Publications

Sort by: Author [ Title  (Asc)] Type Year
A B C D E F G H I J K [L] M N O P Q R S T U V W X Y Z   [Show ALL]
C
Giestas, Letícia, João Carlos Lima, and Pedro V. Baptista. " Coupling single base extension to a spectral codification tool for increased throughput screening." J. Biotechnol. 154 (2011): 199-204.
A
Doria, G., J. T. Dias, M. Larguinho, E. Pereira, R. Franco, and P. Baptista. AuAg-alloy-nanoprobes for Specific Nucleic Acid Detection In NSTI-Nanotech 2010. Anaheim, CA, 2010.
B
Bernacka-Wojcik, Iwona, Paulo Lopes, Ana Catarina Vaz, Bruno Veigas, Pawel Jerzy Wojcik, Pedro Simões, David Barata, Elvira Fortunato, Pedro V. Baptista, Hugo Águas, and Rodrigo Martins. "Bio-microfluidic platform for gold nanoprobe based DNA detection—application to Mycobacterium tuberculosis." Biosens Bioelectron 48 (2013): 87-93. AbstractWebsite

We have projected and fabricated a microfluidic platform for DNA sensing that makes use of an optical colorimetric detection method based on gold nanoparticles. The platform was fabricated using replica moulding technology in PDMS patterned by high-aspect-ratio SU-8 moulds. Biochips of various geometries were tested and evaluated in order to find out the most efficient architecture, and the rational for design, microfabrication and detection performance is presented. The best biochip configuration has been successfully applied to the DNA detection of Mycobacterium tuberculosis using only 3 µl on DNA solution (i.e. 90 ng of target DNA), therefore a 20-fold reduction of reagents volume is obtained when compared with the actual state of the art.

Cordeiro, Milton, Leticia Giestes, Joao Carlos Lima, and Pedro Baptista. "BioCode gold-nanobeacon for the detection of fusion transcripts causing chronic myeloid leukemia." Journal of Nanobiotechnology 38 (2016). AbstractWebsite

Background
Gold-nanobeacons (Au-nanobeacons) have proven to be versatile systems for molecular diagnostics and therapeutic actuators. Here, we present the development and characterization of two gold nanobeacons combined with Förster resonance energy transfer (FRET) based spectral codification for dual mode sequence discrimination. This is the combination of two powerful technologies onto a single nanosystem.

Results
We proved this concept to detect the most common fusion sequences associated with the development of chronic myeloid leukemia, e13a2 and e14a2. The detection is based on spectral shift of the donor signal to the acceptor, which allows for corroboration of the hybridization event. The Au-nanobeacon acts as scaffold for detection of the target in a homogenous format whose output capability (i.e. additional layer of information) is potentiated via the spectral codification strategy.

Conclusions
The spectral coded Au-nanobeacons permit the detection of each of the pathogenic fusion sequences, with high specificity towards partial complementary sequences. The proposed BioCode Au-nanobeacon concept provides for a nanoplatform for molecular recognition suitable for cancer diagnostics.

C
Mendo, Ana Soraia, Sara Figueiredo, Catarina Roma-Rodrigues, Paula A. Videira, Zhen Ma, Mário Diniz, Miguel Larguinho, Pedro Costa, João C. Lima, Armando J. L. Pombeiro, Pedro V. Baptista, and Alexandra R. Fernandes. "Characterization of antiproliferative potential and biological targets of a copper compound containing 4'-phenyl terpyridine." JBIC Journal of Biological Inorganic Chemistry 2 (2015): 935-948. AbstractWebsite

Several copper complexes have been assessed as anti-tumor agents against cancer cells. In this work, a copper compound [Cu(H2O){OS(CH3)2}L](NO3)2 incorporating the ligand 4'-phenyl-terpyridine antiproliferative activity against human colorectal, hepatocellular carcinomas and breast adenocarcinoma cell lines was determined, demonstrating high cytotoxicity. The compound is able to induce apoptosis and a slight delay in cancer cell cycle progression, probably by its interaction with DNA and induction of double-strand pDNA cleavage, which is enhanced by oxidative mechanisms. Moreover, proteomic studies indicate that the compound induces alterations in proteins involved in cytoskeleton maintenance, cell cycle progression and apoptosis, corroborating its antiproliferative potential.

Vinhas, Raquel, Claudia Correia, Patricia Ribeiro, Alexandra Lourenco, Aida Botelho de Sousa, Alexandra R. Fernandes, and Pedro V. Baptista. "Colorimetric assessment of BCR-ABL1 transcripts in clinical samples via gold nanoprobes." Analytical and Bioanalytical Chemistry 408 (2016): 5277-5284. Abstract

n/a

Cordeiro, M., L. Giestas, J. C. Lima, and Pedro Viana Baptista. "Coupling an universal primer to SBE combined spectral codification strategy for single nucleotide polymorphism analysis." J Biotechnol 168 (2013): 90-94. AbstractWebsite

We previously reported a strategy that combines Förster resonance energy transfer (FRET) based spectral codification with a single base extension (SBE) reaction for single nucleotide sequence discrimination in solution. This strategy is capable of unequivocally detect the allele variants present in solution. To extend the use of this tool to any locus of interest, it would be required the development of an universal approach capable of combining a sequence specific SBE primer to an universal sequence labeled and optimized for spectral codification.
Here, we extend this concept to a general strategy by means of a labeled universal oligonucleotide primer (donor), a sequence specific primer that allows for incorporation of the complementary acceptor labeled ddNTP, which allows discrimination the allele variant in the sample via the unambiguous FRET signature of the donor/acceptor pair.

Giestas, L., J. C. Lima, and P. V. Baptista. "Coupling single base extension to a spectral codification tool for increased throughput screening." J Biotechnol 154 (2011): 199-204. AbstractWebsite

n/a

D
Larguinho, Miguel, Hugo M. Santos, Gonçalo Doria, H. Scholz, Pedro V. Baptista, and José L. Capelo. "Development of a fast and efficient ultrasonic-based strategy for DNA fragmentation." J. Talanta 81 (2010): 881-886.
Larguinho, Miguel, Sofia Santos, Joao Almeida, and Pedro V. Baptista. "DNA adduct identification using gold-aptamer nanoprobes." Iet Nanobiotechnology 9 (2015): 95-101. Abstract

n/a

Vinhas, Raquel, Alexandra Lourenco, Susana Santos, Patricia Ribeiro, Madalena Silva, Aida Botelho de Sousa, Pedro V. Baptista, and Alexandra R. Fernandes. "A double Philadelphia chromosome-positive chronic myeloid leukemia patient, co-expressing P210(BCR-ABL1) and P195(BCR-ABL1) isoforms." Haematologica 103 (2018): E549-E552. Abstract

n/a

Reimão-Pinto, M. M., A. Cordeiro, C. Almeida, A. V. Pinheiro, A. Moro, J. C. Lima, and P. V. Baptista. "Dual-color control of nucleotide polymerization sensed by a fluorescence actuator." Photochem Photobiol Sci 13 (2014): 751-6. AbstractWebsite

n/a

E
Larguinho, Miguel, Daniela Correia, Mario S. Diniz, and Pedro V. Baptista. "Evidence of one-way flow bioaccumulation of gold nanoparticles across two trophic levels." Journal of Nanoparticle Research 16 (2014). Abstract

n/a

Rosa, J. P., J. C. Lima, and P. V. Baptista. "Experimental photophysical characterization of fluorophores in the vicinity of gold nanoparticles." Nanotechnology 22 (2011). Abstract

n/a

F
Larguinho, Miguel, José L. Capelo, and Pedro V. Baptista. "Fast Nucleotide identification using gold nanoparticle-based surface assisted laser desorption/ionisation." Talanta 105 (2013): 417-421.
G
Giestas, Letícia, Vesselin Petrov, Pedro V. Baptista, and João Carlos Lima. "General FRET-based coding for application in multiplexing methods." Photochem. Photobiol. Sci. 8 (2009): 1130-1138.
Larguinho, Miguel, and Pedro V. Baptista. "Gold and silver nanoparticles for clinical diagnostics - from genomics to proteomics." J. Proteomics 75 (2012): 2811-2823.
Cordeiro, Mílton, Fábio Ferreira Carlos, Pedro Pedrosa, António Lopez, and Pedro Viana Baptista. "Gold Nanoparticles for Diagnostics: Advances towards Points of Care." Diagnostics 6 (2016): 43. AbstractWebsite

The remarkable physicochemical properties of gold nanoparticles (AuNPs) have prompted developments in the exploration of biomolecular interactions with AuNP-containing systems, in particular for biomedical applications in diagnostics. These systems show great promise in improving sensitivity, ease of operation and portability. Despite this endeavor, most platforms have yet to reach maturity and make their way into clinics or points of care (POC). Here, we present an overview of emerging and available molecular diagnostics using AuNPs for biomedical sensing that are currently being translated to the clinical setting.

Cordeiro, Milton, Fabio Ferreira Carlos, Pedro Pedrosa, Antonio Lopez, and Pedro Viana Baptista. "Gold Nanoparticles for Diagnostics: Advances towards Points of Care." Diagnostics 6 (2016). Abstract

n/a

Larguinho, Miguel, Rafaela Canto, Milton Cordeiro, Pedro Pedrosa, Andreia Fortuna, Raquel Vinhas, and Pedro V. Baptista. "Gold nanoprobe-based non-crosslinking hybridization for molecular diagnostics." Expert Review of Molecular Diagnostics 15 (2015): 1355-1368. Abstract

n/a

Vinhas, R., C. Correia, P. Ribeiro, A. Lourenco, A. Sousa, A. Fernandes, and P. Baptista. "GOLD NANOPROBES IN THE DIAGNOSTIC OF CHRONIC MYELOID LEUKEMIA: DETECTION OF THE E14A2 BCR-ABL TRANSCRIPT DIRECTLY IN RNA SAMPLES." Leukemia Research 39 (2015): S90. Abstract

n/a

Conde, João, Miguel Larguinho, Ana Cordeiro, Luis R. Raposo, Pedro M. Costa, Susana Santos, Mário Diniz, Alexandra R. Fernandes, and Pedro Viana Baptista. "Gold-Nanobeacons for gene therapy: evaluation of genotoxicity, cell toxicity and proteome profiling analysis." Nanotoxicology 8 (2014): 521-532. AbstractWebsite

Antisense therapy is a powerful tool for post-transcriptional gene silencing suitable for down-regulating target genes associated to disease. Gold nanoparticles have been described as effective intracellular delivery vehicles for antisense oligonucleotides providing increased protection against nucleases and targeting capability via simple surface modification. We constructed an antisense gold-nanobeacon consisting of a stem-looped oligonucleotide double-labelled with 3′-Cy3 and 5′-Thiol-C6 and tested for the effective blocking of gene expression in colorectal cancer cells. Due to the beacon conformation, gene silencing was directly detected as fluorescence increases with hybridisation to target, which can be used to assess the level of silencing. Moreover, this system was extensively evaluated for the genotoxic, cytotoxic and proteomic effects of gold-nanobeacon exposure to cancer cells. The exposure was evaluated by two-dimensional protein electrophoresis followed by mass spectrometry to perform a proteomic profile and 3-(4,5-Dimethylthiazol-2-Yl)-2,5-Diphenyltetrazolium Bromide (MTT) assay, glutathione-S-transferase assay, micronucleus test and comet assay to assess the genotoxicity. This integrated toxicology evaluation showed that the proposed nanotheranostics strategy does not exhibit significant toxicity, which is extremely relevant when translating into in vivo systems.

Rosa, J., J. Conde, J. M. de la Fuente, J. C. Lima, and P. V. Baptista. "Gold-nanobeacons for real-time monitoring of RNA synthesis." Biosens Bioelectron 36 (2012): 161-7. AbstractWebsite

n/a