMR增加16%,从妊娠早期的1479±196 kcal上升到妊娠晚期的1733±224 kcal。赫罗内克的公式之前被证实适用于单胎妊娠,被认为是估计BMR最准确的预测工具。饮食分析显示,平均每日能量摄入从妊娠早期的1660±244千卡增加到妊娠晚期的1889±262千卡,始终低于推荐值,宏量和微量营养素摄入不足。饮食质量差的特点是水果、蔬菜、豆类和新鲜鱼类的摄入量低,加工肉类、奶酪和含糖饮料的摄入量高。在所有三个月期间,地中海饮食的坚持程度都是中等的。结论:本研究强调了双胎妊娠的能量需求增加和营养不足,强调了量身定制饮食指南和干预措施的必要性。
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Exploring basal metabolic rate and dietary adequacy in twin pregnancies: the VENERE study.

Background: Twin pregnancies present unique challenges in maternal healthcare. However, current guidelines primarily address singleton pregnancies, resulting in a knowledge gap regarding their specific metabolic and dietary needs. This study aimed to follow women with twin pregnancies through all three trimesters, assessing basal metabolic rate (BMR), dietary intake, and diet quality.

Methods: A two-year prospective observational study was conducted at AOU Careggi Hospital, Florence, Italy, involving 35 twin-pregnant women, with 32 completing the study. Participants underwent calorimetric, anthropometric, and dietary assessments during the first (8-13 weeks), second (14-27 weeks), and third trimesters (28-34 weeks). BMR was measured using indirect calorimetry and compared with predictive equations. Dietary intake was evaluated using 7-day food diaries and the Medi-Lite adherence score.

Results: Indirect calorimetry revealed an increase in BMR by 16%, rising from 1479 ± 196 kcal in the first trimester to 1733 ± 224 kcal in the third trimester. Hronek's equation, previously validated for singleton pregnancies, was identified as the most accurate predictive tool for estimating BMR. Dietary analysis revealed that mean daily energy intake increased from 1660 ± 244 kcal in the first trimester to 1889 ± 262 kcal in the third trimester, consistently below recommendations, with insufficient macro- and micronutrient consumption. Poor diet quality was characterized by low intake of fruits, vegetables, legumes, and fresh fish, and high consumption of processed meats, cheese, and sugar-sweetened beverages. Adherence to the Mediterranean diet was moderate across all three trimesters.

Conclusions: This study highlights the increased energy demands and nutritional inadequacies in twin pregnancies, underscoring the need for tailored dietary guidelines and interventions.

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来源期刊
Nutrition & Metabolism
Nutrition & Metabolism 医学-营养学
CiteScore
8.40
自引率
0.00%
发文量
78
审稿时长
4-8 weeks
期刊介绍: Nutrition & Metabolism publishes studies with a clear focus on nutrition and metabolism with applications ranging from nutrition needs, exercise physiology, clinical and population studies, as well as the underlying mechanisms in these aspects. The areas of interest for Nutrition & Metabolism encompass studies in molecular nutrition in the context of obesity, diabetes, lipedemias, metabolic syndrome and exercise physiology. Manuscripts related to molecular, cellular and human metabolism, nutrient sensing and nutrient–gene interactions are also in interest, as are submissions that have employed new and innovative strategies like metabolomics/lipidomics or other omic-based biomarkers to predict nutritional status and metabolic diseases. Key areas we wish to encourage submissions from include: -how diet and specific nutrients interact with genes, proteins or metabolites to influence metabolic phenotypes and disease outcomes; -the role of epigenetic factors and the microbiome in the pathogenesis of metabolic diseases and their influence on metabolic responses to diet and food components; -how diet and other environmental factors affect epigenetics and microbiota; the extent to which genetic and nongenetic factors modify personal metabolic responses to diet and food compositions and the mechanisms involved; -how specific biologic networks and nutrient sensing mechanisms attribute to metabolic variability.
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