Page 46 - Read Online
P. 46
Page 14 of 15 Macpherson et al. Microbiome Res Rep 2024;3:20 https://dx.doi.org/10.20517/mrr.2023.66
2018;270:61-9. DOI PubMed
39. Fu Y, Yang Y, Zhang H, et al. The genome of the Hi5 germ cell line from Trichoplusia ni, an agricultural pest and novel model for
small RNA biology. Elife 2018;7:e31628. DOI PubMed PMC
40. Wei L, Cao L, Miao Y, et al. Transcriptome analysis of Spodoptera frugiperda 9 (Sf9) cells infected with baculovirus, AcMNPV or
AcMNPV-BmK IT. Biotechnol Lett 2017;39:1129-39. DOI PubMed
41. Vorgia E, Lamprousi M, Denecke S, et al. Functional characterization and transcriptomic profiling of a spheroid-forming midgut cell
line from Helicoverpa zea (Lepidoptera: Noctuidae). Insect Biochem Mol Biol 2021;128:103510. DOI PubMed
42. Sun H, Chow ECY, Liu S, Du Y, Pang KS. The Caco-2 cell monolayer: usefulness and limitations. Expert Opin Drug Metab Toxicol
2008;4:395-411. DOI PubMed
43. Bahrami B, Child MW, Macfarlane S, Macfarlane GT. Adherence and cytokine induction in Caco-2 cells by bacterial populations from
a three-stage continuous-culture model of the large intestine. Appl Environ Microbiol 2011;77:2934-42. DOI PubMed PMC
44. Maccaferri S, Klinder A, Brigidi P, Cavina P, Costabile A. Potential probiotic Kluyveromyces marxianus B0399 modulates the
immune response in Caco-2 cells and peripheral blood mononuclear cells and impacts the human gut microbiota in an in vitro colonic
model system. Appl Environ Microbiol 2012;78:956-64. DOI PubMed PMC
45. Castellarin M, Warren RL, Freeman JD, et al. Fusobacterium nucleatum infection is prevalent in human colorectal carcinoma. Genome
Res 2012;22:299-306. DOI PubMed PMC
46. Dharmani P, Strauss J, Ambrose C, Allen-Vercoe E, Chadee K. Fusobacterium nucleatum infection of colonic cells stimulates MUC2
mucin and tumor necrosis factor alpha. Infect Immun 2011;79:2597-607. DOI PubMed PMC
47. Kleiveland CR. Co-culture Caco-2/immune cells. In: Verhoeckx K, Cotter P, López-Expósito I, et al., editors. The impact of food
bioactives on health. Cham: Springer; 2015. DOI
48. Lozoya-Agullo I, Araújo F, González-Álvarez I, et al. Usefulness of Caco-2/HT29-MTX and Caco-2/HT29-MTX/Raji B coculture
models to predict intestinal and colonic permeability compared to Caco-2 monoculture. Mol Pharm 2017;14:1264-70. DOI PubMed
49. Singh D, Mathur A, Arora S, Roy S, Mahindroo N. Journey of organ on a chip technology and its role in future healthcare scenario.
Appl Surf Sci Adv 2022;9:100246. DOI PMC
50. Caccia S, Casartelli M, Tettamanti G. The amazing complexity of insect midgut cells: types, peculiarities, and functions. Cell Tissue
Res 2019;377:505-25. DOI PubMed
51. Dubreuil RR. Copper cells and stomach acid secretion in the Drosophila midgut. Int J Biochem Cell Biol 2004;36:745-52. DOI
PubMed
52. Wright WE, Shay JW. The two-stage mechanism controlling cellular senescence and immortalization. Exp Gerontol 1992;27:383-9.
DOI PubMed
53. Namba M, Nishitani K, Hyodoh F, Fukushima F, Kimoto T. Neoplastic transformation of human diploid fibroblasts (KMST-6) by
60
treatment with Co gamma rays. Int J Cancer 1985;35:275-80. DOI PubMed
54. Kitagishi Y, Okumura N, Yoshida H, Nishimura Y, Takahashi J, Matsuda S. Long-term cultivation of in vitro Apis mellifera cells by
gene transfer of human c-myc proto-oncogene. In Vitro Cell Dev Biol Anim 2011;47:451-3. DOI PubMed
55. Bryan TM, Reddel RR. SV40-induced immortalization of human cells. Crit Rev Oncog 1994;5:331-57. DOI PubMed
56. Zhao Z, Fowle H, Valentine H, et al. Immortalization of human primary prostate epithelial cells via CRISPR inactivation of the
CDKN2A locus and expression of telomerase. Prostate Cancer Prostatic Dis 2021;24:233-43. DOI PubMed PMC
57. Pringle FM, Johnson KN, Goodman CL, McIntosh AH, Ball LA. Providence virus: a new member of the tetraviridae that infects
cultured insect cells. Virology 2003;306:359-70. DOI PubMed
58. Kharat KR, Sawant MV, Peter S, Hardikar BP. Development and characterization of new cell line BPH22 from midgut epithelial cells
of Poekilocerus pictus (Fabricius, 1775). In Vitro Cell Dev Biol Anim 2010;46:824-7. DOI PubMed
59. Granados RR. Cell line isolated from larval midgut tissue of Trichoplusia ni. 1994. Available from: https://patents.google.com/patent/
US5298418A/en. [Last accessed on 26 Feb 2024].
60. Zhou K, Goodman CL, Ringbauer J Jr, Song Q, Beerntsen B, Stanley D. Establishment of two midgut cell lines from the fall
armyworm, Spodoptera frugiperda (Lepidoptera: Noctuidae). In Vitro Cell Dev Biol Anim 2020;56:10-4. DOI PubMed
61. Abstracts. In vitro cell dev biol anim 1993;29A:30-125A.
62. Li J, He F, Yang Y, et al. Establishment and characterization of a novel cell line from midgut tissue of Helicoverpa armigera
(Lepidoptera: Noctuidae). In Vitro Cell Dev Biol Anim 2015;51:562-71. DOI PubMed
63. Marhoul Z, Pudney M. A mosquito cell line (mos. 55) from Anopheles gambiae larva. Trans R Soc Trop Med Hyg 1972;66:183-4.
DOI PubMed
64. Aljabr AM, Rizwan-ul-Haq M, Hussain A, Al-Mubarak AI, Al-Ayied HY. Establishing midgut cell culture from Rhynchophorus
ferrugineus (Olivier) and toxicity assessment against ten different insecticides. In Vitro Cell Dev Biol Anim 2014;50:296-303. DOI
PubMed
65. Harvey DM, Levine AJ. p53 alteration is a common event in the spontaneous immortalization of primary BALB/c murine embryo
fibroblasts. Genes Dev 1991;5:2375-85. DOI PubMed
66. Martorell Ò, Merlos-Suárez A, Campbell K, et al. Conserved mechanisms of tumorigenesis in the Drosophila adult midgut. PLoS One
2014;9:e88413. DOI PubMed PMC
67. Pastor-Pareja JC, Wu M, Xu T. An innate immune response of blood cells to tumors and tissue damage in Drosophila. Dis Model Mech
2008;1:144-54. DOI PubMed PMC

