膳食中锰基纳米颗粒补充或缺乏对大鼠全身健康和肠道代谢动力学的影响。

IF 4.9 Q2 NANOSCIENCE & NANOTECHNOLOGY
Nanotechnology, Science and Applications Pub Date : 2025-02-15 eCollection Date: 2025-01-01 DOI:10.2147/NSA.S494533
Przemysław Sołek, Karolina Różaniecka, Jerzy Juśkiewicz, Bartosz Fotschki, Anna Stępniowska, Katarzyna Ognik
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引用次数: 0

摘要

微量元素如锰(Mn)是各种生物过程所必需的,包括酶激活、代谢途径和抗氧化防御。鉴于它参与这些关键过程,维持足够的锰水平对整体健康至关重要。方法:实验设计24只雄性Wistar大鼠,分为三组(每组n=8):对照组接受标准Mn补充(65 mg/kg), Mn缺乏组和Mn2O₃纳米颗粒补充组(65 mg/kg)。为期12周的喂养试验评估了选定的生理参数、组织组成、盲肠健康和生化指标。结果:各组患者的体重和主要脏器重量无显著差异(p=0.083 ~ p=0.579)。然而,脂肪组织百分比和瘦肉组织百分比存在显著差异(p=0.016)。讨论:我们的研究结果表明,锰的补充和缺乏都会导致生理和生化改变,影响脂肪代谢、肠道健康和微生物酶活性或神经递质水平,这突出了锰在维持代谢稳态中的关键作用,或其对营养和药物干预的潜在影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Consequences of Dietary Manganese-Based Nanoparticles Supplementation or Deficiency on Systemic Health and Gut Metabolic Dynamics in Rats.

Introduction: Trace elements such as manganese (Mn) are essential for various biological processes, including enzyme activation, metabolic pathways, and antioxidant defences. Given its involvement in these critical processes, maintaining adequate Mn levels is crucial for overall health.

Methods: The experimental design involved 24 male Wistar rats divided into three groups (n=8 per group): a control group receiving standard Mn supplementation (65 mg/kg), an Mn-deficient group, and a group supplemented with Mn2O₃ nanoparticles (65 mg/kg). The 12-week feeding trial assessed selected physiological parameters, tissue composition, caecal health, and biochemical markers.

Results: Body and major organ weights were not significantly affected across groups (p=0.083 to p=0.579). However, significant differences were observed in fat tissue percentage (p=0.016) and lean tissue percentage (p<0.001). Caecal parameters showed higher ammonia levels (p=0.030) and increased pH (p=0.031) in the nano-Mn group. In turn, total SCFA concentrations were highest in the control group, followed by the Mn-deficient and nano-Mn groups (p<0.001). Enzymatic activities of caecal bacteria differed significantly between the groups, with reduced activity in the nano-Mn group (p<0.001). Blood plasma analysis revealed significantly lower insulin (p<0.001) and neurotransmitter levels, including dopamine and serotonin, in the Mn-deficient and nano-Mn groups compared to controls.

Discussion: Our findings suggest that both Mn supplementation and deficiency can lead to physiological and biochemical alterations, affecting fat metabolism, gut health and microbial enzymatic activity or neurotransmitter levels highlighting the critical role of Mn in maintaining metabolic homeostasis or its potential implications for nutritional and pharmaceutical interventions.

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来源期刊
Nanotechnology, Science and Applications
Nanotechnology, Science and Applications NANOSCIENCE & NANOTECHNOLOGY-
CiteScore
11.70
自引率
0.00%
发文量
3
审稿时长
16 weeks
期刊介绍: Nanotechnology, Science and Applications is an international, peer-reviewed, Open Access journal that focuses on the science of nanotechnology in a wide range of industrial and academic applications. The journal is characterized by the rapid reporting of reviews, original research, and application studies across all sectors, including engineering, optics, bio-medicine, cosmetics, textiles, resource sustainability and science. Applied research into nano-materials, particles, nano-structures and fabrication, diagnostics and analytics, drug delivery and toxicology constitute the primary direction of the journal.
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