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Cation homeostasis and transport related gene markers are differentially expressed in porcine buccal pouch mucosal cells during long-term cells primary culture in vitro Cover

Cation homeostasis and transport related gene markers are differentially expressed in porcine buccal pouch mucosal cells during long-term cells primary culture in vitro

Open Access
|Dec 2018

References

  1. 1. Chen J, Ahmad R, Li W, Swain M, Li Q. Biomechanics of oral mucosa. J R Soc Interface. 2015;12(109); DOI:10.1098/rsif.2015.0325.10.1098/rsif.2015.0325453540326224566
  2. 2. Agrawal U, Rai H, Jain AK. Morphological and ultrastructural characteristics of extracellular matrix changes in oral squamous cell carcinoma. Ind J Dent Res. 2011;22(1):16; DOI:10.4103/0970-9290.79968.10.4103/0970-9290.7996821525671
  3. 3. Naumova EA, Dierkes T, Sprang J, Arnold WH. The oral mucosal surface and blood vessels. Head Face Med. 2013;9:8; DOI:10.1186/1746-160X-9-8.10.1186/1746-160X-9-8363985623497446
  4. 4. Zhang H, Zhang J, Streisand JB. Oral mucosal drug delivery: clinical pharmacokinetics and therapeutic applications. Clin Pharmacokinet. 2002;41(9):661–80; DOI:10.2165/00003088-200241090-00003.10.2165/00003088-200241090-0000312126458
  5. 5. Jansen RG, van Kuppevelt TH, Daamen WF, Kuijpers-Jagtman AM, Von den Hoff, Johannes W. Tissue reactions to collagen scaffolds in the oral mucosa and skin of rats: environmental and mechanical factors. Arch Oral Biol. 2008;53(4):376–87; DOI:10.1016/j.archoralbio.2007.11.003.10.1016/j.archoralbio.2007.11.00318093570
  6. 6. Dyszkiewicz-Konwińska M, Nawrocki M, Huang Y, Bryja A, Celichowski P, Jankowski M, Błochowiak K, Mehr K, Bruska M, Nowicki M, Zabel M, Kempisty B. New gene markers for metabolic processes and homeostasis in porcine buccal pouch mucosa during cells long term-cultivation - a primary culture approach. IJMS. 2018;19(4):1027; DOI:10.3390/ijms19041027.10.3390/ijms19041027597946129596348
  7. 7. Huang DW, Sherman BT, Tan Q, Collins JR, Alvord WG, Roayaei J, Stephens R, Baseler MW, Lane HC, Lempicki RA. The DAVID Gene Functional Classification Tool: a novel biological module-centric algorithm to functionally analyze large gene lists. Genome Biol. 2007;8(9):R183; DOI:10.1186/gb-2007-8-9-r183.10.1186/gb-2007-8-9-r183237502117784955
  8. 8. Mering C von, Jensen LJ, Snel B, Hooper SD, Krupp M, Foglierini M, Jouffre N, Huynen MA, Bork P. STRING: known and predicted protein-protein associations, integrated and transferred across organisms. Nucleic Acids Res. 2005;33(Database issue):D433-7; DOI:10.1093/nar/gki005.10.1093/nar/gki00553995915608232
  9. 9. Deyrieux AF, Wilson VG. In vitro culture conditions to study keratinocyte differentiation using the HaCaT cell line. Cytotechnology. 2007;54(2):77–83; DOI:10.1007/s10616-007-9076-1.10.1007/s10616-007-9076-1226750019003021
  10. 10. Parikh N, Nagarajan P, Sei-ichi M, Sinha S, Garrett-Sinha LA. Isolation and characterization of an immortalized oral keratinocyte cell line of mouse origin. Arch Oral Biol. 2008;53(11):1091–100; DOI:10.1016/j.archoralbio.2008.07.002.10.1016/j.archoralbio.2008.07.002257346518721915
  11. 11. Li Y, Yang J, Li S, Zhang J, Zheng J, Hou W, Zhao H, Guo Y, Liu X, Dou K, Situ Z, Yao L. N-myc downstream-regulated gene 2, a novel estrogen-targeted gene, is involved in the regulation of Na+/K+-ATPase. J Biol Chem. 2011;286(37):32289–99; DOI:10.1074/jbc.M111.247825.10.1074/jbc.M111.247825317320021771789
  12. 12. Apell H-J, Hitzler T, Schreiber G. Modulation of the Na,K-ATPase by Magnesium Ions. Biochemistry. 2017;56(7):1005–16; DOI:10.1021/acs.biochem.6b01243.10.1021/acs.biochem.6b0124328124894
  13. 13. Graf S, Haimel M, Bleda M, Hadinnapola C, Southgate L, Li W, Hodgson J, Liu B, Salmon RM, Southwood M, Machado RD, Martin JM, Treacy CM, Yates K, Daugherty LC, Shamardina O, Whitehorn D, Holden S, Aldred M, Bogaard HJ, Church C, Coghlan G, Condliffe R, Corris PA, Danesino C, Eyries M, Gall H, Ghio S, Ghofrani H-A, Gibbs JSR, Girerd B, Houweling AC, Howard L, Humbert M, Kiely DG, Kovacs G, MacKenzie Ross RV, Moledina S, Montani D, Newnham M, Olschewski A, Olschewski H, Peacock AJ, Pepke-Zaba J, Prokopenko I, Rhodes CJ, Scelsi L, Seeger W, Soubrier F, Stein DF, Suntharalingam J, Swietlik EM, Toshner MR, van Heel DA, Vonk Noordegraaf A, Waisfisz Q, Wharton J, Wort SJ, Ouwehand WH, Soranzo N, Lawrie A, Upton PD, Wilkins MR, Trembath RC, Morrell NW. Identification of rare sequence variation underlying heritable pulmonary arterial hypertension. Nat Commun. 2018;9(1):1416; DOI:10.1038/s41467-018-03672-4.10.1038/s41467-018-03672-4589735729650961
  14. 14. Madan M, Patel A, Skruber K, Geerts D, Altomare DA, Iv OP. ATP13A3 and caveolin-1 as potential biomarkers for difluoromethylornithine-based therapies in pancreatic cancers. Am J Cancer Res. 2016;6(6):1231–52.
  15. 15. Esmaeili S-A, Nejatollahi F, Sahebkar A. Inhibition of intercellular communication between prostate cancer cells by a specific anti-STEAP-1 single chain antibody. Anticancer Agents Med Chem. 2017; DOI:10.2174/1871520618666171208092115.10.2174/187152061866617120809211529219059
  16. 16. Gomes IM, Rocha SM, Gaspar C, Alvelos MI, Santos CR, Socorro S, Maia CJ. Knockdown of STEAP1 inhibits cell growth and induces apoptosis in LNCaP prostate cancer cells counteracting the effect of androgens. Med Oncol. 2018;35(3):40; DOI:10.1007/s12032-018-1100-0.10.1007/s12032-018-1100-029464393
  17. 17. Kim K, Mitra S, Wu G, Berka V, Song J, Yu Y, Poget S, Wang D-N, Tsai A-L, Zhou M. Six-Transmembrane Epithelial Antigen of Prostate 1 (STEAP1) has a single b heme and is capable of reducing metal ion complexes and oxygen. Biochemistry. 2016;55(48):6673–84; DOI:10.1021/acs.biochem.6b00610.10.1021/acs.biochem.6b00610725197527792302
  18. 18. Challita-Eid PM, Morrison K, Etessami S, An Z, Morrison KJ, Perez-Villar JJ, Raitano AB, Jia X-C, Gudas JM, Kanner SB, Jakobovits A. Monoclonal antibodies to six-transmembrane epithelial antigen of the prostate-1 inhibit intercellular communication in vitro and growth of human tumor xenografts in vivo. Cancer Res. 2007;67(12):5798–805; DOI:10.1158/0008-5472.CAN-06-3849.10.1158/0008-5472.CAN-06-384917575147
  19. 19. Vaghjiani RJ, Talma S, Murphy CL. Six-transmembrane epithelial antigen of the prostate (STEAP1 and STEAP2)-differentially expressed by murine and human mesenchymal stem cells. Tissue Eng Part A. 2009;15(8):2073–83; DOI:10.1089/ten.tea.2008.0519.10.1089/ten.tea.2008.051919196137
Language: English
Page range: 83 - 90
Submitted on: Aug 16, 2018
Accepted on: Oct 3, 2018
Published on: Dec 24, 2018
Published by: Foundation for Cell Biology and Molecular Biology
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2018 Artur Bryja, Marta Dyszkiewicz-Konwińska, Maurycy Jankowski, Piotr Celichowski, Katarzyna Stefańska, Agata Chamier-Gliszczyńska, Blanka Borowiec, Katarzyna Mehr, Dorota Bukowska, Paweł Antosik, Małgorzata Bruska, Maciej Zabel, Michał Nowicki, Bartosz Kempisty, published by Foundation for Cell Biology and Molecular Biology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.