The type of cell death has proven to play a crucial role in cancer immunotherapy efficacy. Immunogenic cell death (ICD) enhances tumor adjuvanticity and antigenicity by releasing danger signals and altering the immune peptidome. The immunogenicity of ferroptosis, an iron-dependent form of cell death, remains uncertain. Here, we show that dendritic cell (DC) vaccines loaded with ferroptotic lysates protect mice against glioma growth, inducing IFN-γ production, and promoting robust CD8⁺ T cell infiltration, activation, and effector memory formation in the tumor microenvironment. The intrinsic immunogenicity of ferroptosis was independent of the glioma type and the ferroptosis inducer. Instead, it critically required the presence of the damage-associated molecular patterns calreticulin and ATP, rather than involving HMGB1-TLR4 signaling. However, supplementing these DAMPs into DC vaccines loaded with non-ICD lysates did not restore efficacy to the level of the ferroptosis-based DC vaccine, suggesting a more complex mechanism beyond a purely DAMP-mediated effect. These findings demonstrate that ferroptosis-loaded DC vaccines elicit a potent, tumor-specific immune response, capable of eradicating intracranial gliomas in mice, which highlights their potential in cancer immunotherapy.
Molecular characterization of human monogenic inborn errors of T cell immunity provides both biological insights and medical progress. We report rare biallelic deleterious variants in GTF3A, encoding transcription factor IIIA (TFIIIA), a zinc-finger protein required for transcription and chaperoning of 5S ribosomal RNA (rRNA). These variants were identified in ten patients from eight unrelated families and eight countries presenting with either T-B+NK+ severe combined immunodeficiency (SCID) or combined immune deficiency (CID), characterized by T cell lymphopenia and variable antibody deficiency. The GTF3A variants disrupt TFIIIA function through distinct mechanisms, including defective DNA binding, aberrant nuclear localization, and reduced protein stability compromising TFIIIA-mediated transcription and chaperoning of 5S rRNA. Using artificial thymic organoids derived from TFIIIA-deficient CD34+ progenitors, an early developmental arrest at the T cell commitment stage was documented in vitro. Zebrafish deficient for gtf3aa recapitulated the impaired thymocyte development in vivo. Together, these findings establish TFIIIA deficiency as a novel cause of (S)CID, expanding the genetic and mechanistic landscape of inborn errors of T cell immunity and uncovering an essential role for TFIIIA in human adaptive immunity.
Background: Immune checkpoint inhibitors (ICIs) have transformed cancer therapy but are often complicated by immune-related adverse events, particularly colitis. With increasing ICI use, understanding the clinical course and management of ICI-induced colitis is essential. Objectives: To characterize the clinical, endoscopic, and histological features of ICI-induced colitis and evaluate treatment outcomes, focusing on the use of corticosteroids and second-line biologicals (infliximab and vedolizumab) in a real-world setting. Methods: A retrospective cohort study was conducted at Ghent University Hospital, including 77 adult patients diagnosed with ICI-induced colitis in between 2012 and 2023. Clinical, biochemical, endoscopic, and histological data were analyzed, along with treatment response and safety outcomes. Results: Patients with ICI-induced colitis received anti-PD-1/PD-L1 (64.9%), anti-CTLA-4 (9.1%), or combination of both (26.0%). In patients with normal endoscopic findings, histological signs of colitis were observed in 88.0%. Combination ICI therapy was associated with higher Mayo scores (p = 0.029) and increased need for biologicals (p = 0.011) compared to anti-PD-1/PD-L1 monotherapy. Clinical response rates were 79.6% with corticosteroids and 100.0% with biologicals. Rechallenge with ICIs lead to a 17.4% relapse rate. No colitis-related deaths were observed. Conclusions: In this retrospective study, we demonstrate that random colon biopsies reveal microscopic ICI-induced colitis in most patients with absence of endoscopic disease. Combination ICI therapy predicts a corticosteroid-refractory course, supporting the need for early escalation to biologicals. ICI rechallenge appears feasible, as relapse rates were relatively low and colitis morbidity remained manageable. Prospective studies are needed to refine therapeutic strategies and improve patient outcomes.
OBJECTIVES:Extensive-stage small cell lung cancer (SCLC) has a dismal prognosis. Despite initial responsiveness to first-line platinum-etoposide chemotherapy, most patients relapse within six months. Managing disease progression, particularly in platinum-resistant or refractory cases, remains challenging. Topotecan is the only drug approved in the European Union for the second-line treatment of SCLC but is associated with modest clinical activity and high rates of hematological toxicities. Temozolomide, an oral alkylating agent, has been investigated as a viable alternative for treating relapsed SCLC. This study presents the largest real-world cohort of SCLC-patients treated with temozolomide. METHODS:We performed a retrospective analysis of patients with relapsed SCLC treated with temozolomide at a single academic hospital in Belgium. Temozolomide was administered at a fixed dose of 250 mg orally once daily on days 1-5 of each 28-day cycle. Data on activity (overall response rate (ORR), disease control rate (DCR), median progression-free survival (mPFS) and median overall survival (mOS)) and safety (treatment related adverse events (TRAE)) were collected. RESULTS:Between February 2011 and May 2023, a total of 48 patients with relapsed SCLC were treated with temozolomide of which 47 patients, median age 61 years, were included in this real-world analysis. The majority of the patients were heavily pretreated with 57.4 % having received two or more prior systemic therapies. An objective response was observed in 14.9 % and the DCR was 23.4 %. The median PFS was 1.7 months (95 % CI 1.5-1.9) and the median OS was 3.2 months (95 % CI 2.3-4.1). Grade 3-4 TRAEs occurred in 34 % of the patients. CONCLUSIONS:Temozolomide demonstrated modest clinical activity in this real-world effectiveness analysis of patients with relapsed SCLC. Nevertheless, given its comparable response rate and milder toxicity profile compared to topotecan, temozolomide should be considered as a viable alternative to topotecan for treating relapsed SCLC.
Interferon-γ (IFN-γ) is a key mediator in antitumor immunity and immunotherapy responses, yet its clinical applications remain restricted to chronic granulomatous disease and malignant osteopetrosis. IFN-γ effectiveness as a standalone treatment has shown limited success in clinical trials and its potential for synergistic effects when combined with immunotherapies is under clinical exploration. A particularly compelling combination is that of IFN-γ with Toll-like receptor (TLR) agonists that holds significant promise for cancer treatment. Previously, we demonstrated chitosan (Ch)/poly(γ-glutamic acid) (γ-PGA) nanoparticles (NPs), known to activate TLRs, as adjuvants to radiotherapy by remodeling breast tumor microenvironment and systemic immunosuppression. These immunomodulatory abilities make Ch/γ-PGA NPs promising adjuvants to IFN-γ-based therapies.Here, we addressed the synergistic therapeutic potential of combining Ch/γ-PGA NPs with IFN-γ therapy in the 4T1 orthotopic breast tumor mouse model. While control animals (placebo-treated) had progressive tumor growth and lung metastases, those treated with either NPs or IFN-γ alone had a significant slower tumor growth. Remarkably, primary tumor growth was halted throughout the duration of the treatment when both treatments were combined. Although the animals did not achieve durable complete responses upon treatment withdrawal, it was notable that the NPs plus IFN-γ group presented a lower lung metastatic burden compared to other groups. Systemically, the combination therapy slightly attenuated immunosuppression and the percentage of splenic myeloid cells, while increased the percentage of T helper 1 cells and of cytotoxic T cells. Overall, this proof-of-concept study suggests that Ch/γ-PGA NPs potentiate IFN-γ effects to reduce tumor progression, presenting a novel approach for anticancer strategies.
BACKGROUND:Sotorasib 960 mg once daily is approved to treat KRAS G12C-mutated locally advanced or metastatic non-small cell lung cancer (NSCLC). Sotorasib exhibits non-dose proportional pharmacokinetics and clinical responses at lower doses; therefore, we evaluated the efficacy and safety of sotorasib 960 mg and 240 mg. METHODS:In this phase 2, randomized, open-label study, adults with KRAS G12C-mutated advanced NSCLC received sotorasib 960 mg or 240 mg once daily. Primary endpoints were objective response rate (ORR) and safety. Secondary endpoints included disease control rate (DCR), progression-free survival (PFS), overall survival (OS), and pharmacokinetics. The study was not powered for formal statistical hypothesis testing. RESULTS:In the 960 mg group (n = 104), ORR was 32.7 % and DCR was 86.5 %. In the 240 mg group (n = 105), ORR was 24.8 % and DCR was 81.9 %. Median PFS was 5.4 months (960 mg) and 5.6 months (240 mg). At a median follow-up of 17.5 months, median OS was 13.0 months (960 mg) and 11.7 months (240 mg). AUC0-24 h and Cmax were 1.3-fold numerically higher with the 960 mg dose. Treatment-emergent adverse events (TEAEs, ≥10 %) for 960 mg and 240 mg doses, respectively, were diarrhea (39.4 %; 31.7 %), nausea (23.1 %; 19.2 %), increased alanine aminotransaminase (14.4 %; 17.3 %), and increased aspartate aminotransferase (13.5 %; 13.5 %). CONCLUSIONS:Patients treated with sotorasib 960 mg once daily had numerically higher ORR and DCR, and longer DOR and OS, than patients treated with 240 mg in this descriptive analysis. TEAEs were manageable with label-directed dose modifications. CLINICAL TRIAL REGISTRATION:NCT03600883.
Sotorasib 960 mg daily is approved in pretreated KRAS G12C advanced NSCLC. Due to its non-linear pharmacokinetics (PK) and clinical responses seen at lower doses, we evaluated sotorasib 960 mg vs 240 mg in an open-label, phase 2, post-marketing study (NCT03600883).
Cancer cells effectively evade immune surveillance, not only through the well-known PD-1/PD-L1 pathway but also via alternative mechanisms that impair patient response to immune checkpoint inhibitors. We present a novel co-culture model that pairs a reporter T-cell line with different melanoma cell lines that have varying immune evasion characteristics. We developed a scalable high-throughput lentiviral arrayed CRISPR interference (CRISPRi) screening protocol to conduct gene perturbations in both T-cells and melanoma cells, enabling the identification of genes that modulate tumor immune evasion. Our study functionally validates the co-culture model system and demonstrates the performance of the CRISPRi-screening protocol by modulating the expression of known regulators of tumor immunity. Together, our work provides a robust framework for future research aimed at systematically exploring mechanisms of tumor immune evasion.
Non-small cell lung cancer (NSCLC) is known for high relapse rates despite resection in early stages. present the results of a phase I clinical trial in which a dendritic cell (DC) vaccine targeting patient neoantigens is evaluated in patients with resected NSCLC. Vaccine manufacturing is feasible enrolled patients. Toxicity is limited to grade 1-2 adverse events. Systemic T cell responses in five out of six vaccinated patients, with T cell responses remaining detectable up to 19 months nation. Single-cell analysis indicates that the responsive T cell population is polyclonal and exhibits entire spectrum of T cell differentiation states, including a naive-like state, but excluding exhausted states. Three of six vaccinated patients experience disease recurrence during the follow-up period Collectively, these data support the feasibility, safety, and immunogenicity of this treatment NSCLC.
Transcriptomic profiling of blood immune cells offers a promising alternative to invasive, sampling bias-prone tissue-based biomarker assays for predicting immune checkpoint inhibitor (ICI) therapy response in non-small cell lung cancer (NSCLC) patients. However, the optimal analytical approach to identify systemic correlates of response still needs to be explored. We collected peripheral blood mononuclear cells and whole blood (WB) samples from 33 ICI-treated NSCLC patients before ICI treatment and at the first response evaluation. After bulk polyadenylated RNA-sequencing, we assessed differences in gene expression profiles between non-responders and responders using differential expression analysis, single sample gene set enrichment analysis (ssGSEA), and cell type deconvolution. We evaluated gene expression values, ssGSEA scores, and deconvolved cell type proportions to distinguish non-responders from responders via ROC curve (AUC) analysis, training a logistic regression classification model. Gene expression values and deconvolved proportions yielded the best results with WB samples after treatment (AUC = 0.87 and 0.85, respectively). Overall, ssGSEA scores showed superior classification performance across all sample types and timepoints (AUC > 0.7). In conclusion, transcriptomic analysis through ssGSEA demonstrated the best performance as a non-invasive biomarker for predicting clinical benefit in ICI-treated NSCLC patients, with gene expression and deconvolution on post-treatment WB samples also showing promising results.
Adjuvant immunotherapy can potentially control subclinical residual disease in resected non-small cell lung cancer and decrease relapse rates. However classical vaccination approaches have failed so far. Dendritic cells (DCs) have the power to elicit powerful antitumoral T-cell responses, while mutanome-derived neoantigens have the potential to steer immune responses with high tumor specificity. Here we report on a first in human trial of an autologous dendritic cell therapy presenting mRNA-encoded, patient-individual tumor neoantigens.
The use of immune checkpoint inhibitors (ICIs) continues to transform the therapeutic landscape of non-small cell lung cancer (NSCLC), with these drugs now being evaluated at every stage of the disease. In contrast to these advances, little progress has been made with respect to reliable predictive biomarkers that can inform clinicians on therapeutic efficacy. All current biomarkers for outcome prediction, including PD-L1, tumor mutational burden or complex immune gene expression signatures, require access to tumor tissue. Besides the invasive nature of the sampling procedure, other disadvantages of tumor tissue biopsies are the inability to capture the complete spatial heterogeneity of the tumor and the difficulty to perform longitudinal follow-up on treatment. A concept emerges in which systemic immune events developing at a distance from the tumor reflect local response or resistance to immunotherapy. The importance of this cancer 'macroenvironment', which can be deciphered by comprehensive analysis of peripheral blood immune cell subsets, has been demonstrated in several cutting-edge preclinical reports, and is corroborated by intriguing data emerging from ICI-treated patients. In this review, we will provide the biological rationale underlying the potential of blood immune cell-based biomarkers in guiding treatment decision in immunotherapy-eligible NSCLC patients. Finally, we will describe new techniques that will facilitate the discovery of more immune cell subpopulations with potential to become predictive biomarkers, and reflect on ways and the remaining challenges to bring this type of analysis to the routine clinical care in the near future.
BackgroundCheckMate 817, a phase 3B study, evaluated flat-dose nivolumab plus weight-based ipilimumab in patients with metastatic non-small cell lung cancer (NSCLC). Here, in this research, we report on first-line treatment in patients with Eastern Cooperative Oncology Group (ECOG) performance status (PS) 0–1 (cohort A) and special populations (cohort A1: ECOG PS 2; or ECOG PS 0–1 with untreated brain metastases, renal impairment, hepatic impairment, or controlled HIV infection).MethodsCohorts A and A1 received nivolumab 240 mg every 2 weeks plus ipilimumab 1 mg/kg every 6 weeks. The primary endpoint was the incidence of grade 3–4 and grade 5 immune-mediated adverse events (IMAEs; adverse events (AEs) deemed potentially immune-related, occurring <100 days of last dose, and treated with immune-modulating medication (except endocrine events)) and treatment-related select AEs (treatment-related AEs with potential immunological etiology requiring frequent monitoring/intervention, reported between first dose and 30 days after the last dose) in cohort A; efficacy endpoints were secondary/exploratory. In cohort A1, safety/efficacy assessment was exploratory.ResultsThe most common grade 3–4 IMAEs were pneumonitis (5.1%), diarrhea/colitis (4.9%), and hepatitis (4.6%) in cohort A (N=391) and diarrhea/colitis (3.5%), hepatitis (3.5%), and rash (3.0%) in cohort A1 (N=198). The most common grade 3–4 treatment-related select AEs were hepatic (5.9%), gastrointestinal (4.9%), and pulmonary (4.6%) events in cohort A and gastrointestinal (4.0%), skin (3.5%), and endocrine (3.0%) events in cohort A1. No grade 5 IMAEs or treatment-related select AEs occurred. Treatment-related deaths occurred in 4 (1.0%) and 3 (1.5%) patients in cohorts A and A1, respectively. Three-year overall survival (OS) rates were 33.7% and 20.5%, respectively.ConclusionsFlat-dose nivolumab plus weight-based ipilimumab was associated with manageable safety and durable efficacy in cohort A, consistent with data from phase 3 metastatic NSCLC studies. Special populations of cohort A1 including patients with ECOG PS 2 or ECOG PS 0–1 with untreated brain metastases had manageable treatment-related toxicity and clinically meaningful 3-year OS rate.Trial registration numberNCT02869789.
Diagnosis of lung cancer requires histological examination of a tissue sample, which in turn requires an invasive procedure that cannot always be obtained. Circulating tumor DNA can be reliably detected in blood samples of advanced-stage lung cancer patients and might also be a minimally invasive alternative for early-stage lung cancer detection. We wanted to explore the potential of targeted deep sequencing as a test for the diagnosis of early-stage lung cancer in combination with imaging. Mutation detection on cell-free DNA from pretreatment plasma samples of 51 patients with operable non-small cell lung cancer was performed and results were compared with 12 control patients undergoing surgery for a non-malignant lung lesion. By using a variant allele frequency threshold of 1%, somatic variants were detected in 23.5% of patients with a median variant allele fraction of 3.65%. By using this threshold, we could almost perfectly discriminate early-stage lung cancer patients from controls. Our study results are discussed in the light of those from other studies. Notwithstanding the potential of today's techniques for the use of liquid biopsy-based cell-free DNA analysis, sensitivity of this application for early-stage lung cancer detection is currently limited by a biological background of somatic variants with low variant allele fraction.
Introduction:Malignant pleural mesothelioma (MPM) is a lethal cancer for which early-stage diagnosis remains a major challenge. Volatile organic compounds (VOCs) in breath proved to be potential biomarkers for MPM diagnosis, but translational studies are needed to elucidate which VOCs originate from the tumor itself and thus are specifically related to MPM cell metabolism.Methods:An in vitro model was set-up to characterize the headspace VOC profiles of six MPM and two lung cancer cell lines using thermal desorption-gas chromatography-mass spectrometry. A comparative analysis was carried out to identify VOCs that could discriminate between MPM and lung cancer, as well as between the histological subtypes within MPM (epithelioid, sarcomatoid and biphasic).Results:VOC profiles were identified capable of distinguishing MPM (subtypes) and lung cancer cells with high accuracy. Alkanes, aldehydes, ketones and alcohols represented many of the discriminating VOCs. Discrepancies with clinical findings were observed, supporting the need for studies examining breath and tumor cells of the same patients and studying metabolization and kinetics of in vitro discovered VOCs in a clinical setting.Conclusion:While the relationship between in vitro and in vivo VOCs is yet to be established, both could complement each other in generating a clinically useful breath model for MPM.
INTRODUCTION:We present the results of the COVID-19 rule-out protocol at Ghent University Hospital, a step-wise testing approach which included repeat NFS SARS-CoV-2 rRT-PCR, respiratory multiplex RT-PCR, low-dose chest CT and bronchoscopy with BAL to confirm or rule-out SARS-CoV-2 infection in patients admitted with symptoms suggestive of COVID-19.RESULTS:Between 19 March 2020 and 30 April 2020, 455 non-critically ill patients with symptoms suspect for COVID-19 were admitted. The initial NFS for SARS-CoV-2 rRT-PCR yielded 66.9%, the second NFS 25.4% and bronchoscopy with BAL 5.9% of total COVID-19 diagnoses. In the BAL fluid, other respiratory pathogens were detected in 65% (13/20) of the COVID-19 negative patients and only in 1/7 COVID-19 positive patients. Retrospective antibody testing at the time around BAL sampling showed a positive IgA or IgG in 42.9 % of the COVID-19 positive and 10.5% of the COVID-19 negative group. Follow-up serology showed 100% COVID-19 positivity in the COVID-19 positive group and 100% IgG negativity in the COVID-19 negative group.CONCLUSION:In our experience, bronchoscopy with BAL can have an added value to rule-in or rule-out COVID-19 in patients with clinical and radiographical high-likelihood of COVID-19 and repeated negative NFS testing. Furthermore, culture and respiratory multiplex PCR on BAL fluid can aid to identify alternative microbial etiological agents in this group. Retrospective analysis of antibody development in this selected group of patients suggests that the implementation of serological assays in the routine testing protocol will decrease the need for invasive procedures like bronchoscopy.
Messenger RNA (mRNA) has become a promising tool in therapeutic cancer vaccine strategies. Owing to its flexible design and rapid production, mRNA is an attractive antigen delivery format for cancer vaccines targeting mutated peptides expressed in a tumor-the so-called neoantigens. These neoantigens are rarely shared between patients, and inclusion of these antigens in a vaccine requires the production of individual batches of patient-tailored mRNA. The authors have developed MIDRIXNEO, a personalized mRNA-loaded dendritic cell vaccine targeting tumor neoantigens, which is currently being evaluated in a phase 1 clinical study in lung cancer patients. To facilitate this study, the authors set up a Good Manufacturing Practice (GMP)-compliant production process for the manufacture of small batches of personalized neoantigen-encoding mRNA. In this article, the authors describe the complete mRNA production process and the extensive quality assessment to which the mRNA is subjected. Validation runs have shown that the process delivers mRNA of reproducible, high quality. This process is now successfully applied for the production of neoantigen-encoding mRNA for the clinical evaluation of MIDRIXNEO. To the authors' knowledge, this is the first time that a GMP-based production process of patient-tailored neoantigen mRNA has been described.
Lung cancer remains the leading cause of cancer-related death worldwide. The advent of immune checkpoint inhibitors has led to a paradigm shift in the treatment of metastatic non-small cell and small cell lung cancer. However, despite prolonged overall survival, only a minority of the patients derive clinical benefit from these treatments suggesting that the full anti-tumoral potential of the immune system is not being harnessed yet. One way to overcome this problem is to combine immune checkpoint blockade with different strategies aimed at inducing or restoring cellular immunity in a tumor-specific, robust, and durable way. Owing to their unique capacity to initiate and regulate T cell responses, dendritic cells have been extensively explored as tools for immunotherapy in many tumors, including lung cancer. In this review, we provide an update on the nearly twenty years of experience with dendritic cell-based immunotherapy in lung cancer. We summarize the main results from the early phase trials and give an overview of the future perspectives within this field.
Background The discovery of epidermal growth factor receptor oncogenic driver mutations has changed the therapeutic landscape of advanced non-small cell lung cancer in the past decade. Since the introduction of next-generation sequencing, uncommon epidermal growth factor receptor mutations are more frequently discovered. Because seldom evaluated in clinical trials, their clinical significance and response on tyrosine kinase inhibitors are less well known. Case presentation A 58-year-old Caucasian woman with no smoking history presented with advanced non-small cell lung cancer. Liver biopsy revealed an adenocarcinoma with a programmed death ligand-1 tumor proportion score of 30% and no common oncogenic driver mutations. A combination of chemotherapy and immunotherapy was started as first-line treatment. However, treatment was ceased after 18 weeks because of immune-related renal failure and disease progression. In the meantime, the next-generation sequencing results of the liver biopsy had revealed an exon 18 E709_T710delinsD mutation. Therefore, afatinib was administered, which was moderately tolerated with grade 2 paronychia and acneiform skin eruption. After 6 months, a partial response with ongoing decrease of the liver metastasis was retained. Conclusion Because of the lack of clinical trials, tumor heterogeneity, and a tyrosine kinase inhibitor affinity related to the different mutation types, it is difficult to predict the clinical outcome of tyrosine kinase inhibitor in uncommon mutations. Therefore, a therapeutic trial with tyrosine kinase inhibitor has to be considered, but the expected clinical response is lower than for common mutations.