Clinical significance of type IV vascularization of laryngeal lesions according to the Ni classification

. 2024 ; 14 () : 1222827. [epub] 20240125

Status PubMed-not-MEDLINE Jazyk angličtina Země Švýcarsko Médium electronic-ecollection

Typ dokumentu časopisecké články

Perzistentní odkaz   https://www.medvik.cz/link/pmid38333687

BACKGROUND: Scattered, small, dot-like intraepithelial papillary capillary loops (IPCLs) represent type IV epithelial vascularization according to "Ni classification" and are considered to be nonmalignant. According to the European Laryngological Society classification, these loops are malignant vascular changes. This contradiction has high clinical importance; therefore, clarification of the clinical significance of type IV vascularization according to the Ni classification is needed. METHODS: The study was performed between June 2015 and December 2022. All recruited patients (n = 434) were symptomatic, with macroscopic laryngeal lesions (n = 674). Patients were investigated using the enhanced endoscopic methods of narrow band imaging (NBI) and the Storz Professional Image Enhancement System (IMAGE1 S). The microvascular patterns in the lesions were categorized according to Ni classification from 2011 and all lesions were examined histologically. RESULTS: A total of 674 lesions (434 patients) were investigated using flexible NBI endoscopy and IMAGE1 S endoscopy. Type IV vascularization was recognized in 293/674 (43.5%) lesions. Among these 293 lesions, 178 (60.7%) were benign (chronic laryngitis, hyperplasia, hyperkeratosis, polyps, cysts, granulomas, Reinkeho oedema and recurrent respiratory papillomatosis); 9 (3.1%) were squamous cell carcinoma; 61 (20.8%) were mildly dysplastic, 29 (9.9%) were moderately dysplastic, 14 (4.8%) were severe dysplastic and 2 (0.7%) were carcinoma in situ. The ability to recognize histologically benign lesions in group of nonmalignant vascular pattern according to Ni (vascularization type I-IV) and distinguish them from precancers and malignancies was with accuracy 75.5%, sensitivity 54.4%, specificity 94.4%, positive predictive value 89.6% and negative predictive value 69.9%. CONCLUSION: Laryngeal lesions with type IV vascularization as defined by Ni present various histological findings, including precancerous and malignant lesions. Patients with type IV vascularization must be followed carefully and, in case of progression mucosal lesion microlaryngoscopy and excision are indicated.

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Chu EA, Kim YJ. Laryngeal cancer: diagnosis and preoperative work-up. Otolaryngol Clin North Am (2008) 41:673–95. doi: 10.1016/j.otc.2008.01.016 PubMed DOI

Kim DH, Kim Y, Kim SW, Hwang SH. Use of narrowband imaging for the diagnosis and screening of laryngeal cancer: A systematic review and meta-analysis. Head Neck (2020) 42(9):2635–43. doi: 10.1002/hed.26186 PubMed DOI

Piazza C, Del Bon F, Peretti G, Nicolai P. Narrow band imaging in endoscopic evaluation of the larynx. Curr Opin Otolaryngol Head Neck Surg (2012) 20:472–6. doi: 10.1097/MOO.0b013e32835908ac PubMed DOI

Lukeš P, Zábrodský M, Lukešová E, Plzák J, Chovanec M, Astl M, et al. . Narrow Band Imaging (NBI) - endoskopická metoda pro diagnostiku karcinomů hlavy a krku [Narrow Band Imaging (NBI) - Endoscopic Method for Head and Neck Squamous Cell Carcinoma Diagnostics]. Otorinolaryngol Foniatr (2013) 62(4):173–9.

Ni XG, He S, Xu ZG, Gao L, Lu N, Yuan Z, et al. . Endoscopic diagnosis of laryngeal cancer and precancerous lesions by narrow band imaging. J Laryngol Otol (2011) 125(3):288–96. doi: 10.1017/S0022215110002033 PubMed DOI

Puxeddu R, Sionis S, Gerosa C, Carta F. Enhanced contact endoscopy for the detection of neoangiogenesis in tumors of the larynx and hypopharynx. Laryngoscope (2015) 125(7):1600–6. doi: 10.1002/lary.25124 PubMed DOI

Arens C, Piazza C, Andrea M, Dikkers FG, Tjon Pian Gi REA, Voigt-Zimmermann Z, et al. . Proposal for a descriptive guideline of vascular changes in lesions of the vocal folds by the committee on endoscopic laryngeal imaging of the European Laryngological Society. Eur Arch Otorhinolaryngol (2016) 73(5):1207–14. doi: 10.1007/s00405-015-3851-y PubMed DOI

Ni XG, Zhu JQ, Zhang QQ, Zhang BG, Wang GQ. Diagnosis of vocal cord leukoplakia: the role of a novel narrow band imaging endoscopic classification. Laryngoscope (2019) 129:429–34. doi: 10.1002/lary.27346 PubMed DOI

Bertino G, Cacciola S, Fernandes WB, Fernandes CM, Occhini A, Tinelli C, et al. . Effectiveness of narrow band imaging in the detection of premalignant and Malignant lesions of the larynx: validation of a new endoscopic clinical classification. Head Neck (2015) 37(2):215–22. doi: 10.1002/hed.23582 PubMed DOI

Kraft M, Fostiropoulos K, Gürtler N, Arnoux A, Davaris N, Arens C. Value of narrow band imaging in the early diagnosis of laryngeal cancer. Head Neck (2016) 38(1):15–20. doi: 10.1002/hed.23838 PubMed DOI

Mehlum CS, Rosenberg T, Dyrvig AK, Groentved AM, Kjaergaard T, Godballe C. Can the Ni classification of vessels predict neoplasia? A systematic review and meta-analysis. Laryngoscope (2018) 128(1):168–76. doi: 10.1002/lary.26721 PubMed DOI

Šifrer R, Šereg-Bahar M, Gale N, Hočevar-Boltežar I. The diagnostic value of perpendicular vascular patterns of vocal cords defined by narrow-band imaging. Eur Arch Otorhinolaryngol (2020) 277(6):1715–23. doi: 10.1007/s00405-020-05864-5 PubMed DOI

Davaris N, Lux A, Esmaeili N, Illanes A, Boese A, Friebe M, et al. . Evaluation of vascular patterns using contact endoscopy and narrow-band imaging (CE-NBI) for the diagnosis of vocal fold Malignancy. Cancers (Basel) (2020) 12(1):248. doi: 10.3390/cancers12010248 PubMed DOI PMC

Pietruszewska W, Morawska J, Rosiak O, Leduchowska A, Klimza H, Wierzbicka M. Vocal fold leukoplakia: which of the classifications of white light and narrow band imaging most accurately predicts laryngeal cancer transformation? Proposition for a diagnostic algorithm. Cancers (Basel) (2021) 13(13):3273. doi: 10.3390/cancers13133273 PubMed DOI PMC

Zwakenberg MA, Halmos GB, Wedman J, van der Laan BFAM, Plaat BEC. Evaluating laryngopharyngeal tumor extension using narrow band imaging versus conventional white light imaging. Laryngoscope (2021) 131(7):E2222–31. doi: 10.1002/lary.29361 PubMed DOI

Kántor P, Staníková L, Švejdová A, Zeleník K, Komínek P. Narrative review of classification systems describing laryngeal vascularity using advanced endoscopic imaging. J Clin Med (2022) 12(1):10. doi: 10.3390/jcm12010010 PubMed DOI PMC

Campo F, Ralli M, Di Stadio A, Greco A, Pellini R, de Vincentiis M. Role of narrow band imaging endoscopy in preoperative evaluation of laryngeal leukoplakia: A review of the literature. Ear Nose Throat J (2022) 101(9):NP403–8. doi: 10.1177/0145561320973770 PubMed DOI

Yılmaz YZ, Uğurlar M, Yılmaz BB, Gülmez ZD, Özdoğan HA, Ataş A, et al. . The comparison of narrow band imaging, white light laryngoscopy and videolaryngostroboscopy in the evaluation of benign vocal fold lesions. J Voice (2023) 37(2):275–81. doi: 10.1016/j.jvoice.2020.12.030 PubMed DOI

Staníková L, Walderová R, Jančatová D, Formánek M, Zeleník K, Komínek P. Comparison of narrow band imaging and the Storz Professional Image Enhancement System for detection of laryngeal and hypopharyngeal pathologies. Eur Arch Otorhinolaryngol (2018) 275(7):1819–25. doi: 10.1007/s00405-018-4987-3 PubMed DOI

Gale N, Pilch BZ, Sidransky D, Westra WH, Califano J. Epithelial precursor lesions. In: Barnes L, Eveson JW, Reichart P, Sidransky D, editors. Pathology and genetics of head and neck tumours, 3rd ed. Lyon: IARC Press; (2005). p. 140–3.

Zidar N, Gale N. Update from the 5th edition of the world health organization classification of head and neck tumors: hypopharynx, larynx, trachea and parapharyngeal space. Head Neck Pathol (2022) 16(1):31–9. doi: 10.1007/s12105-021-01405-6 PubMed DOI PMC

Watanabe A, Taniguchi M, Tsujie H, Hosokawa M, Fujita M, Sasaki S. The value of narrow band imaging endoscope for early head and neck cancers. Otolaryngol Head Neck Surg (2008) 138(4):446–51. doi: 10.1016/j.otohns.2007.12.034 PubMed DOI

Piazza C, Dessouky O, Peretti G, Cocco D, De Benedetto L, Nicolai P. Narrow-band imaging: a new tool for evaluation of head and neck squamous cell carcinomas. Review of the literature. Acta Otorhinolaryngol Ital (2008) 28(2):49–54. PubMed PMC

Piazza C, Cocco D, De Benedetto L, Del Bon F, Nicolai P, Peretti G. Narrow band imaging and high definition television in the assessment of laryngeal cancer: a prospective study on 279 patients. Eur Arch Otorhinolaryngol (2010) 267(3):409–14. doi: 10.1007/s00405-009-1121-6 PubMed DOI

Lukes P, Zabrodsky M, Lukesova E, Chovanec M, Astl J, Betka J, et al. . The role of NBI HDTV magnifying endoscopy in the prehistologic diagnosis of laryngeal papillomatosis and spinocellular cancer. BioMed Res Int (2014) 2014:285486. doi: 10.1155/2014/285486 PubMed DOI PMC

Abdullah B, Rasid NSA, Lazim NM, Volgger V, Betz CS, Mohammad ZW, et al. . Ni endoscopic classification for Storz Professional Image Enhancement System (SPIES) endoscopy in the detection of upper aerodigestive tract (UADT) tumours. Sci Rep (2020) 10(1):6941. doi: 10.1038/s41598-020-64011-6 PubMed DOI PMC

Kraft M, Lüerssen K, Lubatschowski H, Glanz H, Arens C. Technique of optical coherence tomography of the larynx during microlaryngoscopy. Laryngoscope (2007) 117(5):950–2. doi: 10.1097/MLG.0b013e318038166d PubMed DOI

Volgger V, Girschick S, Ihrler S, Englhard AS, Stepp H, Betz CS. Evaluation of confocal laser endomicroscopy as an aid to differentiate primary flat lesions of the larynx: A prospective clinical study. Head Neck (2016) 38(Suppl 1):E1695–704. doi: 10.1002/hed.24303 PubMed DOI

Goncalves M, Aubreville M, Mueller SK, Sievert M, Maier A, Iro H, et al. . Probe-based confocal laser endomicroscopy in detecting Malignant lesions of vocal folds. Acta Otorhinolaryngol Ital (2019) 39(6):389–95. doi: 10.14639/0392-100X-2121 PubMed DOI PMC

Sievert M, Aubreville M, Gostian AO, Mantsopoulos K, Koch M, Mueller SK, et al. . Validity of tissue homogeneity in confocal laser endomicroscopy on the diagnosis of laryngeal and hypopharyngeal squamous cell carcinoma. Eur Arch Otorhinolaryngol (2022) 279(8):4147–56. doi: 10.1007/s00405-022-07304-y PubMed DOI PMC

Kraft M, Glanz H, von Gerlach S, Wisweh H, Lubatschowski H, Arens C. Clinical value of optical coherence tomography in laryngology. Head Neck (2008) 30(12):1628–35. doi: 10.1002/hed.20914 PubMed DOI

Sievert M, Eckstein M, Mantsopoulos K, Mueller SK, Stelzle F, Aubreville M, et al. . Impact of intraepithelial capillary loops and atypical vessels in confocal laser endomicroscopy for the diagnosis of laryngeal and hypopharyngeal squamous cell carcinoma. Eur Arch Otorhinolaryngol (2022) 279(4):2029–37. doi: 10.1007/s00405-021-06954-8 PubMed DOI PMC

Cosway B, Drinnan M, Paleri V. Narrow band imaging for the diagnosis of head and neck squamous cell carcinoma: A systematic review. Head Neck (2016) 38(Suppl 1):E2358–67. doi: 10.1002/hed.24300 PubMed DOI

Ugumori T, Muto M, Hayashi R, Hayashi T, Kishimoto S. Prospective study of early detection of pharyngeal superficial carcinoma with the narrowband imaging laryngoscope. Head Neck (2009) 31(2):189–94. doi: 10.1002/hed.20943 PubMed DOI

Lin YC, Watanabe A, Chen WC, Lee KF, Lee IL, Wang WH. Narrowband imaging for early detection of Malignant tumors and radiation effect after treatment of head and neck cancer. Arch Otolaryngol Head Neck Surg (2010) 136(3):234–9. doi: 10.1001/archoto.2009.230 PubMed DOI

Muto M, Minashi K, Yano T, Saito Y, Oda I, Nonaka S, et al. . Early detection of superficial squamous cell carcinoma in the head and neck region and esophagus by narrow band imaging: a multicenter randomized controlled trial. J Clin Oncol (2010) 28(9):1566–72. doi: 10.1200/JCO.2009.25.4680 PubMed DOI PMC

Mannelli G, Cecconi L, Gallo O. Laryngeal preneoplastic lesions and cancer: challenging diagnosis. Qualitative literature review and meta-analysis. Crit Rev Oncol Hematol (2016) 106:64–90. doi: 10.1016/j.critrevonc.2016.07.004 PubMed DOI

De Vito A, Meccariello G, Vicini C. Narrow band imaging as screening test for early detection of laryngeal cancer: a prospective study. Clin Otolaryngol (2017) 42:347–53. doi: 10.1111/coa.12728 PubMed DOI

Stanikova L, Satankova J, Kucova H, Walderova R, Zelenik K, Kominek P. The role of narrow-band imaging (NBI) endoscopy in optical biopsy of vocal cord leukoplakia. Eur Arch Otorhinolaryngol (2017) 274:355–9. doi: 10.1007/s00405-016-4244-6 PubMed DOI

Popek B, Bojanowska-Poźniak K, Tomasik B, Fendler W, Jeruzal-Świątecka J, Pietruszewska W. Clinical experience of narrow band imaging (NBI) usage in diagnosis of laryngeal lesions. Otolaryngol Pol (2019) 73(6):18–23. doi: 10.5604/01.3001.0013.3401 PubMed DOI

Lin C, Zhang S, Lu L, Wang M, Qian X. Diagnostic value and pathological correlation of narrow band imaging classification in laryngeal lesions. Ear Nose Throat J (2021) 100(10):737–41. doi: 10.1177/0145561320925327 PubMed DOI

Lu G, Guo W, Zhang Q, Song X. Endoscopic diagnosis value of narrow band imaging Ni classification in vocal fold leukoplakia and early glottic cancer. Am J Otolaryngol (2021) 42(3):102904. doi: 10.1016/j.amjoto.2021.102904 PubMed DOI

Šifrer R, Rijken JA, Leemans CR, Eerenstein SEJ, van Weert S, Hendrickx JJ, et al. . Evaluation of vascular features of vocal cords proposed by the European Laryngological Society. Eur Arch Otorhinolaryngol (2018) 275(1):147–51. doi: 10.1007/s00405-017-4791-5 PubMed DOI PMC

Rzepakowska A, Sielska-Badurek E, Żurek M, Osuch-Wójcikiewicz E, Niemczyk K. Narrow band imaging for risk stratification of glottic cancer within leukoplakia. Head Neck (2018) 40(10):2149–54. doi: 10.1002/hed.25201 PubMed DOI

Ahmadzada S, Tseros E, Sritharan N, Singh N, Smith M, Palme CE, et al. . The value of narrowband imaging using the Ni classification in the diagnosis of laryngeal cancer. Laryngoscope Investig Otolaryngol (2020) 5(4):665–71. doi: 10.1002/lio2.414 PubMed DOI PMC

Vilaseca I, Valls-Mateus M, Nogués A, Lehrer E, López-Chacón M, Avilés-Jurado FX, et al. . Usefulness of office examination with narrow band imaging for the diagnosis of head and neck squamous cell carcinoma and follow-up of premalignant lesions. Head Neck (2017) 39:1854–63. doi: 10.1002/hed.24849 PubMed DOI

Argiris A, Karamouzis MV, Raben D, Ferris RL. Head and neck cancer. Lancet (2008) 371(9625):1695–709. doi: 10.1016/S0140-6736(08)60728-X PubMed DOI PMC

van Hulst AM, Kroon W, van der Linden ES, Nagtzaam L, Ottenhof SR, Wegner I, et al. . Grade of dysplasia and Malignant transformation in adults with premalignant laryngeal lesions. Head Neck (2016) 38(Suppl 1):E2284–90. doi: 10.1002/hed.24185 PubMed DOI

Luers JC, Sircar K, Drebber U, Beutner D. The impact of laryngeal dysplasia on the development of laryngeal squamous cell carcinoma. Eur Arch Otorhinolaryngol (2014) 271(3):539–45. doi: 10.1007/s00405-013-2670-2 PubMed DOI

Eckel HE, Simo R, Que rM, Odell E, Paleri V, Klussmann JP, et al. . European Laryngological Society position paper on laryngeal dysplasia Part II: diagnosis, treatment, and follow-up. Eur Arch Otorhinolaryngol (2021) 278(6):1723–32. doi: 10.1007/s00405-020-06406-9 PubMed DOI PMC

Rodrigo JP, Garcia-Pedrero JM, Suarez C, Takes RP, Thompson LD, Slootweg PJ, et al. . Biomarkers predicting Malignant progression of laryngeal epithelial precursor lesions: a systematic review. Eur Arch Otorhinolaryngol (2012) 269(4):1073–83. doi: 10.1007/s00405-011-1831-4 PubMed DOI

Bergshoef VE, van der Heijden SJ, Haesevoets A, Litjens SG, Bot FJ, Voogd AC, et al. . Chromosome instability predicts progression of premalignant lesions of the larynx. Pathology (2014) 46(3):216–24. doi: 10.1097/PAT.0000000000000068 PubMed DOI

Rodrigo JP, Villaronga MA, Menendez ST, Hermida-Prado F, Quer M, Vilaseca I, et al. . A novel role for nanog as an early cancer risk marker in patients with laryngeal precancerous lesions. Sci Rep (2017) 7(1):11110. doi: 10.1038/s41598-017-11709-9 PubMed DOI PMC

Manterola L, Aguirre P, Larrea E, Arestin M, Gaafar A, Elorriaga K, et al. . Mutational profling can identify laryngeal dysplasia at risk of progression to invasive carcinoma. Sci Rep (2018) 8(1):6613. doi: 10.1038/s41598-018-24780-7 PubMed DOI PMC

Vukelic J, Dobrila-Dintinjana R, Dekanic A, Marijic B, Cubranic A, Braut T. The relevance of assessing the cell proliferation factor ki-67 in squamous cell carcinoma of the larynx. BioMed Res Int (2019) 2019:8142572. doi: 10.1155/2019/8142572 PubMed DOI PMC

Wan P, Ongkasuwan J, Martinez J, Sandulache V, Deng D, Jiang J, et al. . Biomarkers for Malignant potential in vocal fold leukoplakia: A state of the art review. Otolaryngol Head Neck Surg (2021) 164(4):751–8. doi: 10.1177/0194599820957251 PubMed DOI

Saraniti C, Chianetta E, Greco G, Mat Lazim N, Verro B. The impact of narrow-band imaging on the pre- and intra- operative assessments of neoplastic and preneoplastic laryngeal lesions. A systematic review. Int Arch Otorhinolaryngol (2021) 25(3):e471–8. doi: 10.1055/s-0040-1719119 PubMed DOI PMC

Schöninger L, Voigt-Zimmermann S, Kropf S, Arens C, Davaris N. Kontaktendoskopie mit Narrow Band Imaging zur Erkennung perpendikulärer Gefäßveränderungen bei benignen Läsionen, Dysplasien und Karzinomen der Stimmlippen [Contact endoscopy with narrow-band imaging for detection of perpendicular vascular changes in benign, dysplastic, and Malignant lesions of the vocal folds]. HNO (2021) 69(9):712–8. doi: 10.1007/s00106-021-01063-8 PubMed DOI PMC

Żurek M, Jasak K, Niemczyk K, Rzepakowska A. Artificial intelligence in laryngeal endoscopy: systematic review and meta-analysis. J Clin Med (2022) 11(10):2752. doi: 10.3390/jcm11102752 PubMed DOI PMC

Esmaeili N, Boese A, Davaris N, Arens C, Navab N, Friebe M, et al. . Cyclist effort features: A novel technique for image texture characterization applied to larynx cancer classification in contact endoscopy-narrow band imaging. Diagn (Basel) (2021) 11(3):432. doi: 10.3390/diagnostics11030432 PubMed DOI PMC

Paderno A, Gennarini F, Sordi A, Montenegro C, Lancini D, Villani FP, et al. . Artificial intelligence in clinical endoscopy: Insights in the field of videomics. Front Surg (2022) 9:933297. doi: 10.3389/fsurg.2022.933297 PubMed DOI PMC

Azam MA, Sampieri C, Ioppi A, Africano S, Vallin A, Mocellin D, et al. . Deep learning applied to white light and narrow band imaging videolaryngoscopy: toward real-time laryngeal cancer detection. Laryngoscope (2022) 132(9):1798–806. doi: 10.1002/lary.29960 PubMed DOI PMC

Mehlum CS, Døssing H, Davaris N, Giers A, Grøntved ÅM, Kjaergaard T, et al. . Interrater variation of vascular classifications used in enhanced laryngeal contact endoscopy. Eur Arch Otorhinolaryngol (2020) 277(9):2485–92. doi: 10.1007/s00405-020-06000-z PubMed DOI

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