P. T. M. Veenhuizen

Details der Publikationsliste

Zeitraum

2002 - 2008

Anzahl

13

Co-Autoren

Joining of long double-stranded RNA molecules through controlled overhangs4 (2004)

Dekker, N.H., Abels, J.A., Veenhuizen, P.T.M., Bruinink, M.M., Dekker, C.

We describe two methods for creating long (>1 kb) dsRNA molecules with specific, user-controlled overhangs for efficient hybridization and ligation. The two methods create double-stranded RNA (dsRNA)...

Joining of long double-stranded RNA molecules through controlled overhangs (2004)

Dekker, N. H., Abels, J. A., Veenhuizen, P. T. M., Bruinink, M. M., Dekker, C.

We describe two methods for creating long (>1 kb) dsRNA molecules with specific, user-controlled overhangs for efficient hybridization and ligation. The two methods create double-stranded RNA (dsRNA)...

Carbon nanotubes with DNA recognition (2002)

Williams, K.A., Veenhuizen, P.T.M., De La Torre, B.G., Eritja, R., Dekker, C.

The leading candidate that has emerged for nanodevice applications is single-walled carbon nanotubes (SWNTs). We unite their unique properties with the specific molecular-recognition features of DNA...

Towards DNA-mediated self assembly of carbon nanotube molecular devices (2002)

Williams, K.A., Veenhuizen, P.T.M., De La Torre, B.G., Eritja, R., Dekker, C.

We report covalent coupling of peptide nucleic acid (PNA) to ropes of carboxylated, single-walled, carbon nanotubes. Subsequent hybridization of these functionalized nanotubes with DNA was...

Joining of long double-stranded RNA molecules through controlled overhangs

Dekker, N. H., Abels, J. A., Veenhuizen, P. T. M., Bruinink, M. M., Dekker, C.

We describe two methods for creating long (>1 kb) dsRNA molecules with specific, user-controlled overhangs for efficient hybridization and ligation. The two methods create double-stranded RNA (dsRNA)...

Joining of long double-stranded RNA molecules through controlled overhangs

Dekker, N. H., Abels, J. A., Veenhuizen, P. T. M., Bruinink, M. M., Dekker, C.

We describe two methods for creating long (>1 kb) dsRNA molecules with specific, user-controlled overhangs for efficient hybridization and ligation. The two methods create double-stranded RNA (dsRNA)...