CELIA FLORES OCAMPO



DATOS GENERALES NOMBRAMIENTOS
Nombre completo   CELIA FLORES OCAMPO
Máximo nivel de estudios   DOCTORADO
Antigüedad académica en la UNAM   28 años

Vigente   TECNICO ACADEMICO TITULAR C TC Definitivo
Instituto de Biotecnología
Desde 16-11-2014
ESTIMULOS, PROGRAMAS, PREMIOS Y RECONOCIMIENTOS
* SNI I2021 - 2023
* SNI I2017 - 2019
* PRIDE D2017 - 2022

INFORMACIÓN DE PUBLICACIONES
Firmas  
Flores C. Flores, C Flores, C. Flores, Celia Zaknite Flores-Ocampo, Itzamna
ID's SCOPUS  
7103184947
Áreas de conocimiento  
Biotechnology & applied microbiology Biotechnology and applied microbiology Engineering, chemical Food science & technology Geochemistry and geophysics
Plant sciences Agronomy and crop science Applied microbiology and biotechnology Biotechnology Chemical Engineering (miscellaneous)
Energy (miscellaneous) Inorganic chemistry Medicine (miscellaneous)
Coautorías con entidades de la UNAM  
  • Instituto de Geofísica
  • Instituto de Biotecnología
  • Facultad de Ingeniería
  • Facultad de Estudios Superiores "Zaragoza"
  • Coordinación de Estudios de Posgrado
Revistas en las que ha publicado  (14):
  1. APPLIED MICROBIOLOGY AND BIOTECHNOLOGY, Estados Unidos America (1992)
  2. BIOCHEMICAL ENGINEERING JOURNAL, Países Bajos (2004)
  3. BIOTECHNOLOGY AND BIOENGINEERING, Estados Unidos America (2002, 2005)
  4. BIOTECHNOLOGY PROGRESS, Estados Unidos America (1997)
  5. Electronic Journal Of Biotechnology, Chile (2023)
  6. ENZYME AND MICROBIAL TECHNOLOGY, Estados Unidos America (2001, 2013)
  7. GEOFISICA INTERNACIONAL, México (2020)
  8. JOURNAL OF APPLIED MICROBIOLOGY, Estados Unidos America (2009, 2010, 2018)
  9. JOURNAL OF BIOTECHNOLOGY, Países Bajos (2016, 2019)
  10. JOURNAL OF CHEMICAL TECHNOLOGY AND BIOTECHNOLOGY, Estados Unidos America (2015, 2016, 2017, 2020, 2024)
  11. JOURNAL OF INDUSTRIAL MICROBIOLOGY & BIOTECHNOLOGY, Alemania (2016)
  12. PROCESS BIOCHEMISTRY, Reino Unido (2019)
  13. Rhizosphere, Países Bajos (2023)
  14. WORLD JOURNAL OF MICROBIOLOGY & BIOTECHNOLOGY, Estados Unidos America (2020)


Documentos indexados (WoS y Scopus)

# Título del documento Autores Año Rista Fuente Citas WoS Citas Scopus
1Characterization of a new HUP+ Phaeodactylum tricornutum strain having improved production of eicosapentaenoic acidCoautor: Flores C., García T., Castillo T., Galindo E.2024JOURNAL OF CHEMICAL TECHNOLOGY AND BIOTECHNOLOGYWoS-id: 001107782700001
Scopus-id: 2-s2.0-85177600199
00
2Alginate and y-polyglutamic acid hydrogels: Microbial production strategies and biomedical applications. A review of recent literature2ᵒ autor: Flores, Celia, Castillo, Tania, -Lugo, Holjes Salgado, Peña C.F., et al.2023Electronic Journal Of BiotechnologyWoS-id: 001091475700001
Scopus-id: 2-s2.0-85173261697
00
3A Bacillus velezensis strain improves growth and root system development in Arabidopsis thaliana through cytokinin signalingCoautor: Flores, C, Barrera-Ortiz, S, Balderas-Ruíz, KA, López-Bucio, JS, et al.2023RhizosphereWoS-id: 001125528000001
Scopus-id: 2-s2.0-85177872894
00
4Improving glucose and xylose assimilation in Azotobacter vinelandii by adaptive laboratory evolutionCoautor: Flores, Celia, Millan, Carlos, Peña C., Espin, Guadalupe, et al.2020WORLD JOURNAL OF MICROBIOLOGY & BIOTECHNOLOGYWoS-id: 000518484500001
Scopus-id: 2-s2.0-85081176273
89
5Oxygen transfer rate determines molecular weight and production of poly(gamma-glutamic acid) as well as carbon utilization by Bacillus velezensis 831ᵉʳ autor: Flores, Celia, Medina-Valdez, Abraham, Pena, Carlos, Serrano-Carreon, Leobardo, et al.2020JOURNAL OF CHEMICAL TECHNOLOGY AND BIOTECHNOLOGYWoS-id: 000526596200001
Scopus-id: 2-s2.0-85083497096
77
6IDENTIFICATION OF NITRATE SOURCES BY HYDROGEOCHEMICAL AND ISOTOPIC METHODS IN THE GROUNDWATER OF THE BAJIO GUANAJUATENSE2ᵒ autor: Zaknite Flores-Ocampo, Itzamna, Morales-Arredondo, Ivan, Aurora Armienta, Maria, Moran-Ramirez, Janete, et al.2020GEOFISICA INTERNACIONALWoS-id: 000570980100003
00
7Glucose limitation and glucose uptake rate determines metabolite production and sporulation in high cell density continuous cultures of Bacillus amyloliquefaciens 832ᵒ autor: Flores, Celia, Cristiano-Fajardo S.A., Flores, Noerni, Tinoco-Valencia, Raunel, et al.2019JOURNAL OF BIOTECHNOLOGYWoS-id: 000468162100009
Scopus-id: 2-s2.0-85065074810
710
8Elicitation and biotransformation of 6-pentyl-a-pyrone in Trichoderma atroviride cultures1ᵉʳ autor: Flores, Celia, Nieto, Mayra, Millán-Gómez D.V., Caro, Mario, et al.2019PROCESS BIOCHEMISTRYWoS-id: 000470942900008
Scopus-id: 2-s2.0-85065043366
79
9Oxygen uptake rate in alginate producer (algU plus ) and nonproducer (algU-) strains of Azotobacter vinelandii under nitrogen-fixation conditionsCoautor: Flores, C., Castillo, T., Lopez, I., Segura, D., et al.2018JOURNAL OF APPLIED MICROBIOLOGYWoS-id: 000435274900016
Scopus-id: 2-s2.0-85048556541
1114
10Production of polyhydroxybutyrate (PHB) of high and ultra-high molecular weight by Azotobacter vinelandii in batch and fed-batch cultures2ᵒ autor: Flores, Celia, Castillo, Tania, Segura, Daniel, Espin, Guadalupe, et al.2017JOURNAL OF CHEMICAL TECHNOLOGY AND BIOTECHNOLOGYWoS-id: 000403025500038
Scopus-id: 2-s2.0-85011565049
1723
11Diffusional and transcriptional mechanisms involved in laccases production by Pleurotus ostreatus CP50Coautor: Flores, Celia, Fernandez-Alejandre, Karen I., Flores, Noemi, Tinoco-Valencia, Raunel, et al.2016JOURNAL OF BIOTECHNOLOGYWoS-id: 000372318200010
Scopus-id: 2-s2.0-84959569969
78
12Molecular weight and viscosifying power of alginates produced in Azotobacter vinelandii cultures in shake flasks under low power input2ᵒ autor: Flores, Celia, Gomez-Pazarin, Karen, Castillo, Tania, Buchs, Jochen, et al.2016JOURNAL OF CHEMICAL TECHNOLOGY AND BIOTECHNOLOGYWoS-id: 000373611600033
Scopus-id: 2-s2.0-84933564295
2024
13Analysis of respiratory activity and carbon usage of a mutant of Azotobacter vinelandii impaired in poly-beta-hydroxybutyrate synthesisCoautor: Flores, Celia, Jimenez, Lucero, Castillo, Tania, Segura, Daniel, et al.2016JOURNAL OF INDUSTRIAL MICROBIOLOGY & BIOTECHNOLOGYWoS-id: 000379625700012
Scopus-id: 2-s2.0-84966415447
911
14Role of oxygen in the polymerization and de-polymerization of alginate produced by Azotobacter vinelandii1ᵉʳ autor: Flores C., Díaz-Barrera A., Martínez F., Galindo E., et al.2015JOURNAL OF CHEMICAL TECHNOLOGY AND BIOTECHNOLOGYWoS-id: 000349465800002
Scopus-id: 2-s2.0-84922789250
2132
15Expression of alginases and alginate polymerase genes in response to oxygen, and their relationship with the alginate molecular weight in Azotobacter vinelandii1ᵉʳ autor: Flores, C, Moreno, S, Espin, G, Pena, C, et al.2013ENZYME AND MICROBIAL TECHNOLOGYWoS-id: 000321479700002
Scopus-id: 2-s2.0-84879023104
2529
16Production of laccases by Pleurotus ostreatus in submerged fermentation in co-culture with Trichoderma viride1ᵉʳ autor: Flores C., Casasanero R., Trejo-Hernández M.R., Galindo E., et al.2010JOURNAL OF APPLIED MICROBIOLOGYWoS-id: 000274389200007
Scopus-id: 2-s2.0-76449095033
2026
17Selection of Trichoderma strains capable of increasing laccase production by Pleurotus ostreatus and Agaricus bisporus in dual cultures1ᵉʳ autor: Flores C., Vidal C., Trejo-Hernández M.R., Galindo E., et al.2009JOURNAL OF APPLIED MICROBIOLOGYWoS-id: 000262475600026
Scopus-id: 2-s2.0-58249112845
4752
186-Pentyl-a-pyrone production by trichoderma harzianum: The influence of energy dissipation rate and its implications on fungal physiologyCoautor: Flores C., Rocha-Valadez J.A., Hassan M., Corkidi G., et al.2005BIOTECHNOLOGY AND BIOENGINEERINGWoS-id: 000230178900005
Scopus-id: 2-s2.0-21344454685
3235
19Production of 6-pentyl-a-pyrone by Trichoderma harzianum cultured in unbaffled and baffled shake flasks2ᵒ autor: Flores C., Galindo E., Larralde-Corona P., Corkidi-Blanco G., et al.2004BIOCHEMICAL ENGINEERING JOURNALWoS-id: 000220442600001
Scopus-id: 2-s2.0-1542268885
2426
20Accurate and rapid viability assessment of Trichoderma harzianum using fluorescence-based digital image analysisCoautor: Flores C., Hassan M., Corkidi G., Galindo E., et al.2002BIOTECHNOLOGY AND BIOENGINEERINGWoS-id: 000179197500009
Scopus-id: 2-s2.0-0037146828
2021
21The potential application of aqueous two-phase systems for in situ recovery of 6-pentyl-a-pyrone produced by Trichoderma harzianumCoautor: Flores C., Rito-Palomares M., Negrete A., Miranda L., et al.2001ENZYME AND MICROBIAL TECHNOLOGYWoS-id: 000168313700009
Scopus-id: 2-s2.0-0035820920
2732
22?-decalactone production by Trichoderma harzianum in stirred bioreactors2ᵒ autor: Flores C., Serrano-Carreon L., Galindo E.1997BIOTECHNOLOGY PROGRESSWoS-id: A1997WR85500013
Scopus-id: 2-s2.0-0030972927
3739
23Presevvation of Xanthomonas campestris in Brassica oleracea seedsCoautor: Flores C., Salcedo G., Ramírez Ma.E., Galindo E.1992APPLIED MICROBIOLOGY AND BIOTECHNOLOGYScopus-id: 2-s2.0-0026698941
09

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