Page 45 - Read Online
P. 45
Macpherson et al. Microbiome Res Rep 2024;3:20 https://dx.doi.org/10.20517/mrr.2023.66 Page 13 of 15
6. Engel P, Moran NA. The gut microbiota of insects - diversity in structure and function. FEMS Microbiol Rev 2013;37:699-735. DOI
PubMed
7. Jing TZ, Qi FH, Wang ZY. Most dominant roles of insect gut bacteria: digestion, detoxification, or essential nutrient provision?
Microbiome 2020;8:38. DOI PubMed PMC
8. Goulson D. The insect apocalypse, and why it matters. Curr Biol 2019;29:R967-71. DOI PubMed
9. Janicki J, Dickie G, Scarr S, Chowdhury J. The collapse of insects. 2022. Available from: https://www.reuters.com/graphics/
GLOBAL-ENVIRONMENT/INSECT-APOCALYPSE/egpbykdxjvq/. [Last accessed on 26 Feb 2024].
10. Cellosaurus - a knowledge resource on cell lines. Available from: https://www.cellosaurus.org/. [Last accessed on 26 Feb 2024].
11. Stork NE. How many species of insects and other terrestrial arthropods are there on earth? Annu Rev Entomol 2018;63:31-45. DOI
PubMed
12. Glaser RW, Chapman JW. Studies on the wilt disease, or “flacheria” of the gypsy moth. Science 1912;36:219-24. DOI PubMed
13. Smagghe G, Goodman CL, Stanley D. Insect cell culture and applications to research and pest management. In Vitro Cell Dev Biol
Anim 2009;45:93-105. DOI
14. Grace TDC. Establishment of four strains of cells from insect tissues grown in vitro. Nature 1962;195:788-9. DOI PubMed
15. Drugmand JC. Characterization of insect cell lines is required for appropriate industrial processes: case study of high-five cells for
recombinant protein production. 2007. Available from: https://dial.uclouvain.be/pr/boreal/en/object/boreal%3A4586. [Last accessed on
26 Feb 2024].
16. Vaughn JL, Goodwin RH, Tompkins GJ, McCawley P. The establishment of two cell lines from the insect Spodoptera frugiperda
(lepidoptera; noctuidae). In Vitro 1977;13:213-7. DOI PubMed
17. Rubio NR, Fish KD, Trimmer BA, Kaplan DL. Possibilities for engineered insect tissue as a food source. Front Sustain Food Syst
2019;3:24. DOI
18. Gisder S, Möckel N, Linde A, Genersch E. A cell culture model for Nosema ceranae and Nosema apis allows new insights into the life
cycle of these important honey bee-pathogenic microsporidia. Environ Microbiol 2011;13:404-13. DOI PubMed
19. Goblirsch MJ, Spivak MS, Kurtti TJ. A cell line resource derived from honey bee (Apis mellifera) embryonic tissues. PLoS One
2013;8:e69831. DOI PubMed PMC
20. Create professional science figures in minutes. BioRender. Available from: https://www.biorender.com/. [Last accessed on 26 Feb
2024].
21. Mitsuhashi J. Cell culture of insects. In: Encyclopedia of entomology. Dordrecht: Springer Netherlands; 2005. pp. 480. DOI
22. Michl J, Park KC, Swietach P. Evidence-based guidelines for controlling pH in mammalian live-cell culture systems. Commun Biol
2019;2:144. DOI PubMed PMC
23. Singh L, Nair L, Kumar D, et al. Hypoxia induced lactate acidosis modulates tumor microenvironment and lipid reprogramming to
sustain the cancer cell survival. Front Oncol 2023;13:1034205. DOI PubMed PMC
24. Warburg O. The metabolism of carcinoma cells. J Cancer Res 1925;9:148-63. DOI
25. Conceição CC, da Silva JN, Arcanjo A, et al. Aedes fluviatilis cell lines as new tools to study metabolic and immune interactions in
mosquito-Wolbachia symbiosis. Sci Rep 2021;11:19202. DOI PubMed PMC
26. Watanabe K, Yukuhiro F, Matsuura Y, Fukatsu T, Noda H. Intrasperm vertical symbiont transmission. Proc Natl Acad Sci U S A
2014;111:7433-7. DOI PubMed PMC
27. Brandt JW, Chevignon G, Oliver KM, Strand MR. Culture of an aphid heritable symbiont demonstrates its direct role in defence
against parasitoids. Proc Biol Sci 2017;284:20171925. DOI PubMed PMC
28. O’Neill SL, Pettigrew MM, Sinkins SP, Braig HR, Andreadis TG, Tesh RB. In vitro cultivation of Wolbachia pipientis in an Aedes
albopictus cell line. Insect Mol Biol 1997;6:33-9. DOI
29. Rajagopal R. Beneficial interactions between insects and gut bacteria. Indian J Microbiol 2009;49:114-9. DOI PubMed PMC
30. Menezes C, Vollet-Neto A, Marsaioli AJ, et al. A Brazilian social bee must cultivate fungus to survive. Curr Biol 2015;25:2851-5.
DOI
31. Briones-Roblero CI, Rodríguez-Díaz R, Santiago-Cruz JA, Zúñiga G, Rivera-Orduña FN. Degradation capacities of bacteria and yeasts
isolated from the gut of Dendroctonus rhizophagus (Curculionidae: Scolytinae). Folia Microbiol 2017;62:1-9. DOI PubMed
32. Gilmore TD. The Rel/NF-κB signal transduction pathway: introduction. Oncogene 1999;18:6842-4. DOI PubMed
33. Buchon N, Silverman N, Cherry S. Immunity in Drosophila melanogaster - from microbial recognition to whole-organism physiology.
Nat Rev Immunol 2014;14:796-810. DOI PubMed PMC
34. Marian B. In vitro models for the identification and characterization of tumor-promoting and protective factors for colon
carcinogenesis. Food Chem Toxicol 2002;40:1099-104. DOI PubMed
35. Langerholc T, Maragkoudakis PA, Wollgast J, Gradisnik L, Cencic A. Novel and established intestinal cell line models - an
indispensable tool in food science and nutrition. Trends Food Sci Technol 2011;22:S11-20. DOI PubMed PMC
36. Costa J, Ahluwalia A. Advances and current challenges in intestinal in vitro model engineering: a digest. Front Bioeng Biotechnol
2019;7:144. DOI PubMed PMC
37. Cencic A, Langerholc T. Functional cell models of the gut and their applications in food microbiology - a review. Int J Food Microbiol
2010;141:S4-14. DOI PubMed PMC
38. Koczka K, Peters P, Ernst W, Himmelbauer H, Nika L, Grabherr R. Comparative transcriptome analysis of a Trichoplusia ni cell line
reveals distinct host responses to intracellular and secreted protein products expressed by recombinant baculoviruses. J Biotechnol

