From Clinical Trials to Real-World Practice: Surgical Feasibility and Postoperative Outcomes After Neoadjuvant Chemoimmunotherapy for Locally Advanced NSCLC in a Single-Center Experience
Simple Summary
Abstract
1. Introduction
2. Materials and Methods
2.1. Study Population
2.2. Inclusion/Exclusion Criteria and Staging/Restaging Procedures
2.2.1. Inclusion Criteria
- Eastern Cooperative Oncology Group (ECOG) performance status 0–2;
- Patients with LA-NSCLC (stage IIA to IIIB-N2 only) considered “resectable” following multidisciplinary tumor board evaluation and EORTC criteria [8];
- Absence of epidermal growth factor receptor (EGFR) mutations or anaplastic lymphoma kinase (ALK) alterations at molecular testing in patients with lung adenocarcinoma.
2.2.2. Exclusion Criteria
- Patients who underwent surgery (“salvage surgery”) after CHT-ICI treatment performed in other settings;
- Patients enrolled in clinical trials;
- Patients with other primary lung cancer;
- Patients with contraindications to perform immunotherapy;
- Presence of EGFR/ALK mutations/alterations at molecular testing in patients with lung adenocarcinoma;
- Insufficient tumor tissue to perform molecular profiling in patients with diagnosis of lung adenocarcinoma.
2.3. Surgical Techniques
2.4. Pathological Examination
2.5. Outcomes
2.6. Statistical Analysis
3. Results
4. Discussion
Limitations
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
Abbreviations
| AJCC | American Joint Committee on Cancer |
| ALK | Anaplastic lymphoma kinase |
| BMI | Body mass index |
| CHT-ICI | Chemo-immunotherapy |
| CI | Confidence interval |
| COPD | Chronic obstructive pulmonary disease |
| CT | Computed tomography |
| CTCAEs | Common Terminology Criteria for Adverse Events |
| DFS | Disease-free survival |
| EAP | Expanded access program |
| EBUS | Endobronchial ultrasound |
| ECOG | Eastern Cooperative Oncology Group |
| EFS | Event-free survival |
| EGFR | Epidermal growth factor receptor |
| EUS | Endoscopic ultrasonography |
| IASLC | International Association for the Study of Lung Cancer |
| ICI | Immune checkpoint inhibitor |
| ICU | Intensive care unit |
| LA-NSCLC | Locally advanced non-small cell lung cancer |
| MIS | Minimally invasive surgery |
| MPR | Major pathological response |
| MRI | Magnetic resonance imaging |
| NSCLC | Non-small cell lung cancer |
| NPR | No pathological response |
| OR | Odds ratio |
| OS | Overall survival |
| pCR | Pathological complete response |
| PD-L1 | Programmed death-ligand 1 |
| PET-CT | Positron emission tomography/computed tomography |
| PPR | Partial pathological response |
| RCT | Randomized controlled trial |
| STROBE | Strengthening the Reporting of Observational Studies in Epidemiology |
| TNM | Tumor, node, metastasis |
| U-VATS | Uniportal video-assisted thoracoscopic surgery |
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| Variable | Patients (n = 25) |
|---|---|
| Sex (male) | 15 (60%) |
| Age (years) | 67.55 ± 7.92 |
| Smoking status | |
| Never | 1 (4%) |
| Active | 5(20%) |
| Former smoker | 19 (76%) |
| BMI, kg/m2 | 24.68 ± 2.32 |
| Comorbidity | 17 (68%) |
| Comorbidity type | |
| Cardiovascular | 9 (36%) |
| COPD | 9 (36%) |
| Chronic kidney disease | 2 (8%) |
| Diabetes mellitus type II | 4 (16%) |
| Previous malignancy | 6 (24%) |
| cStage (9th edition TNM) | |
| IIA | 1 (4%) |
| IIB | 1 (4%) |
| IIIA | 18 (72%) |
| IIIB (n2-only) | 5 (20%) |
| cT-status | |
| T1 | 2 (8%) |
| T2 | 5 (20%) |
| T3 | 11 (44%) |
| T4 | 7 (28%) |
| cN-status | |
| N0 | 1 (4%) |
| N1 | 9 (36%) |
| N2a | 11 (44%) |
| N2b | 4 (16%) |
| PDL1 < 1% | 5 (20%) |
| 1% ≤ PDL1 < 50% | 9 (36%) |
| PDL1 ≥ 50% | 11 (44%) |
| Immunotherapy drug | |
| Pembrolizumab | 16 (64%) |
| Durvalumab | 9 (36%) |
| (CHT) Treatment-related adverse effects | 7 (28%) |
| Complication grade (CTCAE classification) | |
| Grade 1 | 3 (12% |
| Grade 2 | 3 (12%) |
| Grade 3 | 1 (4%) |
| Grade 4 | 0 |
| Grade 5 | 0 |
| ycStage | |
| 0 | 8 (32%) |
| IA2 | 2 (8%) |
| IA3 | 2 (8%) |
| IB | 3 (12%) |
| IIA | 4 (16%) |
| IIB | 2 (8%) |
| IIIA | 4 (16%) |
| Variable | Patients (n = 25) |
|---|---|
| Surgical approach | |
| Thoracotomy | 14 (56.0%) |
| U-VATS | 11 (44.0%) |
| Operative time (minutes) | 179.64 ± 39.54 |
| Conversion | 1 (4%) |
| Type of surgery | |
| Pneumonectomy (left = 4; right = 0) | 4 (16%) |
| Bilobectomy | 3 (12%) |
| Lobectomy | 16 (64%) |
| Segmentectomy | 2 (8%) |
| Side of surgery (right) | 14 (56%) |
| Pleural adhesions | |
| Absent | 9 (36%) |
| Moderate | 13 (52%) |
| Severe | 3 (12%) |
| Hilar fibrosis | |
| Absent | 10 (40%) |
| Moderate | 7 (28%) |
| Severe | 8 (32%) |
| Intraoperative complications | 0 |
| ICU admission | 7 (28%) |
| Histology | |
| Fibrosis | 1 (4%) |
| Adenocarcinoma | 18 (72%) |
| Squamous cell carcinoma | 6 (24%) |
| N1 nodes removed | 6.88 ± 5.17 |
| N2 nodes removed | 4.60 ± 1.26 |
| Total number of nodes removed | 14.60 ± 7.67 |
| R status | |
| R0 | 24 (96%) |
| R1-R2 | 1 (4%) |
| ypStage | |
| 0 | 9 (36%) |
| IA1 | 2 (8%) |
| IA2 | 2 (8%) |
| IIA | 1 (4%) |
| IIB | 3 (12%) |
| IIIA | 6 (24%) |
| IIIB | 2 (8%) |
| Response grade (Junker classification) | |
| I | 3 (12%) |
| IIA | 10 (40%) |
| IIB | 2 (8%) |
| III | 10 (40%) |
| Major pathological response (MPR) | 13 (52%) |
| -Complete pathological response (CPR) | 9 (36%) |
| Partial pathological response (PPR) | 8 (32%) |
| No pathological response (NPR) | 4 (16%) |
| Chest tube duration (days) | 6.04 ± 2.94 |
| Postoperative complications | 14 (56%) |
| Clavien–Dindo Classification | |
| 0 | 11(44%) |
| I | 3 (12%) |
| II | 6 (24%) |
| III | 4 (16%) |
| IV | 1 (4%) |
| Adjuvant therapy | 17/25 (68%) |
| 30-day mortality | 1 (4%) |
| 90-day mortality | 1 (4%) |
| Hospital stay (days) | 5.65 ± 2.04 |
| Discharge with Heimlich valve for prolonged air leak | 4 (16%) |
| Univariable Analysis | Multivariable Analysis | |||
|---|---|---|---|---|
| OR [95% CI] | p-Value | OR [95% CI] | p-Value | |
| Age | 1.05 [0.95–1.17] | 0.376 | ||
| BMI | 0.88 [0.61–1.25] | 0.484 | ||
| ASA score | 0.28 [0.07–2.03] | 0.268 | ||
| Comorbidity | 0.10 [0.02–1.01] | 0.03 | 10.00 [0.99–100.46] | 0.05 |
| Smoke | 0.95 [0.22–4.25] | 0.514 | ||
| <1% PDL-1 > 50% | 0.23 [0.04–1.30] | 0.087 | ||
| Hilar fibrosis | 0.82 [0.32–2.09] | 0.152 | ||
| Type of surgical resection | 0.47 [0.15–1.42] | 0.352 | ||
| Pleural adhesions | 1.15 [0.34–3.89] | 0.111 | ||
| Number of lymph nodes removed | 1.04 [0.94–1.16] | 0.472 | ||
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Share and Cite
Lococo, F.; Nachira, D.; Kuzmych, K.; Sassorossi, C.; Scognamiglio, C.; Petracca Ciavarella, L.; Vita, M.L.; Proietti, V.; Stefani, A.; Meacci, E.; et al. From Clinical Trials to Real-World Practice: Surgical Feasibility and Postoperative Outcomes After Neoadjuvant Chemoimmunotherapy for Locally Advanced NSCLC in a Single-Center Experience. Cancers 2026, 18, 1914. https://doi.org/10.3390/cancers18121914
Lococo F, Nachira D, Kuzmych K, Sassorossi C, Scognamiglio C, Petracca Ciavarella L, Vita ML, Proietti V, Stefani A, Meacci E, et al. From Clinical Trials to Real-World Practice: Surgical Feasibility and Postoperative Outcomes After Neoadjuvant Chemoimmunotherapy for Locally Advanced NSCLC in a Single-Center Experience. Cancers. 2026; 18(12):1914. https://doi.org/10.3390/cancers18121914
Chicago/Turabian StyleLococo, Filippo, Dania Nachira, Khrystyna Kuzmych, Carolina Sassorossi, Chiara Scognamiglio, Leonardo Petracca Ciavarella, Maria Letizia Vita, Virginia Proietti, Alessio Stefani, Elisa Meacci, and et al. 2026. "From Clinical Trials to Real-World Practice: Surgical Feasibility and Postoperative Outcomes After Neoadjuvant Chemoimmunotherapy for Locally Advanced NSCLC in a Single-Center Experience" Cancers 18, no. 12: 1914. https://doi.org/10.3390/cancers18121914
APA StyleLococo, F., Nachira, D., Kuzmych, K., Sassorossi, C., Scognamiglio, C., Petracca Ciavarella, L., Vita, M. L., Proietti, V., Stefani, A., Meacci, E., Tudimella, G., Congedo, M. T., Cancellieri, A., Vita, E., Bria, E., & Margaritora, S. (2026). From Clinical Trials to Real-World Practice: Surgical Feasibility and Postoperative Outcomes After Neoadjuvant Chemoimmunotherapy for Locally Advanced NSCLC in a Single-Center Experience. Cancers, 18(12), 1914. https://doi.org/10.3390/cancers18121914

