Purpose Sarcopenia, characterized by loss of skeletal muscle mass (SMM) and strength, often leads to dysphagia in the elderly. This condition can also worsen treatment outcomes in head and neck cancer (HNC) patients, who are susceptible to swallowing difficulties. This study aimed to establish the correlation between swallowing muscle mass (SwMM) and SMM in HNC patients. Methods Data from 157 HNC patients in the OncoLifeS biobank of the University Medical Center Groningen were analyzed using pre-treatment neck CT scans. The SwMM was assessed by the cross-sectional area (CSA) of the tongue complex muscles (TCM), and SMM was indicated by the skeletal muscle index (SMI), calculated from corrected CSA at the third lumbar vertebra (L3). Correlations between SwMM and SMM were analyzed using Pearson or Spearman tests, and multivariable linear regression with SMI as dependent variable was performed. Results SwMM was moderately correlated with SMI ( r = 0.600, p < 0.001), CSA at C3 ( r = 0.538, p < 0.001), and CSA at L3 ( r = 0.651, p < 0.001). The CSA at C3 strongly correlated with SMI ( r = 0.871, p < 0.001). In multivariable regression analysis, age, sex, and weight were strong predictors of SMI, while the TCM area was a less robust predictor ( p = 0.059). Models with CSA at C3 and L3 showed all variables as significant predictors ( p < 0.001). Conclusions Although SwMM was significantly correlated with SMI and holds clinical utility, it is not strong enough to be considered interchangeably with C3 for predicting SMI, suggesting that swallowing muscles represent a different entity than skeletal muscles and not reflect accurately the general muscle mass.
Background and purpose: In the Netherlands, care for head and neck cancer (HNC) is centralised in head and neck oncology centres (HNOCs). Follow-up after treatment requires frequent visits that can burden patients and providers. Telemedicine, through remote evaluation of laryngopharyngoscopy videos recorded at local hospitals, may offer a feasible alternative. This study protocol describes the aim to assess patient satisfaction and safety with telemedicine follow-up after treatment of (pre-)malignant glottic lesions, including severe dysplasia, carcinoma-in-situ and T1 squamous cell carcinoma, conducted at one HNOC and participating general hospitals. Methods and analysis: As a non-blinded, randomised controlled trial, 90 patients with a one-way travel time by car of over 45 min to the HNOC will be allocated to the intervention group (follow-up by an Ear, Nose and Throat surgeon at a nearby participating hospital) or the control group (standard follow-up at the HNOC). All patients undergo guideline-based care. In the intervention group, laryngopharyngoscopy recordings will be remotely reviewed by HNOC specialists on the same day. Surveys will be fulfilled at baseline, 6 and 12 months. The primary outcome is overall patient satisfaction using a 0–10 numeric rating scale at 12 months follow-up. Secondary outcomes are safety, quality of life, fear of recurrence, travel time and carbon-dioxide emission. Safety will be assessed through recurrence, complications, re-referral and survival. Between-group and within-group comparisons will be performed to evaluate differences in outcomes, using appropriate statistical methods based on data distribution. Ethics and dissemination: This study explores regional collaboration and sustainable follow-up for HNC patients. The ethics board approved the protocol (M23.325004). The authors commit to publishing the findings.
BACKGROUND:Total laryngectomy (TL) is one of the primary or salvage treatment options for the treatment of laryngeal cancer. After salvage TL (STL), delayed wound healing, due to poor tissue perfusion and hypoxia is frequent. This study aimed to assess whether measurement of skin perfusion using intra-operative indocyanine green (ICG) fluorescence laser angiography is feasible in patients undergoing total laryngectomy and/or neck dissection for laryngeal cancer. METHODS:Patients who underwent primary TL, STL and/or neck dissection for laryngeal cancer were included. ICG fluorescence measurements were performed intra-operatively using the Quest Spectrum® 2 Camera. A total of 28 point and 4 field measurements were performed of skin perfusion pre- and post-operatively below and above the skin incision. Peak fluorescence (Fmax) and ingress rate (IR) were measured for comparing mean perfusion levels and estimating variance using non-parametric statistical tests. Correlation of perfusion levels with previous radiotherapy and postoperative wound complications was assessed. RESULTS:In each of the six included patients, 32 measurements were performed (total: 192). Point and field method outcomes were strongly correlated (p < 0.001). Mean Fmax was 121.1 (I) (± 41.34 SD) for point and 123.9 (I) (± 42.9 SD) for field measurements. Mean IR was 10.4 (I/s) (± 2.75 SD) for point and 9.9 (I/s) (± 3.03 SD) for field measurements. Point measurements showed high intra-patient variation. Inter-patient variation of skin perfusion was also high both for cranial and caudal flap and for pre- and post-operative measurements. No clinically relevant associations between perfusion levels and radiotherapy or wound complications were found. CONCLUSION:Laser angiography using ICG can reliably perform skin perfusion measurements, yet it is not clinically applicable to the clinical situation studied, since no consistent patterns or reference perfusion levels can be identified.
ABSTRACT Objectives Early detection of local recurrences in patients with head and neck squamous cell carcinoma (HNSCC) is crucial for long‐term survival. Aim of this study was to compare white light (WL) imaging with narrow band imaging (NBI) during flexible laryngoscopy for detection of local recurrences and evaluate the effects on clinical outcome in patients with HNSCC treated with radiotherapy ± chemotherapy ((C)RT). Design Prospective randomised controlled trial. Setting Tertiary head and neck oncologic center. Participants 257 patients without residual disease after (C)RT were randomised in a WL group ( n = 120) or WL‐NBI group ( n = 137) and followed for 24 months. Main Outcome Measures Local recurrence rate and overall survival, disease‐specific survival, disease‐free survival and local recurrence‐free survival were compared between both groups. Results Detection rate of local recurrences was the same in both groups: 11.7% in WL‐NBI and 10.0% in WL ( p > 0.05). Overall survival (WL: 88.3%, WL‐NBI: 87.6%), disease‐specific survival (WL: 86.7%, NBI: 83.9%), disease‐free survival (WL: 85.0%, WL‐NBI: 83.2%) and local recurrence‐free survival (WL: 90.0%, WL‐NBI: 89.1%) showed no superiority in the WL‐NBI group ( p > 0.05). Conclusions Local recurrence rates are relatively low in the first 24 months after (C)RT for HNSCC. WL‐NBI did not improve the detection of local recurrences nor the survival compared to WL. Trial Registration: This randomised clinical trial was registered at the research register UMCG with the number 201500918
BACKGROUND:Fibre-optic laryngoscopy is still widely used in daily clinical practice; however, high-definition laryngoscopy using narrow band imaging could be more reliable in characterising pharyngeal and laryngeal lesions.METHODS:Endoscopic videos were assessed in a tertiary referral hospital by 12 observers with different levels of clinical experience. Thirty pairs of high-definition laryngoscopy with narrow band imaging and fibre-optic laryngoscopy videos were judged twice, with an interval of two to four weeks, in a random order. Inter- and intra-observer reliability, sensitivity and specificity were calculated in terms of detecting a malignant lesion and a specific histological entity, for beginners, trained observers and experts.RESULTS:Using high-definition laryngoscopy with narrow band imaging, inter-observer reliability for detecting malignant lesions increased from moderate to substantial in trained observers and experts (high-definition laryngoscopy with narrow band imaging κ = 0.66 and κ = 0.77 vs fibre-optic laryngoscopy κ = 0.51 and κ = 0.56, for trained observers and experts respectively) and sensitivity increased by 16 per cent.CONCLUSION:Inter-observer reliability increased with the level of clinical experience, especially when using high-definition laryngoscopy with narrow band imaging.
Purpose To identify trends in incidence and survival of NPC, subdivided by EBV status and histopathological subtype, over a 30-year period in the Netherlands. Methods Anonymized data from the Netherlands Cancer Registry and the Dutch Nationwide Pathology Databank (PALGA) for the period 1989–2018 were linked to identify and classify NPC cases. Results Incidence of NPC remained stable, with an annual percentage change (APC) of − 0.2. (95% CI − 0.9; 0.5). EBV testing became routine only in the last decade, the incidence of EBV-positive tumors remained stable over this period (APC 1.2, 95% CI − 1.3; 3.8). An increase in EBV-negative tumors (APC: 7.1, 95% CI 2.5; 11.9) and a decrease in untested tumors were found (APC: − 10.7, 95% CI − 15.7; − 5.7). The incidence of non-keratinizing, differentiated tumors increased (APC: 3.8, (95% CI 2.2; 5.5) while the incidence of other histological subtypes remained stable. Overall survival was better in patients diagnosed after 1998 (hazard ratio 0.8, 95% CI 0.6; 0.9). EBV status, histology, stage, and age were independently associated with relative excess risk of dying, but period of diagnosis was not. Conclusion Testing for EBV increased over time, and a stable incidence of EBV-positive NPC over the last 10 years. The rising incidence of non-keratinizing, differentiated NPC mirrors data from the US and suggests a shift in non-endemic regions.
Purpose Diagnostic endoscopy with biopsy under general anesthesia (DE-GA) is still considered as the established standard to assess laryngopharyngeal cancer patients. Office-based flexible laryngoscopic biopsy (FLB) offers an alternative, but the effect on oncological outcome remains uncertain. Therefore, the diagnostic process and survival of patients undergoing FLB, compared to those undergoing DE-GA were evaluated. Methods Patients suspected of laryngopharyngeal cancer who underwent FLB were evaluated. Patients with FLB-confirmed squamous cell carcinoma (SCC) were matched with DE-GA patients based on tumor site, T-classification, N-classification, age, and p16 overexpression. Time from first visit to diagnosis (FVD), time to treatment interval (TTI), disease-specific survival (DSS) and overall survival (OS) were analyzed. Results FLB yielded a definitive diagnosis in 155/164 (95 %) patients. No complications were observed. Ninety-eight of the 124 patients in which FLB revealed a SCC received curative treatment and were compared with 98 matched patients who underwent DE-GA. Median FVD interval was 6 days after FLB and 15 days after DE-GA (p < 0.001). Median TTI interval (FLB: 28 days, DE-GA: 28 days) was equal (p = 0.91). Oncological outcomes were comparable (p > 0.05) between FLB (OS: 2-yr: 76 %, 5-yr: 42 %; DSS: 2-yr: 86 %, 5-yr: 85 %) and DE-GA groups (OS: 2-yr: 76 %, 5-yr: 50 %; DSS: 2-yr: 81 %, 5-yr: 79 %). Conclusion FLB in the outpatient setting demonstrates a high diagnostic accuracy, is safe, accelerates the diagnostic process and has no negative effects on clinical outcome compared to DE-GA. Therefore, FLB should be considered as the standard diagnostic procedure in patients suspected of laryngopharyngeal cancer.
Background: Elective neck irradiation (ENI) is performed in head and neck cancer patients treated with definitive (chemo)radiotherapy. The aim is to eradicate nodal metastases that are not detectable by pretreatment imaging techniques. It is conceivable that personalized neck irradiation can be performed guided by the results of sentinel lymph node biopsy (SLNB). It is expected that ENI can be omitted to one or both sides of the neck in 9 out of 10 patients, resulting in less radiation side effects with better quality of life. Methods/design: This is a multicenter randomized controlled trial aiming to compare safety and efficacy of treatment with SLNB guided neck irradiation versus standard bilateral ENI in 242 patients with cN0 squamous cell carcinoma of the oropharynx, larynx or hypopharynx for whom bilateral ENI is indicated. Patients randomized to the experimental-arm will undergo SLNB. Based on the histopathologic status of the SLNs, patients will receive no ENI (if all SLNs are negative), unilateral neck irradiation only (if a SLN is positive at one side of the neck) or bilateral neck irradiation (if SLNs are positive at both sides of the neck). Patients randomized to the control arm will not undergo SLNB but will receive standard bilateral ENI. The primary safety endpoint is the number of patients with recurrence in regional lymph nodes within 2 years after treatment. The primary efficacy endpoint is patient reported xerostomia-related quality of life at 6 months after treatment.Discussion: If this trial demonstrates that the experimental treatment is non-inferior to the standard treatment in terms of regional recurrence and is superior in terms of xerostomia-related quality of life, this will become the new standard of care.
OBJECTIVES:Intraoperative fluorescence imaging (FI) of head and neck squamous cell carcinoma (HNSCC) is performed to identify tumour-positive surgical margins, currently using epidermal growth factor receptor (EGFR) as imaging target. EGFR, not exclusively present in HNSCC, may result in non-specific tracer accumulation in normal tissues. We aimed to identify new potential HNSCC FI targets. MATERIALS AND METHODS:Publicly available transcriptomic data were collected, and a biostatistical method (Transcriptional Adaptation to Copy Number Alterations (TACNA)-profiling) was applied. TACNA-profiling captures downstream effects of CNAs on mRNA levels, which may translate to protein-level overexpression. Overexpressed genes were identified by comparing HNSCC versus healthy oral mucosa. Potential targets, selected based on overexpression and plasma membrane expression, were immunohistochemically stained. Expression was compared to EGFR on paired biopsies of HNSCC, adjacent macroscopically suspicious mucosa, and healthy mucosa. RESULTS:TACNA-profiling was applied on 111 healthy oral mucosa and 410 HNSCC samples, comparing expression levels of 19,635 genes. The newly identified targets were glucose transporter-1 (GLUT-1), placental cadherin (P-cadherin), monocarboxylate transporter-1 (MCT-1), and neural/glial antigen-2 (NG2), and were evaluated by IHC on samples of 31 patients. GLUT-1 was expressed in 100 % (median; range: 60-100 %) of tumour cells, P-cadherin in 100 % (50-100 %), EGFR in 70 % (0-100 %), MCT-1 in 30 % (0-100 %), and NG2 in 10 % (0-70 %). GLUT-1 and P-cadherin showed higher expression than EGFR (p < 0.001 and p = 0.015). CONCLUSIONS:The immunohistochemical confirmation of TACNA-profiling results showed significantly higher GLUT-1 and P-cadherin expression than EGFR, warranting further investigation as HNSCC FI targets.
Purpose: To investigate glycoprotein nonmetastatic melanoma protein B (GPNMB) and vascular endothelial growth factor (VEGF) as potential fluorescent imaging markers by comparing their protein expression to epidermal growth factor receptor (EGFR). Materials and methods: Thirty-eight paired samples of untreated head and neck squamous cell carcinoma (HNSCC) primary tumours (PT) and corresponding synchronous lymph node metastases (LNM) were selected. After immunohistochemical staining, expression was assessed and compared by the percentage of positive tumour cells. Data were analysed using the Mann-Whitney test, effect sizes (ESr) and Spearman's correlation coefficient (r). Results: GPNMB expression was observed in 100 % of PT, and median 80 % (range 5-100 %) of tumour cells, VEGF in 92 % and 60 % (0-100 %), EGFR in 87 % and 60 % (0-100 %) respectively. In corresponding LNM, GPNMB expression was observed in 100 % of LNM and median 90 % (20-100 %) of tumour cells, VEGF in 87 % and 65 % (0-100 %), and EGFR in 84 % and 35 % (0-100 %). A positive correlation was found between expression in PT and LNM for GPNMB (r = 0.548) and EGFR (r = 0.618) (p < 0.001), but not for VEGF (r = -0.020; p = 0.905). GPNMB expression was present in a higher percentage of tumour cells compared to EGFR in PT (p = 0.015, ESr = -0.320) and in LNM (p <0.001, ESr = -0.478), while VEGF was not (p = 1.00, ESr = -0.109 and - 0.152, respectively). Conclusion: GPNMB expression is higher than EGFR in untreated HNSCC PT and corresponding LNM, while VEGF expression is comparable to EGFR. GPNMB is a promising target for fluorescent imaging in HNSCC.
OBJECTIVE:To determine oncological and functional outcomes in patients with T3 and T4 laryngeal carcinoma, in which choice of treatment was based on expected laryngeal function and not T classification.METHODS:Oncological outcomes (disease-specific survival and overall survival) as well as functional outcomes (larynx preservation and functional larynx preservation) were analysed.RESULTS:In 130 T3 and 59 T4 patients, there was no difference in disease-specific survival or overall survival rates after radiotherapy (RT) (107 patients), chemoradiotherapy (36 patients) and total laryngectomy (46 patients). The five-year disease-specific survival rates were 83 per cent after RT, 78 per cent after chemoradiotherapy and 69 per cent after total laryngectomy, whereas overall survival rates were 62, 54 and 60 per cent, respectively. Five-year larynx preservation and functional larynx preservation rates were comparable for RT (79 and 66 per cent, respectively) and chemoradiotherapy (86 and 62 per cent, respectively).CONCLUSION:There is no difference in oncological outcome after (chemo)radiotherapy or total laryngectomy in T3 and T4 laryngeal carcinoma patients whose choice of treatment was based on expected laryngeal function.
Objective To assess whether narrow band imaging (NBI) detects fields of cancerisation around suspicious lesions in the upper aerodigestive tract, which were undetected by white light imaging (WLI). Method In 96 patients with laryngeal and pharyngeal lesions suspicious for malignancy, 206 biopsies were taken during laryngoscopy: 96 biopsies of suspicious lesions detected by both WLI and NBI (WLI+/NBI+), 60 biopsies adjacent mucosa only suspicious with NBI (WLI-/NBI+), and 46 biopsies of NBI and WLI unsuspicious mucosa (WLI-/NBI-) as negative controls. Optical diagnosis according to the Ni-classification was compared with histopathology. Results Signs of (pre)-malignancy were found in 88% of WLI+/NBI+ biopsies, 32% of WLI-/NBI+ biopsies, and 0% in WLI-/NBI- (p <.001). In 58% of the WLI-/NBI+ mucosa any form of dysplasia or carcinoma was detected. Conclusion The use of additional NBI led to the detection of (pre)-malignancy in 32% of the cases, that would have otherwise remained undetected with WLI alone. This highlights the potential of NBI as a valuable adjunct to WLI in the identification of suspicious lesions in the upper aerodigestive tract.
OBJECTIVE Assessing whether the additional use of narrow-band imaging (NBI) in transoral laser surgery (TOLS) for early laryngeal cancer improves clinical outcomes. STUDY DESIGN Randomized controlled trial, performed between September 2015 and November 2022. SETTING A tertiary referral hospital in The Netherlands. METHODS TOLS was carried out in 113 patients. The procedure was performed with white light imaging (WLI, n = 56) alone, or combined with NBI (n = 57). Patients received frequent follow-up laryngoscopy. Resection margin status, recurrence rate, and recurrence-free survival at 12 months, 18 months, and after study termination (maximum 86 months) were analyzed. RESULTS Thirty-one cases in the WLI group had a positive resection margin, versus 16 in the NBI group (p = .002). After 12 months, the recurrence-free survival was 92%: 87% for WLI versus 96% for NBI, p = .07. The recurrence rate was 7/56 (13%) for WLI, versus 2/57 (4%) for NBI, p = .09. After 18 months, the recurrence-free survival was 84% for WLI versus 96% for NBI, p = .02. The recurrence rate was 9/56 (16%) for WLI, versus 2/57 (4%) for NBI, p = .02. After study termination, the recurrence-free survival was 71% for WLI versus 83% for the NBI group (p = .08). The recurrence rate was 16/56 for WLI, versus 10/57 for NBI (p = .16). CONCLUSION The additional use of NBI during TOLS significantly decreased the number of positive resection margins. Although not statistically significant at all time points, patients treated with NBI-supported TOLS showed a lower recurrence rate and better recurrence-free survival. Further studies in larger patient groups are needed to confirm these results.
OBJECTIVE:To determine the diagnostic value of measuring squamous cell carcinoma antigen (SCC-Ag) and cancer antigen 15-3 (CA15-3) concentrations in fine-needle aspiration (FNA) samples for the detection of squamous cell carcinoma (SCC) metastases in cervical lymph nodes.STUDY DESIGN:A prospective study with patients consecutively included between November 2018 and May 2021.SETTING:A tertiary head and neck oncologic center.METHODS:Out of 138 patients, SCC-Ag concentrations were analyzed in 168 FNA cervical lymph node samples and CA15-3 in 152 samples. Results were compared with FNA cytology (FNAC) or definitive histology to establish sensitivity and specificity rates.RESULTS:For the detection of cervical SCC lymph node metastases, SCC-Ag measurement had an 89.4% sensitivity and 79.3% specificity at a cutoff concentration of 0.1 µg/L. Measurement of CA15-3 concentration in addition to SCC-Ag concentration did not lead to improved accuracy for the detection of SCC. In histology-confirmed cases, FNAC had an 80.0% sensitivity and 100% specificity, as opposed to 93.3% and 57.1%, respectively, for SCC-Ag.CONCLUSION:Measurement of SCC-Ag concentration for detection of SCC lymph node metastases has a sensitivity at least comparable to FNAC and could be used as a relatively cheap screening tool in samples with nondiagnostic or indeterminate FNAC results or when multiple lymph nodes are sampled. However, SCC-Ag in FNA samples has a lower specificity than FNAC assessed by pathologists experienced in head and neck oncology. Addition of CA15-3 measurement did not lead to improved accuracy.
Inadequate surgical margins occur frequently in oral squamous cell carcinoma surgery. Fluorescence molecular imaging (FMI) has been explored for intraoperative margin assessment, but data are limited to phase-I studies. In this single-arm phase-II study (NCT03134846), our primary endpoints were to determine the sensitivity, specificity and positive predictive value of cetuximab-800CW for tumor-positive margins detection. Secondary endpoints were safety, close margin detection rate and intrinsic cetuximab-800CW fluorescence. In 65 patients with 66 tumors, cetuximab-800CW was well-tolerated. Fluorescent spots identified in the surgical margin with signal-to-background ratios (SBR) of ≥2 identify tumor-positive margins with 100% sensitivity, 85.9% specificity, 58.3% positive predictive value, and 100% negative predictive value. An SBR of ≥1.5 identifies close margins with 70.3% sensitivity, 76.1% specificity, 60.5% positive predictive value, and 83.1% negative predictive value. Performing frozen section analysis aimed at the fluorescent spots with an SBR of ≥1.5 enables safe, intraoperative adjustment of surgical margins.
Background: Cutaneous squamous cell carcinoma is the second most common malignancy of the skin, often occurring in older patients and in the head and neck area (cSCCHN). Age, life expectancy, and frailty are not taken into consideration by current guidelines. Objectives: The objective of this study was to evaluate the influence of frailty and life expectancy on guideline deviation, treatment outcomes, and quality of life (QoL) after treatment in patients with cSCCHN. Methods: Patients with cSCCHN were prospectively included. A geriatric assessment was performed, including the Geriatric 8 (G8), Groningen Frailty Indicator, and Timed Up and Go test (TUG). The Lee index was used to predict a limited life expectancy, and the Adult Comorbidity Evaluation-27 was used as a comorbidity index. QoL was assessed by the Basal and Squamous cell carcinoma Quality of Life (BaSQoL) questionnaire at three time points. Results: Seventy-seven patients with cSCCHN were included. Frail patients had significantly more high-risk tumours. Guideline deviation occurred in 7.8% and was more common in patients who were frail (G8), with high-risk tumours (≥T2), with a limited life expectancy or an increased TUG. Guideline deviation did not lead more often to progression of disease in our study. No predictors for post-operative complications were found. BaSQoL subscores were very low at each time point and did not change significantly with time in the total group. Frail patients reported more fear of recurrence or new tumours 3 months after treatment, and less concern about other people’s skin 6 months after treatment, compared to non-frail patients. Complication rate, gender, or guideline deviation did not affect any subscale scores. Conclusions: Assessment of frailty and life expectancy can guide physicians and patients in treatment decisions. Deviation from guidelines towards less aggressive treatment schedules can be considered in frail patients with a limited life expectancy, since it did not negatively affect short-term outcomes or QoL in patients with cSCCHN in our study. However, these results should be confirmed by other, larger prospective studies with a longer follow-up period.
Objective: Head and neck squamous cell carcinoma (HNSCC) can intraoperatively be visualized by fluorescence molecular imaging (FMI) using fluorophores conjugated to HNSCC specific antibodies. Currently, the epidermal growth factor receptor (EGFR) is used as a target. Targets more specific for HNSCC would reduce background signal, resulting in a higher tumor to background ratio. We aimed to identify new potential targets for FMI in HNSCC. Methods: Publicly available transcriptomic data were collected. A biostatistical method known as Transcriptional Adaptation to Copy Number Alterations (TACNA) profiling was applied, which captures the downstream effects of copy number alterations (CNAs) on mRNA levels, which we used to predict the overexpression on the protein level. By comparing gene expression profiles of HNSCC and normal oral mucosa, genes overexpressed explicitly in HNSCC were identified. Potential targets were selected based on the degree of overexpression, plasma membrane expression, and cross expression in other tissues in the head and neck region. Next, the expression of potential targets of TACNA results on mRNA level were validated on the protein level and compared to EGFR expression using immunohistochemistry (IHC). Subsequently, paired biopsies of HNSCC, adjacent suspicious mucosa, and healthy mucosa of the same patients were stained. Receptor expression was evaluated using H-scores (i.e., percentage of positive cells combined with staining intensity). Results: TACNA profiling was applied on 111 samples of healthy oral mucosa and 410 HNSCC comparing expression levels of 19,635 genes. The newly identified membrane-bound targets were glucose transporter 1 (GLUT-1), placental cadherin (P-cadherin), and monocarboxylate transporter 1 (MCT-1). The three targets were evaluated by IHC in a total of 31 patients, of which 8 had oropharyngeal, 7 hypopharyngeal, and 16 laryngeal carcinomas. GLUT-1 had a median H-score of 175, P-cadherin 140, and MCT-1 40. GLUT-1 and P-cadherin were significantly higher compared to EGFR, with a median H-score of 90 (p < .001). GLUT-1 receptor expression was also seen on erythrocytes, while P-cadherin expression was seen in the basal layer of normal epithelium. This can complicate its use in FMI. Conclusion: TACNA profiling results were successfully validated in immunohistochemistry as a first step in the search for new specific FMI targets in HNSCC. GLUT-1 and P-cadherin show promising results with significantly higher receptor expression than EGFR. Citation Format: Jeroen E. van Schaik, Bert van der Vegt, Bernard F.A.M. van der Laan, Max J.H. Witjes, Sjoukje F. Oosting, Rudolf S. Fehrmann, Boudewijn E. Plaat. Identification of molecular imaging targets specific for head and neck squamous cell carcinoma by transcriptional adaptation to copy number alterations profiling: Digital data translated to protein expression [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2022; 2022 Apr 8-13. Philadelphia (PA): AACR; Cancer Res 2022;82(12_Suppl):Abstract nr 6260.
Background and purpose: As a result of rapid tumor growth in head and neck squamous cell carcinoma (HNSCC), delay in treatment initiation can result in tumor progression and inferior outcome. Especially older and frail patients are prone to develop adverse events. The aim of this study was to assess the effect of delay on development of adverse events and recurrence in older HNSCC patients. Materials and methods: This cohort study with prospectively collected data included all newly diagnosed, curatively treated HNSCC patients (>60 years) between 2015 and 2017. Time-to-treatment interval and geriatric domains were assessed. Adverse events were defined as postoperative complications (ClavienDindo classification) and acute radiation-induced toxicity (Common Terminology Criteria of Adverse Events). Multivariable regression models were performed, using adverse events and recurrence as outcome variables. Results: A total of 245 patients were included. Median time-to-treatment was 26 days for surgery patients and 40 days for radiotherapy patients (p < 0.001). Delayed treatment initiation was not associated with postoperative complications or acute radiation-induced toxicity. Delay was significantly associated with recurrence risk within two years after treatment initiation in a model adjusted for stage and tumor location in patients treated with initial surgery (HR:4.1, 95%CI:1.2- 14.0, p = 0.024). For patients treated with radiotherapy, delay was not significantly associated with recurrence risk. Conclusion: Delayed treatment initiation was independently associated with increased recurrence risk in patients treated with initial surgery. Delay was not associated with short-term adverse events. These findings highlight the importance of establishing fast-track care pathways to minimize delays and improve especially long-term outcome. (c) 2022 The Authors. Published by Elsevier B.V. Radiotherapy and Oncology 173 (2022) 154-162 This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
Background In recent clinical practice, an increasing number of elderly patients suffering from head and neck squamous cell carcinoma (HNSCC) of unknown pathophysiology is observed. The majority of HNSCC patients can roughly be divided into three subcategories. First, a small group of young patients who present with variants of genomic aberrations and inheritable diseases like Fanconi anaemia. Second, an increasing population of HPV-related HNSCCs that are regarded as genomic stable tumours with a more favourable prognosis. Though HPV-related tumours used to be more common among younger males, a notable rise in the elderly population is observed. The third subcategory, that of HPV-negative tumours, has been shown to be more heterogeneous with involvement of a variety of oncogenic pathways related to lifestyle factors like smoking and alcohol consumption, often seen in middle-aged males. Some of these pathways could be related to age, such as TP53 alterations, EGFR activation, apoptotic pathway alterations and field cancerization. Conclusions In this narrative review, we provide an overview of established and newly discovered age-specific pathophysiological mechanisms underlying HNSCC. We propose a fourth subcategory of patients with a suspected different pathophysiology: elderly (HPV-negative) HNSCC patients without a history of tobacco and alcohol consumption. In this subcategory, carcinogenesis seems to be a multi-step process based on genomic instability, immunosenescence, cell cycle disruption and telomere shortening. To conclude, we discuss suggestions for future research to fill the knowledge gap about age-dependent HNSCC carcinogenesis.