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Biomedical subjects

Michael Eisenstein

Publications and source records attributed to Michael Eisenstein.

At least 19 recordsLinked to original sources

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Activating Transcription Factors↗

Putting long-range mapping in reach.

A technique for performing PCR on extremely large DNA molecules offers researchers the ability to generate accurate multi-marker haplotypes for large numbers of patients--even with loci arrayed across entire human chromosomes.

Chromosome Mapping↗

Coke and chips--a winning combination?

An aptamer-based electronic sensor for the detection of cocaine demonstrates the capabilities of a sensitive and generalizable new platform for small-molecule recognition.

Aptamers, Nucleotide↗

A new twist for DNA.

A computer-aided design strategy allows scientists to 'staple' DNA molecules into a wide variety of two-dimensional shapes, generating precisely arranged scaffolds that could serve as promising platforms for nanoscale research applications.

Computer-Aided Design↗

My enemy's enemy is my friend.

Bacteriophages form the foundation for a rapid and sensitive bacterial detection assay, capable of revealing the presence of a few dozen cells in a milliliter sample.

Bacterial Infections↗

Tracking the wily transcription factor.

A 'paired-end ditag' (PET) strategy for pinpointing protein binding sites can reveal a wealth of information about transcription factors and other DNA-binding proteins.

Binding Sites↗

More than just 'doing the math'.

Two new articles show how computational tools continue to move beyond mere sequence-based bioinformatic analysis into more advanced arenas of prediction, deduction and network building.

Animals↗

Getting a DNA to do an RNA's job.

The successful in vitro evolution of a DNA enzyme based on a ribozyme could offer insights into early evolutionary events and provide guidelines for designing hardier catalytic oligonucleotides.

DNA↗

Circuit maps for the cell.

An assessment of the interactions between different receptor-mediated cellular signaling pathways may have revealed an unexpected degree of underlying compartmentalization and even simplicity in the cross-talk between these networks.

Cell Physiological Phenomena↗