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|a dc
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|a Hamza, Bashar
|e author
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|a Miller, Alex B
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|a Meier, Lara
|e author
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|a Stockslager, Max
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|a Ng, Sheng Rong
|e author
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|a King, Emily M
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|a Lin, Lin
|e author
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|a DeGouveia, Kelsey L
|e author
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|a Mulugeta, Nolawit
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|a Calistri, Nicholas L
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|a Strouf, Haley
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|a Bray, Christina
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|a Rodriguez, Felicia
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|a Freed-Pastor, William A
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|a Chin, Christopher R
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|a Jaramillo, Grissel C
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|a Burger, Megan L
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|a Weinberg, Robert A
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|a Shalek, Alex K
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|a Jacks, Tyler
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|a Manalis, Scott R
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|a Measuring kinetics and metastatic propensity of CTCs by blood exchange between mice
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|b Springer Science and Business Media LLC,
|c 2022-03-18T14:10:25Z.
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|z Get fulltext
|u https://hdl.handle.net/1721.1/141280
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|a <jats:title>Abstract</jats:title><jats:p>Existing preclinical methods for acquiring dissemination kinetics of rare circulating tumor cells (CTCs) en route to forming metastases have not been capable of providing a direct measure of CTC intravasation rate and subsequent half-life in the circulation. Here, we demonstrate an approach for measuring endogenous CTC kinetics by continuously exchanging CTC-containing blood over several hours between un-anesthetized, tumor-bearing mice and healthy, tumor-free counterparts. By tracking CTC transfer rates, we extrapolated half-life times in the circulation of between 40 and 260 s and intravasation rates between 60 and 107,000 CTCs/hour in mouse models of small-cell lung cancer (SCLC), pancreatic ductal adenocarcinoma (PDAC), and non-small cell lung cancer (NSCLC). Additionally, direct transfer of only 1−2% of daily-shed CTCs using our blood-exchange technique from late-stage, SCLC-bearing mice generated macrometastases in healthy recipient mice. We envision that our technique will help further elucidate the role of CTCs and the rate-limiting steps in metastasis.</jats:p>
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|a en
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|a Article
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|t 10.1038/S41467-021-25917-5
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|t Nature Communications
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