Micro-patterning of mammalian cells on suspended MEMS resonant sensors for long-term growth measurements.
basic_science · Level V
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- Record sourced from PubMed, PMID 24535001.
- Also identified by DOI 10.1039/c3lc51217g and PMC identifier 4024477.
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Abstract
MEMS resonant mass sensors can measure the mass of individual cells, though long-term growth measurements are limited by the movement of cells off the sensor area. Micro-patterning techniques are a powerful approach to control the placement of individual cells in an arrayed format. In this work we present a method for micro-patterning cells on fully suspended resonant sensors through select functionalization and passivation of the chip surface. This method combines high-resolution photolithography with a blanket transfer technique for applying photoresist to avoid damaging the sensors. Cells are constrained to the patterned collagen area on the sensor by pluronic acting as a cell adhesion blocker. This micro-patterning method enables long-term growth measurements, which is demonstrated by a measurement of the change in mass of a human breast cancer cell over 18 h.
Medical subject headings
- Micro-Electrical-Mechanical Systems
- Microtechnology