Skip to main navigation Skip to search Skip to main content

Microbioreactors for Raman microscopy of stromal cell differentiation

  • Vishnu Vardhan Pully
  • , Aufried Lenferink
  • , Henk-Jan van Manen
  • , Vinod Subramaniam
  • , Clemens A van Blitterswijk
  • , Cees Otto

    Research output: Contribution to JournalArticleAcademicpeer-review

    Abstract

    We present the development of microbioreactors with a sensitive and accurate optical coupling to a confocal Raman microspectrometer. We show that such devices enable in situ and in vitro investigation of cell cultures for tissue engineering by chemically sensitive Raman spectroscopic imaging techniques. The optical resolution of the Raman microspectrometer allows recognition and chemical analysis of subcellular features. Human bone marrow stromal cells (hBMSCs) have been followed after seeding through a phase of early proliferation until typically 21 days later, well after the cells have differentiated to osteoblasts. Long-term perfusion of cells in the dynamic culture conditions was shown to be compatible with experimental optical demands and off-line optical analysis. We show that Raman optical analysis of cells and cellular differentiation in microbioreactors is feasible down to the level of subcellular organelles during development. We conclude that microbioreactors combined with Raman microspectroscopy are a valuable tool to study hBMSC proliferation, differentiation, and development into tissues under in situ and in vitro conditions.

    Original languageEnglish
    Pages (from-to)1844-50
    Number of pages7
    JournalAnalytical Chemistry
    Volume82
    Issue number5
    DOIs
    Publication statusPublished - 1 Mar 2010

    Keywords

    • Bioreactors
    • Cell Differentiation
    • Humans
    • Microscopy
    • Spectrum Analysis, Raman
    • Stromal Cells
    • Journal Article
    • Research Support, Non-U.S. Gov't

    Fingerprint

    Dive into the research topics of 'Microbioreactors for Raman microscopy of stromal cell differentiation'. Together they form a unique fingerprint.

    Cite this