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Non small cell lung carcinoma (NSCLC) at stage 3. A fourteen years retrospective study of 449 patients. Indications of surgery in a multidisciplinary management.

Through a fourteen years retrospective study of all the patients treated at the State University of Liège, we have focused on the survival of 449 patients with, at least, a clinical stage 3 NSCLC disease (NORMS UICC). The whole study was divided in two periods (1972-1978, period 1, and 1979-1985, period 2) because, everything remaining nearly equal as far as the clinical material was concerned, period 2 was characterized by a different therapeutic attitude. Since 1979, the NSCLC stage 3's surgical indications have been widely extended. We have performed surgical resections in patients with NSCLC N2 disease because of positive homolateral mediastinal lymph nodes or with T3 disease. This led the NSCLC stage 3 resection rate to move from 26% in period 1 to 47% in period 2. We report here the effects of such a management on the short and long term survival and the stage 3 NSCLC global prognosis. We noted a modest significant increase in the NSCLC stage 3 global prognosis with a five year survival of 4% and 6% (period 1 and 2 respectively; P = 0.03). The 172 resected patients' outcome did not change (five year survival 11% (P1) and 12% (P2]. Although patients were not randomized, our results suggest that adjuvant therapy should not be added whenever the patient underwent a complete resection. On the other hand, it seems very useful indeed whenever the resection was partial. NSCLC patient at stage 3 who underwent a complete resection achieved a 37% five years survival.

Carcinoma, Non-Small-Cell Lung

HIF1A+CSF3R+ neutrophils-dominated hypoxic niche induced metabolic reprogramming for neoadjuvant therapy resistance in NSCLC.

BACKGROUND: Non-small cell lung cancer (NSCLC) is one of the frequently occurring cancers characterized by molecular heterogeneity and multiple immune cell infiltration patterns, which are associated with treatment sensitivity and resistance. However, the specific microenvironmental cells and their mechanisms that lead to treatment resistance in patients need to be explored in greater depth. METHODS: On the basis of patients receiving neoadjuvant therapy in our center, a multicenter, multicohort NSCLC spatial transcriptome, single-cell transcriptome, T-cell receptor repertoire sequencing, bulk RNA transcriptome, phosphorylated proteome, genome mutation, and clinical data were included for a comprehensive assessment of the therapeutic and prognostic impact of HIF1A+ CSF3R+ neutrophils in NSCLC. In vitro experiments validated the functional phenotype of HIF1A+ CSF3R+ neutrophils and co-localization interactions with other cellular subpopulations. Gradient boosting machine (GBM) constructed region of interest (ROI) models for evaluation. Computer-aided drug design (CADD) was used to predict targeted small molecule drugs, and in vivo mouse models were constructed to assess the effectiveness of the combination treatment regimen. RESULTS: Centered on HIF1A+ CSF3R+ neutrophils, recruited exhausted T cells and stromal cells form a hypoxic niche within the tumor region, which was enriched in non-response patients. ROI composed of these specific cellular subpopulations, associated with senescence and glycolysis, accurately predicting NSCLC progression, prognosis, and microenvironment composition. CADD analysis identified that platycodin-D2 specifically targeted CSF3R, reducing HIF1A expression and inhibiting neutrophil activity. Combining navitoclax, platycodin-D2 with anti-programmed cell death protein 1 (PD-1) significantly suppressed tumor proliferation and improved the immunosuppressive microenvironment. CONCLUSION: Our study emphasized the role of HIF1A+ CSF3R+ neutrophils in immunotherapeutic resistance of NSCLC, constructed a microenvironmental immune dysregulation network in a hypoxic ecological niche with HIF1A+ CSF3R+ neutrophils as the center. Platycodin-D2 specifically targeted HIF1A+ CSF3R+ neutrophils, enhancing the efficacy of anti-PD-1 therapy in NSCLC.

Humans

USP2 reversed cisplatin resistance through p53-mediated ferroptosis in NSCLC.

BACKGROUND: It has demonstrated the indispensable role of ferroptosis in conferring cisplatin resistance in non-small cell lung cancer (NSCLC), as well as the involvement of ubiquitin-specific protease (USP) in regulating ferroptosis. This paper aspired to the mechanism of USP2 and ferroptosis on NSCLC cisplatin resistance. METHODS: Ubiquitin-specific protease mRNA expression, was detected through RT-qPCR. In vitro functional assays assessed the effects of USP2 overexpression on DDP resistance, cell proliferation capability, and ferroptosis markers in A549/DDP and H1299/DDP cells. Ubiquitination assays evaluated the ubiquitination levels of p53 following USP2 overexpression. Co-immunoprecipitation (Co-IP) assays confirmed the binding relationship between USP2 and p53. In vivo experiments in mice explored the specific role of the USP2-p53 axis in a xenograft tumor model. RESULTS: USP2 expression was suppressed in cisplatin-resistant NSCLC cells. USP2 overexpression inhibited cell viability in cisplatin-resistant cells. Among the ferroptosis markers, the results showed that USP2 overexpression promoted LDH release, Fe2+ level, MDA and Lipid ROS, while inhibited GPX4 activity and GSH levels. The WB results revealed that USP2 overexpression inhibited GPX4, SLC7A11 and cytoplasm p53 protein expression, while promoted the nucleus p53 protein expression. Moreover, USP2 directly bound to p53 and USP2 overexpression stabilized p53 protein by suppressing its ubiquitination. In vivo experiments further suggest that the USP2-p53 pathway plays a crucial role in regulating cisplatin sensitivity in A549/DDP cells. CONCLUSION: USP2 acted on the K305R site of p53, which resulted in its deubiquitination. This cellular process could modulate cisplatin resistance through ferroptosis in NSCLC. This study could provide a potential therapeutic target to NSCLC.

Ferroptosis

DESTINY-Lung06: trastuzumab deruxtecan and pembrolizumab as first-line treatment for HER2-overexpressing, PD-L1 TPS&#x2009;<50% NSCLC.

Non-small cell lung cancer (NSCLC) that overexpresses human epidermal growth factor receptor 2 (HER2) is associated with poor prognosis, and no HER2-targeting therapies for HER2-overexpressing NSCLC are currently approved in the first-line setting. Pembrolizumab plus pemetrexed and platinum-based chemotherapy is a recommended first-line treatment option for nonsquamous NSCLC with no actionable genomic alterations. However, improved outcomes with pembrolizumab-based therapies correlate with higher programmed death-ligand 1 (PD-L1) levels, underscoring the need for more targeted treatment options for patients with lower PD-L1 tumor proportion scores (TPS; <50%). DESTINY-Lung06 is a multicenter, open-label, randomized, phase III trial evaluating the efficacy and safety of trastuzumab deruxtecan (T-DXd) in combination with pembrolizumab in the first-line setting in patients with HER2-overexpressing (&#x2265;25% moderate/strong membrane staining), PD-L1 TPS&#x2009;<50% NSCLC. Planned enrollment will be approximately 686 patients randomly assigned to either T-DXd 5.4&#x2009;mg/kg with pembrolizumab 200&#x2009;mg intravenously every 3&#x2009;weeks (Q3W) or pembrolizumab 200&#x2009;mg plus pemetrexed 500&#x2009;mg/m2 with platinum-based chemotherapy (cisplatin 75&#x2009;mg/m2 or carboplatin under the concentration-time curve 5&#x2009;mg min/mL) intravenously Q3W. Progression-free survival by blinded independent central review and overall survival are the primary and key secondary endpoints of the study, respectively.Clinical trial registration: www.ClinicalTrials.gov identifier is NCT06899126; EudraCT identifier is 2024-515658-26-00.

First-line

A randomized trial fo three cisplatin-containing regimens in advanced non-small-cell lung cancer (NSCLC): a study of the Umbrian Lung Cancer Group.

Survival in patients with locally advanced (stage III Mo) and metastatic (Ml) non-small-cell lung cancer (NSCLC) is short. Phase II studies have reported objective responses ranging from 20% to 60% using cisplatin-based chemotherapeutic regimens, yet few have shown improvement in median survival. In our phase II pilot studies with cisplatin (CDDP) and etoposide (VP-16), we observed a 26% response rate; with CDDP, VP-16, and mitomycin-C, a 38% response rate was obtained in advanced NSCLC patients. A total of 156 consecutive patients with locally advanced and metastatic NSCLC were randomized to one of three treatment arms to determine whether the chemotherapy protocols had any effect on response rate and median survival in a large, randomized study. Arm 1 consisted of CDDP (120 mg/m2 x 3 weeks); arm 2, of CDDP (120 mg/m2) and VP-16 (100 mg/m2 given i.v. on days 1-3), repeated every 3 weeks; and arm 3, of CDDP (120 mg/m2) and VP-16 (100 mg/m2 on days 1-3) given every 3 weeks, plus mitomycin C (10 mg/m2 on days 1, 21, and 42, then every 6 weeks, for a maximal dose of 100 mg). After 71 patients had been enrolled in the study, we stopped accrual in the CDDP arm due to a lack of response [1 complete response (CR) in 24 patients; 4%] and continued enrollment in the two combination-chemotherapy arms. In the CDDP/VP-16 arm a 30% response rate [1 CR, 18 partial responses (PRs)] was obtained, and in the CDDP/VP-16 mitomycin C arm a 26% response rate (4 CRs, 11 PRs) was seen among a total of 150 evaluable patients. Responses were observed in 31% of patients with favorable performance status (PS) (ECOG 0-1) vs 14% in patients with a poor PS (ECOG 2-3). Of patients with locally advanced disease (III Mo), 17 (33%) obtained an objective response, compared with 20 patients (20%) with metastatic disease. Median survival was 18 weeks in the CDDP arm, 35 weeks in the CDDP/VP-16 arm, and 37 weeks in the CDDP/VP-16/mitomycin C arm. The median survival in the multimodal chemotherapy arms was significantly greater than that obtained with CDDP alone. Toxicity was predominantly myelosuppression in the mitomycin C-containing arm (27%, wtto grade 3-4). Our study shows that combination chemotherapy using CDDP/VP-16 is active and safe in the treatment of advanced NSCLC patients with a good performance status. The addition of mitomycin C did not improve the therapeutic response.

Adult

A Single-Arm Phase 2 Study of Sotorasib Plus Carboplatin and Pemetrexed in Patients With Advanced Nonsquamous NSCLC With KRAS G12C Mutation (WJOG14821L, SCARLET).

INTRODUCTION: The efficacy and safety of sotorasib plus platinum doublet chemotherapy in KRAS G12C-mutated nonsquamous NSCLC (nonsq NSCLC) have been previously reported with a limited follow-up period. METHODS: SCARLET is a single-arm phase 2 study involving chemotherapy-naive patients with KRAS G12C-mutated nonsq NSCLC. The participants received 960 mg daily plus four cycles of carboplatin (area under the curve = 5)/pemetrexed 500 mg/m2, followed by sotorasib/pemetrexed until disease progression. The primary end point was the overall response rate (ORR) and the secondary end points were progression-free survival (PFS), overall survival, and safety. Using plasma samples, next-generation sequencing was performed at baseline, 3 weeks, and during disease progression (the Japan Registry of Clinical Trials number 2051210086). RESULTS: Thirty patients were enrolled between October 2021 and July 2022 with a median follow-up of 14.8 months. ORR was 88.9% (80% confidence interval [CI]: 78.5%-94.8%, 95% CI: 70.8%-97.6%), median PFS was 6.6 months (95% CI: 5.3-16.7 mo), and median overall survival was 20.6 months (95% CI: 8.1 mo-not estimated). Among patients with programmed death-ligand 1 expression levels of 1% or higher and less than 1%, the ORRs were 82.3 and 100%, respectively, and the median PFS was 7.6 and 9.7 months, respectively. Using plasma samples, patients without KRAS G12C at baseline, without KRAS-related pathway co-alterations, or who cleared KRAS G12C at 3 weeks had better median PFS (16.7, 13.9, 8.7 mo, respectively). Tumor protein 53 mutations and EGFR and MET amplification were detected as acquired resistance. CONCLUSIONS: In patients with KRAS G12C-mutated nonsq NSCLC, sotorasib plus carboplatin/pemetrexed reported favorable efficacy, particularly for patients with less than 1% programmed death-ligand 1, with manageable toxicity.

Humans

MET Exon 14 Skipping Mutation in NSCLC: From Genomic Discovery to Biomarker-Guided Therapeutic Innovation.

INTRODUCTION: Non-small cell lung cancer (NSCLC) is the most common type of lung cancer, and the MET exon 14 skipping mutation is a key oncogenic driver, which promotes tumor progression and provides a new direction for precision therapy. METHODS: A systematic search of English-language literature and clinical trial data related to the MET exon 14 skipping mutation from 2020-2025 was performed to summarize the role of the mutation and therapeutic advances. RESULTS: DNA-based next-generation sequencing (NGS), RNA-based NGS, and RT-qPCR were employed as the main detection methods. Preclinical models confirmed that mutations promote tumor progression by activating the RAS/MAPK pathway. Clinical trials have reported objective remission rates (ORR) of 46-68% for first-line treatment with MET inhibitors in NSCLC patients harboring MET exon 14 skipping mutations. DISCUSSION: MET exon 14 skipping mutation as a therapeutic target for NSCLC has made significant progress, and MET inhibitors are more advantageous than chemotherapy and immunotherapy, and have been recommended by national and international guidelines as a first-line treatment option. Additionally, NGS technology has the potential to dynamically monitor tumor evolution and drugresistant mutations, thereby helping to realize precision medicine. CONCLUSION: The MET exon 14 skipping mutation is an important target for the precision treatment of NSCLC, and MET-TKIs have remarkable efficacy but a prominent problem with drug resistance. The construction of a precision medicine system encompassing diagnosis, treatment, and drug resistance management through multi-omics research, technological innovation, and international collaboration is a key direction for improving prognosis.

Humans

NSCLC in Vulnerable and Special Populations: Toward Personalized Care.

NSCLC encompasses a heterogeneous patient population whose clinical needs, biological features, and treatment outcomes differ substantially from those represented in pivotal studies. Adolescents and young adults, women, pregnant patients, individuals with actionable genomic alterations or constitutional pathogenic variants, immunocompromised patients, including those with chronic viral infections, older adults, patients with brain metastases, and survivors with second primary lung cancers remain consistently underrepresented in research programs. This limits the generalizability of current evidence and challenges the delivery of equitable precision oncology. Across these populations, distinct disease biology, differential genomic landscapes, sex- and age-related variations in pharmacology, and complex psychosocial or ethical considerations shape clinical decision-making. Advances in molecular testing and targeted therapies have improved outcomes for some subgroups; however, persistent disparities in diagnostic access, trial eligibility, and supportive care remain major barriers. In parallel, modern systemic agents including brain-penetrant targeted therapies, immunotherapy combinations, and antibody-drug conjugates have broadened therapeutic options, although their safety, effectiveness, and long-term consequences require dedicated evaluation in underrepresented populations. This review synthesizes contemporary evidence from these special NSCLC populations, highlighting shared challenges and unique considerations. We discuss implications for clinical practice, supportive care, survivorship, and research design and outline opportunities to strengthen inclusivity in precision oncology. Addressing longstanding gaps in representation, trial methodology, and structural inequities is essential to ensure that recent therapeutic advances translate into improved outcomes for the full spectrum of patients living with NSCLC.

Humans

[Current status in the treatment of inoperable non-small cell lung cancer (NSCLC)].

Advances in the treatment of inoperable non-small cell lung cancer (NSCLC) have been falling behind the recent results obtained for small cell lung cancer (SCLC) which had been considered the more malignant type with the shortest survival time. Recently, however, with the introduction of cisplatin, the results of combination chemotherapy for NSCLC have shown a degree of advancement so that an average response rate of 40% and a median survival time (MST) of 8-10 months can be obtained. Our method of combination chemotherapy, PPM (cisplatin, peplomycin, mitomycin C), resulted in an overall response rate of 44% (40% squamous, 29% adeno, 64% large) and an MST of more than 23.3 months in responders. With PFM (cisplatin, 5FU, mitomycin C), response rate was 35% and an MST of 18.7 months was obtained for adenocarcinoma responders. It can therefore be said that we have achieved a new degree of success in the treatment in NSCLC.

Adenocarcinoma

Epigenetic activation of NK-cell effector programs and caspase-8-dependent apoptosis mediates the antitumor activity of LGP in NSCLC.

BACKGROUND: Effective activation of natural killer (NK) cell cytotoxicity and caspase-8-dependent extrinsic apoptosis remains a major challenge in non-small cell lung cancer (NSCLC). Epigenetic mechanisms regulating NK cell function within the tumor microenvironment are poorly understood and rarely targeted therapeutically. METHODS: The antitumor activity of Li-Ginseng Powder (LGP), a specifically processed Panax ginseng formulation enriched in rare ginsenosides (Rh4, Rg3, Rg5, Rk1, and Rk3), was evaluated in human lung cancer A549&#x202f;cells and A549 xenograft mouse models. NK cell infiltration and activation were assessed by flow cytometry, immunoblotting, and immunohistochemistry. Whole-genome bisulfite sequencing (WGBS) was performed to analyze DNA methylation changes. The effects of LGP ginsenosides (LGG) on tumor cell apoptosis and death receptor signaling were examined in vitro. RESULTS: LGP significantly suppressed tumor growth and enhanced systemic and intratumoral NK cell activation. Promoter demethylation of NK cell effector genes, including Ncr1, Gzmb, Nktr, and Itgal, was associated with increased NK cell infiltration and activation, elevated granule-mediated cytotoxicity, and enhanced IFN-&#x3b3; signaling. In parallel, LGP treatment induced caspase-8-dependent apoptosis associated with increased expression of membrane death receptors, their ligands, FADD, and procaspase-8 in tumor tissues. In vitro, LGG upregulated these apoptosis-initiating proteins and triggered caspase-8 activation in A549&#x202f;cells independent of promoter methylation changes. Collectively, these immune-associated and tumor-intrinsic responses contributed to robust tumor suppression with a favorable systemic safety profile. CONCLUSIONS: LGP exerts dual antitumor effects characterized by enhanced NK-cell activation and increased sensitivity of tumor cells to caspase-8-dependent extrinsic apoptosis. These coordinated immune-associated and apoptosis-sensitizing effects underscore the therapeutic potential of LGP for the treatment of NSCLC.

DNA methylation

Novel Co-Occurrence of Germline EGFR p.V843I and Somatic EGFR Exon 19 Deletion in NSCLC: Insights into Reduced Sensitivity to EGFR-TKIs.

Germline EGFR pathogenic variants (PVs) are rare and define a distinct hereditary subset of NSCLC with unique clinical characteristics. Germline EGFR p.T790M is the most frequent and best characterized, with reported sensitivity to first- and second-generation EGFR-TKIs. Yet, the response of germline EGFR variants, especially the rarer ones such as p.V843I, to osimertinib remains poorly characterized. Given the very low frequency of germline non-p.T790M variants, their clinical relevance can only be investigated via case reports. Herein, we report what is, to the best of our knowledge, the first case of advanced lung adenocarcinoma harboring a germline EGFR p.V843I variant coexisting in cis with the unusual somatic EGFR exon 19 C-helix deletion, p.S752_I759del. Additionally, a somatic TP53 variant was detected. Treatment with afatinib induced a partial response lasting only six months, as rapid disease progression occurred without identifiable acquired resistance mechanisms. Subsequently, no objective response to osimertinib or afatinib rechallenge was observed. Acquired EGFR and MET amplification were detected in corresponding rebiopsies. Overall survival was 29 months. Our findings suggest that, despite the presence of the previously reported EGFR-TKI-sensitive, EGFR p.S752_I759del, the co-occurrence of germline p.V843I may have contributed to reduced sensitivity to afatinib and osimertinib. This case expands the molecular spectrum of hereditary EGFR-mutated NSCLC and, together with our narrative review of the literature, supports an emerging model in which germline EGFR PVs may act both as tumor-predisposing events and as potential mechanisms of early resistance to EGFR-TKIs.

Humans

Carboplatin in combination with etoposide in inoperable non-small-cell lung cancer (NSCLC).

Carboplatin, a second generation platinum complex, is less nephrotoxic and emetogenic than its parent compound. We have tested the objective response to and the toxicity of the combination carboplatin 330 mg m-2 on day 1 with etoposide 120 mg m-2 on days 1, 3 and 5, administered every 3 weeks in histologically proven inoperable non-small-cell lung cancer (NSCLC) patients with a good performance status. Thirty-one patients entered the study; 29 were evaluable for response, 24 after 3 courses and 5 after 2 courses of chemotherapy. An overall response rate of 21% was found including zero complete response and 6 partial responses. In addition, 3 minor responses (10%), 12 stable diseases (38%), and 9 progressive diseases (39%) were observed. The median survival was 48 weeks, including 68 weeks for non-metastatic (M0) patients and 27 weeks for metastatic (M+) patients. This regimen was well tolerated. Gastrointestinal toxicity never exceeded WHO grade II and renal function remained in the normal range for all cases. Haematological toxicity was low in the majority of the cases; nevertheless it proved to be the dose limiting toxicity as illustrated by two grade III anemia, one grade III leucopenia, one grade III and one grade IV thrombocytopenia. Carboplatin-etoposide combination is not more active, but clearly much less toxic than cisplatin-etoposide in NSCLC.

Adenocarcinoma

DigiNet: Optimizing personalized care for patients with stage IV non-small cell lung cancer (NSCLC) through a digitally connected provider network-analysis plan of a prospective multicenter cohort trial.

PURPOSE: The German sector-based healthcare system poses a major challenge to continuous patient monitoring and long-term follow-up, both essential for generating high-quality, longitudinal real-world data. The national Network for Genomic Medicine (nNGM) bridges the inpatient and outpatient care sectors to provide comprehensive molecular diagnostics and personalized treatment for non-small cell lung cancer (NSCLC) patients in Germany. Building on the established nNGM infrastructure, the DigiNet study aims to evaluate the impact of digitally integrated, personalized care on overall survival (OS) and the optimization of treatment pathways, compared to routine care. METHODS: DigiNet is a prospective, controlled, non-randomized multicenter cohort study including patients with stage IV NSCLC in two study regions (East and West) in Germany. The results of molecular diagnostics and clinical information, along with the entire treatment data are documented in a shared database. A board of lung cancer specialists monitors critical events. Patients digitally complete quality of life questionnaires, with results visualized for physicians. To assess the impact of this personalized digital care, a population-based control group will be identified by matching cohorts within the involved cancer registries. The primary endpoint is OS, and secondary endpoints comprise time on first-line treatment and hospitalization rates. Furthermore, a health economic and business economic evaluation will be conducted. Qualitative interviews with patients and physicians will be performed to assess barriers and facilitating factors for implementing the DigiNet intervention. ETHICS: The study protocol was reviewed and approved by the Ethics Committee of the University Hospital of Cologne (21-1521). TRIAL REGISTRATION: NCT05818449, registered retrospectively on December 12, 2022.

Humans

Non small cell lung cancer (NSCLC). A prospective randomized trial with alternating chemotherapy CEP/MEC' versus no treatment.

From April 1985 to September 1987, 92 patients with advanced NSCLC were randomized to receive cytotoxic chemotherapy, Arm A (treated), or supportive care, Arm B (control). Chemotherapy consisted of the CEP combination (cyclophosphamide 500 mg/m2 i.v. day 1; epirubicin 50 mg/m2 i.v. day 1; cisplatin 80 mg/m2 i.v. day 1) alternated every 4 weeks with the MEC' combination (methotrexate 30 mg/m2 i.v. day 1; etoposide 200 mg/m2 i.v. day 1; CCNU 70 mg/m2 per os, day 1) until progression. Eight-nine patients (44 treated and 45 controls) were eligible for survival and 77 evaluable for response (38 treated and 39 controls). Response rate was: in Arm A, 8/38 (21%) partial response, 20/38 (53%) stable disease and 10/38 (26%) progressive disease; in Arm B, 18/39 (46%) stable disease and 21/39 (54%) progressive disease. Median time to progression was 4 months (range = 1-14) for treated and 2 months (range = 1-9) for controls (P = 0.001). Median survival was 8.5 months (range = 1+ to 25) for Arm A versus 5 months (range = 1+ to 28+) for Arm B; this difference was not statistically significant (Breslow test: chi-square = 2.75, P = 0.097; Mantel-Cox: chi-square = 0.32, P = 0.56). Treatment related toxicity was gastrointestinal WHO grade 3 in 22/102 (22%) CEP courses and in 10/91 (11%) MEC' courses respectively. Other observed side-effects were not clinically important. From these data our treatment was not clearly superior to supportive care in prolonging survival. This suggests the need for the inclusion of a control group in future chemotherapeutic trials of NSCLC.

Adult

Oral etoposide preceding cisplatin in advanced non small cell lung cancer (NSCLC). A phase II study.

Forty male patients with locally advanced (LD; 11 patients) and extensive (ED; 29 patients) NSCLC were treated with oral etoposide (240 mg/m2 days 1-3) preceding intravenous cisplatin (100 mg/m2 day 4) at 4 weekly intervals. Eleven patients achieved major response (27.5%; 1 CR, 10 PR). Minor response (MR) occurred in seven patients (17.5%); stable disease (SD) in seven patients (17.5%) and progressive disease (PD) in 15 (37.5%). The median duration of response in major responders was 31 weeks. The median survival time (MST) in all patients was 42 weeks. Patients achieving response, and stable disease lived significantly longer than progressors (P less than 0.0001; 56 vs. 9 weeks respectively). The MST of non-progressors in both LD and ED was significantly increased as compared to progressors. Two patients with poor risk prognostic variables died from myelosuppression-related infection early during the first course of chemotherapy. The remainder of the courses were without severe hematological complications. Alopecia was the most common side-effect. Gastro-intestinal, neurological and renal complications were mild to moderate. Intravenous etoposide can be replaced by the oral formulation with preservation of antitumoral activity in NSCLC patients, offering the advantage of maximal treatment outside the hospital.

Adult

Spatial transcriptomics of primary and metastatic ALK-rearranged NSCLC reveals site-specific adaptations.

INTRODUCTION: Genetic alterations and the tumor microenvironment (TME) influence treatment response in anaplastic lymphoma kinase-rearranged non-small cell lung cancer (ALK+ NSCLC). This study maps site-specific TME adaptations and exploratory risk-associated signatures in lymph node metastases (LNT) to investigate metastatic evolution. METHOD: We applied spatial transcriptomics to profile tumor (PanCK+) and stromal (PanCK-) compartments in a pilot cohort of 16 cases: primary lung tumors (LT, n = 3), LNT (n = 10), and brain metastases (BT, n = 3), with three site-matched non-tumor controls. LNT-derived prognostic signatures were evaluated using The Cancer Genome Atlas-Lung Adenocarcinoma (TCGA LUAD) cohorts. RESULTS: Distinct, site-specific TME features were observed. LNT stroma was enriched in fibroblasts and macrophages, while tumor segments showed increased neutrophils. BT exhibited a macrophage-associated immunosuppressive TME. Tumor cells evolved divergently: LT retained pulmonary identity and showed trend towards translation-associated programs, LNT cells shifted toward senescence and epigenetic remodeling, and BT cells showed activation of Class A/1 (Rhodopsin-like) receptor, GPCR and drug metabolism pathways. In LNT, exploratory risk-associated differences were observed. Low-risk cases (n = 6) showed adaptive immune signatures, whereas high-risk cases (n = 4) showed enrichment for stromal MET signaling and stress-response pathways. Because treatment exposure differed markedly between the risk groups, these observations should be interpreted as hypothesis-generating. TCGA LUAD analysis suggested the broader biological relevance of immune-associated markers, but reflected general LUAD rather than ALK+ specific biology. Discordant associations for GCLC and TIMP1 underscored the importance of spatial context. CONCLUSION: Site-specific microenvironments may influence tumor adaptation across metastatic niches in ALK+ NSCLC. The exploratory risk-associated findings require validation in larger, uniformly treated cohorts.

Humans

The impact of EGFR subtype combined with TP53 co-mutation status on survival outcomes with front-line osimertinib in non-small cell lung cancer (NSCLC).

BACKGROUND: Osimertinib is a standard therapy for EGFR-mutant NSCLC. However, markers to better identify those at risk for poor outcomes are needed. This is the largest study to date evaluating the impact of EGFR subtype combined with TP53 co-mutation status on survival endpoints with front-line osimertinib. METHODS: Patients from a U.S. clinical-genomic database with advanced EGFR-mutant NSCLC receiving front-line osimertinib were studied. Real-world progression-free survival (rwPFS) and overall survival (OS) were determined using Kaplan-Meier methods, and multivariable Cox regression compared outcomes after accounting for relevant clinical covariates. RESULTS: Of 606 patients, 277 (46%) had EGFR L858R, 384 (63%) had TP53 co-mutations, and 186 (30.7%) had both. Bearing L858R vs. exon 19 deletions (rwPFS: hazard ratio [HR] 1.4, P&#xa0;=&#xa0;0.001; OS: HR 1.3, P&#xa0;=&#xa0;0.01) or a TP53 co-mutation vs. wildtype (rwPFS: HR 1.5, P&#xa0;<&#xa0;0.001; OS: HR 1.6, P&#xa0;<&#xa0;0.001) predicted inferior outcomes. Especially short median rwPFS (10.1 vs. 21.4&#xa0;months, HR 2.2, P&#xa0;<&#xa0;0.001) and OS (21.3 vs. 53.4&#xa0;months, HR 2.3, P&#xa0;<&#xa0;0.001) were observed in patients with both markers (L858R/TP53-mutant) as compared to neither (exon 19 deletion/TP53-wildtype). CONCLUSIONS: Having EGFR L858R or a TP53 co-mutation were independent predictors of inferior rwPFS and OS with front-line osimertinib. Patients with both unfavorable alterations had the shortest survival. Risk stratifying using a combination of these markers can assist in identifying patients for novel trials or approved intensified therapies.

Humans

A Medical Research Council (MRC) randomised trial of palliative radiotherapy with two fractions or a single fraction in patients with inoperable non-small-cell lung cancer (NSCLC) and poor performance status. Medical Research Council Lung Cancer Working Party.

Two policies of palliative thoracic radiotherapy for NSCLC have been compared in a randomised multicentre controlled trial aimed at simplifying the palliative treatment of patients with poor performance status. A total of 235 patients were entered. They had inoperable, microscopically confirmed disease, too advanced for 'curative' radiotherapy. Their main symptoms were related to the primary intrathoracic tumour even if metastases were present, and they had a poor performance status. Patients were allocated at random to regimens of either 17 Gy given in two fractions of 8.5 Gy 1 week apart (F2 regimen, 117 patients), or a single fraction of 10 Gy (F1 regimen, 118 patients). Two patients (one in each group) were excluded from all analyses because they were found to have had previously treated malignant disease and had been admitted in error. On admission, 95% of the 233 eligible patients had cough, 47% haemoptysis, 59% chest pain, 64% anorexia, and 16% dysphagia. As assessed by the clinicians, these symptoms were palliated in high proportions of patients, ranging in the F2 group from 48% for cough to 75% for haemoptysis, and in the F1 group from 55% for anorexia to 72% for haemoptysis and chest pain. For all five symptoms the median duration of palliation was 50% or more of survival. All these results were similar in the two treatment groups. In contrast, on daily assessment by the patients using a diary card, those treated with the F2 regimen experienced substantially more dysphagia, which was recorded in 56% of the patients compared with 23% in the F1 group (difference 33%: 95% confidence interval 17-48%). The median survival from randomisation was 100 days in the F2 group and 122 days in the F1 group. The F1 regimen, as it requires only a single attendance for treatment, is recommended as a palliative regimen for patients with inoperable NSCLC and a poor performance status.

Carcinoma, Non-Small-Cell Lung