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Inflammatory Cells in Gastric Cancer: Promoting the Tumour or Protecting the Host? Cover
Open Access
|May 2020

References

  1. Aeed, P. A., Nakajima, M., Welch, D. R. (1988). The role of polymorpho-nuclear leukocytes (PMN) on the growth and metastatic potential of 13762 NF mammary adenocarcinoma cells. Int. J. Cancer, 42, 748–759..10.1002/ijc.29104205212846449
  2. Anonymous (2019). Cancer Stat Facts: Stomach Cancer. http://seer.cancer.gov/statfacts/html/stomach.html (accessed 15 December 2019).
  3. Anonymous (2020). Global Cancer Observatory. http://gco.iarc.fr (accessed 20 January 2020).
  4. Ardi, V. C., Kupriyanova, T. A., Deryugina, E. I., Quigley, J. P. (2007). Human neutrophils uniquely release TIMP-free MMP-9 to provide a potent catalytic stimulator of angiogenesis. Proc. Natl. Acad. Sci. USA, 104, 20262–20267.10.1073/pnas.0706438104215441918077379
  5. Atzpodien, J., Reitz, M. (2008). Peripheral blood neutrophils as independent immunologic predictor of response and long-term survival upon immuno-therapy in metastatic renal-cell carcinoma. Cancer Bioth. Radio-pharmaceut., 23 (1), 129–134.10.1089/cbr.2007.0429
  6. Bankur, R., Rodrigues, C., Anjaly, D., Gopinathan, P. A., Bankur, P. K. (2016). Quantitative analysis of tumor-associated tissue eosinophilia in different histological grades of oral squamous cell carcinoma. Indian J. Dent. Res., 27, 463–467.10.4103/0970-9290.19561227966500
  7. Bellocq, A., Antoine, M., Flahault, A., Philippe, C., Crestani, B., Bernauydin, J. F., Mayaud, C., Milleron, L., Baud, L., Cadranel, J. (1998). Neutrophil alveolitis in bronchioloalveolar carcinoma: Induction by tumor-derived interleukin-8 and relation to clinical outcome. Amer. J. Pathol., 152 (1), 83–92.
  8. Bosman, F. T., Carneiro, F., Hruban, R. H., Theise, N. D. (2010). WHO Classification of Tumours of Digestive System. 4th edn. Lyon. 417 pp.
  9. Bray, F., Ferlay, J., Soerjomataram, I., Siegal, R. L., Torre, L. A., Jemal, A. (2018). Global cancer statistics 2018: Globocan estimates of incidence and mortality worldwide for 36 cancers in 185 countries. CA Cancer J. Clin., 68, 394–424.10.3322/caac.2149230207593
  10. Caruso, R. A., Bellocco, R., Pagano, M., Bertoli, G., Rigoli, L., Inferrera, C. (2002). Prognostic value of intramural neutrophils in advanced carcinoma in a high-risk area in Northern Italy. Mod. Path., 15 (8), 831–837.10.1097/01.MP.0000020391.98998.6B12181268
  11. Chao, J. How is immunotherapy changing the outlook for patients with stomach cancer? https://www.cancerresearch.org/immunotherapy/cancer-types/stomach-cancer (accessed 20 January 2020).
  12. Davis, B. P., Rothenberg, M. E. (2014). Eosinophils and cancer. Cancer Immunol. Res., 2, 1–8.10.1158/2326-6066.CIR-13-019624778159
  13. Dorta, R. G., Landman, G., Kowalski, L. P., Lauris, J. R., Latorre, M. R., Oliveira, D. T. (2002). Tumour-associated tissue eosinophilia as a prognostic factor in oral squamous cell carcinomas. Histopathology, 41, 152–157.10.1046/j.1365-2559.2002.01437.x12147093
  14. Edge, S. B., Byrd, D. R., Compton, C. C., Fritz, A. G., Greene, F. L., Trotti, A. (2010). AJCC Cancer Staging Manual.7th edn. Springer. 672 pp.
  15. Gregory, A. D., Houghton, A. Mc G. Tumor-associated neutrophils: New targets for cancer therapy. Cancer Res., 71 (7), 2411–2416.10.1158/0008-5472.CAN-10-258321427354
  16. Hendry, S., Salgado, R., Gevaert, T., ... Russell, P. A., John, T., Thapa, B., Christie, M., van de Vijver, K., Estrada, M. V., Gonzalez-Ericsson, P. I., et al. (2017). Assessing tumor-infiltrating lymphocytes in solid tumors: A practical review for pathologists and proposal for a standardized method from the International Immuno-Oncology Biomarkers Working Group: Part 2: TILs in melanoma, gastrointestinal tract carcinomas, non-small cell lung carcinoma and mesothelioma, endometrial and ovarian carcinomas, squamous cell carcinoma of the head and neck, genitourinary carcinomas, and primary braint. Adv. Anat. Pathol., 24 (6), 311–335.10.1097/PAP.0000000000000161563869628777143
  17. Hiramatsu, S., Tanaka, H., Nishimura, J., Sakimura, C., Tamura, T., Toyokawa, T., Muguruma, K., Yashiro, M., Hirakawa, K., Ohira, M. (2018). Neutrophils in primary gastric tumors are correlated with neutrophil infiltration in tumor-draining lymph nodes and the systemic inflammatory response. BMC Immunol., 19 (1), 13.10.1186/s12865-018-0251-2590287429661142
  18. Huang, L., Appleton, J. A. (2016). Eosinophils in helminth infection: Defenders and dupes. Trends Parasitol., 32 (10), 798–807.10.1016/j.pt.2016.05.004
  19. Huh, S. J., Liang, S., Sharma, A., Dong, C., Robertson, G. P. (2010). Transiently entrapped circulating tumor cells interact with neutrophils to facilitate lung metastasis development. Cancer Res., 70, 6071–6082.10.1158/0008-5472.CAN-09-4442
  20. Jablonska, J., Lang, S., Sionov, R. V., Granot, Z. (2017). The regulation of pre-metastatic niche formation by neutrophils. Oncotarget, 8 (67), 112132–112144.10.18632/oncotarget.22792
  21. Jensen, H. K., Donskov, F., Marcussen, N., Nordsmark, M., Lundbeck, F., von der Maase, H. (2009). Presence of intratumoral neutrophils is an independent prognostic factor in localized renal cell carcinoma. J. Clin. Oncol., 27, 4709–4717.10.1200/JCO.2008.18.9498
  22. Kang, B. W., Seo, A. N., Yoon, S., Bae, H. I., Jeon, S. W., Kwon, O. K., Chung, H. Y., Yu, W., Kang, H., Kim, J. G. (2016). Prognostic value of tumor-infiltrating lymphocytes in Epstein-Barr virus-associated gastric cancer. Ann. Oncol., 27, 494–501.10.1093/annonc/mdv610
  23. Kim, R., Emi, M., Tanabe, K. (2007). Cancer immunoediting from immune surveillance to immune escape. Immunology, 121, 1–14.10.1111/j.1365-2567.2007.02587.x
  24. Kita, H. (1996). The eosinophil: A cytokine-producing cell? J. Allergy Clinical Immunol., 97 (4), 889–892.10.1016/S0091-6749(96)80061-3
  25. Laurén, P. (1965). The two histological main types of gastric carcinoma: Diffuse and so-called intestinal-type carcinoma. Acta Pathol. Microbiol. Scand., 64, 31–49.10.1111/apm.1965.64.1.3114320675
  26. Lauwers, G. Y., Carneiro, F., Graham, D. Y. (2010). Gastric carcinoma. In: Bowman, F. T, Carneiro, F, Hruban, R. H. (eds.) Classification of Tumours of the Digestive System. IARC, Lyon.
  27. Lee, J. S., Won, H. S., Sun, D. S., Hong, J. H., Ko, Y. H. (2018). Prognostic role of tumor-infiltrating lymphocytes in gastric cancer. Medicine, 97 (32), e11769.10.1097/MD.0000000000011769613355730095632
  28. Lorena, S. C., Oliveira, D. T., Dorta, R. G., Landman, G., Kowalski, L. P. (2003). Eotaxin expression in oral squamous cell carcinomas with and without tumour associated tissue eosinophilia. Oral Dis.,9 (6), 279–283.10.1034/j.1601-0825.2003.00958.x14629326
  29. Lotfi, R., Lee, J. J., Lotze, M. T. (2007). Eosinophilic granulocytes and damage-associated molecular pattern molecules (DAMPs): Role in the inflammatory response within tumors. J. Immunother., 30, 16–28.10.1097/01.cji.0000211324.53396.f6
  30. Mezale, D., Strumfa, I., Vanags, A., Mezals, M., Fridrihsone, I., Strumfs, B., Balodis, D. (2017). Non-alcoholic steatohepatitis, liver cirrhosis and hepatocellular carcinoma: The molecular pathways. In: Liver Cirrhosis: Update and Current Challenges. InTech, London.10.5772/intechopen.68771
  31. Naito, Y., Saito, K., Shiiba, K., Ohuchi, A., Saigenji, K., Nagura, H., Ohtani, H. (1998). CD8+ T cells infiltrated within cancer cell nests as a prognostic factor in human colorectal cancer. Cancer Res., 58, 3491–3494.
  32. Nelson, B. H. (2010). Tumor-infiltrating lymphocytes B cells: The other CD20+. J. Immunol.,185, 4977–4982.10.4049/jimmunol.1001323
  33. Nielsen, H. J., Hansen, U., Christensen, I. J., Reimert, C., Brunner, N., Moesgaard, F. (1999). Independent prognostic value of eosinophil and mast cell infiltration in colorectal cancer tissue. J. Pathol., 189, 487–495.10.1002/(SICI)1096-9896(199912)189:4<487::AID-PATH484>3.0.CO;2-I
  34. Pages, F., Kirilovsky, A., Mlecnik, B., Asslaber, M., Tosolini, M., Bindea, G., Lagorce, C., Wind, P., Marliot, F., Bruneval, P., Zatloukal, K., Trajanoski, Z., Berger, A., Fridman, W. H., Galon, J. (2009). In situ cytotoxic and memory T cells predict outcome in patients with early-stage colorectal cancer. J. Clin. Oncol., 27, 5944–5951.10.1200/JCO.2008.19.6147
  35. Piazuelo, M. B., Camargo, M. C., Mera, R. M., Delgado, A. G., Peek, R. M., Jr., Correa, H., Schneider, B. G., Sicinschi, L. A., Mora, Y., Bravo, L. E., Correa, P. (2008). Eosinophils and mast cells in chronic gastritis: Possible implications in carcinogenesis. Hum. Pathol., 39 (9), 1360–1369.10.1016/j.humpath.2008.01.012
  36. Piazuelo, M. B., Riechelmann, R. P., Wilson, K. T., Algood, H. M. S. (2019). Resolution of gastric cancer-promoting inflammation: A novel strategy for anti-cancer therapy. Curr. Top Microbiol. Immunol., 421, 319–359.10.1007/978-3-030-15138-6_13
  37. Rathore, A. S., Kumar, S., Konwar, R., Makker, A., Negi, M. P., Goel, M. M. (2014). CD3+, CD4+ & CD8+ tumour infiltrating lymphocytes (TILs) are predictors of favourable survival outcome in infiltrating ductal carcinoma of breast. Indian J. Med. Res.,140, 361–369.
  38. Rothenberg, M. E., Hogan, S. P. (2006). The eosinophil. Ann. Rev. Immunol., 24, 147–174.10.1146/annurev.immunol.24.021605.090720
  39. Rumba, R., Vanags, A., Kalva, A., Bogdanova, T., Drike, I., Mezale, D., Vitola, M., Gardovskis, J., Strumfa, I. (2017). Surgical management of malignant gastric tumours: A practical guide. In: Gastric Cancer. InTech, London.10.5772/intechopen.69825
  40. Scanlan, M. J., Gure, A. O., Jungbluth, A. A., Old, L. J., Chen, Y. T. (2002). Cancer/testis antigens: An expanding family of targets for cancer immunotherapy. Immunol. Rev., 188, 22–32.10.1034/j.1600-065X.2002.18803.x
  41. Schmidt, H., Bastholt, L., Geertsen, P., Christensen, I. J., Larsen, S., Gehl, J., von der Maase, H. (2005). Elevated neutrophil and monocyte count in peripheral blood are associated with poor survival in patients with metastatic melanoma: A prognostic model. Brit. J. Canc., 93 (3), 273–278.10.1038/sj.bjc.6602702
  42. Silovs, A., Strumfa, I., Riekstins, R., Simtniece, Z., Vanags, A., Gardovskis, J. (2018). Systemic inflammatory response in pancreatic ductal adenocarcinoma. In: Advances in Pancreatic Cancer. InTech, London.10.5772/intechopen.78954
  43. Strumfa, I., Bogdanova, T., Kalva, A., Strumfs, B., Rumba, R., Vanags, A., Drike, I., Mezale, D., Abolins, A., Jakovlevs, A., Balodis, D., Gardovskis, J. (2017). Systemic inflammatory reaction in gastric cancer: Biology and practical implications of neutrophil to lymphocyte ratio, Glasgow prognostic score and related parameters. In: Gastric Cancer. InTech, London.10.5772/intechopen.69723
  44. Suzuki, H., Chikazawa, N., Tasaka, T., Wada, J., Yamasaki, A., Kitaura, Y., Sozaki, M., Tanaka, M., Onoishi, H., Morisaki, T., Katano, M. (2010). Intratumoral CD8(+) T/FOXP3(+) cell ratio is a predictive marker for survival in patient with colorectal cancer. Cancer Immunol. Immunother., 59, 653–661.10.1007/s00262-009-0781-9
  45. Tecchio, C., Scapini, P., Pizzolo, G., Cassatella, M. A. (2013). On the cytokines produced by human neutrophils in tumors. Seminars Cancer Biol., 23 (3), 159–170.10.1016/j.semcancer.2013.02.00423410636
  46. Teruya-Feldstein, J., Jaffe, E. S., Burd, P. R., Kingma, D. W., Sersuda, J. E., Tosato, G. (1999). Differential chemokine expression in tissues involved by Hodgkin’s disease: Direct correlation of eotaxin expression and tissue eosinophilia. Blood, 93, 2463–2470.10.1182/blood.V93.8.2463
  47. Uribe-Querol, E., Rosales, C. (2015). Neutrophils in cancer: Two sides of the same coin. J. Immunol. Res., 2015, 983698.10.1155/2015/983698470693726819959
  48. Varricchi, G., Bagnasco, D., Borriello, F., Heffler, E., Canonica, G. W. (2016). Interleukin-5 pathway inhibition in the treatment of eosinophilic respiratory disorders: Evidence and unmet needs. Curr. Opin. Allergy Clin. Immunol., 16 (2), 186–200.10.1097/ACI.0000000000000251476865026859368
  49. Varricchi, G., Galdiero, M. R., Loffredo, S., Lucarini, V., Marone, G., Mattei, F., Schiavoni, G. (2000). Eosinophils: The unsung heroes in cancer? Oncoimmunology, 7 (2), e1393134.10.1080/2162402X.2017.1393134574965329308325
  50. Von Wasielewski, R., Seth, S., Franklin, J., Fischer, R., Hubner, K., Hansmann, M. L., Diehl, V., Georgii, A. (2000). Tissue eosinophilia correlates with poor prognosis in nodular sclerosing Hodgkins disease, allowing for know prognostic factors. Blood, 95 (4), 1207–1213.10.1182/blood.V95.4.1207.004k34_1207_1213
  51. Wang, X., Liu, Y., Diao, Y., Gao, N., Wan, Y., Zhong, J., Zheng, H., Wang, Z., Jin, G. (2018). Gastric cancer vaccines synthesized using a TLR7 agonist and their synergistic antitumor effects with 5-fluorouracil. J. Transl. Med., 16 (1), 120.10.1186/s12967-018-1501-z594143029739434
  52. Welch, D. R., Schissel, D. J., Howrey, R. P., Abeed, P. A. (1989). Tumor-elicited polymorphonuclear cells, in contrast to “normal” circulating polymorphonuclear cells, stimulate invasive and metastatic potentials of rat mammary adenocarcinoma cells. Proc. Natl. Acad. Sci. USA,86, 5859–5863.10.1073/pnas.86.15.58592977302762301
  53. Xie, F., Liu, L. B., Shang, W. Q., Chang, K. K., Menh, Y. H., Mei, J., Yu, J. J., Li, D. J., Li, M. Q. (2015). The infiltration and functional regulation of eosinophils induced by TSLP promote the proliferation of cervical cancer cell. Cancer Lett., 364 (2), 106–117.10.1016/j.canlet.2015.04.02925979231
  54. Yousefi, S., Gold, J. A., Andina, N., Lee, J. L., Kelly, A. M., Kozlowski, E., Schmid, I., Straumann, A., Reichenbac, J., Gleich, G., J., Simon H.-U., et al. (2008). Catapult-like release of mitochondrial DNA by eosinophils contributes to antibacterial defense. Nat. Med., 14 (9), 949–953.10.1038/nm.185518690244
  55. Zhao, J.-J., Pan, K., Wang, W., Chen, J. G., Wu, Y. H., Lv, L., Li, J. J., Chen, Y. B., Wang, D. D., Pan, Q. Z., Li, X. D., Xia, J. C., et al. (2012). The prognostic value of tumor-infiltrating neutrophils in gastric adenocarcinoma after resection. PLoS ONE, 2012, 7 (3), e33655.10.1371/journal.pone.0033655330775122442706
DOI: https://doi.org/10.2478/prolas-2020-0018 | Journal eISSN: 2255-890X | Journal ISSN: 1407-009X
Language: English
Page range: 111 - 117
Submitted on: Feb 14, 2020
Accepted on: Mar 17, 2020
Published on: May 11, 2020
Published by: Latvian Academy of Sciences
In partnership with: Paradigm Publishing Services
Publication frequency: 6 issues per year

© 2020 Tatjana Tone, Elīna Tauvēna, Ilze Štrumfa, Jānis Gardovskis, published by Latvian Academy of Sciences
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