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公开(公告)号:US20170261513A1
公开(公告)日:2017-09-14
申请号:US15504732
申请日:2015-08-19
Inventor: Dukjin KANG , Sun Young LEE , Sook-Kyung KIM
CPC classification number: G01N33/6848 , C12N9/50 , G01N33/6842 , G01N2440/14 , H01J49/0027 , H01J49/004
Abstract: A phosphoprotein extraction method and a mass spectrometric method using a microbore hollow fiber enzymatic reactor (mHFER) based antigen-antibody reaction and, specifically, to an extraction method and a mass spectrometric method, wherein phosphoproteins or phosphopeptides present in the body are extracted using phosphoserine-, phosphothreonine-, and phosphotyrosine-antibodies, and measured by a mass spectrometer, and thus biomarker phosphoproteins for diagnosis of diseases are found, contributing to early diagnosis of diseases. The mass spectrometric method using the antigen-antibody reaction based extraction method can: minimize temporal and economic burdens resulting from a low extraction rate and a complicated sample pre-treatment; increase the extraction efficiency by using a considerable number of phosphopeptides (or phosphoproteins) and antibodies with strong affinity; and allow the extraction of low-concentration phosphopeptides or phosphoproteins, and thus is expected to have high applicability in discovering disease diagnosis protein markers and identifying and studying mechanisms thereof.
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公开(公告)号:US20210040425A1
公开(公告)日:2021-02-11
申请号:US16640849
申请日:2018-08-22
Applicant: KOREA INSTITUTE OF INDUSTRIAL TECHNOLOGY , CEFO CO., LTD , KOREA RESEARCH INSTITUTE OF CHEMICAL TECHNOLOGY , KOREA RESEARCH INSTITUTE OF STANDARDS AND SCIENCE
Inventor: Dongmok LEE , Woojong LEE , Woojin KIM , Hyunsook PARK , Sunray LEE , Kiyoung KIM , Sungbum PARK , Kwangrok KIM , Byumseok KOH , Kyongjin CHOI , Hyejin NAM , Dukjin KANG
IPC: C12M1/32 , C12N5/0775
Abstract: The present invention relates to a culture vessel for three-dimensional cell cultivation and a three-dimensional cell co-cultivation method using the same. The culture vessel comprises a well formed by a column positioned thereon and at least one support protruding from the column within the well. In contrast to conventional techniques, the present invention allows cells to be cultured at a position spaced from a culture vessel, thus enjoying the advantage of smoothly supplying oxygen necessary for three-dimensional cell culture structures.
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