MicroRNA and Markers and Therapeutic Response to Romosozumab and Abaloparatide in Postmenopausal Osteoporosis (ROMIRNA)
MicroRNA and Circulating Markers Predictive of the Therapeutic Response to Romosozumab and Abaloparatide Treatment in Women With Postmenopausal Osteoporosis
Osteoporosis is a systemic skeletal disorder affecting approximately 10% of individuals over 50 years of age. It is characterised by an increased risk of fragility fractures, which constitute a major source of morbidity, mortality, and healthcare burden worldwide.
A range of pharmacological therapies has been approved for osteoporosis, with demonstrated efficacy in reducing fracture risk. These include anabolic agents that stimulate osteoblast-mediated bone formation (teriparatide, abaloparatide), antiresorptive agents that inhibit osteoclast-driven bone resorption (bisphosphonates, denosumab), and dual-action agents such as romosozumab, which, through sclerostin inhibition, simultaneously enhances bone formation and suppresses resorption. In clinical practice, these agents are administered sequentially or in combination to optimise therapeutic outcomes.
The primary goal of anti-osteoporotic therapy is to reduce the risk of incident and subsequent fractures. In postmenopausal osteoporosis, this objective is closely linked to meaningful gains in bone mineral density (BMD), as measured by dual-energy X-ray absorptiometry (DEXA), with attainment of osteopenic ranges associated with low fracture probability (<15% for major osteoporotic fractures and <3% for hip fractures, according to FRAX). However, selecting the most effective therapeutic strategy remains challenging, as robust predictors of individual treatment response are lacking. Although bone turnover markers are widely used to monitor treatment effects, their value in predicting clinical outcomes is limited.
MicroRNAs (miRNAs) are small (~22 nucleotides), single-stranded, non-coding RNAs that regulate gene expression at the post-transcriptional level through binding to complementary sequences in target mRNAs. Circulating miRNAs are stabilised by association with proteins and extracellular vesicles, making them attractive candidates as biomarkers. Increasing evidence indicates that miRNAs play key roles in osteoblast and osteoclast differentiation, proliferation, and apoptosis, and distinct miRNA expression profiles have been associated with osteoporosis and fragility fractures.
An emerging area of interest is the interaction between osteoactive therapies and circulating miRNA signatures. To date, available data are largely limited to antiresorptive agents and teriparatide. No studies have yet addressed miRNA expression profiles in patients treated with romosozumab or abaloparatide.
Beyond miRNAs, additional molecular pathways implicated in osteoimmunological crosstalk and ageing are gaining attention as potential biomarkers. Nitric oxide (NO) plays a multifaceted role in bone homeostasis, inhibiting osteoclast activity while promoting osteoblast function. Reduced circulating NO levels have been identified as an independent predictor of osteoporotic fractures in postmenopausal women. Autophagy is increasingly recognised as a critical regulator of bone remodelling, influencing both osteoblastic and osteoclastic activity. Dysregulation of autophagic pathways disrupts bone homeostasis and contributes to bone loss. These processes are tightly controlled by complex molecular networks, including miRNAs, and are closely linked to lysosomal function. In this context, cathepsin K has emerged as a promising therapeutic target in osteoporosis.
The present study primarily aims to identify circulating microRNAs, whose early treatment-induced changes are predictive of the outcome of the therapy in terms of changes in BMD. Secondary, it aims to identify correlations of the changes in microRNAs serum concentrations with variations in biomarkers of bone metabolism as well as of aging.
The study enrols women with diagnosis of severe postmenopausal osteoporosis addressed to treatment with romosozumab or with abaloparatide. All women will be assessed at baseline and after 2, 6 and 12 months of treatment.
研究概览
研究类型
注册 (估计的)
阶段
- 不适用
联系人和位置
学习联系方式
- 姓名:Luca Grappiolo, Dr.
- 电话号码:2894 +3902619111
- 邮箱:luca.grappiolo@auxologico.it
研究联系人备份
- 姓名:Sabrina Corbetta, Prof.
- 电话号码:+3902619111
- 邮箱:s.corbetta@auxologico.it
学习地点
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Lombardy
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Miano、Lombardy、意大利、20149
- 招聘中
- Istituto Auxologico Italiano IRCCS
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接触:
- Sabrina Corbetta, Prof.
- 电话号码:+39-02619111
- 邮箱:s.corbetta@auxologico.it
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Milan、Lombardy、意大利
- 尚未招聘
- IRCCS Ospedale Galeazzi Sant'Ambrogio
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接触:
- Gregorio Guabello, MD
- 邮箱:gregorio.guabello@gmail.com
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参与标准
资格标准
适合学习的年龄
- 成人
- 年长者
接受健康志愿者
描述
Inclusion Criteria:
- Female sex
- Postmenopause
- Densitometric diagnosis of osteoporosis
- Normal calcium diet
- Supplement with cholecalciferol or calcifediol
Exclusion Criteria:
- Premenopause
- Chronic therapy with glucocorticosteroids, or other treatments that may affect bone metabolism
- Diseases and conditions that may affect bone metabolism
学习计划
研究是如何设计的?
设计细节
- 主要用途:治疗
- 分配:非随机化
- 介入模型:并行分配
- 屏蔽:无(打开标签)
武器和干预
参与者组/臂 |
干预/治疗 |
|---|---|
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实验性的:Romosozumab treatment
Postmenopausal women treated with romosozumab for twelve months
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Identification circulating miRNAs
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实验性的:Abaloparatide treatment
Postmenopausal women treated with abaloparatide for twelve months
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Identification circulating miRNAs
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研究衡量的是什么?
主要结果指标
结果测量 |
措施说明 |
大体时间 |
|---|---|---|
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miRNA expression profile
大体时间:Baseline, 2, 6 and 12 months of treatment
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Expression profile of circulating miRNA correlated to osteoporosis
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Baseline, 2, 6 and 12 months of treatment
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Bone Mineral Density
大体时间:Baseline, 2, 6 and 12 months of treatment
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Bone Mineral Density (BMD), tested via a DEXA scan and expressed in T-score
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Baseline, 2, 6 and 12 months of treatment
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合作者和调查者
研究记录日期
研究主要日期
学习开始 (实际的)
初级完成 (估计的)
研究完成 (估计的)
研究注册日期
首次提交
首先提交符合 QC 标准的
首次发布 (实际的)
研究记录更新
最后更新发布 (实际的)
上次提交的符合 QC 标准的更新
最后验证
更多信息
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