Long-duration leptin transgene expression in dorsal vagal complex does not alter bone parameters in female Sprague Dawley rats

IF 2.1 Q3 ENDOCRINOLOGY & METABOLISM Bone Reports Pub Date : 2024-04-24 DOI:10.1016/j.bonr.2024.101769
Russell T. Turner , Adam J. Branscum , Urszula T. Iwaniec
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Abstract

The hypothalamus and dorsal vagal complex (DVC) are both important for integration of signals that regulate energy balance. Increased leptin transgene expression in either the hypothalamus or DVC of female rats was shown to decrease white adipose tissue and circulating levels of leptin and adiponectin. However, in contrast to hypothalamus, leptin transgene expression in the DVC had no effect on food intake, circulating insulin, ghrelin and glucose, nor on thermogenic energy expenditure. These findings imply different roles for hypothalamus and DVC in leptin signaling. Leptin signaling is required for normal bone accrual and turnover. Leptin transgene expression in the hypothalamus normalized the skeletal phenotype of leptin-deficient ob/ob mice but had no long-duration (≥10 weeks) effects on the skeleton of leptin-replete rats. The goal of this investigation was to determine the long-duration effects of leptin transgene expression in the DVC on the skeleton of leptin-replete rats. To accomplish this goal, we analyzed bone from three-month-old female rats that were microinjected with recombinant adeno-associated virus encoding either rat leptin (rAAV-Leptin, n = 6) or green fluorescent protein (rAAV-GFP, control, n = 5) gene. Representative bones from the appendicular (femur) and axial (3rd lumbar vertebra) skeleton were evaluated following 10 weeks of treatment. Selectively increasing leptin transgene expression in the DVC had no effect on femur cortical or cancellous bone microarchitecture. Additionally, increasing leptin transgene expression had no effect on vertebral osteoblast-lined or osteoclast-lined bone perimeter or marrow adiposity. Taken together, the findings suggest that activation of leptin receptors in the DVC has minimal specific effects on the skeleton of leptin-replete female rats.

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背迷走神经复合体中长期瘦素转基因表达不会改变雌性 Sprague Dawley 大鼠的骨骼参数
下丘脑和背迷走神经复合体(DVC)对于整合调节能量平衡的信号都很重要。研究表明,在雌性大鼠的下丘脑或背迷走神经复合体中增加瘦素转基因表达会减少白色脂肪组织以及循环中瘦素和脂肪连素的水平。然而,与下丘脑不同的是,瘦素转基因在DVC中的表达对食物摄入量、循环胰岛素、胃泌素和葡萄糖没有影响,对热能消耗也没有影响。这些发现意味着下丘脑和DVC在瘦素信号转导中扮演着不同的角色。正常的骨增生和骨转换需要瘦素信号。瘦素转基因在下丘脑的表达能使瘦素缺乏的ob/ob小鼠的骨骼表型正常化,但对瘦素完全的大鼠的骨骼没有长期(≥10周)的影响。本研究的目的是确定瘦素转基因在DVC中的表达对瘦素完全大鼠骨骼的长期影响。为了实现这一目标,我们对微量注射了编码大鼠瘦素(rAAV-Leptin,n = 6)或绿色荧光蛋白(rAAV-GFP,对照组,n = 5)基因的重组腺相关病毒的三个月大雌性大鼠的骨骼进行了分析。治疗 10 周后,对附属骨骼(股骨)和轴向骨骼(第三腰椎)的代表性骨骼进行评估。选择性增加瘦素转基因在DVC中的表达对股骨皮质和松质骨的微结构没有影响。此外,增加瘦素转基因的表达对脊椎成骨细胞衬里或破骨细胞衬里的骨周长或骨髓脂肪含量也没有影响。综上所述,研究结果表明,激活DVC中的瘦素受体对瘦素完全的雌性大鼠骨骼的特异性影响很小。
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来源期刊
Bone Reports
Bone Reports Medicine-Orthopedics and Sports Medicine
CiteScore
4.30
自引率
4.00%
发文量
444
审稿时长
57 days
期刊介绍: Bone Reports is an interdisciplinary forum for the rapid publication of Original Research Articles and Case Reports across basic, translational and clinical aspects of bone and mineral metabolism. The journal publishes papers that are scientifically sound, with the peer review process focused principally on verifying sound methodologies, and correct data analysis and interpretation. We welcome studies either replicating or failing to replicate a previous study, and null findings. We fulfil a critical and current need to enhance research by publishing reproducibility studies and null findings.
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