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中文摘要
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描述(由申请人提供):许多形式的癌症,包括乳腺癌,都依赖于血管生成,血管的生长。医学上迫切需要开发一种安全、有效、廉价的抗血管生成疗法。一种有前途的方法是使用抗血管生成肽作为活性剂。在我们的初步研究中,我们已经从几种有效防止血管生成的蛋白质中发现了新的肽。我们还发现了其他能够通过其他机制抑制癌症的肽,包括抗淋巴管生成和细胞凋亡。然而,在它们目前的形式下,所有这些肽在体内的半衰期都很短,它们不适合全身给药或长期作用。因此,有必要以更稳定、持续的方式包装、保护和输送这些肽。我们寻求创造新技术来应对这一挑战,并假设以工程方式将这些肽结合起来可以协同杀死乳腺癌。基于我们在药物递送纳米颗粒方面的经验,我们将设计一种安全、可生物降解的有效聚合物阵列,用于形成含有肽的纳米颗粒(目标1)。这些生物材料将用于构建纳米颗粒,这些纳米颗粒具有不同的生物物理特性和生物特性,包括肿瘤积累和肽释放。高通量合成和筛选方法将用于选择新型纳米颗粒配方,包括抗血管生成肽纳米颗粒,高效抑制人内皮细胞增殖和迁移,抑制淋巴内皮细胞增殖和迁移,促进乳腺癌凋亡。我们的初步工作表明,这些方法是可行的,我们可以合成新的纳米生物技术,其性能优于游离的未封装肽。在Aim 2中,从Aim 1中体外筛选的含铅抗癌肽的铅纳米颗粒将在体内使用。血管生成生物反应器将被植入小鼠皮下,用于监测纳米颗粒对抗血管生成肽的递送。表现最好的抗血管生成配方将与其他主要抗癌肽结合,并在乳腺癌小鼠模型中进行测试。我们的目标是创造新的生物纳米技术,可以安全、有效、相对便宜地治疗乳腺癌。
英文摘要
DESCRIPTION (provided by applicant): Many forms of cancer, including breast cancer, are dependent on angiogenesis, the growth of blood vessels. There is a great medical need for the development of a safe, effective, and inexpensive means of antiangiogenic therapy. One promising approach is the use of antiangiogenic peptides as the active agents. We have identified novel peptides derived from several classes of proteins that are effective at preventing angiogenesis in our preliminary studies. We have also identified other peptides able to inhibit cancer through additional mechanisms including antilymphangiogenesis and apoptosis. However, in their current form, all of these peptides have a short in vivo half-life and they are not suitable for systemic administration or for long-term action. Thus, there is a need to package, protect, and deliver these peptides in a more stable, sustained fashion. We seek to create new technology to meet this challenge and hypothesize that combinations of these peptides delivered in an engineered fashion could enable synergistic killing of breast cancer. Building on our experience with drug delivery nanoparticles, we will design an effective array of safe, biodegradable polymers for use in forming peptide-containing nanoparticles (Aim 1). These biomaterials will be used to construct nanoparticles that vary in their biophysical properties and in biological properties including tumor accumulation and peptide release. High-throughput synthesis and screening methodology will be used to select for novel nanoparticle formulations, including antiangiogenic peptide nanoparticles, highly efficient for inhibition of human endothelial cell proliferation and migration, inhibition lymphatic endothelial cell proliferation and migration, and promotion of breast cancer apoptosis. Our preliminary work shows these methods are practical and that we can synthesize new nanobiotechnology that performs superiorly to free unencapsulated peptide. In Aim 2, lead nanoparticles containing lead anti-cancer peptides from the in vitro screens in Aim 1 will then be utilized in vivo. Angiogenesis bioreactors implanted subcutaneously in mice will be used to monitor delivery of antiangiogenic peptides by the nanoparticles. The top-performing antiangiogenic formulation will be combined with other lead anti-cancer peptides and tested in a breast cancer mouse model. We aim to create new bionanotechnology that can safely, effectively, and relatively inexpensively treat breast cancer. PUBLIC HEALTH RELEVANCE: This research aims to create new bionanotechnologies that enable the efficient delivery of novel antiangiogenic, antilymphangiogenic, and pro-apoptotic peptides. The nanoparticles proposed here can facilitate the delivery of these peptides to systemically treat breast cancer.
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Kinetic Assembly of Polymer-mRNA Nanoparticles Targets Circulating Monocytes to Enhance Cancer Immunotherapy
  • 批准号:
    10681055
  • 项目类别:
  • 资助金额:
    $56.1万
  • 财政年份:
    2023
  • 负责人:
    Jordan Green
  • 依托单位:
A Non-Viral Genetic Vaccine for Prevention and Treatment of Multiple Sclerosis
  • 批准号:
    10374165
  • 项目类别:
  • 资助金额:
    $24.56万
  • 财政年份:
    2021
  • 负责人:
    Jordan Green
  • 依托单位:
A Non-Viral Genetic Vaccine for Prevention and Treatment of Multiple Sclerosis
  • 批准号:
    10228440
  • 项目类别:
  • 资助金额:
    $20.47万
  • 财政年份:
    2021
  • 负责人:
    Jordan Green
  • 依托单位:
TR&D2: Nanoimmunomaterials for Immune Engineering
  • 批准号:
    9790438
  • 项目类别:
  • 资助金额:
    $31.68万
  • 财政年份:
    2019
  • 负责人:
    Jordan Green
  • 依托单位:
海外基金