CARLOS FELIPE PEÑA MALACARA



DATOS GENERALES
Nombre completo   CARLOS FELIPE PEÑA MALACARA
Máximo nivel de estudios   POSDOCTORADO
Antigüedad académica en la UNAM   26 años
NOMBRAMIENTOS
Vigente   INVESTIGADOR TITULAR B TC Definitivo
Instituto de Biotecnología
Desde 01-08-2013
INVESTIGADOR TITULAR B TC Definitivo
Instituto de Biotecnología
Desde 01-10-2011 hasta 31-07-2013
INVESTIGADOR TITULAR A TC Definitivo
Instituto de Biotecnología
Desde 01-04-2008 hasta 30-09-2011
INVESTIGADOR TITULAR A TC No Definitivo
Instituto de Biotecnología
Desde 01-01-2008 (fecha inicial de registros en el SIIA) hasta 31-03-2008
ESTIMULOS, PROGRAMAS, PREMIOS Y RECONOCIMIENTOS
* SNI II2016 - VIGENTE
* SNI I2013 - 2015
* SNI II2009 - 2012
* SNI I2008
* PRIDE D2016 - 2024
* PASPA Estancias Sabáticas2008 - 2009

INFORMACIÓN DE PUBLICACIONES
Firmas  
Pena Malacara, Carlos F. Pena, C Pena, C. Pena, Carlos Pena, CF Pena-Malacara, C
Peña C. Peña C.F. Peña, C Peña-Malacara C.
ID's SCOPUS  
55989663100
Áreas de conocimiento  
Biotechnology & applied microbiology Biotechnology and applied microbiology Chemistry, multidisciplinary Engineering, chemical Food science & technology
Immunology Microbiology Multidisciplinary sciences Polymer science Scie jcr
Agricultural and biological sciences (miscellaneous) Applied microbiology and biotechnology Biochemistry Biotechnology Clinical Biochemistry
Chemical Engineering (miscellaneous) Environmental Engineering Inorganic chemistry Medicine (miscellaneous) Microbiology (medical)
Plant science Polymers and plastics
Coautorías con entidades de la UNAM  
  • Centro de Ciencias Aplicadas y Desarrollo Tecnológico
  • Instituto de Biología
  • Instituto de Biotecnología
  • Instituto de Ciencias Físicas
  • Facultad de Química
  • Coordinación de Estudios de Posgrado
Revistas en las que ha publicado  (33):
  1. 3 Biotech, Alemania (2022)
  2. AMB Express, Alemania (2021)
  3. ANNALS OF MICROBIOLOGY, Estados Unidos America (2014)
  4. Antioxidants, Suiza (2016)
  5. APPLIED BIOCHEMISTRY AND BIOTECHNOLOGY, Estados Unidos America (2021)
  6. APPLIED MICROBIOLOGY AND BIOTECHNOLOGY, Estados Unidos America (1997, 2007, 2013, 2017, 2018)
  7. BIOCHEMICAL ENGINEERING JOURNAL, Países Bajos (2005, 2007, 2014)
  8. BIOPROCESS AND BIOSYSTEMS ENGINEERING, Estados Unidos America (2020, 2021)
  9. BIOTECHNOLOGY LETTERS, Países Bajos (2003)
  10. BIOTECHNOLOGY PROGRESS, Estados Unidos America (2001)
  11. Biotechnology Reports, Países Bajos (2020)
  12. CLINICAL LYMPHOMA MYELOMA & LEUKEMIA, Estados Unidos America ()
  13. CHEMICAL ENGINEERING SCIENCE, Estados Unidos America (2014)
  14. Electronic Journal Of Biotechnology, Chile (2020, 2021, 2023)
  15. ENZYME AND MICROBIAL TECHNOLOGY, Estados Unidos America (2000, 2001, 2013)
  16. EUROPEAN POLYMER JOURNAL, Reino Unido (2015)
  17. FEMS MICROBIOLOGY LETTERS, Reino Unido (2002)
  18. FERMENTATION-BASEL, Suiza (2023)
  19. Frontiers in Bioengineering and Biotechnology, Suiza (2020)
  20. INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, Países Bajos (2023)
  21. JOURNAL OF APPLIED MICROBIOLOGY, Estados Unidos America (2010, 2018)
  22. JOURNAL OF BIOTECHNOLOGY, Países Bajos (2002, 2003, 2017)
  23. JOURNAL OF CHEMICAL TECHNOLOGY AND BIOTECHNOLOGY, Estados Unidos America (2015, 2016, 2017, 2019, 2020, 2021, 2023, 2025)
  24. JOURNAL OF INDUSTRIAL MICROBIOLOGY & BIOTECHNOLOGY, Alemania (2002, 2013, 2016, 2019)
  25. LETTERS IN APPLIED MICROBIOLOGY, Estados Unidos America (2006)
  26. MEDIATORS OF INFLAMMATION, Estados Unidos America (2002)
  27. MICROBIAL BIOTECHNOLOGY, Estados Unidos America (2014)
  28. MICROBIAL CELL FACTORIES, Reino Unido (2007, 2011, 2018, 2023)
  29. Microorganisms, Suiza (2024)
  30. NEW BIOTECHNOLOGY, Países Bajos (2009)
  31. POLYMERS, Suiza (2022, 2024)
  32. PROCESS BIOCHEMISTRY, Reino Unido (2008, 2011, 2013, 2016)
  33. WORLD JOURNAL OF MICROBIOLOGY & BIOTECHNOLOGY, Estados Unidos America (2012, 2017, 2020)


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Documentos indexados (WoS y Scopus)

# Título del documento Autores Año Revista Fuente Citas WoS Citas Scopus
1Looking for improved strains of Azotobacter vineladii and favorable culture conditions yielding high-molecular-weight poly(3-hydoxybutyrate)Coautor: Peña C., Quiroz-Cardoso R., Castillo T., Galindo E., et al.2025JOURNAL OF CHEMICAL TECHNOLOGY AND BIOTECHNOLOGYWoS-id: 001368043200001
Scopus-id: 2-s2.0-85207657136
11
2The Absence of Phasins PhbP2 and PhbP3 in Azotobacter vinelandii Determines the Growth and Poly-3-hydroxybutyrate SynthesisCoautor: Peña C., Aguirre-Zapata C., Segura D., Ruiz J., et al.2024POLYMERSWoS-id: 001341514500001
Scopus-id: 2-s2.0-85207647372
00
3Recent Trends in the Production and Recovery of Bioplastics Using Polyhydroxyalkanoates CopolymersCoautor: Peña, C, García, A, Aguirre, C, Pérez, A, et al.2024MicroorganismsWoS-id: 001365703000001
Scopus-id: 2-s2.0-85210424669
23
4Production of alginates with high viscosifying power and molecular weight by using the AT9 strain of Azotobacter vinelandii in batch cultures under different oxygen transfer conditionsCoautor: Peña C., Medina A., Castillo T., Flores C., et al.2023JOURNAL OF CHEMICAL TECHNOLOGY AND BIOTECHNOLOGYWoS-id: 000889302200001
Scopus-id: 2-s2.0-85143442815
11
5Yeast extracts from different manufacturers and supplementation of amino acids and micro elements reveal a remarkable impact on alginate production by A. vinelandii ATCC9046Coautor: Peña C., Sparviero, Sarah, Dicke, Max Daniel, Rosch, Tobias M., et al.2023MICROBIAL CELL FACTORIESWoS-id: 000986194800002
Scopus-id: 2-s2.0-85159183137
1314
6Continuous Bioproduction of Alginate Bacterial under Nitrogen Fixation and Nonfixation ConditionsCoautor: Peña C., Contreras-Abara, Pablo, Castillo, Tania, Ponce, Belen, et al.2023FERMENTATION-BASELWoS-id: 000998240900001
Scopus-id: 2-s2.0-85160283348
22
7Efficient production of a polyhydroxyalkanoate by Azotobacter vinelandii OP using apple residues as promising feedstockCoautor: Peña C., Andler, Rodrigo, Rojas, Victoria, Pino, Valentina, et al.2023INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULESWoS-id: 001002468100001
Scopus-id: 2-s2.0-85159416303
1011
8Alginate and y-polyglutamic acid hydrogels: Microbial production strategies and biomedical applications. A review of recent literatureCoautor: Peña C.F., Castillo, Tania, Flores, Celia, -Lugo, Holjes Salgado, et al.2023Electronic Journal Of BiotechnologyWoS-id: 001091475700001
Scopus-id: 2-s2.0-85173261697
22
9Extended batch cultures for poly(3-hydroxybutyrate-co-3-hydroxyvalerate) (PHBV) production by Azotobacter vinelandii OP growing at different aeration ratesCoautor: Pena, Carlos, Urtuvia, Viviana, Ponce, Belen, Andler, Rodrigo, et al.20223 BiotechWoS-id: 000862415100004
Scopus-id: 2-s2.0-85139257349
77
10Evaluation of Poly-3-Hydroxybutyrate (P3HB) Scaffolds Used for Epidermal Cells Growth as Potential BiomatrixCoautor: Peña-Malacara C., García-Cerna S., Sánchez-Pacheco U., Meneses-Acosta A., et al.2022POLYMERSWoS-id: 000868018400001
Scopus-id: 2-s2.0-85139958691
55
11Production of Poly-3-Hydroxybutyrate (P3HB) with Ultra-High Molecular Weight (UHMW) by Mutant Strains of Azotobacter vinelandii Under Microaerophilic ConditionsCoautor: Peña C., Gómez-Hernández E., Salgado-Lugo H., Segura D., et al.2021APPLIED BIOCHEMISTRY AND BIOTECHNOLOGYWoS-id: 000561851700001
Scopus-id: 2-s2.0-85089684063
1314
12Molecular weight and guluronic/mannuronic ratio of alginate produced by Azotobacter vinelandii at two bioreactor scales under diazotrophic conditionsCoautor: Pena, Carlos, Diaz-Barrera, Alvaro, Sanchez-Rosales, Francisco, Padilla-Cordova, Claudio, et al.2021BIOPROCESS AND BIOSYSTEMS ENGINEERINGWoS-id: 000622239000001
Scopus-id: 2-s2.0-85101741681
78
13Composition control of poly(3-hydroxybutyrate-co-3-hydroxyvalerate) copolymerization by oxygen transfer rate (OTR) in Azotobacter vinelandii OPNACoautor: Pena, Carlos, Johanna Torres-Pedraza, Angie, Salgado-Lugo, Holjes, Segura, Daniel, et al.2021JOURNAL OF CHEMICAL TECHNOLOGY AND BIOTECHNOLOGYWoS-id: 000666943000001
Scopus-id: 2-s2.0-85108842197
67
14Increases in alginate production and transcription levels of alginate lyase (alyA1) by control of the oxygen transfer rate in Azotobacter vinelandii cultures under diazotrophic conditionsCoautor: Peña C., Ponce, Belen, Urtuvia, Viviana, Maturana, Nataly, et al.2021Electronic Journal Of BiotechnologyWoS-id: 000670141700005
Scopus-id: 2-s2.0-85106233176
67
15Growth, respiratory activity and chlorpyrifos biodegradation in cultures of Azotobacter vinelandii ATCC 128372ᵒ autor: Pena, Carlos, Conde-Avila, Victoria, Perez-Armendariz, Beatriz, Loera, Octavio, et al.2021AMB ExpressWoS-id: 000734768300003
Scopus-id: 2-s2.0-85121711333
44
16Improving glucose and xylose assimilation in Azotobacter vinelandii by adaptive laboratory evolution2ᵒ autor: Peña C., Millan, Carlos, Flores, Celia, Espin, Guadalupe, et al.2020WORLD JOURNAL OF MICROBIOLOGY & BIOTECHNOLOGYWoS-id: 000518484500001
Scopus-id: 2-s2.0-85081176273
1212
17Accumulation of poly(3-hydroxybutyrate-co-3-hydroxyvalerate) by Azotobacter vinelandii with different 3HV fraction in shake flasks and bioreactorCoautor: Pena, Carlos, Urtuvia, Viviana, Maturana, Nataly, Diaz-Barrera, Alvaro2020BIOPROCESS AND BIOSYSTEMS ENGINEERINGWoS-id: 000524620700002
Scopus-id: 2-s2.0-85083064021
1417
18Oxygen transfer rate determines molecular weight and production of poly(gamma-glutamic acid) as well as carbon utilization by Bacillus velezensis 83Coautor: Pena, Carlos, Flores, Celia, Medina-Valdez, Abraham, Serrano-Carreon, Leobardo, et al.2020JOURNAL OF CHEMICAL TECHNOLOGY AND BIOTECHNOLOGYWoS-id: 000526596200001
Scopus-id: 2-s2.0-85083497096
88
19The Modification of Regulatory Circuits Involved in the Control of Polyhydroxyalkanoates Metabolism to Improve Their ProductionCoautor: Pena, Carlos, Velazquez-Sanchez, Claudia, Espin, Guadalupe, Segura, Daniel2020Frontiers in Bioengineering and BiotechnologyWoS-id: 000536190100001
Scopus-id: 2-s2.0-85084748820
2427
20Respiration in Azotobacter vinelandii and its relationship with the synthesis of biopolymersCoautor: Peña C., Castillo T., García A., Padilla-Córdova C., et al.2020Electronic Journal Of BiotechnologyWoS-id: 000590229400005
Scopus-id: 2-s2.0-85091923305
1417
21Molecular weight and viscosifying power of alginates produced by mutant strains of Azotobacter vinelandii under microaerophilic conditionsCoautor: Peña C., García A., Castillo T., Ramos D., et al.2020Biotechnology ReportsScopus-id: 2-s2.0-85080082230
021
22Poly(3-hydroxybutyrate) accumulation by Azotobacter vinelandii under different oxygen transfer strategiesCoautor: Peña C., Diaz-Barrera, Alvaro, Urtuvia, Viviana, Padilla-Cordova, Claudio2019JOURNAL OF INDUSTRIAL MICROBIOLOGY & BIOTECHNOLOGYWoS-id: 000456248200002
Scopus-id: 2-s2.0-85055679766
1617
23Production and recovery of poly-3-hydroxybutyrate [P(3HB)] of ultra-high molecular weight using fed-batch cultures of Azotobacter vinelandii OPNA strainCoautor: Peña C., García A., Pérez D., Castro M., et al.2019JOURNAL OF CHEMICAL TECHNOLOGY AND BIOTECHNOLOGYWoS-id: 000467459200015
Scopus-id: 2-s2.0-85063284198
1922
24Metabolic flux analysis and the NAD(P) H/NAD(P)(+) ratios in chemostat cultures of Azotobacter vinelandiiCoautor: Peña C., García A., Ferrer P., Albiol J., et al.2018MICROBIAL CELL FACTORIESWoS-id: 000423342100003
Scopus-id: 2-s2.0-85040865473
2529
25Inactivation of an intracellular poly-3-hydroxybutyrate depolymerase of Azotobacter vinelandii allows to obtain a polymer of uniform high molecular massCoautor: Peña C., Adaya, Libertad, Millan, Modesto, Jendrossek, Dieter, et al.2018APPLIED MICROBIOLOGY AND BIOTECHNOLOGYWoS-id: 000426096500017
Scopus-id: 2-s2.0-85041894079
2025
26Oxygen uptake rate in alginate producer (algU plus ) and nonproducer (algU-) strains of Azotobacter vinelandii under nitrogen-fixation conditionsCoautor: Pena, C., Castillo, T., Lopez, I., Flores, C., et al.2018JOURNAL OF APPLIED MICROBIOLOGYWoS-id: 000435274900016
Scopus-id: 2-s2.0-85048556541
1215
27The signaling protein MucG negatively affects the production and the molecular mass of alginate in Azotobacter vinelandiiCoautor: Pena, Carlos, Ahumada-Manuel, Carlos Leonel, Guzman, Josefina, Quiroz-Rocha, Elva, et al.2017APPLIED MICROBIOLOGY AND BIOTECHNOLOGYWoS-id: 000393687400018
Scopus-id: 2-s2.0-84992691646
1720
28Production of polyhydroxybutyrate (PHB) of high and ultra-high molecular weight by Azotobacter vinelandii in batch and fed-batch culturesCoautor: Pena, Carlos, Castillo, Tania, Flores, Celia, Segura, Daniel, et al.2017JOURNAL OF CHEMICAL TECHNOLOGY AND BIOTECHNOLOGYWoS-id: 000403025500038
Scopus-id: 2-s2.0-85011565049
2125
29Molecular mass of Poly-3-hydroxybutyrate (P3HB) produced by Azotobacter vinelandii is influenced by the polymer content in the inoculumCoautor: Pena, Carlos, Millan, Modesto, Salazar, Miriam, Segura, Daniel, et al.2017JOURNAL OF BIOTECHNOLOGYWoS-id: 000412035000009
Scopus-id: 2-s2.0-85028349936
89
30Bacterial alginate production: an overview of its biosynthesis and potential industrial productionCoautor: Pena, Carlos, Urtuvia, Viviana, Maturana, Nataly, Acevedo, Fernando, et al.2017WORLD JOURNAL OF MICROBIOLOGY & BIOTECHNOLOGYWoS-id: 000413705900005
Scopus-id: 2-s2.0-85030854218
104133
31Poly-3-hydroxybutyrate production by Azotobacter vinelandii strains in batch cultures at different oxygen transfer ratesCoautor: Pena, Carlos, Diaz-Barrera, Alvaro, Andler, Rodrigo, Martinez, Irene2016JOURNAL OF CHEMICAL TECHNOLOGY AND BIOTECHNOLOGYWoS-id: 000372305800026
Scopus-id: 2-s2.0-84960800764
3232
32Molecular weight and viscosifying power of alginates produced in Azotobacter vinelandii cultures in shake flasks under low power inputCoautor: Pena, Carlos, Gomez-Pazarin, Karen, Flores, Celia, Castillo, Tania, et al.2016JOURNAL OF CHEMICAL TECHNOLOGY AND BIOTECHNOLOGYWoS-id: 000373611600033
Scopus-id: 2-s2.0-84933564295
2226
33Analysis of respiratory activity and carbon usage of a mutant of Azotobacter vinelandii impaired in poly-beta-hydroxybutyrate synthesisCoautor: Pena, Carlos, Jimenez, Lucero, Castillo, Tania, Flores, Celia, et al.2016JOURNAL OF INDUSTRIAL MICROBIOLOGY & BIOTECHNOLOGYWoS-id: 000379625700012
Scopus-id: 2-s2.0-84966415447
911
34Molecular mass of poly-3-hydroxybutyrate (P3HB) produced by Azotobacter vinelandii is determined by the ratio of synthesis and degradation under fixed dissolved oxygen tensionCoautor: Pena, Carlos, Milian, Modesto, Segura, Daniel, Galindo, Enrique2016PROCESS BIOCHEMISTRYWoS-id: 000380972500003
Scopus-id: 2-s2.0-84967106005
2326
35Characterization of Chemical Compounds with Antioxidant and Cytotoxic Activities in Bougainvillea x buttiana Holttum and Standl, (var. Rose) Extracts2ᵒ autor: Pena Malacara, Carlos F., Abarca-Vargas, Rodolfo, Petricevich, Vera L.2016AntioxidantsWoS-id: 000392281400013
Scopus-id: 2-s2.0-85010304288
93120
36Thermo-mechanical properties, microstructure and biocompatibility in poly-ß-hydroxybutyrates (PHB) produced by OP and OPN strains of Azotobacter vinelandiiCoautor: Pena, C, DominguezDiaz, M, MenesesAcosta, A, RomoUribe, A, et al.2015EUROPEAN POLYMER JOURNALWoS-id: 000348878800012
Scopus-id: 2-s2.0-84984706125
5664
37Role of oxygen in the polymerization and de-polymerization of alginate produced by Azotobacter vinelandiiCoautor: Pena, C, Flores C., Díaz-Barrera A., Martínez F., et al.2015JOURNAL OF CHEMICAL TECHNOLOGY AND BIOTECHNOLOGYWoS-id: 000349465800002
Scopus-id: 2-s2.0-84922789250
2636
38High production of poly-ß-hydroxybutyrate (PHB) by an Azotobacter vinelandii mutant altered in PHB regulation using a fed-batch fermentation processCoautor: Pena, C, Garcia, A, Segura, D, Espin, G, et al.2014BIOCHEMICAL ENGINEERING JOURNALWoS-id: 000331592200014
Scopus-id: 2-s2.0-84889647940
6782
39Biosynthesis of poly-ß-hydroxybutyrate (PHB) with a high molecular mass by a mutant strain of Azotobacter vinelandii (OPN)1ᵉʳ autor: Pena, C, Lopez, S, Garcia, A, Espin, G, et al.2014ANNALS OF MICROBIOLOGYWoS-id: 000331648300005
Scopus-id: 2-s2.0-84894501372
3538
40Biotechnological strategies to improve production of microbial poly-(3-hydroxybutyrate): A review of recent research work1ᵉʳ autor: Pena, C, Castillo, T, Garcia, A, Millan, M, et al.2014MICROBIAL BIOTECHNOLOGYWoS-id: 000337524900001
Scopus-id: 2-s2.0-84901927684
95106
41Effective shear rates in shake flasksCoautor: Pena, C, Giese H., Klockner, W, Galindo E., et al.2014CHEMICAL ENGINEERING SCIENCEWoS-id: 000341412000011
Scopus-id: 2-s2.0-84905653612
3438
42Alginate synthesis in Azotobacter vinelandii is increased by reducing the intracellular production of ubiquinone2ᵒ autor: Pena, C, Nunez, C, Kloeckner W., Hernández-Eligio A., et al.2013APPLIED MICROBIOLOGY AND BIOTECHNOLOGYWoS-id: 000315650100020
Scopus-id: 2-s2.0-84878863667
1617
43The acetylation degree of alginates in Azotobacter vinelandii ATCC9046 is determined by dissolved oxygen and specific growth rate: Studies in glucose-limited chemostat cultivationsCoautor y autor de correspondencia: Pena, CF, Castillo, T, Galindo, E2013JOURNAL OF INDUSTRIAL MICROBIOLOGY & BIOTECHNOLOGYWoS-id: 000320396000007
Scopus-id: 2-s2.0-84879206101
1520
44Expression of alginases and alginate polymerase genes in response to oxygen, and their relationship with the alginate molecular weight in Azotobacter vinelandiiCoautor: Pena, C, Flores, C, Moreno, S, Espin, G, et al.2013ENZYME AND MICROBIAL TECHNOLOGYWoS-id: 000321479700002
Scopus-id: 2-s2.0-84879023104
2730
45Oxygen supply strongly influences metabolic fluxes, the production of poly(3-hydroxybutyrate) and alginate, and the degree of acetylation of alginate in Azotobacter vinelandiiCoautor: Pena, CF, Castillo, T, Heinzle, E, Peifer, S, et al.2013PROCESS BIOCHEMISTRYWoS-id: 000322928600001
Scopus-id: 2-s2.0-84880071736
3940
46Azotobacter vinelandii lacking the Na+-NQR activity: a potential source for producing alginates with improved properties and at high yield2ᵒ autor: Pena, C, Gaytan, I, Nunez, C, Cordova, MS, et al.2012WORLD JOURNAL OF MICROBIOLOGY & BIOTECHNOLOGYWoS-id: 000306074400013
Scopus-id: 2-s2.0-84864057959
2226
47The viscosifying power, degree of acetylation and molecular mass of the alginate produced by Azotobacter vinelandii in shake flasks are determined by the oxygen transfer rate1ᵉʳ autor: Pena, C, Galindo, E, Buchs, J2011PROCESS BIOCHEMISTRYWoS-id: 000286538300041
Scopus-id: 2-s2.0-78650238819
4755
48Oxygen transfer rate during the production of alginate by Azotobacter vinelandii under oxygen-limited and non oxygen-limited conditionsCoautor y autor de correspondencia: Pena, CF, Lozano, E, Galindo, E2011MICROBIAL CELL FACTORIESWoS-id: 000288395900001
Scopus-id: 2-s2.0-79951943443
3437
49Two-stage fermentation process for alginate production by Azotobacter vinelandii mutant altered in poly-beta-hydroxybutyrate (PHB) synthesisCoautor: Pena, C, Mejia, MA, Segura, D, Espin, G, et al.2010JOURNAL OF APPLIED MICROBIOLOGYWoS-id: 000272656800006
Scopus-id: 2-s2.0-72449198564
1524
50Influence of the oxygen transfer rate (OTR) on the alginate production and molecular mass of the polymer in cultures of Azotobacter vinelandii under oxygen-limited and non-oxyge1ᵉʳ autor: Pena-Malacara, C, Lozano, E, Galindo, E2009NEW BIOTECHNOLOGYWoS-id: 000281760100547
00
51Production of alginate by Azotobacter vinelandii in a stirred fermentor simulating the evolution of power input observed in shake flasks1ᵉʳ autor: Pena, C, Millan, M, Galindo, E2008PROCESS BIOCHEMISTRYWoS-id: 000257262700013
Scopus-id: 2-s2.0-44249094842
2628
52Molecular and bioengineering strategies to improve alginate and polydydroxyalkanoate production by Azotobacter vinelandii2ᵒ autor: Peña C., Galindo E., Núñez C., Segura D., et al.2007MICROBIAL CELL FACTORIESWoS-id: 000244743900001
Scopus-id: 2-s2.0-33847611475
111118
53The oxygen transfer rate influences the molecular mass of the alginate produced by Azotobacter vinelandii2ᵒ autor: Peña C., Díaz-Barrera A., Galindo E.2007APPLIED MICROBIOLOGY AND BIOTECHNOLOGYWoS-id: 000249117500021
Scopus-id: 2-s2.0-34548357146
4544
54Evolution of the specific power consumption and oxygen transfer rate in alginate-producing cultures of Azotobacter vinelandii conducted in shake flasks1ᵉʳ autor: Peña C., Peter C.P., Büchs J., Galindo E.2007BIOCHEMICAL ENGINEERING JOURNALWoS-id: 000249671100001
Scopus-id: 2-s2.0-34547961282
4648
55Manipulation of the acetylation degree of Azotobacter vinelandii alginate by supplementing the culture medium with 3-(N-morpholino)-propane-sulfonic acid1ᵉʳ autor: Peña C., Hernández L., Galindo E.2006LETTERS IN APPLIED MICROBIOLOGYWoS-id: 000239009800014
Scopus-id: 2-s2.0-33745895659
3034
56Specific growth rate determines the molecular mass of the alginate produced by Azotobacter vinelandii2ᵒ autor: Peña C., Priego-Jimenéz R., Ramírez O.T., Galindo E.2005BIOCHEMICAL ENGINEERING JOURNALWoS-id: 000231935800001
Scopus-id: 2-s2.0-23944459546
2630
57Components in the inoculum determine the kinetics of Azotobacter vinelandii cultures and the molecular weight of its alginate2ᵒ autor: Peña C., Trujillo-Roldán M.A., Galindo E.2003BIOTECHNOLOGY LETTERSWoS-id: 000184578100008
Scopus-id: 2-s2.0-0042355609
99
58Reproducing shake flasks performance in stirred fermentors: Production of alginates by Azotobacter vinelandii2ᵒ autor: Peña C., Reyes C., Galindo E.2003JOURNAL OF BIOTECHNOLOGYWoS-id: 000185819900015
Scopus-id: 2-s2.0-0141429025
3435
59Characterization of Azotobacter vinelandii aggregation in submerged culture by digital image analysis1ᵉʳ autor: Peña C., Reyes C., Larralde-Corona P., Corkidi G., et al.2002FEMS MICROBIOLOGY LETTERSWoS-id: 000174393900010
Scopus-id: 2-s2.0-0037022420
77
60Effectiveness factor in biological external convection: Study in high viscosity systems1ᵉʳ autor: Peña C., Galindo E., Díaz M.2002JOURNAL OF BIOTECHNOLOGYWoS-id: 000174859800001
Scopus-id: 2-s2.0-0037171595
87
61The dynamics of cytokine d nitric oxide secretion in mice injected with Tityus serrulatus scorpion venom2ᵒ autor y autor de correspondencia: Peña C.F., Petricevich V.L.2002MEDIATORS OF INFLAMMATIONWoS-id: 000176195600005
Scopus-id: 2-s2.0-0035999167
4045
62Alginate production by Azotobacter vinelandii mutants altered in poly-ß-hydroxybutyrate and alginate biosynthesis1ᵉʳ autor: Peña C., Miranda L., Segura D., Núñez C., et al.2002JOURNAL OF INDUSTRIAL MICROBIOLOGY & BIOTECHNOLOGYWoS-id: 000179052500001
Scopus-id: 2-s2.0-0036851370
2326
63High CO2 affects alginate production and prevents polymer degradation in cultures of Azotobacter vinelandii2ᵒ autor: Peña C., Seáñez G., Galindo E.2001ENZYME AND MICROBIAL TECHNOLOGYWoS-id: 000171657200010
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64Effect of oscillating dissolved oxygen tension on the production of alginate by Azotobacter vinelandii2ᵒ autor: Peña C., Trujillo-Roldán M.A., Ramirez O.T., Galindo E.2001BIOTECHNOLOGY PROGRESSWoS-id: 000172758800009
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66Changes in alginate molecwlar mass distributions, broth viscosity and morphology of Azotobacter vinelandii cultured in shake flasks1ᵉʳ autor: Peña C., Campos N., Galindo E.1997APPLIED MICROBIOLOGY AND BIOTECHNOLOGYWoS-id: A1997YF72800013
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6976
67A Multi-Institutional Validation of the Prognostic Value of the Neutrophil-to-Lymphocyte Ratio in Patients With Diffuse Large B-Cell Lymphoma: A Study From The Latin American Group of Lymphoproliferative Disorders (GELL)Coautor: Peña C., Beltrán B.E., Villela L., Torres M.A., et al.CLINICAL LYMPHOMA MYELOMA & LEUKEMIAWoS-id: 000585113900017
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45
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