Sézary syndrome (SS) is a rare and aggressive type of cutaneous T-cell lymphoma (CTCL). Due to its rarity and marked biological heterogeneity, SS diagnosis is frequently delayed, as it requires the integration of multiple complex diagnostic tests interpreted by highly specialized biomedical figures. In this context, we investigated the expression of CXCL13—increasingly implicated in several inflammatory and neoplastic skin disorders—as a potential screening biomarker to discriminate SS from mycosis fungoides (MF), the most common CTCL subtype, and from clinically overlapping inflammatory skin diseases, i.e. atopic dermatitis (AD), psoriasis (PS) and eczema (EC). Real-time PCR analysis of CXCL13 mRNA expression in 51 samples showed a significant upregulation in peripheral blood mononuclear cells (PBMCs) from SS patients compared with MF, AD and healthy donors (HD). Protein-level analysis in a larger cohort (n = 142), including allergic and atopic EC patients, revealed significantly higher plasma CXCL13 concentrations in SS than in all other conditions and HD, as assessed by ELISA. Receiver operating characteristic (ROC) analysis confirmed the excellent performance of plasma CXCL13 as a differential marker (AUC = 93%). In contrast, CXCL13 immunohistochemical expression in skin biopsies was broadly detected across all conditions, limiting its diagnostic value. In conclusion, quantification of CXCL13 expression in PBMCs and, more robustly, measurement of its plasma levels by widely available techniques such as RT-qPCR and ELISA may represent practical screening tools to identify patients with suspected SS. These assays could facilitate earlier referral to specialized centres for confirmatory testing and prompt initiation of appropriate therapy.
BackgroundSézary syndrome (SS) is an aggressive and leukemic variant of Cutaneous T-cell Lymphoma (CTCL) with an incidence of 1 case per million people per year. It is characterized by a complex and heterogeneous profile of genetic alteration ns that has so far precluded the development of a specific and definitive therapeutic intervention.MethodsDeep-RNA-sequencing (RNA-seq) data were used to analyze the single nucleotide variants (SNVs) carried by 128 putative CTCL-driver genes, previously identified as mutated in genomic studies, in longitudinal SS samples collected from 17 patients subjected to extracorporeal photopheresis (ECP) with Interferon-α. Results obtained were integrated with Whole Exome Sequencing (WES) data. SNVs were validated using the Sanger method. Pathway analysis was performed with g:Profiler web server (https://biit.cs.ut.ee/gprofiler/gost). Statistical analyses were performed with GraphPad PRISM 8 software.ResultsNonsynonymous SNVs were identified in 56 genes. Integration of RNA-seq with WES data revealed that about half of these genes contained somatic mutations. Among them, the most frequently transcribed mutated genes were TET2, JAK3, NCOR1, PDCD11, RHOA, and TP53. Nearly all the remaining genes had germline-restricted mutations, and included ARID1A, ATM, ATR, CREBBP, POLD1, and POT1 genes, which are involved in DNA repair, homologous recombination, and chromatin remodeling, and the CROCC gene, implicated in centrosome cohesion. Monitoring of the mutated genes, identified within an enlarged panel of CTCL associated genes, revealed their reduction in almost 70% of SS patients as well as a significant decline of total number of mutations (SNVs) during ECP treatment. Several mutated genes persisted post-therapy, representing novel candidates associated with ECP resistance that could also have a potential prognostic relevance. Notably, these genes mainly converge on pathways related to DNA repair (ATR, ATRIP, POLD1, TP53, TP53BP1/2) which might represent novel targets to be explored in combination with ECP.ConclusionsThis is the first evaluation in SS of expressed mutations in a large panel of CTCL-driver genes. Also innovative is the monitoring of mutated genes in patients’ malignant lymphocytes during ECP, a first-line treatment of CTCL, which highlights novel candidates associated with ECP resistance that might unmask novel pharmacological vulnerabilities to be exploited during ECP for a personalized treatment.
Supplementary Figure 2 from Identification of Key Regions and Genes Important in the Pathogenesis of Sézary Syndrome by Combining Genomic and Expression Microarrays
Background: The neutrophil/lymphocyte ratio (NLR) at baseline has been demonstrated to correlate with higher stages of disease and to be a prognostic factor in numerous cancers. However, its function as a prognostic factor for mycosis fungoides (MF) has not been yet clarified.Objective: Our work aimed to assess the association of the NLR with different stages of MF and to outline whether higher values of this marker are related to a more aggressive MF.Methods: We retrospectively calculated the NLRs in 302 MF patients at the moment of diagnosis. The NLR was obtained using the complete blood count values.Results: The median NLR among patients with early stage disease (low-grade IA-IB-IIA) was 1.88, while the median NLR for patients with high-grade MF (IIB-IIIA-IIIB) was 2.64. Statistical analysis showed positive associations of advanced MF stages with NLRs higher than 2.3. Conclusions: Our analysis demonstrates that the NLR represents a cheap and easily available parameter functioning as a marker for advanced MF. This might guide physicians in recognizing patients with advanced stages of disease requiring a strict follow-up or an early treatment.
Supplementary Table 3 from Identification of Key Regions and Genes Important in the Pathogenesis of Sézary Syndrome by Combining Genomic and Expression Microarrays
Supplementary Figure 1 and Table 1 from CXCL13 Is Highly Produced by Sézary Cells and Enhances Their Migratory Ability via a Synergistic Mechanism Involving CCL19 and CCL21 Chemokines
Genome Data Link from Identification of Key Regions and Genes Important in the Pathogenesis of Sézary Syndrome by Combining Genomic and Expression Microarrays
Supplementary Figure 1 from Identification of Key Regions and Genes Important in the Pathogenesis of Sézary Syndrome by Combining Genomic and Expression Microarrays
Supplementary Table 4 from Identification of Key Regions and Genes Important in the Pathogenesis of Sézary Syndrome by Combining Genomic and Expression Microarrays
Sézary syndrome (SS) is an aggressive variant of cutaneous t-cell lymphoma characterized by the accumulation of neoplastic CD4+ lymphocytes—the SS cells—mainly in blood, lymph nodes, and skin. The tumor spread pattern of SS makes this lymphoma a unique model of disease that allows a concurrent blood and skin sampling for analysis. This review summarizes the recent studies highlighting the transcriptional programs triggered by the crosstalk between SS cells and blood–skin microenvironments. Emerging data proved that skin-derived SS cells show consistently higher activation/proliferation rates, mainly driven by T-cell receptor signaling with respect to matched blood SS cells that instead appear quiescent. Biochemical analyses also demonstrated an hyperactivation of PI3K/AKT/mTOR, a targetable pathway by multiple inhibitors currently in clinical trials, in skin SS cells compared with a paired blood counterpart. These results indicated that active and quiescent SS cells coexist in this lymphoma, and that they could be respectively treated with different therapeutics. Finally, this review underlines the more recent discoveries into the heterogeneity of circulating SS cells, highlighting a series of novel markers that could improve the diagnosis and that represent novel therapeutic targets (GPR15, PTPN13, KLRB1, and ITGB1) as well as new genetic markers (PD-1 and CD39) able to stratify SS patients for disease aggressiveness.
Despite the significant improvements in advanced melanoma therapy, there is still a pressing need for biomarkers that can predict patient response and prognosis, and therefore support rational treatment decisions. Here, we investigated whether circulating miRNAs could be biomarkers of clinical outcomes in patients treated with targeted therapy. Using next-generation sequencing, we profiled plasma miRNAs at baseline and at progression in patients treated with BRAF inhibitors (BRAFi) or BRAFi + MEKi. Selected miRNAs associated with response to therapy were subjected to validation by real-time quantitative RT-PCR. Receiver Operating Characteristics (ROC), Kaplan–Meier and univariate and multivariate Cox regression analyses were performed on the validated miR-1246 and miR-485-3p baseline levels. The median baseline levels of miR-1246 and miR-485-3p were significantly higher and lower, respectively, in the group of patients not responding to therapy (NRs) as compared with the group of responding patients (Rs). In Rs, a trend toward an increase in miR-1246 and a decrease in miR-485-3p was observed at progression. Baseline miR-1246 level and the miR-1246/miR-485-3p ratio showed a good ability to discriminate between Rs and NRs. Poorer PFS and OS were observed in patients with unfavorable levels of at least one miRNA. In multivariate analysis, a low level of miR-485-3p and a high miR-1246/miR-485-3p ratio remained independent negative prognostic factors for PFS, while a high miR-1246/miR-485-3p ratio was associated with an increased risk of mortality, although statistical significance was not reached. Evaluation of miR-1246 and miR-485-3p baseline plasma levels might help clinicians to identify melanoma patients most likely to be unresponsive to targeted therapy or at higher risk for short-term PFS and mortality, thus improving their management.
The aim of our retrospective study was to evaluate the efficacy of a continuous therapy with a lower dosage of gemcitabine compared to those usually administered in patients with cutaneous T cell lymphomas (CTCL). Twenty-two patients received different dosages of gemcitabine. Dosage and schedule of the drug were chosen on the basis of clinical features. Gemcitabine was given at 1000 mg every 15 days in 13 patients (four mycosis fungoides [MF], nine Sezary syndrome [SS]); at 1000 mg at days +1, +8, +15 in six cases (three MF, three SS). All patients had been previously treated: four patients had received both skin directed and systemic treatments. Eighteen patients had received photopheresis, IFN, chemotherapy and immunotherapy. The objective response rate (CR + PR) among all patients was 54.5% (12 of 22 patients) with a CR of 4.5% (one of 22 patients) and a PR of 50% (11 of 22 patients). Patients with SS had an ORR of 61.5% (eight of 13 patients) with one CR (7%) and seven PR (53.8%); patients with MF showed an ORR of 55.6% (five of nine patients) but no patients experienced CR (0%). The schedule with the highest efficacy and the lowest toxicity profile was 1000 mg every 15 days. Median progression free survival and overall survival in all patients were 17 and 45 months respectively. Gemcitabine was generally well tolerated. We have demonstrated that a much lower dose of gemcitabine (1000 mg once every 15 days) in patients with advanced-stage and refractory CTCL can lead to a durable response, with tolerable and manageable adverse effects.
Cutaneous T-cell lymphomas are characterized by heterogeneity of clinical variants, further complicated by genomic and microenvironmental variables. Furthermore, in vitro experiments are hampered by the low culture efficiency of these malignant cells. Animal models are essential for understanding the pathogenetic mechanisms underlying malignancy and for discovering new anticancer treatments. They are divided into two main categories: those in which tumors arise in the host owing to genetic modifications and those that use tumor cell transplantation. In this review, we summarize the attempts to decipher the complexity of the pathogenesis of cutaneous T-cell lymphoma by exploiting genetically modified and xenograft models.
Sézary syndrome (SS) is a rare and aggressive variant of cutaneous T-cell lymphoma. It is characterized by the copresence of CD4+ neoplastic lymphocytes, named Sezary cells, mainly in the blood, lymph nodes, and skin where they induce chronic inflammation that in turn impairs the patient's QOL and fuels neoplastic cells. SS is not readily cured, but immunotherapy is becoming an effective option for this lymphoma. In this study, we investigated, in a large cohort of patients with SS, the expression and function of the immune checkpoint molecule CD39, which degrades proinflammatory extracellular adenosine triphosphate. We showed that the SNP rs10748643 A/G within the ENTPD1 gene coding for the CD39 protein controls its expression level. Patients carrying the A/G‒G/G genotype showed a significantly higher frequency of clonal CD4+CD39+ SS cells than those carrying the A/A genotype. Different from other cancers, high CD39 expression correlates with a better prognosis. Comparing primary G/G with A/A lymphoma cells, we observed that G/G SS cells have a higher ability to degrade adenosine triphosphate, increased apoptotic susceptibility, and upon activation, reduced IL-2 production. Accordingly, CD39 enzymatic inhibition enhances SS cell viability and IL-2 production on activation. These results strongly suggest a special caution for SS treatment with therapeutic inhibitors of CD39.
Despite the recent availability of several new drugs in hemato-oncology, T-cell lymphomas are still incurable and PD-1 blockade could represent a therapeutic chance for selected patients affected by these malignancies, although further studies are required to understand the biological effects of anti-PD-1 mAbs on neoplastic T-cells and to identify biomarkers for predicting and/or monitoring patients’ response to therapy. Sezary Syndrome (SS) represents a rare and aggressive variant of cutaneous T cell lymphoma (CTCL) with a life expectancy of less than 5 years, characterized by the co-presence of neoplastic lymphocytes mainly in the blood, lymph nodes and skin. In this study we analyzed longitudinal blood samples and lesional skin biopsies of a patient concurrently affected by SS and melanoma who underwent 22 nivolumab administrations. In blood, we observed a progressive reduction of SS cell number and a raise in the percentage of normal CD4+ and CD8+ T cells and NK cells over total leukocytes. Eight weeks from the start of nivolumab, these immune cell subsets showed an increase of Ki67 proliferation index that positively correlated with their PD-1 expression. Conversely, SS cells displayed a strong reduction of Ki67 positivity despite their high PD-1 expression. On skin biopsies we observed a marked reduction of SS cells which were no more detectable at the end of therapy. We also found an increase in the percentage of normal CD4+ T cells with a concomitant decrease of that of CD8+ and CD4+ CD8+ T cells, two cell subsets that, however, acquired a cytotoxic phenotype. In summary, our study demonstrated that nivolumab marked reduced SS tumor burden and invigorated immune responses in our patient. Our data also suggest, for the first time, that Ki67 expression in circulating neoplastic and immune cell subsets, as well as an enrichment in T cells with a cytotoxic phenotype in lesional skin could be valuable markers to assess early on treatment SS patients’ response to PD-1 blockade, a therapeutic strategy under clinical investigation in CTCL (ClinicalTrials.gov NCT03385226, NCT04118868).
Activation of Akt/Protein Kinase B (PKB) by phosphatidylinositol-3-kinase (PI3K) controls several cellular functions largely studied in mammalian cells, including preimplantation embryos. We previously showed that early mouse embryos inherit active Akt from oocytes and that the intracellular localization of this enzyme at the two-cell stage depends on the T-cell leukemia/lymphoma 1 oncogenic protein, Tcl1. We have now investigated whether Akt isoforms, namely Akt1, Akt2 and Akt3, exert a specific role in blastomere proliferation during preimplantation embryo development. We show that, in contrast to other Akt family members, Akt2 enters male and female pronuclei of mouse preimplantation embryos at the late one-cell stage and thereafter maintains a nuclear localization during later embryo cleavage stages. Depleting one-cell embryos of single Akt family members by microinjecting Akt isoform-specific antibodies into wild-type zygotes, we observed that: (a) Akt2 is necessary for normal embryo progression through cleavage stages; and (b) the specific nuclear targeting of Akt2 in two-cell embryos depends on Tcl1. Our results indicate that preimplantation mouse embryos have a peculiar regulation of blastomere proliferation based on the activity of the Akt/PKB family member Akt2, which is mediated by the oncogenic protein Tcl1. Both Akt2 and Tcl1 are essential for early blastomere proliferation and embryo development.
Introduction: Cutaneous T-cell Lymphomas (CTCLs) are extranodal non-Hodgkin’s lymphomas deriving from neoplastic transformation of T lymphocytes that home to the skin. Mycosis fungoides (MF) is the most diffuse form, usually having an indolent course but presenting in some cases as an aggressive disease with a poor prognosis. Sézary syndrome (SS) is a rare and aggressive variant, with erythroderma, leukemia, and lymph node involvement. Despite recent advances, CTCLs are still incurable cancers and the clinical symptoms are highly disabling. Among the landscape of genomic alterations identified in CTCL, we and others have described alterations of the PI3K pathway members (loss of PTEN, LKB1 and PDCD4, and gain of p70S6K). As a consequence, several SS patients show hyper-activation of PI3K/AKT/mTOR pathway. Hence, inhibition of this pathway represents a potential therapeutic choice against CTCL. Objective: In this work, we investigated the therapeutic potential of the dual-PI3K/mTOR inhibitor PF-04691502 (hereafter PF-502) against CTCL. Materials and Methods: PF-502 therapeutic efficacy was evaluated in four CTCL cell lines and in patient-derived SS cells, for its ability to inhibit cell growth, to induce apoptosis and to inhibit chemotaxis toward the chemokine SDF-1. Moreover, to evaluate PF-502 therapeutic effects in vivo we used a xenograft mouse model, consisting of nude mice transplanted with the CTCL-derived HH cell line. Results: PF-502 inhibited the cell growth of all the CTCL cell lines (0.07-0.32 µM, IC50 range), and of tumor cells derived from six SS patients (2.3 µM, mean IC50). The mechanism of action of PF-502 in CTCL cell lines was a combination of apoptosis induction and G1 block, while in SS patients it was mostly based on a strong apoptosis induction. Of note, PF-502 showed an only modest effect in T-lymphocytes from 3 healthy donors. PF-502 inhibited also cell migration toward the chemokine SDF-1, in both the systems. This result might have an important clinical implication because we have recently demonstrated that malignant lymphocytes are activated by the skin microenvironment. Thus, blocking the homing to the skin could affect the disease course. Finally, PF-502 has a robust antitumor activity in the xenograft mouse model, by reducing tumor volume (400 mm3 in treated mice vs 936 mm3 in controls) as well as tumor weight (0.2 g in treated mice vs 0.56 g in controls). Moreover, the Kaplan-Meier curve, in these mice, revealed that PF-502 treatment prolongs survival (P<0.005). Conclusions: Our results strongly support the therapeutic potential of targeting PI3K/AKT/mTOR pathway in CTCL. Citation Format: Antonella Bresin, Cristina Cristofoletti, Francesca Monzo, Elisabetta Caprini, Mauro Helmer Citterich, Alessandra Frezzolini, Alessandro Monopoli, Roberto Benucci, Maria Cantonetti, Enrico Scala, Giandomenico Russo, Maria Grazia Narducci. The PI3K/mTOR dual inhibitor PF-04691502 shows antitumor activity in Sezary cells and in a xenograft mouse model [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2019; 2019 Mar 29-Apr 3; Atlanta, GA. Philadelphia (PA): AACR; Cancer Res 2019;79(13 Suppl):Abstract nr 3912.
Sezary syndrome (SS) is a primary cutaneous T-cell lymphoma (CTCL) characterized by erythroderma, lymphadenopathy and leukemic involvement of the peripheral blood. The high relapse rates and a poor prognosis complicate its clinical course and treatment. The phenotypic characterization and genomic/transcriptomic approaches revealed high heterogeneity of Sezary cells, identifying a wide spectrum of biomarkers implicated in the development of this lymphoma. In this context, we discuss the major malignancy-related biomarkers reported in the literature for the diagnosis, prognosis and staging of SS. The hope for a single reliable diagnostic marker appears increasingly unrealistic, but the discovery of multiple potential biomarkers, with pathogenetic implications, paves the road to promising personalized therapies in SS.
The phosphoinositide 3-kinase(PI3K)/protein kinase B (AKT)/ mammalian target of rapamycin (mTOR) pathway is hyperactivated in many tumors, as well as in cutaneous T-cell lymphoma (CTCL), which includes the mycosis fungoides and the aggressive variant known as Sezary syndrome (SS). TORC1 signaling is activated in SS cells by cytokines and chemokines, which are overexpressed in SS tissues. Furthermore, the recurrent copy number variation of genes belonging to this cascade, such as PTEN, LKB1, and P70S6K, contributes to the hyperactivation of the pathway. The aim of this study was to investigate the therapeutic potential of mTOR inhibitors in CTCL. We compared the efficacy of three rapalogs (rapamycin, temsirolimus, and everolimus) and the dual-mTOR/PI3K inhibitor PF-04691502 (hereinafter PF-502) in four CTCL cell lines. PF-502 was revealed to be the most effective inhibitor of cell growth. Interestingly, PF-502 also exerted its antitumor activity in patient-derived CTCL cells and in a xenograft mouse model, where it induced significant apoptosis and increased survival of treated mice. Furthermore, we found an inverse correlation between PTEN gene expression and the ability of PF-502 to induce apoptosis in SS cells. Our data strongly support the therapeutic potential of dual PI3K/mTOR inhibitors in CTCL.