In recent years, the utility of positron emission tomography/magnetic resonance imaging (PET/MRI) has become increasingly significant in diagnostic settings. This study provides a five-year follow-up on a previous pilot study that demonstrated the feasibility of PET/MRI in predicting the resectability of adenocarcinoma of the esophagogastric junction (AEG). We aimed to evaluate whether this imaging modality could further serve as a prognostic tool for survival in AEG patients. A total of 22 patients were included in the initial pilot study, with 17 of them undergoing surgery. All patients underwent three series of neo-adjuvant chemotherapy (NT). This follow-up study retrospectively analyzed the correlation between the apparent diffusion coefficient (ADC) and standard uptake value (SUV) measurements of the primary tumor from the original study with overall survival and recurrence. ADC and SUV values were measured prior to initiation of NT, and again 17–21 days into the first cycle of NT-administration, and the differences between the scans were calculated as ∆SUVmax, ∆ADCb0, and ∆ADCb50. Early treatment response was assessed using the Response Evaluation Criteria In Solid Tumors (RECIST). Binary logistic regression was employed to evaluate the predictive values of ADC and SUV parameters, and receiver operating characteristic (ROC) curves were generated to determine sensitivity, specificity, and area under the curve (AUC). As of January 7, 2022, 8 of the 22 patients were still alive. The AUC was calculated to assess the association of imaging parameters with long-term survival: ∆SUVmax: AUC = 0.74, sensitivity, 87.5
BACKGROUND: Infective endocarditis (IE) can be challenging to diagnose. Positron emission tomography/computed tomography (PET/CT) with 2-deoxy-2-[18F]-fluoro-d-glucose ([18F]FDG) is recommended as a diagnostic tool in the guidelines, but holds limitations. The aim of this study was to compare the tracer uptake between the novel [64Cu]Cu-DOTATATE, which has low cardiac uptake and does not require fasting or dietary restrictions, and [18F]FDG in patients with IE and examine the sensitivity and specificity. METHODS: The CuDOS study (Cu-Dotatate Positron Emissions Tomography in Infective Endocarditis) was a prospective study including 20 patients with IE (10 with prosthetic valve endocarditis and 10 with native valve endocarditis) and 20 controls. All participants underwent [64Cu]Cu-DOTATATE and [18F]FDG PET/CT. Scans were read blinded to clinical data. Tracer uptakes were measured as maximum standardized uptake values in each heart valve. Differences were tested with Wilcoxon rank tests. RESULTS: The median age of the cases and controls was 68 years (interquartile range [IQR], 55.0–75.5) and 61 years (IQR, 57.0–69.5), respectively. [64Cu]Cu-DOTATATE uptake (median maximum standardized uptake value [IQR]) in patients with IE was higher than in controls (2.34 [1.40–3.23] versus 1.44 [1.21–1.60]; P =0.008), although this difference was mainly driven by prosthetic valve endocarditis cases (3.23 [2.02–3.86]; P <0.001) and not between native valve endocarditis cases and controls (1.51 [1.23–2.58]; P=0.428). The sensitivity of [64Cu]Cu-DOTATATE and [18F]FDG PET/CT in 20 cases versus 20 controls were equal, and the specificity was 90% and 75%, respectively. The analysis of prosthetic valve endocarditis versus the 20 controls showed equal sensitivity (80%), and a specificity of 90% and 75%, respectively (P =0.38). In addition, a greater proportion of scans achieved diagnostic certainty with [64Cu]Cu-DOTATATE PET/CT compared with [18F]FDG PET/CT for native valve endocarditis, prosthetic valve endocarditis, and controls. CONCLUSIONS: [64Cu]Cu-DOTATATE PET/CT showed uptake in the infected valve in patients with IE, and has major advantage as it does not require any preparation compared with [18F]FDG. [64Cu]Cu-DOTATATE had a numerically higher specificity than [18F]FDG, although the difference was not statistically significant. Both tracers were limited in the detection of native valve endocarditis. REGISTRATION: URL: https://www.clinicaltrials.gov; Unique identifier: NCT05432427. www.clinicaltrialsregister.eu; Unique identifier: 2021-005501-27.
Amplification of the mesenchymal epithelial transition (MET) gene is a mechanism of acquired resistance to epidermal growth factor receptor (EGFR)-tyrosine-kinase-inhibitors (TKIs) in over 20% of patients with advanced EGFR-mutated (EGFRm+) non-small lung cancer (NSCLC). However, it may also occur de novo in 2–8% of EGFRm+ NSCLC cases as a potential mechanism of intrinsic resistance. These patients represent a group with unmet needs, since there is no standard therapy currently approved. Several new MET inhibitors are being investigated in clinical trials, but the results are awaited. Meanwhile, as an alternative strategy, combinations of EGFR-TKIs with the MET/ALK/ROS1-TKI Crizotinib may be used in this setting, despite this use is principally off-label. Thus, we studied five of these MET amplified cases receiving EGFR-TKI and Crizotinib doublet after progression on EGFR-TKI treatment to assess the benefits and challenges related to this combination and the possible occurrence of genomic and phenotypic co-alterations. Furthermore, we compared our cases with other real-world reports on Crizotinib/EGFR-TKI combinations, which appeared effective, especially in patients with high-level MET amplification. Yet, we observed that the co-occurrence of other genomic and phenotypical alterations may affect the response to combined EGFR-TKI and Crizotinib. Finally, given the heterogeneity of MET amplification, the diagnostic methods for assessing it may be discrepant. In this respect, we observed that for optimal detection, immunohistochemistry, fluorescence in situ hybridization, and next-generation sequencing should be used together, as these methods possess different sensitivities and complement each other in characterizing MET amplification. Additionally, we addressed the issue of managing EGFR-mutated NSCLC patients with de novo MET amplification causing primary EGFR-TKI resistance. We conclude that, while data from clinical trials with new MET inhibitors are still pending, adding Crizotinib to EGFR-TKI in NSCLC patients acquiring MET amplification at progression on EGFR-TKI monotherapy is a reasonable approach, with a progression-free survival of 3–19 months.
years old group, deletion exon 19 mutation, and performance status 0-1, but there was no significant difference statistically between subjects receiving and not receiving dose reduction of Afatinib.Patients receiving dose reduction of Afatinib had similar median Progression Free Survival (PFS) as patients without dose reduction of Afatinib.Median PFS patients with 40mg/day vs 30mg/day vs 20mg/day were 12 months vs 15 months vs 14 months, respectively (log rank p 0,302).Conclusions: Reduction dose of afatinib provides similar benefit with full dose for lung adenocarcinoma patients with EGFR sensitizing mutations.
We investigated the effect of pharmacologically induced weight loss on markers of glucagon resistance in individuals with overweight during treatment with the glucagon-like peptide-1 receptor agonist liraglutide. We performed an open-label study in 14 men with overweight (age 38 ± 11 years, BMI 32 ± 4 kg/m2) without simultaneously diabetes. Subjects were treated with liraglutide, initiated and titrated with 0.6 mg/day/week to reach the final dose of 3.0 mg/day. Subjects were examined at baseline, during titration (Week 4), after 2 weeks of steady state (Week 6) of final dosing of liraglutide and 3 weeks after discontinuation of liraglutide (follow-up). Study participants lost 3.3 ± 1.9 kg (3%) total body weight during the first 4 weeks of treatment with liraglutide. Simultaneously, liver fat content decreased from 12.4 ± 11.6% to 10.2 ± 11.1%, p = 0.025, whereas fat content in the spleen and subcutaneous tissue was unaltered. Markers of glucagon resistance, including plasma glucagon and the glucagon-alanine-index, also decreased significantly during treatment, but total and individual plasma amino acid concentrations did not. Insulin resistance (HOMA-IR) was unchanged during treatment, whereas insulin clearance increased. Treatment with the GLP-1 receptor analogue liraglutide decreased liver fat content, and simultaneously attenuated glucagon concentrations and the glucagon-alanine index in individuals with overweight without diabetes.
BACKGROUND:Radiotherapy (RT) planning for cervical cancer patients entails the acquisition of both Computed Tomography (CT) and Magnetic Resonance Imaging (MRI). Further, molecular imaging by Positron Emission Tomography (PET) could contribute to target volume delineation as well as treatment response monitoring. The objective of this study was to investigate the feasibility of a PET/MRI-only RT planning workflow of patients with cervical cancer. This includes attenuation correction (AC) of MRI hardware and dedicated positioning equipment as well as evaluating MRI-derived synthetic CT (sCT) of the pelvic region for positioning verification and dose calculation to enable a PET/MRI-only setup. MATERIAL AND METHODS:16 patients underwent PET/MRI using a dedicated RT setup after the routine CT (or PET/CT), including eight pilot patients and eight cervical cancer patients who were subsequently referred for RT. Data from 18 patients with gynecological cancer were added for training a deep convolutional neural network to generate sCT from Dixon MRI. The mean absolute difference between the dose distributions calculated on sCT and a reference CT was measured in the RT target volume and organs at risk. PET AC by sCT and a reference CT were compared in the tumor volume. RESULTS:All patients completed the examination. sCT was inferred for each patient in less than 5 s. The dosimetric analysis of the sCT-based dose planning showed a mean absolute error (MAE) of 0.17 ± 0.12 Gy inside the planning target volumes (PTV). PET images reconstructed with sCT and CT had no significant difference in quantification for all patients. CONCLUSIONS:These results suggest that multiparametric PET/MRI can be successfully integrated as a one-stop-shop in the RT workflow of patients with cervical cancer.
The Scandinavian winter-swimming culture combines brief dips in cold water with hot sauna sessions, with conceivable effects on body temperature. We study thermogenic brown adipose tissue (BAT) in experienced winter-swimming men performing this activity 2-3 times per week. Our data suggest a lower thermal comfort state in the winter swimmers compared with controls, with a lower core temperature and absence of BAT activity. In response to cold, we observe greater increases in cold-induced thermogenesis and supraclavicular skin temperature in the winter swimmers, whereas BAT glucose uptake and muscle activity increase similarly to those of the controls. All subjects demonstrate nocturnal reduction in supraclavicular skin temperature, whereas a distinct peak occurs at 4:30-5:30 a.m. in the winter swimmers. Our data leverage understanding of BAT in adult human thermoregulation, suggest both heat and cold acclimation in winter swimmers, and propose winter swimming as a potential strategy for increasing energy expenditure.
Diagnosis of anomalous intrathoracic lesions may be challenging and require a multidisciplinary approach. We present a case of granulomatosis with polyangiitis (GPA) clinically and radiologically mimicking metastatic lung cancer with a bilateral pulmonary mass, mediastinal and cervical lymph node involvement, and pleural effusion. Surgical biopsy of the thoracic lesion revealed necrotic granulomatous inflammation, and the final diagnosis was subsequently confirmed by kidney biopsy and biochemical parameters. This case illustrates how comprehensive diagnosis secures timely and relevant treatment. Systemic vasculitis may be one of the key differential diagnoses in patients with multiorgan involvement, especially with pattern-mimicking lung cancer.
Plasma concentrations of the two pancreatic enzymes, amylase and lipase, are increased within the normal physiological range after initiation of glucagon-like peptide-1 receptor agonist (GLP-1RA) treatment. An association between the use of GLR-1RA and incidence of acute pancreatitis or pancreatic cancer has not been found - neither in rodent studies nor in preclinical studies or in the large cardiovascular outcome trials with GLP-1RAs. The increased concentrations of pancreatic enzymes have been suggested to be explained by increased DNA or protein synthesis found in rodent and acinar cell studies. However, whether this translates into humans is unknown. We therefore investigated the effect of liraglutide, a GLP-1RA, on pancreatic volume, edema and DNA synthesis reflected by 18F-flourothymidine (FLT)-uptake using state-of-the-art positron emission tomography (PET)-magnetic resonance imaging (MRI) before initiation, after four weeks during titration of liraglutide and after six weeks during steady state on maximum dose of liraglutide 3.0 mg in 14 obese men (age 38 ± 3 years, BMI 32 ± 1 kg/m2) without diabetes. Plasma concentrations of amylase and lipase were assessed in parallel. Amylase (+7 U/L [95% confidence intervals, 3 - 11] p<0.01) and lipase (+19 U/L [7-30] p<0.01) increased during liraglutide treatment while body weight decreased (-4.5 kg [-5,9 - -3,1] p<0.01). Pancreatic volume did not change from baseline to steady state of treatment (+2.1 cm3 [-10 - 14] p=0.72]) and no signs of change in cellular infiltration of the pancreas were found (p=0.22). During titration of liraglutide, FLT-uptake increased (+0.09 g/mL [0.000 - 0.17], p=0.05). In conclusion, six weeks of treatment with liraglutide did not affect pancreatic volume, edema or cellularity in obese individuals. Increased DNA synthesis reflected by FLT-uptake in the pancreas seen after four weeks of liraglutide treatment may be responsible for the increase in pancreatic enzymes. Disclosure M.S. Svane: None. H.H. Johannesen: None. C. Martinussen: None. K.N. Bojsen-Moller: None. M.L. Hansen: None. A.E. Hansen: None. C.F. Deacon: Employee; Spouse/Partner; Merck & Co., Inc. Stock/Shareholder; Spouse/Partner; Merck & Co., Inc. Other Relationship; Self; Boehringer Ingelheim International GmbH, Eli Lilly and Company, Merck & Co., Inc., Novartis AG, Novo Nordisk A/S. B. Hartmann: None. S.H. Keller: None. T.L. Klausen: None. A. Loft: None. A. Kjaer: None. S. Madsbad: Advisory Panel; Self; AstraZeneca, Boehringer Ingelheim Pharmaceuticals, Inc., Merck Sharp & Dohme Corp., Novo Nordisk A/S, Sanofi-Aventis. Research Support; Self; Boehringer Ingelheim International GmbH, Novo Nordisk A/S. Speaker’s Bureau; Self; AstraZeneca, Boehringer Ingelheim International GmbH, Novo Nordisk A/S. J.O. Löfgren: None. J.J. Holst: Advisory Panel; Self; AstraZeneca, Merck Sharp & Dohme Corp., Novo Nordisk A/S, Zealand Pharma A/S. Other Relationship; Spouse/Partner; Antag Therapeutics. N.J. Wewer Albrechtsen: Research Support; Self; Mercodia, Novo Nordisk A/S, Novo Nordisk Foundation. Speaker’s Bureau; Self; Merck Sharp & Dohme Corp.
To investigate human brown adipose tissue (BAT) physiology, we recruited young healthy men that were either winter swimmers (WS) or controls. We used 2-deoxy-2-[18F]fluoro-D-glucose PET/MRI-scanning, infrared thermography, iButtons and ingestible thermometer pills to assess BAT glucose uptake, and BAT and core temperature. In a crossover design with interventions performed in randomized order, subjects performed individualized cooling and thermoneutral protocols. We monitored a subset for BAT circadian rhythm. In response to cooling, WS increased more in BAT temperature, BAT glucose uptake and energy expenditure compared to control subjects. At thermoneutrality, WS had higher BAT temperature and lower core temperature, despite BAT glucose uptake in controls only. All subjects demonstrated a nocturnal reduction in BAT temperature, while a peak was observed at 4:30-5:30 am in WS, coinciding with rising plasma cortisol levels. In conclusion, WS have highly regulated BAT, and BAT is active at thermoneutrality in a circadian rhythm in humans.
The purpose of this study was to investigate if FDG uptake metrics in primary tumor and lymph node metastases in patients with oropharyngeal squamous cell carcinoma (OPSCC) has a prognostic value beyond UICC8 staging in a multiple endpoint model. Patients with OPSCC treated with primary radiotherapy at Rigshospitalet in the period 2010–2017 were included. All patients had a pretreatment FDG PET/CT scan performed. Four cause-specific Cox regression models were built for the hazard ratios (HR) of recurrence in T-, N-, M-site, and death with no evidence of disease (NED), respectively. The following variables were included: T-, N-stage, p16 status, metabolic tumor volume, and FDG uptake in both primary tumor and lymph nodes. A competing risk analysis was performed and absolute risk estimates were estimated using the Aalen–Johansen method. Overall, 441 patients were included. Thirty-four patients had T-site recurrence, 31 N-site recurrence, 32 M-site recurrence, and 52 patients had death NED as event. Nodal FDG uptake had a significant impact on N- and M-site recurrence, with HRs of 2.13 (CI 1.20–3.77) and 2.18 (CI 1.16–4.10). The individual prognostication of absolute risk of the four events for any given patient can be assessed in the online tool (https://rasmussen.shinyapps.io/OPSCCmodelFDG_PET/). High nodal FDG uptake increases the risk of N- and M-site recurrence in patients with OPSCC in a competing risk scenario. The reported results are available in an easy applicable online tool and can help identify relevant candidates for future trials testing treatment approaches.
The cover image is based on the Original Article No effects of a six-week intervention with glucagon-like peptide-1 receptor analogue on pancreatic volume and edema in obese men without diabetes by JOHAN LÖFGREN et al., https://doi.org/10.1111/dom.14106.
To investigate the effect of a glucagon‐like peptide‐1 receptor agonist (GLP‐1RA), liraglutide, on pancreatic volume, oedema, cellularity and DNA synthesis in humans.
Background Small cell lung cancer (SCLC) is an aggressive cancer often presenting in an advanced stage and prognosis is poor. Early response evaluation may have impact on the treatment strategy. Aim We evaluated 18 F-fluorothymidine-(FLT)-PET/diffusion-weighted-(DW)-MRI early after treatment start to describe biological changes during therapy, the potential of early response evaluation, and the added value of FLT-PET/DW-MRI. Methods Patients with SCLC referred for standard chemotherapy were eligible. FLT-PET/DW-MRI of the chest and brain was acquired within 14 days after treatment start. FLT-PET/DW-MRI was compared with pretreatment FDG-PET/CT. Standardized uptake value (SUV), apparent diffusion coefficient (ADC), and functional tumor volumes were measured. FDG-SUV peak , FLT-SUV peak , and ADC median ; spatial distribution of aggressive areas; and voxel-by-voxel analyses were evaluated to compare the biological information derived from the three functional imaging modalities. FDG-SUV peak , FLT-SUV peak , and ADC median were also analyzed for ability to predict final treatment response. Results Twelve patients with SCLC completed FLT-PET/MRI 1–9 days after treatment start. In nine patients, pretreatment FDG-PET/CT was available for comparison. A total of 16 T-sites and 12 N-sites were identified. No brain metastases were detected. FDG-SUV peak was 2.0–22.7 in T-sites and 5.5–17.3 in N-sites. FLT-SUV peak was 0.6–11.5 in T-sites and 1.2–2.4 in N-sites. ADC median was 0.76–1.74 × 10 − 3 mm 2 /s in T-sites and 0.88–2.09 × 10 −3 mm 2 /s in N-sites. FLT-SUV peak correlated with FDG-SUV peak , and voxel-by-voxel correlation was positive, though the hottest regions were dissimilarly distributed in FLT-PET compared to FDG-PET. FLT-SUV peak was not correlated with ADC median , and voxel-by-voxel analyses and spatial distribution of aggressive areas varied with no systematic relation. LT-SUV peak was significantly lower in responding lesions than non-responding lesions (mean FLT-SUV peak in T-sites: 1.5 vs. 5.7; p = 0.007, mean FLT-SUV peak in N-sites: 1.6 vs. 2.2; p = 0.013). Conclusions FLT-PET and DW-MRI performed early after treatment start may add biological information in patients with SCLC. Proliferation early after treatment start measured by FLT-PET is a promising predictor for final treatment response that warrants further investigation. Trial registration Clinicaltrials.gov, NCT02995902 . Registered 11 December 2014 - Retrospectively registered.
Background and aims: The advantage of combining molecular and morphological imaging, e.g. positron emission tomography and magnetic resonance imaging (PET/MRI), is reflected in the increased use of these modalities as surrogate endpoints in clinical trials. This study aimed at evaluating plaque inflammation using F-18-fluorodeoxyglucose (F-18-FDG)-PET/MRI, and gene expression in a minipig model of atherosclerosis. Methods: Gottingen Minipigs were fed for 60 weeks with fat/fructose/cholesterol-rich diet (FFC), chow (Control) or FFC-diet changed to chow midway (diet normalization group; DNO). In all groups, F-18-FDG-PET/MRI of the abdominal aorta was assessed midway and at study-end. The aorta was analyzed using histology and gene expression. Results: At study-end, FFC had significantly higher FDG-uptake compared to Control (target-to-background maximal uptake, TBRMax (95% confidence interval) CITBRMax: 0.092; 7.32) and DNO showed significantly decreased uptake compared to FFC (CITBRMax: -5.94;-0.07). No difference was observed between DNO and Control (CITBRMax: -2.71; 4.11). FFC displayed increased atherosclerosis and gene expression of inflammatory markers, including vascular cell adhesion molecule 1 (VCAM-1), cluster of differentiation 68 (CD68), matrix metalloproteinase 9 (MMP9), cathepsin K (CTSK) and secreted phosphoprotein 1 (SPP1) compared to Control and DNO (all, p < 0.05). FDG-uptake correlated with gene expression of inflammatory markers, including CD68, rho(s)= 0.58; MMP9, rho(s)= 0.46; SPP1, rho(s)=0.44 and CTSK, rho(s)=0.49; (p <= 0.01 for all). Conclusions: In a model of atherosclerosis, F-18-FDG-PET/MRI technology allows for detection of inflammation in atherosclerotic plaques, consistent with increased inflammatory gene expression. Our findings corroborate clinical data and are important in pre-clinical drug development targeting plaque inflammation.
Purpose: With the increasing number of therapy options available for patients with lung cancer, early response evaluation is needed. We performed this pilot study to assess the feasibility of early, repeated Positron emission tomography-magnetic resonance (PET/MR), the impact of timing and the capability for response prediction in lung tumors during chemotherapy. Methods: Patients with stage IV non-small cell lung cancer referred for chemotherapy were prospectively recruited. Fluorine-18-Fluorodeoxyglucose(18F-FDG)-PET/MR scans were performed prior to, during and after the first or second cycle of chemotherapy. Primary tumors were defined on all scans and size, FDG-uptake and apparent diffusion coefficient (ADC) were measured. Early response was described over time and a Standard Linear Mixed Model was applied to analyze changes over time. Results: 45 FDG-PET/MR scans were performed in 11 patients. Whereas the overall changes measured by ADC did not change significantly, there was an overall significant decrease in FDG-uptake from pre to post treatment scans. There was no difference in the FDG-uptake measured 1 or 3 weeks after therapy, but uptake measured 2 weeks after therapy differed from measurements at week 3. Changes measured in patients scanned during the first treatment cycle appeared more pronounced than during the second cycle. Conclusions: This pilot study indicates that response evaluation shortly after initiation of chemotherapy appears concordant with later evaluation and probably more reliable than evaluation midway between cycles. Responses during or after the first cycle of chemotherapy rather than during subsequent cycles are likely to be more readily measured.
This feasibility study set out to investigate the use of FDG-PET/DW-MRI in chronic hepatitis C patients to examine changes in local liver inflammation after treatment with direct-acting antivirals (DAA). Twelve patients with chronic hepatitis C were prospectively enrolled, performing FDG-PET/DW-MRI prior to and after DAA treatment. PET/DW-MRI included PET acquisition 60 and 90 min after FDG-injection, DIXON, for attenuation correction, T2- and DW-MRI with 10 b-values between 0-700 s/mm2. The following parameters were measured from fusion of 3 volumes of interest (VOIs) placed in the liver parenchyma: Mean standard uptake value after 60 and 90 minutes (SUVmean60 and SUVmean90), total Apparent Diffusion Coefficient (ADC), perfusion fraction (PF), pseudo-diffusion (D*) and perfusion-free diffusion (D). We found PET/DW-MRI of chronic hepatitis C patients to be feasible. Patients were cooperative, tolerated the scans well and the image quality was acceptable. A total of 10 patients were available for final analysis. All patients achieved sustained virologic response and normalized alanine-aminotransferase (ALAT) levels after treatment with DAA. Perfusion fraction measured by DW-MRI changed significantly after treatment, from mean 0.21 (± 0.04) to 0.26 (± 0.06), P=0.005 and D* from 0.50 (± 0.13) × 10-3 s/mm2 to 0.62 (± 0.15) × 10-3 s/mm2, P=0.028. All other parameters, including FDG-uptake, was unchanged. These results suggest that liver perfusion is changed shortly after DAA treatment, with no significant change in inflammation. The study concludes that PET/DW-MR is feasible in quantifying perfusion and possibly inflammation in chronic hepatitis C patients and may be used to follow treatment.
Background and study aims Esophageal cancer is on the rise in the western world and the disease has a poor 5-year survival prognosis below 20%. Electrochemotherapy is a treatment where a chemotherapeutic drug is combined with locally applied electrical pulses, in order to increase the drug's cytotoxicity in malignant cells. This study presents the first results with electrochemotherapy treatment in esophageal cancer. Patients and methods In this first-in-human trial, six patients with advanced esophageal cancer were treated with electrochemotherapy using intravenous bleomycin. All side effects and adverse events (AEs) were registered and the patients were later evaluated with gastroscopy and 18F-fluorodeoxyglucose positron emission tomography/magnetic resonance imaging (18F-FDGPET/MRI). Results Treatment were well tolerated, main AEs being nausea, vomiting, oral thrush, pneumonia, retrosternal pain, fever, and hoarseness. No serious complications were observed. Five patients had a visual tumor response confirmed by gastroscopy. In two cases, these findings were confirmed with 18F-FDGPET/MRI as it revealed a reduction of total tumor mass. Conclusion Electrochemotherapy in patients with advanced esophageal cancer was conducted without major safety concerns. This study paves the way for larger studies, which may further elucidate response rates for and side effects of this new treatment.
Study design and purposePositron emission tomography (PET)/magnetic resonance imaging (MRI) is a new modality that has showed promising results for various clinical indications. Currently, evaluation of neoadjuvant therapy (NT) among patients with adenocarcinoma of the esophagogastric junction has primarily been reserved for PET/computed tomography. Our aim was to evaluate if early response evaluation by PET/MRI is a feasible method to predict resectability.Methods and materialsPatients with untreated adenocarcinoma of the esophagogastric junction (Siewert types I/II) and fit for NT with no contraindications for PET/MRI were considered eligible. A baseline scan was performed prior to NT induction and an evaluation scan 3weeks later. For histopathological response evaluation, the Mandard tumor regression grade score was applied. Response on PET/MRI was evaluated with Response Evaluation Criteria in Solid Tumors (RECIST 1.1), and change in ADC and SUVmax values.ResultsTwenty-eight patients were enrolled, and 22 completed both scans and proceeded to final analyses. Seventeen patients were found resectable versus five who were found unresectable. PET/MRI response evaluation had a sensitivity 94%, specificity 80%, and AUC=0.95 when predicting resectability in patients with adenocarcinoma of the esophagogastric junction. No association with histopathological response (tumor regression grade) was found nor was RECIST correlated with resectability.ConclusionResponse evaluation using PET/MRI was a feasible method to predict resectability in patients with adenocarcinoma of the esophagogastric junction in this pilot study. However, larger studies are warranted to justify the use of the modality for this indication.