4.8 Article

Fabrication and Testing of a Microneedles Sensor Array for p-Cresol Detection with Potential Biofuel Applications

期刊

ACS APPLIED MATERIALS & INTERFACES
卷 1, 期 7, 页码 1591-1598

出版社

AMER CHEMICAL SOC
DOI: 10.1021/am900259u

关键词

ElectroNeedles; fabrication; diazonium; p-cresol; laccase; electrochemistry; fluorescence

资金

  1. U.S. Department of Energy, Office of Science, Office of Biological and Environmental Research [DE-AC02-05CH11231, DE-AC04-94AL85000]
  2. Lawrence Berkeley National Laboratory
  3. Sandia's Laboratory Directed Research and Development (LDRD) [125859]
  4. Defense Threat Reduction Agency, joint Science and Technology Office (DTRA-JSTO) [MIPR9FO89XR052-0]

向作者/读者索取更多资源

We present a miniaturized high-throughput sensor array that will augment biofuel technology by facilitating in situ biochemical measurements upon micrometer-scale surfaces of leaves, stems, or petals. We used semiconductor processing to photopattern Foturan glass wafers and fabricated gold-placed microscopic electrode needles (ElectroNeedles) that pierced 125-mu m-thick surfaces without deformation. The 5 x 5 or 10 x 10 arrays of ElectroNeedles can analyze 25 or 100 samples simultaneously, increasing throughput. Each microneedle in the array can also be individually addressed and selectively functionalized using diazonium electrodeposition, conferring multiplexing capability. Our microfabrication is a simple, inexpensive, and rapid alternative to the time-. cost-, and protocol-intense, deep-reactive-ion-etching Bosch process. We validated the system performance by electrochemically detecting p-cresol, a phenolic substrate for laccase, an enzyme that is implicated in lignin degradation and therefore important to biofuels. Our limits of detection (LOD) and quantization (LOQ) for p-cresol were 1,8 and 16 mu M, respectively, rivaling fluorescence detection (LOD and LOQ = 0.4 and 3 mu M, respectively). EleccroNeedles are multiplexed, high-through put, chip-based sensor arrays designed for minimally invasive penetration of plant surfaces, enabling in situ and point-of-test analyses of biofuel-related biochemicals.

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