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Journal Article
Vieira, L. M. M., Kijjoa, A., Silva, A. M. S., Mondranondra, I. - O., et al. (2004). Lanostanes and friedolanostanes from the bark of Garcinia speciosa. Phytochemistry, 65(4), 393 - 398.
Dethoup, T., Manoch, L., Kijjoa, A., Pinto, M., et al. (2007). Merodrimanes and other constituents from Talaromyces thailandiasis. Journal of Natural Products, 70(7), 1200 - 1202.
Zin, W. W. M., Buttachon, S., Dethoup, T., Fernandes, C., et al. (2016). New cyclotetrapeptides and a new diketopiperzine derivative from the marine sponge-associated fungus Neosartorya glabra KUFA 0702. Marine Drugs, 14(7).
Kumla, D., Aung, T. S., Buttachon, S., Dethoup, T., et al. (2017). A new dihydrochromone dimer and other secondary metabolites from cultures of the marine sponge-associated fungi Neosartorya fennelliae KUFA 0811 and Neosartorya tsunodae KUFC 9213. Marine Drugs, 15(12).
Noinart, J., Buttachon, S., Dethoup, T., Gales, L., et al. (2017). A new ergosterol analog, a new bis-anthraquinone and anti-obesity activity of anthraquinones from the marine sponge-associated fungus Talaromyces stipitatus KUFA 0207. Marine Drugs, 15(5).
Zin, W. W. M., Buttachon, S., Buaruang, J., Gales, L., et al. (2015). A new meroditerpene and a new tryptoquivaline analog from the algicolous fungus Neosartorya takakii KUFC 7898. Marine Drugs, 13(6), 3776 - 3790.
Prompanya, C., Dethoup, T., Gales, L., Lee, M., et al. (2016). New polyketides and new benzoic acid derivatives from the marine sponge-associated fungus Neosartorya quadricincta KUFA 0081. Marine Drugs, 14(7).
Durão, J., & Gales, L. (2015). Peptide self-assembly for therapeutic applications. Current Organic Chemistry, 19(19), 1874 - 1881.
Afonso, R., Mendes, A., & Gales, L. (2012). Peptide-based solids: Porosity and zeolitic behavior. Journal of Materials Chemistry, 22(5), 1709 - 1723.
Durão, J., & Gales, L. (2012). Permeation of light gases through hexagonal ice. Materials, 5(9), 1593 - 1601.
Crespo, R., Martins, P. M., Gales, L., Rocha, F., & Damas, A. M. (2010). Potential use of ultrasound to promote protein crystallization. Journal of Applied Crystallography, 43(6), 1419 - 1425.
Neves, M. P., Cidade, H., Pinto, M., Silva, A. M. S., et al. (2011). Prenylated derivatives of baicalein and 3,7-dihydroxyflavone: Synthesis and study of their effects on tumor cell lines growth, cell cycle and apoptosis. European Journal of Medicinal Chemistry, 46(6), 2562 - 2574.
Mota, R., Guimarães, R., Büttel, Z., Rossi, F., et al. (2013). Production and characterization of extracellular carbohydrate polymer from Cyanothece sp. CCY 0110. Carbohydrate Polymers, 92(2), 1408 - 1415.
Lopes, A. R., Sousa, V. M., Estevinho, B. N., Leite, J. P., et al. (2016). Production of microparticles of molinate degrading biocatalysts using the spray drying technique. Chemosphere, 161, 61 - 68.
Carvalho, N., Coelho, E., Gales, L., Costa, V., et al. (2016). Production of orotic acid by a Klura3δ mutant of Kluyveromyces lactis. Journal of Bioscience and Bioengineering, 121(6), 625 - 630.
Azevedo, C. M. G., Afonso, C. M. M., Soares, J. X., Reis, S., et al. (2013). Pyranoxanthones: Synthesis, growth inhibitory activity on human tumor cell lines and determination of their lipophilicity in two membrane models. European Journal of Medicinal Chemistry, 69, 798 - 816.
Buttachon, S., Chandrapatya, A., Manoch, L., Silva, A., et al. (2012). Sartorymensin, a new indole alkaloid, and new analogues of tryptoquivaline and fiscalins produced by Neosartorya siamensis (KUFC 6349). Tetrahedron, 68(15), 3253 - 3262.
Buttachon, S., Zin, W. W. May, Dethoup, T., Gales, L., et al. (2016). Secondary Metabolites from the Culture of the Marine Sponge-Associated Fungi Talaromyces tratensis and Sporidesmium circinophorum. Planta Medica, 82(9-10), 888 - 896.
Ferreira, C., Crespo, R., Martins, P. M., Gales, L., et al. (2011). Small temperature oscillations promote protein crystallization. CrystEngComm, 13(8), 3051 - 3056.
Almeida, M. R., Gales, L., Damas, A. M., Cardoso, I., & Saraiva, M. J. (2005). Small transthyretin (TTR) ligands as possible therapeutic agents in TTR amyloidoses. Current Drug Targets: CNS and Neurological Disorders, 4(5), 587 - 596.
Gales, L., Saraiva, M. J., & Damas, A. M. (2007). Structural basis for the protective role of sulfite against transthyretin amyloid formation. Biochimica et Biophysica Acta - Proteins and Proteomics, 1774(1), 59 - 64.
Castro-Rodrigues, A. F., Gales, L., Saraiva, M. J., & Damas, A. M. (2011). Structural insights into a zinc-dependent pathway leading to Leu55Pro transthyretin amyloid fibrils. Acta Crystallographica Section D: Biological Crystallography, 67(12), 1035 - 1044.
Leite, J. P., Duarte, M., Paiva, A. M., Ferreira-Da-Silva, F., et al. (2015). Structure-guided engineering of molinate hydrolase for the degradation of thiocarbamate pesticides. PLoS ONE, 10(4).
Afonso, R., Gales, L., & Mendes, A. (2016). A surface thermodynamics approach to modelling single-file adsorption in ultramicroporous materials. Microporous and Mesoporous Materials, 225, 543 - 551.
Emami, S., Paz, F. A. A., Mendes, A., & Gales, L. (2014). Toward the construction of 3D dipeptide-metal frameworks. Crystal Growth and Design, 14(9), 4777 - 4780.

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