SBIR Phase II: Innovative Green Technology for Advanced, Patient-Centered Home Hemodialysis
SBIR Phase II: Innovative Green Technology for Advanced, Patient-Centered Home Hemodialysis
批准号:
1152661
负责人:
Takuji Tsukamoto
金额:
$47.91万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2012
资助国家:
美国
项目状态:
已结题
起止时间:
2012-04-15 至 2015-03-31
中文摘要
这个小型企业创新研究(SBIR)二期项目的重点是进一步开发一种先进的、可移动的、易于使用的、以患者为导向的先进家庭血液透析(HHD)系统,最大限度地减少水(少于6升)和医疗废物的使用,重要的是,最大限度地减少营养损失。终末期肾病(ESRD)是一种毁灭性的致残疾病。由于在医院和透析中心进行血液透析(HD)治疗的时间和精力,许多ESRD患者及其家庭成员的活动和自由受到严重限制。我们的最终目标是开发下一代轻型HD机器(约22公斤),配备高精度组件和创新的透析液再生盒(DRC)。第二阶段计划的重点是建造一台原型HHD机器,该机器完全配备了必要的功能和安全装置。智能的优点是基于高效率和选择性DRC组成的一个特定功能化的吸附剂,以及紧凑和高效的HD机器,允许一个良好的配置和精确控制的透析治疗。这一发展将极大地改善终末期肾病患者及其家属的生活质量,使其能够在家中、甚至在工作或学校中进行有效和舒适的治疗。如果成功,该项目更广泛的影响/商业潜力是减轻ESRD对患者和联邦医疗保健计划的经济负担。随着全球HD患者数量接近300万,通过大幅降低设施成本、水和能源的使用来降低治疗这些患者的成本和资源负担变得至关重要。第二个影响是通过促进治疗时间和地点(家庭、学校、工作)的更大灵活性来提高患者的生活质量。该系统还允许通过选择性吸附毒素对患者进行个性化透析治疗。与目前可用的透析系统相比,提议的移动、半便携式HD机器具有许多优点,因此具有很高的商业潜力。该系统将提高透析生物工程和吸附剂化学技术领域的科学和技术知识。由于透析治疗的灵活性,透析患者的生活质量将大大提高。由于该产品同时实现了两个目标,即改善处理和降低成本,因此与当今许多竞争产品相比,它具有显著的优势。
英文摘要
This Small Business Innovation Research (SBIR) Phase II project focuses on the further development of an advanced, mobile, easy-to-use, patient-oriented, advanced Home Hemodialysis (HHD) system that minimizes the use of water (less than 6 liters) and medical waste, and importantly, minimizes nutrient loss. End-stage renal disease (ESRD) is a devastating, disabling disease. Many ESRD patients and their family members are severely limited in the mobility and freedom due to the time and effort of having hemodialysis (HD) treatments at hospitals and dialysis centers. Our ultimate goal is to develop a next generation lightweight HD machine (~22 kg) equipped with high precision components and an innovative dialysate regeneration cartridge (DRC). This Phase II program focuses on the construction of a prototype HHD machine that is fully equipped with necessary functions and safety devices. The intellectual merits are based on both the highly efficient and selective DRC composed of a specifically functionalized sorbent, and the compact and highly efficient HD machine that allows for a well-configured and accurately controlled dialysis treatment. This development would greatly improve quality of life for ESRD patients and their families by allowing for effective and comfortable treatment at home, or even at work or school. The broader impact/commercial potential of this project, if successful, is to reduce the economic burden of ESRD on both patients and Federal healthcare programs. As the number of HD patients approaches 3 million globally, it is becoming critical to decrease the cost and resource burden of treating these patients by drastically decreasing facility costs, use of water and energy in treatment. The second impact is to increase patients' quality of life by facilitating greater flexibility in the length and place of treatment (home, school, work). This system also allows for the personalized dialysis treatment of patients through selective adsorption of toxins. The proposed mobile, semi-portable HD machine offers many advantages over currently available dialysis systems, resulting in high commercial potential. The system will enhance the scientific and technical knowledge in the fields of bioengineering of dialysis and chemistry of sorbent technologies. Given the flexibility in dialysis treatment, the quality of life of dialysis patients will be greatly enhanced. Since this product achieves two goals simultaneously, namely improved treatment and reduced cost, it has a significant advantage over many of the competitive products available today.
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SBIR Phase I: Innovative Green Technology for Advanced, Patient-Centered Home Hemodialysis
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批准号:1013344
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项目类别:Standard Grant
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资助金额:$0.0万
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财政年份:2010
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负责人:Takuji Tsukamoto
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依托单位:
SBIR Phase II: Development of Agents to Promote Cellular Ga-67 (Gallium-67) Uptake
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批准号:0450618
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项目类别:Standard Grant
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资助金额:$0.0万
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财政年份:2005
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负责人:Takuji Tsukamoto
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依托单位:
SBIR Phase I: Development of Agents to Promote Cellular Ga-67 (Gallium-67) Uptake
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批准号:0320485
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项目类别:Standard Grant
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资助金额:$10.0万
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财政年份:2003
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负责人:Takuji Tsukamoto
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依托单位:
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