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PROCÉDÉ POUR LE TRAITEMENT D'OUTILS ET OUTILS UTILISÉS POUR L'ISOLEMENT DE MICROVÉSICULES, DE NANOVÉSICULES OU D'EXSOMES
专利权人:
UNIVERZA V LJUBLJANI;JOZEF STEFAN INSTITUTE
发明人:
JUNKAR, Ita,MOZETIC, Miran,ZAPLOTNIK, Rok,KRALJ-IGLIC, Veronika,ŠTUKELJ, Roman
申请号:
EPEP2015/069420
公开号:
WO2016/030358A1
申请日:
2015.08.25
申请国别(地区):
EP
年份:
2016
代理人:
摘要:
According to the present invention a method which prevents excessive adsorption of microvesicles on the surfaces of tools used for sampling, storing and handling body flu- ids containing microvesicles is provided. The method comprises the steps of: selecting said a tool from the a list plurality of tools including but not limited to needles, blood tubing, blood bags, catheters, Eppendorf tubes, pipettes or the like, providing said tool from said plurality of tools, providing a source of positively and negatively charged particles of high density, selecting a source assuring for formation of positively and negatively charged particles of high density and treating a surface of said tool by applying short pulses of said source of particles next to or on the said surface of said tool to assure surface modification of said surface by reacting said positively and negatively charged particles of high density on said surface. The method according to the present invention ensures contacting of tools with short pulses of highly ionized gas comprising both positively and negatively charged particles, the pulses being essentially short enough to avoid excessive heating of materials used for collecting, sampling, storage, transport and isolation of micro vesicles and the density of both positively and negatively charged particles which is essentially high enough to cause roughening of said tools on sub-micrometer or nanometer scale. Especially tools treated according to the present inventive method prevents excessive adsorption of microvesicles on the surfaces of said tools used for collecting, sampling, storing, transporting and isolating of microvesicles or the like. The method according to the present invention enables higher yields and lower frag- mentation of microvesicles for instance by preventing adsorption of this valuable diag- nostic material on the surface of different tools used for isolation and detection. Accordingly, the present invention also provides increasing
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