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Castro, Cesar

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Castro

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Cesar

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Castro, Cesar

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Now showing 1 - 2 of 2
  • Publication

    On Chip Analysis of CNS Lymphoma in Cerebrospinal Fluid

    (Ivyspring International Publisher, 2015) Turetsky, Anna; Lee, Kyungheon; Song, Jun; Giedt, Randy; Kim, Eunha; Kovach, Alexandra E.; Hochberg, Ephraim; Castro, Cesar; Lee, Hakho; Weissleder, Ralph

    Molecular profiling of central nervous system lymphomas in cerebrospinal fluid (CSF) samples can be challenging due to the paucicellular and limited nature of the samples. Presented herein is a microfluidic platform for complete CSF lymphoid cell analysis, including single cell capture in sub-nanoliter traps, and molecular and chemotherapeutic response profiling via on-chip imaging, all in less than one hour. The system can detect scant lymphoma cells and quantitate their kappa/lambda immunoglobulin light chain restriction patterns. The approach can be further customized for measurement of additional biomarkers, such as those for differential diagnosis of lymphoma subtypes or for prognosis, as well as for imaging exposure to experimental drugs.

  • Publication

    Rapid identification of health care–associated infections with an integrated fluorescence anisotropy system

    (American Association for the Advancement of Science, 2016) Park, Ki Soo; Huang, Chen-Han; Lee, Kyungheon; Yoo, Yeong-Eun; Castro, Cesar; Weissleder, Ralph; Lee, Hakho

    Health care–associated infections (HAIs) and drug-resistant pathogens have become a major health care issue with millions of reported cases every year. Advanced diagnostics would allow clinicians to more quickly determine the most effective treatment, reduce the nonspecific use of broad-spectrum antimicrobials, and facilitate enrollment in new antibiotic treatments. We present a new integrated system, polarization anisotropy diagnostics (PAD), for rapid detection of HAI pathogens. The PAD uses changes of fluorescence anisotropy when detection probes recognize target bacterial nucleic acids. The technology is inherently robust against environmental noise and economically scalable for parallel measurements. The assay is fast (2 hours) and performed on-site in a single-tube format. When applied to clinical samples obtained from interventional procedures, the PAD determined the overall bacterial burden, differentiated HAI bacterial species, and identified drug resistance and virulence status. The PAD system holds promise as a powerful tool for near-patient, rapid HAI testing.