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Published in: Indian Journal of Otolaryngology and Head & Neck Surgery 1/2019

01-10-2019 | Laryngeal Cancer | Original Article

Evaluation of Stromal Myofibroblasts in Laryngeal Dysplasia and Invasive Squamous Cell Carcinoma

Authors: Aylin Orgen Calli, Yelda Dere, Aysegül Sari, Fikret Dirilenoglu, Irem Onur, Kadir İmre

Published in: Indian Journal of Otolaryngology and Head & Neck Surgery | Special Issue 1/2019

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Abstract

Malignant tumors consist of both carcinoma cells and tumor associated host cells. Host cells has started to receive more attention regarding their role in tumor progression such as invasion and metastasis. Fibroblasts that are incorporated in the tumoral stroma are called as peritumoral fibroblasts, reactive stroma, cancer-related fibroblasts or myofibroblasts. In general fibroblasts next to nich of cancer cells express alpha–smooth muscle actin (α-SMA) which is an important marker for differentiated myofibroblasts. Our aim is to investigate the role of α-SMA positive myofibroblasts in the development and progression of laryngeal carcinoma. The proportion of α-SMA positive myofibroblasts are scored from (1 +) to 3( +) in laryngeal dysplasia (n = 17) and microinvasive and invasive squamous cell carcinoma (n = 66). α-SMA expression in invasive carcinoma and dysplasia was analyzed statistically. No stromal myofibroblast was detected in mild dysplasia (score 0). Among 12 cases of moderate-severe dysplasia, in only 3 cases low α-SMA expression (score 1) was observed and in 9 cases there were no stromal myofibroblasts (score 0) were. In most cases of invasive carcinoma, high α-SMA expression (score 2, 3) was seen. α-SMA positive stromal myofibroblasts were significantly higher in invasive laryngeal squamous cell carcinoma compared to dysplasia (p < 0.05). Results of our study suggested that α-SMA positive stromal myofibroblasts play an important role in creating the permissive environment for tumor invasion in laryngeal squamous cell carcinoma. According to this data, we think that the presence of stromal myofibroblasts might be used as a helpful criterion in the differential diagnosis of true invasion and pseudoinvasion.
Literature
1.
go back to reference Kirchner JA, Carter D (2004) Pathology of the larynx. In: Mills SE (ed) Sternberg’s diagnostic surgical pathology, 4th edn. Gopson Papers Ltd, Noida, pp 1007–1032 Kirchner JA, Carter D (2004) Pathology of the larynx. In: Mills SE (ed) Sternberg’s diagnostic surgical pathology, 4th edn. Gopson Papers Ltd, Noida, pp 1007–1032
2.
go back to reference Lingen MW (2015) Head and neck. In: Kumar V, Abbas AK, Aster JC (eds) Robbins and cotran pathologic basis of disease, 9th edn. Elsevier Saunders, Philadelphia, pp 738–740 Lingen MW (2015) Head and neck. In: Kumar V, Abbas AK, Aster JC (eds) Robbins and cotran pathologic basis of disease, 9th edn. Elsevier Saunders, Philadelphia, pp 738–740
3.
go back to reference Lipkin A, Miller RH, Woodson GE (1985) Squamous cell carcinoma of the oral cavity, pharynx, and larynx in young adults. Laryngoscope 95:790–793CrossRef Lipkin A, Miller RH, Woodson GE (1985) Squamous cell carcinoma of the oral cavity, pharynx, and larynx in young adults. Laryngoscope 95:790–793CrossRef
4.
go back to reference Elci OA, Elci MA, Blair A, Dosemeci M (2003) Risk of laryngeal cancer by ocupational chemical exposure in Turkey. J Occup Environ Med 45:1100–1106CrossRef Elci OA, Elci MA, Blair A, Dosemeci M (2003) Risk of laryngeal cancer by ocupational chemical exposure in Turkey. J Occup Environ Med 45:1100–1106CrossRef
5.
go back to reference Albini A, Sporn MB (2007) The tumour microenvironment as a target for chemoprevention. Nat Rev Cancer 7:139–147CrossRef Albini A, Sporn MB (2007) The tumour microenvironment as a target for chemoprevention. Nat Rev Cancer 7:139–147CrossRef
6.
go back to reference Barth PJ, Westhoff CC (2007) CD341 fibrocytes: morphology, histogenesis and function. Curr Stem Cell Res T 2:221–227CrossRef Barth PJ, Westhoff CC (2007) CD341 fibrocytes: morphology, histogenesis and function. Curr Stem Cell Res T 2:221–227CrossRef
7.
go back to reference Desmouliere A, Guyot C, Gabbiani G (2004) The stroma reaction myofibroblast: a key player in the control of tumor cell behavior. Int J Dev Biol 48:509–517CrossRef Desmouliere A, Guyot C, Gabbiani G (2004) The stroma reaction myofibroblast: a key player in the control of tumor cell behavior. Int J Dev Biol 48:509–517CrossRef
8.
go back to reference Powell DW, Adegboyega PA, DiMari JF, Mifflin RC (2005) Epithelial cells and their neighbors. I. Role of intestinal myofibroblasts in development, repair, and cancer. Am J Physiol-Gastr L 289:G2–G7 Powell DW, Adegboyega PA, DiMari JF, Mifflin RC (2005) Epithelial cells and their neighbors. I. Role of intestinal myofibroblasts in development, repair, and cancer. Am J Physiol-Gastr L 289:G2–G7
9.
go back to reference Orimo A, Gupta PB, Sgroi DC, Arenzana-Seisdedos F, Delaunay T, Naeem R et al (2005) Stromal fibroblasts present in invasive human breast carcinomas promote tumor growth and angiogenesis through elevated SDF-1/CXCL12 secretion. Cell 121:335–348CrossRef Orimo A, Gupta PB, Sgroi DC, Arenzana-Seisdedos F, Delaunay T, Naeem R et al (2005) Stromal fibroblasts present in invasive human breast carcinomas promote tumor growth and angiogenesis through elevated SDF-1/CXCL12 secretion. Cell 121:335–348CrossRef
10.
go back to reference Spaeth EL, Dembinski JL, Sasser AK, Watson K, Klopp A, Hall B et al (2009) Mesenchymal stem cell transition to tumor-associated fibroblasts contributes to fibrovascular network expansion and tumor progression. PLoS ONE 4:e4992CrossRef Spaeth EL, Dembinski JL, Sasser AK, Watson K, Klopp A, Hall B et al (2009) Mesenchymal stem cell transition to tumor-associated fibroblasts contributes to fibrovascular network expansion and tumor progression. PLoS ONE 4:e4992CrossRef
11.
go back to reference Sridhara SU, Choudaha N, Kasetty S, Joshi PS, Kallianpur S, Tijare M (2013) Stromal myofibroblasts in nonmetastatic and metastatic oral squamous cell carcinoma: an immunohistochemical study. J Oral Maxillofac Pathol 17:190–194CrossRef Sridhara SU, Choudaha N, Kasetty S, Joshi PS, Kallianpur S, Tijare M (2013) Stromal myofibroblasts in nonmetastatic and metastatic oral squamous cell carcinoma: an immunohistochemical study. J Oral Maxillofac Pathol 17:190–194CrossRef
12.
go back to reference Bello IO, Vered M, Dayan D, Dobriyan A, Yahalom R, Alanen K et al (2011) Cancer-associated fibroblasts, a parameter of the tumour microenvironment, overcomes carcinoma-associated parameters in the prognosis of patients with mobile tongue cancer. Oral Oncol 47:33–38CrossRef Bello IO, Vered M, Dayan D, Dobriyan A, Yahalom R, Alanen K et al (2011) Cancer-associated fibroblasts, a parameter of the tumour microenvironment, overcomes carcinoma-associated parameters in the prognosis of patients with mobile tongue cancer. Oral Oncol 47:33–38CrossRef
13.
go back to reference Routray S, Sunkavali A, Bari KA (2014) Carcinoma-associated fibroblasts, its implication in head and neck squamous cell carcinoma: a mini review. Oral Dis 20:246–253CrossRef Routray S, Sunkavali A, Bari KA (2014) Carcinoma-associated fibroblasts, its implication in head and neck squamous cell carcinoma: a mini review. Oral Dis 20:246–253CrossRef
14.
go back to reference Astekar M, Metgud R, Sharma A, Soni A (2013) Hidden keys in stroma: unlocking the tumor progression. J Oral Maxillofac Pathol 17:82–88CrossRef Astekar M, Metgud R, Sharma A, Soni A (2013) Hidden keys in stroma: unlocking the tumor progression. J Oral Maxillofac Pathol 17:82–88CrossRef
15.
go back to reference Allinen M, Beroukhim R, Cai L, Brennan C, Lahti-Domenici J, Huang H et al (2004) Molecular characterization of the tumor microenvironment in breast cancer. Cancer Cell 6:17–32CrossRef Allinen M, Beroukhim R, Cai L, Brennan C, Lahti-Domenici J, Huang H et al (2004) Molecular characterization of the tumor microenvironment in breast cancer. Cancer Cell 6:17–32CrossRef
16.
go back to reference Neville BW, Day TA (2002) Oral cancer and precancerous lesions. CA-Cancer J Clin 52:195–215CrossRef Neville BW, Day TA (2002) Oral cancer and precancerous lesions. CA-Cancer J Clin 52:195–215CrossRef
17.
go back to reference Chaudhary M, Gadbail AR, Vidhale G, Mankar MP, Gondivkar SM, Gawande M et al (2012) Comparison of myofibroblasts expression in oral squamous cell carcinoma, verrucous carcinoma, high risk epithelial dysplasia, low risk epithelial dysplasia and normal oral mucosa. Head Neck Pathol 6:305–313CrossRef Chaudhary M, Gadbail AR, Vidhale G, Mankar MP, Gondivkar SM, Gawande M et al (2012) Comparison of myofibroblasts expression in oral squamous cell carcinoma, verrucous carcinoma, high risk epithelial dysplasia, low risk epithelial dysplasia and normal oral mucosa. Head Neck Pathol 6:305–313CrossRef
18.
go back to reference Kalluri R, Zeisberg M (2006) Fibroblasts in cancer. Nat Rev Cancer 6:392–401CrossRef Kalluri R, Zeisberg M (2006) Fibroblasts in cancer. Nat Rev Cancer 6:392–401CrossRef
19.
go back to reference Tlsty TD, Hein PW (2001) Know thy neighbor: stromal cells can contribute oncogenic signals. Curr Opin Genet Dev 11:54–59CrossRef Tlsty TD, Hein PW (2001) Know thy neighbor: stromal cells can contribute oncogenic signals. Curr Opin Genet Dev 11:54–59CrossRef
20.
go back to reference Elenbaas B, Weinberg RA (2001) Heterotopic signaling between epithelial tumor cells and fibroblasts in carcinoma formation. Exp Cell Res 264:169–184CrossRef Elenbaas B, Weinberg RA (2001) Heterotopic signaling between epithelial tumor cells and fibroblasts in carcinoma formation. Exp Cell Res 264:169–184CrossRef
21.
go back to reference Mueller MM, Fusening NE (2004) Friends or foes—bipolar effects of the tumor stroma in cancer. Nat Rev Cancer 4:839–849CrossRef Mueller MM, Fusening NE (2004) Friends or foes—bipolar effects of the tumor stroma in cancer. Nat Rev Cancer 4:839–849CrossRef
22.
go back to reference Zeisberg EM, Potenta S, Xie L, Zeisberg M, Kalluri R (2007) Discovery of endothelial to mesenchymal transition as a source for carcinoma-associated fibroblasts. Cancer Res 67:10123–10128CrossRef Zeisberg EM, Potenta S, Xie L, Zeisberg M, Kalluri R (2007) Discovery of endothelial to mesenchymal transition as a source for carcinoma-associated fibroblasts. Cancer Res 67:10123–10128CrossRef
23.
go back to reference Tomasek JJ, Gabbiani G, Hinz B, Chaponnier C, Brown RA (2002) Myofibroblasts and mechano-regulation of connective tissue remodeling. Nat Rev Mol Cell Biol 3:349–363CrossRef Tomasek JJ, Gabbiani G, Hinz B, Chaponnier C, Brown RA (2002) Myofibroblasts and mechano-regulation of connective tissue remodeling. Nat Rev Mol Cell Biol 3:349–363CrossRef
24.
go back to reference Nawshad A, LaGamba D, Polad A, Hay ED (2005) Transforming growth factor-β signaling during epithelial-mesenchymal transformation: implications for embryogenesis and tumor metastasis. Cells Tissues Organs 179:11–23CrossRef Nawshad A, LaGamba D, Polad A, Hay ED (2005) Transforming growth factor-β signaling during epithelial-mesenchymal transformation: implications for embryogenesis and tumor metastasis. Cells Tissues Organs 179:11–23CrossRef
25.
go back to reference Yang J, Mani SA, Donaher JL, Ramaswamy S, Itzykson RA, Come C et al (2004) Twist, a master regulator of morphogenesis, plays an essential role in tumor metastasis. Cell 117:927–939CrossRef Yang J, Mani SA, Donaher JL, Ramaswamy S, Itzykson RA, Come C et al (2004) Twist, a master regulator of morphogenesis, plays an essential role in tumor metastasis. Cell 117:927–939CrossRef
26.
go back to reference Ochicha O, Pringle JH, Mohammed AZ (2010) Immunohistochemical study of epithelial-myofibroblast interaction in Barrett metaplasia. Indian J Pathol Microbiol 53:262–266CrossRef Ochicha O, Pringle JH, Mohammed AZ (2010) Immunohistochemical study of epithelial-myofibroblast interaction in Barrett metaplasia. Indian J Pathol Microbiol 53:262–266CrossRef
27.
go back to reference Seifi S, Shafaei S, Shafigh E, Sahabi SM, Ghasemi H (2010) Myofibroblast stromal presence and distribution in squamous epithelial carcinomas, oral dysplasia and hyperkeratosis. Asian Pac J Cancer Prev 11:359–364PubMed Seifi S, Shafaei S, Shafigh E, Sahabi SM, Ghasemi H (2010) Myofibroblast stromal presence and distribution in squamous epithelial carcinomas, oral dysplasia and hyperkeratosis. Asian Pac J Cancer Prev 11:359–364PubMed
28.
go back to reference Kellermann MG, Sobral LM, da Silva SD, Zecchin KG, Graner E, Lopes MA et al (2008) Mutual paracrine effects of oral squamous cell carcinoma cells and normal oral fibroblasts: induction of fibroblast to myofibroblast transdifferentiation and modulation of tumor cell proliferation. Oral Oncol 44:509–517CrossRef Kellermann MG, Sobral LM, da Silva SD, Zecchin KG, Graner E, Lopes MA et al (2008) Mutual paracrine effects of oral squamous cell carcinoma cells and normal oral fibroblasts: induction of fibroblast to myofibroblast transdifferentiation and modulation of tumor cell proliferation. Oral Oncol 44:509–517CrossRef
29.
go back to reference Etemad-Moghadam S, Khalili M, Tirgary F, Alaeddini M (2009) Evaluation of myofibroblasts in oral epithelial dysplasia and squamous cell carcinoma. J Oral Pathol Med 38:639–643CrossRef Etemad-Moghadam S, Khalili M, Tirgary F, Alaeddini M (2009) Evaluation of myofibroblasts in oral epithelial dysplasia and squamous cell carcinoma. J Oral Pathol Med 38:639–643CrossRef
Metadata
Title
Evaluation of Stromal Myofibroblasts in Laryngeal Dysplasia and Invasive Squamous Cell Carcinoma
Authors
Aylin Orgen Calli
Yelda Dere
Aysegül Sari
Fikret Dirilenoglu
Irem Onur
Kadir İmre
Publication date
01-10-2019
Publisher
Springer India
Published in
Indian Journal of Otolaryngology and Head & Neck Surgery / Issue Special Issue 1/2019
Print ISSN: 2231-3796
Electronic ISSN: 0973-7707
DOI
https://doi.org/10.1007/s12070-018-01572-z

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