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Protection against radiation-induced damage to intestinal nutrient transport

Protection against radiation-induced damage to intestinal nutrient transport
防止辐射引起的肠道营养运输损伤
批准号:
7472929
负责人:
Roger W. Howell
金额:
$87.07万
依托单位国家:
美国
项目类别:
财政年份:
2007
资助国家:
美国
项目状态:
已结题
起止时间:
2007-09-01 至 2010-02-28

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项目成果

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中文摘要
翻译
描述(由申请人提供):RFA-AI-07-013的一个主要重点领域是开发医疗产品,该产品可以在意外辐射事件或故意攻击期间发生胃肠道照射时保护和恢复营养物质的运输。辐射照射可由外部或内部源以及低和高线性能量转移(LET)辐射急性或慢性地传递。这可能会涉及大量超出我们分类和治疗能力的受害者,并主张开发无毒的医疗产品,随时向公众提供。有相当多的证据表明,自然产生的抗氧化剂维生素可能会提供很长一段时间的保护窗口,防止这些暴露条件造成的影响。抗氧化维生素大大减少了由急性和长期暴露在低LET辐射下以及长期暴露在高LET辐射下所造成的辐射损伤。维生素混合物减少了辐射引起的肠道副作用。因此,在放射紧急情况下,抗氧化剂维生素可能有效地保护和恢复肠道营养物质的运输。对于几乎所有的营养素来说,肠道吸收的限速步骤是通过根尖膜运输。我们的初步工作表明,当亚致死剂量的辐射剂量低于扰乱其他肠道功能的剂量时,这种运输会受到损害。我们的长期目标是确定无毒的辐射保护剂,能够预防、减轻和治疗电离辐射对养分运输的有害影响,并了解电离辐射对肠道养分吸收的影响。其具体目的是1)确定电离辐射对代谢重要营养素的吸收以及对营养转运体的mRNA和蛋白质表达的影响,以便以后用于量化DMF;2)由于辐射扰乱氧化新陈代谢,研究依赖能量的营养物质运输过程是否比不需要能源的促进性营养物质运输过程更具辐射敏感性;3)确定辐射是否改变肠膜通透性;以及4)由DMF量化单独或联合使用抗氧化剂维生素A、C和E的有效性,以保护和减轻电离辐射对营养物质运输的有害影响。每个目标都将使用三种辐射源:急性137Cs伽马射线、慢性137Cs伽马射线和来自210Po的阿尔法粒子。我们已经发现,维生素可以减轻睾丸中低LET和高LET辐射的生物效应。由于生精周期和肠腺周期有许多相似之处,我们预计维生素A、C和E也将减少辐射对肠粘膜和营养物质运输的损害。最后,这个项目还将描述不同类别的营养物质运输过程的不同辐射敏感性,以及它们通过抗氧化性维生素进行的不同辐射防护。
英文摘要
DESCRIPTION (provided by applicant): A major focus area of RFA-AI-07-013 is the development of medical products that can protect and restore nutrient transport in the event of gastrointestinal irradiation during an accidental radiological event or intentional attack. The radiation exposures may be delivered acutely or chronically, by external or internal sources, and by low- and high-linear energy transfer (LET) radiations. This may involve large numbers of victims that exceed our capacity to triage and treat, and argue for the development of non-toxic medical products that are readily available to the public. There is considerable evidence to suggest that naturally occurring antioxidant vitamins may provide a long window of protection against effects caused by these exposure conditions. Antioxidant vitamins substantially reduce radiation-induced damage caused by acute and chronic exposures to low-LET radiations and chronic exposures to high-LET radiations. Vitamin mixtures have reduced intestinal side effects caused by radiation. Therefore, antioxidant vitamins may be efficacious in protecting and restoring intestinal nutrient transport during radiological emergencies. For almost all nutrients, the rate-limiting step of intestinal absorption is transport across the apical membrane. Our preliminary work manifests damage to this transport at sublethal radiation doses below those that perturb other intestinal functions. Our long term goal is to identify non-toxic radioprotectors capable of preventing, mitigating, and treating the deleterious effect of ionizing radiations on nutrient transport, and to understand the effects of ionizing radiations on intestinal nutrient absorption. The specific aims are 1) to establish the effects of ionizing radiation on absorption of metabolically important nutrients as well as on the mRNA and protein expression of nutrient transporters, for later use in quantifying DMFs; 2) because radiation perturbs oxidative metabolism, to examine whether energy-dependent nutrient transport processes are more radiosensitive than facilitative nutrient transport processes that do not require an energy source; 3) to determine whether radiation alters intestinal membrane permeability; and 4) to quantify by DMFs the effectiveness of antioxidant vitamins A, C, and E, administered individually or in concert, to protect and mitigate against the deleterious effects of ionizing radiations on nutrient transport. Three sources of radiation will be used in each aim: acute 137Cs gamma rays, chronic 137Cs gamma rays, and alpha particles from 210Po. We have found that vitamins mitigate biological effects of low- and high-LET radiation in testes. Since spermatogenic and intestinal crypt cycles share many similarities, we anticipate that vitamins A, C and E will also reduce radiation-induced damage to the intestinal mucosa and nutrient transport. Finally, this project will also delineate the differential radiosensitivity of different classes of nutrient transport processes, and their differential radioprotection by antioxidant vitamins.
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MIRDcell Version 3
MIRDcell Version 3
  • 批准号:
    10320949
  • 项目类别:
  • 资助金额:
    $11.76万
  • 财政年份:
    2020
  • 负责人:
    Roger W. Howell
  • 依托单位:
Protection against radiation-induced damage to intestinal nutrient transport
Effects of nonuniform distributions of radioactivity
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