Awards Nomination 20+ Million Readerbase
Indexed In
  • Academic Journals Database
  • Genamics JournalSeek
  • Academic Keys
  • JournalTOCs
  • China National Knowledge Infrastructure (CNKI)
  • Scimago
  • Access to Global Online Research in Agriculture (AGORA)
  • Electronic Journals Library
  • RefSeek
  • Directory of Research Journal Indexing (DRJI)
  • Hamdard University
  • EBSCO A-Z
  • OCLC- WorldCat
  • SWB online catalog
  • Virtual Library of Biology (vifabio)
  • Publons
  • MIAR
  • University Grants Commission
  • Geneva Foundation for Medical Education and Research
  • Euro Pub
  • Google Scholar
Share This Page
Journal Flyer
Journal of Microbial & Biochemical Technology

Articles published in Journal of Microbial & Biochemical Technology have been cited by esteemed scholars and scientists all around the world. Journal of Microbial & Biochemical Technology has got h-index 43, which means every article in Journal of Microbial & Biochemical Technology has got 43 average citations.

Following are the list of articles that have cited the articles published in Journal of Microbial & Biochemical Technology.

  2024 2023 2022 2021 2020 2019 2018 2017 2016 2015 2014

Total published articles

31 56 60 61 32 18 22 55 87 90 95

Research, Review articles and Editorials

3 6 6 3 13 16 20 52 72 79 64

Research communications, Review communications, Editorial communications, Case reports and Commentary

28 50 54 77 4 2 2 3 17 12 3

Conference proceedings

0 0 0 0 0 0 71 156 180 115 0

Citations received as per Google Scholar, other indexing platforms and portals

886 1187 1339 1443 1287 1193 994 886 729 522 249
Journal total citations count 11133
Journal impact factor 5.89
Journal 5 years impact factor 22.34
Journal cite score 32.11
Journal h-index 43
Important citations

Velásquez CL, Pirela MR (2016)  Biochemical Aspects of the Chitin Fungicidal Activity in Agricultural Uses. Chitosan in the Preservation of Agricultural Commodities 20:279.

Prasad M, Palanivelu P (2014)  Bioinformatics analyses of a Thermophilic Fungal Recombinant Chitinase. International Journal of Chem Tech Research 6:4040-51.

Prasad M, Palanivelu P (2015)  Immobilization of a thermostable, fungal recombinant chitinase on biocompatible chitosan beads and the properties of the immobilized enzyme. Biotechnology and applied biochemistry 62:523-9.

Karamanlioglu M, Houlden A, Robson GD (2014)  Isolation and characterisation of fungal communities associated with degradation and growth on the surface of poly (lactic) acid (PLA) in soil and compost. International Biodeterioration & Biodegradation 95:301-10.

Karthik N, Akanksha K, Binod P, Pandey A. Production, purification and properties of fungal chitinases-a review.

Chavan SB, Deshpande MV (2013)  Chitinolytic enzymes: An appraisal as a product of commercial potential. Biotechnology progress 29:833-46.

Bonsaglia EC, Silva NC, Júnior AF, Júnior JA, Tsunemi MH, et al. (2014)  Production of biofilm by Listeria monocytogenes in different materials and temperatures. Food control 35:386-91.

Michael M. Radio frequency dielectric heating and hyperspectral imaging of common foodborne pathogens (Doctoral dissertation, Kansas State University).

Jiménez-Sánchez C, Lozano-Sánchez J, Segura-Carretero A, Fernández-Gutiérrez A (2017)  Alternatives to conventional thermal treatments in fruit-juice processing. Part 1: Techniques and applications. Critical reviews in food science and nutrition 57:501-23.

Ukuku DO, Bari ML, Kassama LS, Mukhopadhyay S, Olanya M (2015) Survival, injury and inactivation of human bacterial pathogens in foods: Effect of non-thermal treatments. InFoodborne Pathogens and Food Safety  (pp. 82-96). CRC Press.

Michael M, Phebus RK, Thippareddi H, Subbiah J, Birla SL, et al  (2014) Validation of radio-frequency dielectric heating system for destruction of Cronobacter sakazakii and Salmonella species in nonfat dry milk. Journal of dairy science 97:7316-24.

Wulandari W. Aktivitas Antibakteri Isolat Actinomycetes dari Sampel Pasir Gunung Merapi Dan Gunung Bromo Dengan Lama Fermentasi Yang Berbeda Terhadap Bakteri Escherichia coli Multiresisten Antibiotik (Doctoral dissertation, Universitas Muhammadiyah Surakarta).

Wulandari W, Rahayu T (2015)  AKTIVITAS ANTIBAKTERI ISOLAT ACTINOMYCETES DARI SAMPEL PASIR GUNUNG MERAPI DENGAN LAMA FERMENTASI YANG BERBEDA TERHADAP BAKTERI Escherichia coli MULTIRESISTEN ANTIBIOTIK. Bioeksperimen: Jurnal Penelitian Biologi 1:53-9.

Betancur LA, Naranjo-Gaybor SJ, Vinchira-Villarraga DM, Moreno-Sarmiento NC, Maldonado LA, et al. (2017)  Marine Actinobacteria as a source of compounds for phytopathogen control: An integrative metabolic-profiling/bioactivity and taxonomical approach. PloS one 12:e0170148.

Pawlikowska J. Re-wiring of antibiotic biosynthesis regulation in Streptomyces venezuelae for inducible heterologous production of secondary metabolites (Master's thesis, Institutt for bioteknologi).

Sandbakken IS. Synthetic biology for drug discovery: construction of biosensors for detection of endogenously produced bacterial secondary metabolites (Master's thesis, Institutt for bioteknologi).

Brown HL, van Vliet AH, Betts RP, Reuter M. Tetrazolium reduction allows quantification of biofilm formation by Campylobacter jejuni in a food matrix model.

Jones SE, Leong V, Ortega J, Elliot MA (2014)  Development, antibiotic production, and ribosome assembly in Streptomyces venezuelae are impacted by RNase J and RNase III deletion. Journal of bacteriology 196:4253-67.

Brown HL, Vliet AH, Betts RP, Reuter M (2013)  Tetrazolium reduction allows assessment of biofilm formation by Campylobacter jejuni in a food matrix model. Journal of applied microbiology 115:1212-21.

Ziayoddin M, Lalitha J, Shinde M (2014)  Optimization of agarase production by alkaline Pseudomonas aeruginosa ZSL-2 using Taguchi experimental design. International Letters of Natural Sciences: 12.