1 | Thermally adapted Escherichia coli keeps transcriptomic response during temperature upshift exposure | Coautor: Caspeta L., Pérez-Morales G., Martínez-Conde K.V., Merino E., et al. | 2025 | APPLIED MICROBIOLOGY AND BIOTECHNOLOGY | WoS-id: 001494869200002 Scopus-id: 2-s2.0-105004927120
| 0 | 0 |
2 | Automated adjustment of metabolic niches enables the control of natural and engineered microbial co-cultures | Coautor: Caspeta L., Martinez J.A., Bouchat R., Gallet de Saint Aurin T., et al. | 2025 | TRENDS IN BIOTECHNOLOGY | Scopus-id: 2-s2.0-85216127588
| 0 | 0 |
3 | Simultaneous saccharification and fermentation for d-lactic acid production using a metabolically engineered Escherichia coli adapted to high temperature | 2ᵒ autor: Caspeta, L, Pérez-Morales, G, Merino, E, Cevallos, MA, et al. | 2024 | Biotechnology for Biofuels and Bioproducts | WoS-id: 001346910000001 Scopus-id: 2-s2.0-85208478446
| 2 | 2 |
4 | Simultaneous enzyme production, Levan-type FOS synthesis and sugar by-products elimination using a recombinant Pichia pastoris strain expressing a levansucrase-endolevanase fusion enzyme | Coautor: Caspeta, Luis, Avila-Fernandez, Angela, Montiel, Silvia, Rodriguez-Alegria, Maria Elena, et al. | 2023 | MICROBIAL CELL FACTORIES | WoS-id: 000918520900001 Scopus-id: 2-s2.0-85146912211
| 14 | 15 |
5 | Adaptive responses of yeast strains tolerant to acidic pH, acetate, and supraoptimal temperature | Coautor: Caspeta L., Salas-Navarrete P.C., Rosas-Santiago P., Suárez-Rodríguez R., et al. | 2023 | APPLIED MICROBIOLOGY AND BIOTECHNOLOGY | WoS-id: 000988563200003 Scopus-id: 2-s2.0-85159309675
| 11 | 10 |
6 | Evolutionary and reverse engineering to increase Saccharomyces cerevisiae tolerance to acetic acid, acidic pH, and high temperature | Coautor: Caspeta, Luis, Caheri Salas-Navarrete, Prisciluis, de Oca Miranda, Arturo Ivan Montes, MARTINEZ, ALFREDO | 2022 | APPLIED MICROBIOLOGY AND BIOTECHNOLOGY | WoS-id: 000730890800002 Scopus-id: 2-s2.0-85121385545
| 32 | 39 |
7 | Growth and phycocyanin production with Galdieria sulphuraria UTEX 2919 using xylose, glucose, and corn stover hydrolysates under heterotrophy and mixotrophy | Coautor: Caspeta, Luis, Portillo F.V.-L., Sierra-Ibarra, Estefania, Vera-Estrella, Rosario, et al. | 2022 | ALGAL RESEARCH-BIOMASS BIOFUELS AND BIOPRODUCTS | WoS-id: 000810451000002 Scopus-id: 2-s2.0-85131432834
| 15 | 18 |
8 | Inducing Self-Poisoning: a Feasible Antibacterial Strategy? COMMENT | 1ᵉʳ autor: Caspeta, Luis, Bustamante, Victor H. | 2022 | JOURNAL OF BACTERIOLOGY | WoS-id: 000885696700001 Scopus-id: 2-s2.0-85144589417
| 0 | 0 |
9 | The yeastGemMap: A process diagram to assist yeast systems-metabolic studies | 1ᵉʳ autor: Caspeta, Luis, Kerkhoven, Eduard J., MARTINEZ, ALFREDO, Nielsen, Jens | 2021 | BIOTECHNOLOGY AND BIOENGINEERING | WoS-id: 000703404000001 Scopus-id: 2-s2.0-85116384096
| 2 | 2 |
10 | Engineering high-gravity fermentations for ethanol production at elevated temperature with Saccharomyces cerevisiae | 1ᵉʳ autor: Caspeta, Luis, Coronel, Jesus, Montes de Oca A., Abarca, Eduardo, et al. | 2019 | BIOTECHNOLOGY AND BIOENGINEERING | WoS-id: 000477396500001 Scopus-id: 2-s2.0-85071788299
| 30 | 37 |
11 | Functional expression, production, and biochemical characterization of a laccase using yeast surface display technology | Coautor: Caspeta L., Bertrand B., Trejo-Hernández M.R., Morales-Guzmán D., et al. | 2016 | FUNGAL BIOLOGY | WoS-id: 000390721100010 Scopus-id: 2-s2.0-84995563972
| 22 | 23 |
12 | Novel airlift reactor fitting for hairy root cultures: Developmental and performance studies | 1ᵉʳ autor: Caspeta L., Quintero R., Villarreal M.L. | 2005 | BIOTECHNOLOGY PROGRESS | WoS-id: 000229605400013 Scopus-id: 2-s2.0-20144381474
| 24 | 29 |
13 | Solanum chrysotrichum hairy root cultures: Characterization, scale-up and production of five antifungal saponins for human use | 1ᵉʳ autor: Caspeta L., Nieto I., Zamilpa A., Alvarez L., et al. | 2005 | PLANTA MEDICA | WoS-id: 000233940800022 Scopus-id: 2-s2.0-29144463705
| 10 | 17 |