Hand-held high-resolution fluorescence imaging system for fluorescence-guided surgery of patient and cell-line pancreatic tumors growing orthotopically in nude mice.

Hand-held high-resolution fluorescence imaging system for fluorescence-guided surgery of patient and cell-line pancreatic tumors growing orthotopically in nude mice.
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DOI:
10.1016/j.jss.2013.11.1083
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发表时间:
2014-04
影响因子:
2.2
通讯作者:
Hoffman, Robert M.
Hoffman, Robert M.
中科院分区:
医学3区
文献类型:
--
作者:
Hiroshima, Yukihiko;Maawy, Ali;Sato, Sho;Murakami, Takashi;Uehara, Fuminari;Miwa, Shinji;Yano, Shuya;Momiyama, Masashi;Chishima, Takashi;Tanaka, Kuniya;Bouvet, Michael;Endo, Itaru;Hoffman, Robert M.

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In this study, we investigated the advantages for fluorescence-guided surgery (FGS) in mice of a portable hand-sized imaging system compared to a large chamber fluorescing imaging system or a long-working-distance fluorescence microscope. Mouse models of human pancreatic cancer for FGS included (1) MiaPaCa-2-expressing green fluorescent protein (GFP), (2) BxPC3 labeled with anti-CEA antibody conjugated with Alexa 488, (3) patient-derived orhotopic xenograft (PDOX)™ labeled with anti-CA19-9 antibody conjugated with Alexa 488. Each device could clearly detect the primary MiaPaCa-2-GFP. tumor and any residual tumor after FGS. In the BxPC3 model labeled with Alexa 488-conjugated anti-CEA, each device could detect the primary tumor, but the MVX10 could not clearly detect the residual tumor remaining after FGS while the other devices could. In the PDOX™ model labeled with Alexa 488 conjugated with anti CA19-9, only the portable hand-held device could distinguish the residual tumor from the background, and complete resection of the residual tumor was achieved under fluorescence navigation. The results described in the present report suggest the hand-held mobile imaging system can be able to be applied to the clinic for FGS due to its convenient size and high sensitivity and help make FGS widely-used.
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