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microRNA Array Hybridization and Washing Buffers

High stringency hybridization and washing buffers for microRNA expression profiling using the miRCURY LNA™ microRNA Arrays.

  • Developed for ultrasensitive and specific microRNA expression profiling on the miRCURY LNA™ microRNA Array platform.


Coverage

Two miRCURY LNA™ Array extra regents are available:

Note

Hybridization and Washing buffers are included in all miRCURY LNA™ microRNA Array products. 

For experimental data on the miRCURY LNA™ microRNA Array platform, please click here.

Roman-Ulrich Müller

The Role of MicroRNAs in Kidney Development


"Even microRNAs with a high level of similarity could be distinguished well using these arrays. The results show some differentially regulated miRNAs and a nice overlap of expression regarding miRNAs encoded by a common primary transcript."

Dr. Roman-Ulrich Müller, Zentrale Klinishe Forschung, Uniklinik Freiburg.

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Shane Murray

Molecular Mechanisms of Stress Resistance


"The miRCURY kit is really easy to use and we obtained good quality data."

Dr. Shane Murray is a plant genomics expert at the Centre for Proteomic and Genomic Research (CPGR) in Cape Town, South Africa. The CPGR is a modern world class, high throughput biology research facility that provides state-of-the-art analytical services and technical expertise in the genomics and proteomics sectors.

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Bali Muralidhar

MicroRNA Profiling in Cervical Neoplasms


Bali Muralidhar is working in Dr Nick Coleman's group at the Medical Research Council Cancer Cell Unit in Cambridge, UK. The group is investigating novel approaches to cancer diagnosis. This involves two main areas:

  1. The development of novel markers for improved screening for cervical cancer and colorectal cancer.
  2. The mechanisms of cervical neoplastic progression.
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Martina Muckenthaler

The Role of MicroRNA in Homeostasis


"The superior detection sensitivity eliminates the need for RNA size selection. More answers than questions when it comes to data analysis and interpretation."

Prof Martina Muckenthaler and Prof Matthias Hentze, University of Heidelberg and EMBL, Germany.

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