课题基金 / 基金详情

Novel Pathway and Prevention Strategy for Heterotopic Ossification

Novel Pathway and Prevention Strategy for Heterotopic Ossification
异位骨化的新途径和预防策略
批准号:
8865649
负责人:
Benjamin Levi
金额:
$19.62万
依托单位国家:
美国
项目类别:
财政年份:
2014
资助国家:
美国
项目状态:
已结题
起止时间:
2014-08-01 至 2018-07-31

项目摘要

项目成果

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中文摘要
翻译
候选人:我将在密歇根大学担任助理教授,专注于烧伤和重建手术。我最近完成了一项为期两年的基础科学博士后研究,研究干细胞和骨生物学的基础和转化方法。我的长期职业目标是实现科学独立,建立一个转化研究实验室,以提高烧伤、创伤性损伤和异位骨化(HO)患者的诊断和治疗策略。环境:我在最先进的医学和基础科学研究大楼工作。我的主要导师,王博士是烧伤和创伤损伤,炎症途径和新型成像方式的研究人员。与王博士一起,我的顾问委员会包括骨生物学、炎症途径、干细胞、突变动物发育和体内成像方面的知名专家。研究:异位骨化是烧伤和外伤后常见的情况。最近来自我们实验室体外和体内模型的证据表明,烧伤增强了间充质干细胞(MSCs)的成骨能力,并刺激了HO的形成。新的机制揭示了烧伤损伤可能通过三磷酸腺苷(ATP)和smad依赖性骨形态发生蛋白受体1A (Bmpr1a)信号传导来发挥这种作用。当使用ATP水解剂(apyrase)处理烧伤时,MSCs和HO形成的成骨能力减弱。这些发现表明,烧伤是HO形成的一个致病因素,而apyrase是HO的预防策略。,目标1。探讨烧伤对间充质干细胞成骨和异位骨化的促成骨作用机制。在Aim 1A中,我们将研究烧伤对小鼠脂肪和骨髓间室MSCs成骨能力的影响。小分子BMP抑制剂,除了使用Bmpr1a突变小鼠的间充质干细胞外,还将使用。在Aim 1B中,我们将使用我们的跟腱切断术模型探讨烧伤对体内HO形成的作用。我们还将在全球Bmp抑制和Bmpr1a突变小鼠中应用该模型,以进一步了解Bmpr1a在HO中的作用。-目标2:证明ATP水解对MSCs和体内HO形成的抗成骨作用。在Aim 2A中,我们将优化ATP水解酶apyrase在小鼠烧伤模型中的传递,并分析MSCs的成骨能力。在Aim 2B中,我们将使用我们的跟腱切断术模型来确定apyrase应用于烧伤部位是否可以阻断HO的形成。这些结果将对局部ATP水解作为HO的预防策略的临床翻译至关重要。摘要:本K08提案旨在为我成为一名专注于烧伤和异位骨化的独立外科科学家的目标提供便利。这个建议是我之前在MSC成骨和骨发育方面的研究经验的一个合乎逻辑的进展。
英文摘要
DESCRIPTION (provided by applicant): Candidate: I will begin as an Assistant Professor at the University of Michigan with a focus on burn and reconstructive surgery. I recently completed a two-year basic science post-doctoral fellowship studying basic and translational approaches in stem cell and bone biology. My long-term career goal is to achieve scientific independence, and to establish a translational research laboratory to improve diagnostic and treatment strategies for patients with burns, traumatic injuries and heterotopic ossification (HO). Environment: I work within the state-of-the-art Medical Science and Basic Science Research Buildings. My primary mentor, Dr. Wang is a researcher in burn and trauma injury, inflammation pathways and novel imaging modalities. With Dr. Wang, my advisory committee includes well-established experts in bone biology, inflammatory pathways, stem cells, mutant animal development and in vivo imaging. Research: Heterotopic ossification is a common condition seen after burn and trauma injuries. Recent evidence from in vitro and in vivo models in our laboratory suggests that burn injury enhances the osteogenic capacity of mesenchymal stem cells (MSCs) and stimulates HO formation. New mechanistic insight has revealed that burn injury may exert this effect through adenosine triphosphate (ATP) and smad-dependent Bone Morphogenetic Protein Receptor 1A (Bmpr1a) signaling. This osteogenic capacity of MSCs and HO formation is blunted when the burns are treated with an ATP hydrolyzing agent (apyrase). These findings suggest burn injury as a causative factor in HO formation and apyrase as a prevention strategy of HO. --Aim 1. Determine the mechanism of the pro-osteogenic effects of burn injury on MSC osteogenesis and heterotopic ossification. In Aim 1A, we will examine the effect of burn injury on the osteogenic capacity of mouse MSCs from the adipose and bone marrow compartments. Small molecule BMP inhibitors, in addition to the use of MSCs from Bmpr1a mutant mice will be used. In Aim 1B we will explore the role of burn injury on in vivo HO formation using our Achilles tenotomy model. We also will apply this model after global Bmp inhibition and to our Bmpr1a mutant mice to further understand the role of Bmpr1a on HO. --Aim 2: Demonstrate the anti-osteogenic effect of ATP hydrolysis on MSCs and in vivo HO formation. In Aim 2A we will optimize the delivery of the ATP hydrolyzing enzyme apyrase in our mouse burn model and MSCs will be analyzed for their osteogenic capacity. In Aim 2B, we will determine if apyrase application to the burn site can block HO formation using our Achilles tenotomy model. These results will be critical to clinical translation of local ATP hydrolysis as a prevention strategy fr HO. --Summary: This K08 proposal is designed to allow for expedient progress toward my goal of becoming an independent surgeon scientist with a focus on burn injury and heterotopic ossification. This proposal is a logical progression from my previous research experience in MSC osteogenesis and bone development.
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Impacts of mechanosensation and matrix architecture on cell fate specification in traumatic heterotopic ossification - diversity supplement
  • 批准号:
    10533903
  • 项目类别:
  • 资助金额:
    $12.76万
  • 财政年份:
    2021
  • 负责人:
    Benjamin Levi
  • 依托单位:
Impacts of mechanosensation and matrix architecture on cell fate specification in traumatic heterotopic ossification
  • 批准号:
    10832255
  • 项目类别:
  • 资助金额:
    $13.92万
  • 财政年份:
    2021
  • 负责人:
    Benjamin Levi
  • 依托单位:
Impacts of mechanosensation and matrix architecture on cell fate specification in traumatic heterotopic ossification
  • 批准号:
    10297550
  • 项目类别:
  • 资助金额:
    $42.84万
  • 财政年份:
    2021
  • 负责人:
    Benjamin Levi
  • 依托单位:
Impacts of mechanosensation and matrix architecture on cell fate specification in traumatic heterotopic ossification
  • 批准号:
    10448303
  • 项目类别:
  • 资助金额:
    $43.51万
  • 财政年份:
    2021
  • 负责人:
    Benjamin Levi
  • 依托单位:
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  • 批准年份:
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