The Epstein-Barr virus (EBV) has two life cycles: latent and lytic. Previously, the latent cycle had been considered more relevant to EBV-associated epithelial malignancies, including nasopharyngeal carcinoma (NPC), whereas the lytic cycle, which ultimately leads to the death of host cells, had not been considered. However, recent studies have revealed that abortive lytic infections, in which the lytic cycle halts midway, avoids host cell death and contributes to tumorigenesis and tumor growth. However, the progression of the lytic cycle in NPC and its association with viral replication remain unclear. This study aimed to perform morphological analyses of EBV-positive NPC cell lines and clinical NPC biopsy samples using transmission electron microscopy, NanoSuit-correlative light and electron microscopy, and scanning ion conductance microscopy. Virion-like particles were observed in lytically induced EBV-positive NPC cell lines using time-lapse imaging to capture their release. These particles were also detected in clinical NPC samples using electron microscopy. Immunohistochemical analysis with the glycoprotein B (gB) antibody revealed a strong association between gB expression and poor prognosis. In conclusion, lytic infections with EBV replication occur in NPC, and the frequency of EBV replication is significantly associated with poor prognosis.
IntroductionIn human papillomavirus (HPV)-positive oropharyngeal cancer (OPC), lymph node metastasis is common, yet its biological and prognostic implications remain incompletely understood. Less is known about the spatial organization of immune programs within tumor-associated secondary lymphoid structures.MethodsImmune programs were analyzed by spatially distinguishing lymphoid follicular regions (LFRs) from tumor-free peritumoral tonsillar tissues (PTTs) in palatine tonsil–derived HPV-positive OPC. LFRs were analyzed using spatial transcriptomics and PTTs using bulk transcriptomics. Previously generated GeoMx Digital Spatial Profiler and bulk microarray datasets were reanalyzed to investigate compartment-specific immune programs. Immune pathway activity was assessed using single-sample gene set enrichment analysis according to nodal status.ResultsCompartment-specific immune programs associated with nodal status were identified in both LFRs and PTTs. In LFRs, nodal-positive cases showed enrichment of stem-like, pre-exhausted, and T-cell activity programs accompanied by inflammatory and interferon-associated signaling. In contrast, nodal-negative PTTs exhibited enrichment of stem-like, pre-exhausted, and T-cell activity programs together with IL2–STAT5 and TGF-β signaling, without overt inflammatory activation. These findings indicate that identical immune pathways exhibit distinct biological associations depending on their spatial localization.ConclusionImmune programs associated with nodal metastasis in HPV-positive OPC vary according to spatial immune context. Distinguishing LFRs from tumor-free PTTs provides a framework for interpreting immune programs beyond bulk tissue analysis and highlights the importance of spatial immune organization in shaping biological interpretation. Because the spatial transcriptomic analyses were performed in a limited number of patients, these findings should be considered exploratory and require validation in larger independent cohorts.
It is well known that a number of head and neck carcinomas are associated with HRAS mutations, and that several cancers with RAS mutations, such as lung cancer, have a poor prognosis. In this study, we evaluated the frequency of HRAS mutations in head and neck carcinomas and characterized the clinical and cell biological features of carcinomas with HRAS mutations. HRAS mutations at codons 12, 13, and 61, mutational hot spots, were evaluated in tissue specimens obtained from 119 Japanese patients treated at our institution. DNA was successfully extracted from 100 specimens, and sequencing was completed. An HRAS mutation was found in 8 (8.0%) cases: 5 (6.1%) out of 82 HNSCCs and 3 (16.7%) out of 18 salivary gland carcinomas. Mutations were found at codons 12 and 61, while none were found at codon 13, which differs from previous reports. The mutation-positive cases had a relatively poor prognosis, consistent with previous reports, and were more frequently accompanied by distant metastasis. HRAS knockdown with siRNA suppressed the in vitro migration ability of HRAS mutation-positive cells but not that of HRAS mutation-negative cells. In conclusion, a positive HRAS mutation could be an indicator of distant metastasis and poor prognosis, as well as a potential therapeutic target.
Human papillomavirus (HPV) is a known risk factor for oropharyngeal cancer (OPC), with distinct HPV-positive and HPV-negative subtypes. Reactive oxygen species have been implicated in the carcinogenesis of several malignancies. Superoxide dismutase 2 (SOD2), a mitochondrial enzyme, is highly influenced by oxidative stress. This study investigated whether SOD1 and SOD2 expression in OPC affects primary tumor progression, lymph node metastasis, stage, and overall survival (OS). Biopsy or surgically resected specimens from 72 patients with OPC were analyzed via immunohistochemical staining for SOD1 and SOD2. The proportion of stained cells within the tumor area was assessed. Associations between SOD1 and SOD2 expression, T classification, N classification, and stage were evaluated. Factors correlated with OS in OPC were also examined. No significant differences in SOD1 or SOD2 expression were observed concerning T or N classification, or stage. However, high SOD2 expression was identified as a significant poor prognostic factor for OS. Regardless of HPV status, SOD2 expression predicts poor prognosis in OPC. Evaluating SOD2 expression may help predict OPC prognosis.
Background Cancer immune responses are generated in secondary lymphoid organs, such as the lymph nodes and tonsils. In the current study, transcriptional profiles of peritumoral tonsillar tissues (PTTs) from oropharyngeal cancers (OPCs) were assessed and compared with those of inflammatory tonsils and regional lymph nodes (rLNs). Methods RNA samples of PTTs and rLNs from 13 OPCs, and 4 inflammatory tonsils were subjected to microarray analysis, and differentially expressed genes (DEGs) identified from 730 nCounter Panel immune-related genes. Gene Set enrichment Analysis (GSEA) was used for DEG profiling of PTTs and rLNs between lymph node metastasis-negative and metastasis-positive cases. The top 20 genes, as ranked by GSEA metric scores, were extracted and subjected to principal component analysis (PCA). The correlation of each patient’s PCA score with lymph node status was assessed by Receiver Operating Characteristics (ROC) analysis. Results Comparing DEG analyses of PTTs with those of inflammatory tonsils and rLNs revealed 144 and 45 upregulated genes, respectively. ClueGO, a widely used Cytoscape plug-in, revealed activated pathways in PTTs, including lymphocyte proliferation (followed by T cell activation involved in the immune response) and positive regulation of leukocyte migration (followed by antimicrobial humoral immune response mediated by antimicrobial peptides) as the most significantly enriched immune system process functions in the gene ontology when comparing inflammatory tonsils and rLNs. The area under the ROC curves of PTTs and rLNs were 0.806 and 0.389, and were significant by DeLong’s test (p = 0.025). Conclusion PTTs exhibit unique immunological features distinguishing them from inflammatory tonsils and rLNs. Gene expression analysis of PTTs is useful for investigating the mechanism of OPC lymphatic spread, even compared with analysis of rLNs.
Sarcopenia is common in patients with head and neck cancer and is suggested to be associated with decreased survival. This study aimed to investigate the relationship between changes in skeletal muscle mass during alternating chemoradiotherapy (CRT) and the prognosis of patients with nasopharyngeal carcinoma (NPC). This retrospective study included 64 patients with NPC who had undergone alternating CRT at our institution between 2005 and 2022. The skeletal muscle mass index (SMI) was measured using pre- and post-treatment computed tomography. SMI decreased in 58 patients (90.6%), with a mean change of -6.1%. Using a cutoff value of -6.0% for SMI change, 32 patients (50.0%) were categorized into the SMI loss group. The SMI loss group had a significantly lower mean overall survival (OS) than the SMI maintenance group (122.6 vs. 153.0 months; p = 0.021). Multivariate analysis identified SMI loss and prognostic nutritional index (PNI) as independent predictors of poor OS (p < 0.05). They were used to construct the nomogram of OS. In conclusion, SMI loss during alternating CRT was identified as a poor prognostic factor. These findings suggest that preserving skeletal muscle mass during alternating CRT may improve the prognosis and merits further investigation.
IntroductionOropharyngeal squamous cell carcinoma (OPC) associated with high-risk human papillomavirus (HPV), particularly HPV-16, generally shows favorable outcomes yet paradoxically exhibits a high incidence of early lymphatic metastasis. The immune mechanisms underlying this phenomenon remain unclear.MethodsWe conducted an exploratory spatial transcriptomic analysis using the GeoMx Digital Spatial Profiler on formalin-fixed, paraffin-embedded samples from six patients with palatine tonsil-derived OPC. Tumor tissue regions (TTRs) and lymphoid follicular regions (LFRs) were compared according to HPV status and nodal involvement.ResultsIn HPV-positive LFRs, pathways related to B-cell apoptosis appeared downregulated, suggesting prolonged B-cell survival and antigen presentation. Metastasis-negative HPV-positive cases displayed a Th2-skewed immune profile in LFRs, with increased naïve B cells, plasma cells, eosinophils, M2 macrophages, and activated mast cells. In contrast, metastasis-positive cases showed increased T cell activation in LFRs and reduced proliferation-related signaling in TTRs. Pathways involving estrogen signaling and bile acid metabolism were also associated with metastatic behavior.ConclusionThese exploratory findings suggest that peritumoral Th2-biased immunity within lymphoid structures may contribute to restraining lymphatic metastasis in HPV-positive OPC. Spatial transcriptomics may provide a high-resolution framework for investigating tumor–immune interactions and generating hypotheses for future mechanistic and clinical studies.
AbstractOtorhinolaryngologists often encounter and treat adolescents and young adults (AYA; aged 15–39 years) with cancer. Thus, it is important for them to recognize the impact of cancer treatment on the fertility of patients from this generation. In this retrospective review, we evaluated 60 AYA patients who were diagnosed with head and neck cancer at our department. Regarding the risk of gonadal toxicity due to cancer treatment, according to the classification by The Japan Society of Clinical Oncology Clinical Practice Guidelines 2017 for Fertility Preservation in Childhood, Adolescent, and Young Adult Cancer Patients, one and three patients were found to be at high and intermediate risks, respectively. However, the risk of gonadal toxicity was not adequately explained in the guidelines; hence, they need to be revised. To preserve the fertility of AYA patients with head and neck cancer, patient information should be shared with appropriate obstetrics and gynecology or urology specialists before treatment. Furthermore, it is important to build a reproductive medicine network and ensure prompt collaboration with oncologists before initiating cancer treatment.
Immune-related gene expression profiles of peritumoral tonsillar tissues are modified by oropharyngeal cancer (OPC) nodal status. This study explored immunometabolism and immune cell count alterations in peritumoral tonsillar tissue according to OPC nodal status. Microarray data analysis of 27 peritumoral tonsillar tissue samples, using a newly generated mitochondrial metabolism-related gene set comprised of 948 genes, detected 228 differentially expressed genes (DEGs) (206 up- and 22 downregulated) in metastasis-negative cases compared to metastasis-positive ones. REACTOME pathway analysis of the 206 upregulated genes revealed the Toll-like receptor 4 cascade were most enriched. Immune cell proportion analysis using the CIBERSORTx algorithm revealed a significantly higher rate of naïve B cells, but lower rates of regulatory T cells and resting natural killer cells in metastasis-negative cases. Digital spatial profiling of the 6 OPC tissues detected 9 DEGs in the lymphoid regions, in contrast, no DEGs were identified in tumor regions according to nodal status. Cancer cell nests and pair matched normal epithelia mitochondrial DNA (mtDNA) from 5 OPC tissues were analyzed by next generation sequencing for variant detection. However, no significant mtDNA variation was found. This study identified mitochondria-related immune cell transcriptional programs and immune cell profiles associated with OPC lymphatic spread in peritumoral tonsil tissue, further evaluation of which will elucidate targetable immune mechanisms associated with OPC lymphatic dissemination.
Activation of the MAPK pathway by genetic mutations (such as BRAF and RET) initiates and accelerates the growth of papillary thyroid carcinoma (PTC). However, the correlation between genetic mutations and clinical features remains to be established. Therefore, this study aimed to retrospectively analyze major genetic mutations, specifically BRAF mutations and RET rearrangements, and develop a treatment algorithm by comparing background and clinical characteristics. One hundred thirteen patients with primary PTC were included in this study. BRAF mutations were detected via Sanger sequencing and RET rearrangements were detected via fluorescence in situ hybridization (FISH) analysis, and reverse transcription polymerase chain reaction (RT-PCR). The patients were categorized into two groups based on the presence of BRAF mutations and RET rearrangements and their clinical characteristics (age, sex, TNM, stage, extratumoral extension, tumor size, unifocal/multifocal lesions, vascular invasion, differentiation, chronic thyroiditis, preoperative serum thyroglobulin level, and 18F-fluorodeoxyglucose (FDG) uptake) were compared subsequently. After excluding unanalyzable specimens, 80 PTC patients (22 males and 58 females, mean age: 57.2 years) were included in the study. RET rearrangements were positive in 8 cases (10
Cancer cells show a dynamic metabolic landscape, requiring a sufficient supply of nucleotides to proliferate. They are highly dependent on de novo purine biosynthetic pathways for their nucleotide requirements. Phosphoribosyl pyrophosphate amidotransferase (PPAT), catalyzing the first step of de novo purine biosynthesis, is highly expressed in various cancers. We observed an increased expression of PPAT in nasopharyngeal carcinoma (NPC). Moreover, our ribonucleic acid sequencing analysis showed high PPAT expression in Epstein-Barr virus-positive NPC, which was supported by in vitro analysis. Through a gene knockdown study, we showed that the suppression of PPAT expression reduced the proliferation and invasion of NPC cells. We also demonstrated the regulation of PPAT by glutamine, a cosubstrate for PPAT. A glutamine antagonist, 6-diazo-5-oxo-L-norleucine, blocked glutamine-mediated induction of PPAT and reduced NPC cell proliferation. Immunohistochemical analysis of PPAT in NPC tissues revealed increased expression of PPAT with disease progression, which was significantly associated with poor prognosis. In summary, this study highlighted the biological function of PPAT in NPC, establishing its potential as a novel prognostic biomarker for aggressive NPC and a promising therapeutic target.
Epstein-Barr virus (EBV)-associated nasopharyngeal carcinoma (NPC) cells have high metastatic potential. Recent research has revealed that the interaction of between tumor cells and the surrounding stroma plays an important role in tumor invasion and metastasis. In this study, we showed the prognostic value of expression of SPARC, an extracellular matrix protein with multiple cellular functions, in normal adjacent tissues (NAT) surrounding NPC. In the immunohistochemical analysis of 51 NPC biopsy specimens, SPARC expression levels were significantly elevated in the NAT of EBER (EBV-encoded small RNA)-positive NPC compared to that in the NAT of EBER-negative NPC. Moreover, increased SPARC expression in NAT was associated with a worsening of overall survival. The enrichment analysis of RNA-seq of publicly available NPC and NAT surrounding NPC data showed that high SPARC expression in NPC was associated with epithelial mesenchymal transition promotion, and there was a dynamic change in the gene expression profile associated with interference of cellular proliferation in NAT, including SPARC expression. Furthermore, EBV-positive NPC cells induce SPARC expression in normal nasopharyngeal cells via exosomes. Induction of SPARC in cancer-surrounding NAT cells reduced intercellular adhesion in normal nasopharyngeal structures and promoted cell competition between cancer cells and normal epithelial cells. These results suggest that epithelial cells loosen their own binding with the extracellular matrix as well as stromal cells, facilitating the invasion of tumor cells into the adjacent stroma by activating cell competition. Our findings reveal a new mechanism by which EBV creates a pro-metastatic microenvironment by upregulating SPARC expression in NPC.
Secondary lymphoid organs, such as lymph nodes and tonsils, serve as an interface between the immune system and tumor cells as an initial antigen-presentation site, crucial in antitumor immune response and disease progression. In oropharyngeal cancers originating from palatine tonsils, it was hypothesized that characterizing the immunologic process occurring in the peritumoral tonsil tissue would elucidate immune mechanisms of the lymphatic spread of the disease. A total of 33 patients were enrolled and divided into two cohorts. In Cohort 1 (6 patients), gene expression profiles at the peritumoral lymph regions and tumor regions were analyzed using the whole-transcriptome atlas. In the peritumoral lymph regions, 237 genes were up-regulated in metastasis-negative cases compared with metastasis-positive ones, but only 1 gene was up-regulated in tumor regions. In Cohort 2 (27 patients), microarray analysis of peritumoral tonsil tissue revealed 192 up-regulated genes. Gene ontology analysis revealed the significantly enriched Gene Ontology terms associated with T-cell activation; top 10 hub genes, as ranked by degree, were PTPRC, TLR4, CD80, CD40, STAT3, CD28, CD40LG, CD44, CCR7, and IL7R. Gene set enrichment analysis combined with principal component analysis were used to effectively classify patients as lymph node metastasis positive or negative. These findings suggest peritumoral tonsils as a potential target for investigating the immune mechanisms associated with the lymphatic spread of the disease in oropharyngeal cancers.
Reports about the oncogenic mechanisms underlying nasopharyngeal carcinoma (NPC) have been accumulating since the discovery of Epstein-Barr virus (EBV) in NPC cells. EBV is the primary causative agent of NPC. EBV–host and tumor–immune system interactions underlie the unique representative pathology of NPC, which is an undifferentiated cancer cell with extensive lymphocyte infiltration. Recent advances in the understanding of immune evasion and checkpoints have changed the treatment of NPC in clinical settings. The main EBV genes involved in NPC are LMP1, which is the primary EBV oncogene, and BZLF1, which induces the lytic phase of EBV. These two multifunctional genes affect host cell behavior, including the tumor–immune microenvironment and EBV behavior. Latent infections, elevated concentrations of the anti-EBV antibody and plasma EBV DNA have been used as biomarkers of EBV-associated NPC. The massive infiltration of lymphocytes in the stroma suggests the immunogenic characteristics of NPC as a virus-infected tumor and, at the same time, also indicates the presence of a sophisticated immunosuppressive system within NPC tumors. In fact, immune checkpoint inhibitors have shown promise in improving the prognosis of NPC patients with recurrent and metastatic disease. However, patients with advanced NPC still require invasive treatments. Therefore, there is a pressing need to develop an effective screening system for early-stage detection of NPC in patients. Various modalities, such as nasopharyngeal cytology, cell-free DNA methylation, and deep learning-assisted nasopharyngeal endoscopy for screening and diagnosis, have been introduced. Each modality has its advantages and disadvantages. A reciprocal combination of these modalities will improve screening and early diagnosis of NPC.
Several epidemiological studies have suggested that Epstein–Barr virus (EBV) lytic infection is essential for the development of nasopharyngeal carcinoma (NPC), as the elevation of antibody titers against EBV lytic proteins is a common feature of NPC. Although ZEBRA protein is a key trigger for the initiation of lytic infection, whether its expression affects the prognosis and pathogenesis of NPC remains unclear. In this study, 64 NPC biopsy specimens were analyzed using immunohistochemistry. We found that ZEBRA was significantly associated with a worsening of progression‐free survival in NPC (adjusted hazard ratio, 3.58; 95% confidence interval, 1.08–11.87; p = 0.037). Moreover, ZEBRA expression positively correlated with key endocrinological proteins, estrogen receptor α, and aromatase. The transcriptional level of ZEBRA is activated by estrogen in an estrogen receptor α‐dependent manner, resulting in an increase in structural gene expression levels and extracellular virus DNA copy number in NPC cell lines, reminiscent of lytic infection. Interestingly, it did not suppress cellular proliferation or increase apoptosis, in contrast with cells treated with 12‐ O ‐tetradecanoylphorbol‐13‐acetate and sodium butyrate, indicating that viral production induced by estrogen is not a cell lytic phenomenon. Our results suggest that intratumoral estrogen overproduced by aromatase could induce ZEBRA expression and EBV reactivation, contributing to the progression of NPC.
Nasopharyngeal carcinoma (NPC) is caused by infection with Epstein–Barr virus (EBV) and endemic in certain geographic regions. EBV lytic gene, BALF2 , closely associates with viral reactivation and BALF2 gene variation, the H‐H‐H strain, causes NPC in endemic region, southern China. Here, we investigate whether such EBV variations also affect NPC in a non‐endemic region, Japan. Viral genome sequencing with 47 EBV isolates of Japanese NPC were performed and compared with those of other EBV‐associated diseases from Japan or NPC in Southern China. EBV genomes of Japanese NPC are different from those of other diseases in Japan or endemic NPC; Japanese NPC was not affected by the endemic strain (the BALF2 H‐H‐H) but frequently carried the type 2 EBV or the strain with intermediate risk of endemic NPC (the BALF2 H‐H‐L). Seven single nucleotide variations were specifically associated with Japanese NPC, of which six were present in both type 1 and 2 EBV genomes, suggesting the contribution of the type 2 EBV‐derived haplotype. This observation was supported by a higher viral titer and stronger viral reactivation in NPC with either type 2 or H‐H‐L strains. Our results highlight the importance of viral strains and viral reactivation in the pathogenesis of non‐endemic NPC.
Nasopharyngeal carcinoma (NPC) is one of the Epstein–Barr virus (EBV)-associated malignancies. NPC is highly metastatic compared to other head and neck carcinomas, and evidence has shown that the metastatic features of NPC are involved in EBV infection. The prognosis of advanced cases, especially those with distant metastasis, is still poor despite advancements in molecular research and its application to clinical settings. Thus, further advancement in basic and clinical research that may lead to novel therapeutic modalities is needed. Farnesylation is a lipid modification in the C-terminus of proteins. It enables proteins to attach to the lipid bilayer structure of cellular membranes. Farnesylation was initially identified as a key process of membrane association and activation of the RAS oncoprotein. Farnesylation is thus expected to be an ideal therapeutic target in anti-RAS therapy. Additionally, more and more molecular evidence has been reported, showing that proteins other than RAS are also farnesylated and have significant roles in cancer progression. However, although several clinical trials have been conducted in cancers with high rates of ras gene mutation, such as pancreatic carcinomas, the results were less favorable than anticipated. In contrast, favorable outcomes were reported in the results of a phase II trial on head and neck carcinoma. In this review, we provide an overview of the molecular pathogenesis of NPC in terms of the process of farnesylation and discuss the potential of anti-farnesylation therapy in the treatment of NPC.
Nasopharyngeal carcinoma (NPC) is an Epstein–Barr virus (EBV)-associated malignancy. The principal oncogene of EBV, latent membrane protein 1 (LMP1), induces the expression of programmed death-ligand 1 (PD-L1), which is an immunosuppressive transmembrane protein and a promising therapeutic target for various malignancies. Recent studies have revealed an association between the level of soluble PD-L1 (sPD-L1) and disease progression. However, the role of sPD-L1 in NPC or its relevance to LMP1 has not been elucidated. This study aimed to examine whether LMP1 induces sPD-L1 in vitro and analyze the clinical relevance of LMP1, PD-L1, and sPD-L1 in NPC patients. Analysis of nasopharyngeal cell lines revealed that LMP1 induces both cellular PD-L1 and sPD-L1. Analysis of biopsy specimens from 32 NPC patients revealed that LMP1 expression was significantly correlated with PD-L1 expression. Finally, the serum sPD-L1 level in NPC patients was higher than that in the controls. Moreover, the sPD-L1 level in the advanced stage was higher than that in the early stage. However, LMP1 expression, PD-L1 expression, and sPD-L1 levels were not associated with prognosis. These results suggest that LMP1 induces both sPD-L1 and PD-L1, which are associated with NPC progression.
Normally ubiquitin C-terminal hydrolase L1 (UCH-L1) is expressed in the central nervous and reproductive systems of adults, but its de novo expression has been detected in many human cancers. There is a growing body of evidence that UCH-L1 de-ubiquitinating (DUB) activity plays a major pro-metastatic role in certain carcinomas. Here we tested anti-metastatic effects of the small-molecule inhibitor of UCH-L1 DUB activity, LDN-57444, in cell lines from advanced oral squamous cell carcinoma (OSCC) as well as invasive nasopharyngeal (NP) cell lines expressing the major pro-metastatic gene product of Epstein–Barr virus (EBV) tumor virus, LMP1. To overcome the limited aqueous solubility of LDN-57444 we developed a nanoparticle formulation of LDN-57444 by incorporation of the compound in polyoxazoline micellear nanoparticles (LDN-POx). LDN-POx nanoparticles were equal in effects as the native compound in vitro. Our results demonstrate that inhibition of UCH-L1 DUB activity with LDN or LDN-POx inhibits secretion of exosomes and reduces levels of the pro-metastatic factor in exosomal fractions. Both forms of UCH-L1 DUB inhibitor suppress motility of metastatic squamous carcinoma cells as well as nasopharyngeal cells expressing EBV pro-metastatic Latent membrane protein 1 (LMP1) in physiological assays. Moreover, treatment with LDN and LDN-POx resulted in reduced levels of pro-metastatic markers, a decrease of carcinoma cell adhesion, as well as inhibition of extra-cellular vesicle (ECV)-mediated transfer of viral invasive factor LMP1. We suggest that soluble inhibitors of UCH-L1 such as LDN-POx offer potential forms of treatment for invasive carcinomas including EBV-positive malignancies.