中国组织工程研究 ›› 2011, Vol. 15 ›› Issue (23): 4321-4324.doi: 10.3969/j.issn.1673-8225.2011.23.032

• 干细胞基础实验 basic experiments of stem cells • 上一篇    下一篇

血小板离体样品存储运输的技术与设备

温志浩1,尹惠玲1,黄洪滔2   

  1. 1广东食品药品职业学院,广东省广州市   510520
    2广州赛能冷藏科技有限公司,广东省广州市510655
  • 收稿日期:2011-01-04 修回日期:2011-03-09 出版日期:2011-06-04 发布日期:2011-06-04
  • 作者简介:温志浩,男,1966年生,广东省兴宁市人,2002年中山大学毕业,高级工程师,主要从事医疗器械项目、产品的研究开发和教学。 wenzh@gdyzy.edu.cn
  • 基金资助:

    科技型中小企业创新基金(国科发计字[2009]579号,09C26214415207)“蓄冷货柜”;广州市科技支撑计划(穗科信条[2010]1号,2010J-E221)“基于蓄冷储能技术的便携式离体样品存储运输设备的研究开发”。

Storage and transport technologies and equipments of isolated platelet samples

Wen Zhi-hao1, Yin Hui-ling1, Huang Hong-tao2   

  1. 1Guangdong Food and Drug Vocational College, Guangzhou  510520, Guangdong Province, China
    2Guangzhou Sanon Refrigeration Sciences Co., Ltd., Guangzhou  510655, Guangdong Province, China
  • Received:2011-01-04 Revised:2011-03-09 Online:2011-06-04 Published:2011-06-04
  • About author:Wen Zhi-hao, Senior engineer, Guangdong Food and Drug Vocational College, Guangzhou 510520, Guangdong Province, China wenzh@gdyzy.edu.cn
  • Supported by:

    SME Innovation Fund, No. 09C26214415207*; Guangzhou Technology Support Program, No. 2010J-E221*

摘要:

背景:当前离体样品资源短缺和利用率不高现象已引起持续关注,离体样品的有效保存和便携运输成为亟待解决的问题。
目的:开发一种便携式离体样品储存运输技术与设备,维持样品的活性,提高样品的再生能力和利用率。
方法:以血小板储运箱的设计、开发和应用为实例,依据离体样品的储运要求选择适当温度的相变蓄冷材料,经充冷后,在温度湿度控制系统和相应配套功能的维护下实现对离体样品或相关物品的储存运输和维护。
结果与结论:采用相变蓄冷新材料、密闭循环特殊结构和低传热系数储存腔体,试制出便携式血小板存储运输箱,并在相关单位进行了试用,积累了相关的技术和经验。

关键词: 离体样品, 储存运输, 技术, 设备, 血小板

Abstract:

BACKGROUND: Storage and transportation of the isolated samples has always been concerned by clinical medicine, which is an important link of organ transplantation, sample maintenance and special items storage, especially in remote areas.
OBJECTIVE: To provide a portable storage and transportation technology and equipment for the isolated samples to maintain liveness, improve regeneration capacity and utilization.
METHODS: According to the requirement, phase-change cool storage material with appropriate temperature was chosen. After cold-charging, the storage and transportation of isolated samples was realized by using the temperature and humidity control system and corresponding support function.
RESULTS AND CONCLUSION: Using phase-change cool storage material, closed cycle special construction and storage cavity with low heat transfer coefficient, the portable storage and transportation case for platelets was developed and a trial was given in relative company, which established foundation for technology development as well as other storage and transportation devices.

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