The paper introduces Professor ZHUANG Lixing's academic thought on Daoqi Tongjing (directing qi to preserve essence) needling technique and the clinical experience. Based on Huangdi Neijing (the Yellow Emperor's Inner Classic), Dongyuan needling technique and Professor JIN Rui 's Daoqi Tongjing needling method, and by inheriting the valuable experience from the ancient masters and associating with his own clinical practices, Professor ZHUANG Lixing fully displayes the characteristics of principles, methods, formulas, acupoints and techniques of acupuncture in diagnosis and treatment of diseases. He integrates the thought of regulating the mind with Daoqi Tongjing needling. This needling method focuses on directing qi through mind regulation and needle manipulation, in which, the operation steps are refined. Besides, this needling method involves both the reinforcing and reducing techniques. The satisfactory effect of this needling has been obtained in clinical treatment for many disorders such as qi reversion and disharmony of yin and yang.
Compared to exon 19 deletions, the epidermal growth factor receptor (EGFR) exon 21 L858R (21L858R) mutation is associated with a poorer prognosis in non-small cell lung cancer (NSCLC), particularly in patients with brain metastases (BMs). However, there is a notable lack of prospective or retrospective clinical studies focusing on this specific population. This study aims to evaluate the efficacy of different first-line treatment strategies using EGFR-tyrosine kinase inhibitors (TKIs) in NSCLC patients harboring the 21L858R mutation and BMs while providing insights into concurrent mutations and resistance mechanisms. We analyzed clinical data from 331 patients diagnosed with the EGFR 21L858R mutation and BMs who received first-line EGFR-TKI treatment at Sun Yat-sen University Cancer Center between April 2014 and June 2023 (ID: GASTO-1027). The efficacy was evaluated through intracranial progression-free survival (iPFS), PFS, and overall survival (OS). Compared to the first-generation and second-generation cohorts, the third-generation EGFR-TKI cohort demonstrated significant improvements in iPFS (p = 0.002), PFS (p < 0.001), and OS (p = 0.016). Within the third-generation EGFR-TKI group, the combination chemotherapy cohort exhibited the most favorable outcomes, with marked extensions in both iPFS (p = 0.037) and PFS (p = 0.049). Multivariate analyses identified the treatment regimen of third-generation TKIs combined with chemotherapy as an independent prognostic factor for improved iPFS. Compared to treatment regimens containing first-generation or second-generation EGFR-TKIs, patients with TP53 mutations derived greater benefit from treatment regimens containing third-generation EGFR-TKIs. The combination of third-generation EGFR-TKIs with chemotherapy shows enhanced efficacy in patients with EGFR 21L858R mutations and BMs compared to other treatments. Future prospective clinical trials are essential to assess this combination's effects in this population.
Introduction: Third-generation EGFR tyrosine kinase inhibitors (TKIs) have improved outcomes in EGFR-mutant non–small cell lung cancer (NSCLC), but resistance occurs, especially in patients with Brain metastases (BMs). Antiangiogenic therapy may enhance CNS drug delivery and EGFR-TKI efficacy. We evaluated the efficacy of high-dose furmonertinib plus bevacizumab in patients with BMs after third-generation EGFR-TKI failure. Methods: We conducted a single-center retrospective study in EGFR-mutant NSCLC patients with BMs (leptomeningeal and/or parenchymal) who had progressed after ≥1 third-generation EGFR-TKI. Patients received furmonertinib 160 mg daily plus bevacizumab 7.5 mg/kg every 3 weeks until progression or unacceptable toxicity. Primary endpoints were intracranial and overall progression-free survival (iPFS, PFS); secondary endpoints were intracranial and systemic objective response rates (iORR, ORR) and safety. Results: Among the 78 enrolled patients (median follow-up: 11.8 months), median iPFS and PFS were 7.2 months (95 % CI: 5.6–10.5) and 5.85 months (95 % CI: 4.6–7.4), respectively. The iORR was 37.1 %, and ORR was 28.6 %. OS data remain immature at the time of analysis. In patients with both parenchymal and leptomeningeal metastases (n = 47), median iPFS was 7.63 months (95 % CI: 5.0–10.8), and median PFS was 5.7 months (95 % CI: 4.5–10.0); iORR and ORR were 40.5 % and 34.2 %, respectively. In the parenchymal-only subgroup (n = 31), median iPFS and PFS were 7.20 months (95 % CI: 5.5–NR) and 6.4 months (95 % CI: 4.4–11.3), iORR and ORR were 32 % and 20 %. In multivariate analysis, EGFR exon 19 deletion was independently associated with prolonged iPFS (HR = 0.32, P = 0.011) and PFS (HR = 0.47, P = 0.047). CNS radiotherapy administered during treatment also emerged as an independent prognostic factor for both iPFS (HR = 0.34, P = 0.022) and PFS (HR = 0.40, P = 0.018). Conclusion: In this retrospective study, high-dose furmonertinib combined with bevacizumab demonstrated favorable intracranial and systemic activity with an acceptable safety profile in EGFR-mutant NSCLC patients with CNS metastases after resistance to third-generation EGFR-TKIs. These findings provide preliminary evidence supporting the potential clinical benefit of this chemotherapy-sparing strategy. Importantly, these findings warrant further validation in biomarker-stratified prospective trials to guide patient selection and optimize treatment outcomes.
The efficacy and prognosis of epidermal growth factor receptor (EGFR)-positive non-small cell lung cancer (NSCLC) patients with brain metastases (BMs) are poor. The third-generation EGFR-tyrosine kinase inhibitor proved to have better intracranial efficacy, which combined with anti-angiogenic drugs can further improve the efficacy. We conducted a single-arm, phase 2 clinical study (GASTO-1063) to explore the intracranial efficacy of aumolertinib plus anlotinib for NSCLC with BMs, with 87 patients enrolled. Median intracranial progression-free survival (PFS) was 30.2 months, median overall PFS was 22.5 months, and median overall survival was not reached. The intracranial objective response rate and intracranial disease control rate were 71.3% and 93.1%. Patients with exon 19 deletion or wild-type TP53 exhibited significantly longer intracranial PFS and PFS compared to those with exon 21 L858R mutation or mutated TP53. Aumolertinib plus anlotinib was effective and well-tolerated as first-line therapy in EGFR-mutant NSCLC patients with BMs. Trial Registration: ClinicalTrials.gov(identifier NCT04978753, registered July 20, 2021).
Purpose: Neovascular eye diseases, such as proliferative diabetic retinopathy (PDR), wet age-related macular degeneration (wAMD) and retinopathy of prematurity (ROP), are major causes of vision loss and blindness worldwide. Our transcription factor motif enrichment analysis highlighted RUNX1 as a key regulator in the hypoxic response. The purpose of this study was to characterize how loss of Runx1 affects physiological and pathological retinal vasculature formation. Methods: RNA-seq analysis and Transcription factor motif enrichment analysis were conducted in hypoxic and normoxic HUVECs. Conditional deletion of Runx1 in endothelial cells In mice was achieved using recombinase driver Cdh5-CreERT2. Vascular coverage, density, vessel progression, branchpoints, and sprout numbers was measured in retina of Runx1iECKO mice. The expression patterns, functions, and potential therapeutic value of RUNX1 were further explored with clinical samples, as well as in vivo and in vitro experiments. Bioinformatics and high-throughput sequencing were performed to identify potential target genes of Runx1. RT-qPCR and Western blot analyses were carried out to detect the changes of PI3-kinase/AKT/mTOR pathway. Results: Loss of Runx1 in mice resulted in a reduction of the vascular coverage, density, vessel progression, branchpoints, and sprouts numbers of the retinal vascular network during its development. Notably, mature blood vessels remained unaffected by Runx1 inhibition. Upregulation of RUNX1 was observed in patients with PDR and ROP. RUNX1 Inhibition reduced endothelial cell proliferation, migration and tubule formation, leading to decreased pathological neovascularization, which is shown in oxygen-induced retinopathy. Mechanistically, in vitro experiments demonstrated that RUNX1 regulates EC angiogenesis through the PI3K/AKT/mTOR signaling pathway. Conclusions: Runx1 is essential for physiological retinal vascularization. RUNX1 Inhibition may effectively decrease pathological neovascularization. Our findings suggest that targeting RUNX1 could be a promising therapeutic strategy for retinal neovascular disorders, preserving the integrity of mature blood vessels while selectively inhibiting neovascularization.
Introduction Although caesarean sections (CSs) are essential for the management of obstructed labour and other obstetric complications, postoperative pain, delayed recovery and complication risks continue to be significant challenges in perioperative management. Improvements in traditional medications and surgical techniques have helped, yet issues, including medication side effects and extended recovery times, persist. Therefore, it is particularly important to seek non-pharmacological interventions, such as acupoint stimulation, to optimise the perioperative management of CS. The aim of this systematic review protocol is to synthesise the available evidence and assess the effect of acupoint stimulation in the perioperative period of CS.Methods and analysis We plan to search PubMed, Web of Science, EMBASE, Scopus, the Cochrane Library and China National Knowledge Infrastructure, from their inception to August 2025. Primary outcome indicators will include pain, time to first defecation, time to first bowel movement and time to return of bowel sounds. Secondary outcome indicators will include postoperative complications, such as nausea and vomiting, bloating, anxiety and depression, as well as length of hospital stay and morphine consumption. Subgroup analyses, meta-regression and sensitivity analyses will be used to investigate the potential sources of heterogeneity and to test the stability of the results. Trial sequential analysis will be introduced to enhance the reliability of the evidence.Ethics and dissemination No ethical approval is required as this study synthesises the existing published data. Results will be disseminated through peer-reviewed publications and conference presentations. Any protocol amendments will be documented in PROSPERO and detailed in the final publication.PROSPERO registration number CRD42024558572.
The paper introduces Professor ZHUANG Lixing's academic thought on Daoqi Tongjing (directing qi to preserve essence) needling technique and the clinical experience. Based on Huangdi Neijing (the Yellow Emperor's Inner Classic), Dongyuan needling technique and Professor JIN Rui 's Daoqi Tongjing needling method, and by inheriting the valuable experience from the ancient masters and associating with his own clinical practices, Professor ZHUANG Lixing fully displayes the characteristics of principles, methods, formulas, acupoints and techniques of acupuncture in diagnosis and treatment of diseases. He integrates the thought of regulating the mind with Daoqi Tongjing needling. This needling method focuses on directing qi through mind regulation and needle manipulation, in which, the operation steps are refined. Besides, this needling method involves both the reinforcing and reducing techniques. The satisfactory effect of this needling has been obtained in clinical treatment for many disorders such as qi reversion and disharmony of yin and yang.
Retinal neovascular disease is a leading cause of vision loss and blindness globally. It occurs when abnormal new blood vessels form in the retina. In this study, we utilized tetrahedral framework nucleic acids (tFNAs) as vehicles to load quercetin (QUE), a small-molecule flavonoid, forming a deoxyribonucleic acid (DNA) nanocomplex, tFNAs-QUE. Our data show this nanocomplex inhibits pathological neovascularization, reduces the area of retinal nonperfusion area, protects retinal neurons, and preserves the visual function. Further, we discovered that tFNAs-QUE selectively upregulates the AKT/Nrf2/HO-1 signaling pathway, which can suppress pathological vascular growth and exert antioxidative effects. Therefore, this study presents a promising small-molecule-loading mechanism for the treatment of ischemic retinal diseases.
OBJECTIVES:To observe the clinical efficacy of the spirit-regulation method of Jin's three-needle therapy on post-stroke anxiety and its effects on the hypothalamus-pituitary-adrenal (HPA) axis.METHODS:Fifty-four patients with post-stroke anxiety were divided into spirit regulation (Jin's three needle therapy) group and sham-acupuncture group according to the random number table method, 28 cases in the spirit regulation and 26 cases in the sham-acupuncture group. The patients of the two groups received the same regimen of basic medication and rehabilitation, and the same acupoint prescription was adopted, including Sishenzhen (extra points, 1.5 cun to Baihui [GV20] at 3, 6, 9 and 12 o'clock positions), Shenting (GV24), Yintang (EX-HN3), and bilateral Shenmen (HT7), Sanyinjiao (SP6), Hegu (LI4) and Taichong (LR3). The true acupuncture was delivered in the spirit regulation group and the sham acupuncture operated in the sham-acupuncture group. One treatment lasted for 30 min, once daily, 5 times a week. The duration of treatment was 3 weeks in the trial. Before treatment and on day 10 and day 21 of treatment, the changes in the score of Hamilton anxiety scale (HAMA) and that of National Institutes of Health Stroke Scale (NIHSS) were compared between the two groups separately. Using ELISA, the contents of adrenocorticotropin (ACTH) and cortisol (CORT) in the serum were detected, and the adverse reactions were recorded.RESULTS:In the within-group comparison before and after treatment, HAMA score and NIHSS score dropped on day 10 and day 21 after treatment in the spirit regulation group (P<0.05);HAMA score and NIHSS score in the sham-acupuncture group were decreased on day 21 of treatment (P<0.05). After 21 days of treatment, HAMA score and NIHSS score in the spirit-regulation group were decreased significantly than those in the sham-acupuncture group (P<0.05) and the contents of ACTH and CORT in the serum decreased when compared with those before treatment and those of the sham-operation group (P<0.05). No obvious adverse events occurred in the spirit-regulation group and the sham-acupuncture group.CONCLUSIONS:Using sham acupuncture as a control, it is preliminarily confirmed that the spirit regulation method of Jin's three-needle therapy is effective on post-stroke anxiety. In association of the downtrend of serological indicators, it is speculated that the underlying mechanism of this therapy is related to HPA axis.
Chronic obstructive pulmonary disease (COPD) is frequently comorbid with cognitive impairment, but it has not been paid enough attention, and its neuroanatomical characteristics have not been fully identified. Voxel-based morphometric (VBM) studies comparing gray matter (GM) abnormalities in COPD patients with healthy controls (HCs) were searched using 8 electronic databases from the inception to March 2023. Stereotactic data were extracted and tested for convergence and differences using the activation likelihood estimation (ALE) method. Moreover, based on the ALE results, a structural meta-analytic connectivity modeling (MACM) was conducted to explore the co-atrophy pattern in patients with COPD. Last, behavioral analysis was performed to assess the functional roles of the regions affected by COPD. In total, 11 studies on COPD with 949 participants were included. Voxel-based meta-analysis revealed significant GM abnormalities in the right postcentral gyrus (including inferior parietal lobule), left precentral gyrus, and left cingulate gyrus (including paracentral lobule) in patients with COPD compared with HCs. Further MACM analysis revealed a deeper co-atrophy pattern between the brain regions with abnormal GM structure and the insula in COPD patients. Behavioral analysis showed that the abnormal GM structure in the left cingulate gyrus (including paracentral lobule) was strongly associated with cognitive function, especially executive function. COPD comorbid with cognitive impairment has a specific neurostructural basis of GM structural abnormalities, which may also involve a deeper co-atrophy pattern between the insula. These findings enhance our understanding of the underlying neuropathogenesis and suggest potential imaging markers for cognitive impairment in COPD patients. PROSPERO registration number: CRD42022298722.
Background:Brain metastases (BM) are highly prevalent and associated with a poor prognosis in patients with small cell lung cancer (SCLC). However, the evidence regarding the efficacy of immune checkpoint inhibitors (ICIs) in combination with chemotherapy for patients with SCLC and BM remains limited. Therefore, the objective of this study is to evaluate whether the addition of ICIs confers survival benefits for patients with SCLC and BM. Methods:This retrospective study enrolled patients with SCLC and BM at the Sun Yat-sen University Cancer Center between January 2018 and December 2022. Clinical characteristics were extracted from medical records. Depending on whether ICIs were added to the first-line treatment, the patients were categorized into the chemotherapy group and the chemoimmunotherapy group. The efficacy of these two treatment approaches was analyzed and compared. Results:A total of 165 patients were enrolled, with 85 in the chemotherapy group and 80 in the chemoimmunotherapy group. The chemoimmunotherapy group showed a tendency towards prolonged intracranial [6.6 vs. 5.9 months, hazard ratio (HR) =0.77; P=0.14] and extracranial (6.9 vs. 6.5 months, HR =0.73; P=0.12) progression-free survival (PFS) and overall survival (OS) (15.6 vs. 14.5 months, HR =0.98; P=0.93) compared to the chemotherapy group. Cox regression analysis identified liver metastases and local treatment for BM as independent prognostic factors for OS in patients. Furthermore, the chemotherapy group and the chemoimmunotherapy group demonstrated similar patterns of initial disease progression. Conclusions:Adding ICIs to chemotherapy confers modest survival benefits in patients with SCLC and BM.
INTRODUCTION:Small cell lung cancer (SCLC) is a highly malignant tumor with an extremely poor prognosis. In the currentera of immunotherapy, the role of immune checkpoint inhibitors (ICIs) in the second-line treatment of patients with extensive-stage SCLC (ES-SCLC) who have progressed to initial chemoimmunotherapy remains unclear. METHODS:A multicenter retrospective study were conducted, involving patients with ES-SCLC who received second-line (2L) therapy after progression to first-line chemoimmunotherapy. Patients were divided into 2L-ICIs group and 2L-non-ICIs group according to whether ICIs were added to the 2L treatment. The efficacy and adverse events of the two groups were analyzed and compared. RESULTS:A total of 103 patients were included in this study, with 53 in the 2L-ICIs group and 50 in the 2L-non-ICIs group. The 2L-ICIs group demonstrated a longer median progression-free survival (PFS) compared to the 2L-non-ICIs group (4.4 months vs 3.9 months, HR = 0.45, p = 0.001). Similarly, median overall survival was also prolonged in the 2L-ICIs group (10.0 months vs 6.9 months, HR = 0.56, p = 0.015). Cox regression analysis revealed that the addition of ICIs to 2L treatment was an independent prognostic factor for both PFS and OS in ES-SCLC patients. Subgroup analysis indicated that patients with a first-line PFS of ≥6 months could potentially benefit more from 2L ICIs. Furthermore, the occurrence of adverse events in the two groups exhibited a similar pattern. CONCLUSION:For ES-SCLC patients who have progressed to first-line chemoimmunotherapy, adding ICIs to second-line treatment may be considered as an option with limited benefit but manageable adverse effects.
The objective of this study was to investigate the effects and molecular mechanisms of tetrahedral framework nucleic acids-microRNA22 (tFNAs-miR22) on inhibiting pathological retinal neovascularization (RNV) and restoring physiological retinal vessels. A novel DNA nanocomplex (tFNAs-miR22) was synthesised by modifying microRNA-22 (miR22) through attachment onto tetrahedral frame nucleic acids (tFNAs), which possess diverse biological functions. Cell proliferation, wound healing, and tube formation were employed for in vitro assays to investigate the angiogenic function of cells. Oxygen-induced retinopathy (OIR) model was utilised to examine the effects of reducing pathological neovascularization (RNV) and inhibiting vascular occlusion in vivo. In vitro, tFNAs-miR22 demonstrated the ability to penetrate endothelial cells and effectively suppress cell proliferation, tube formation, and migration in a hypoxic environment. In vivo, tFNAs-miR22 exhibited promising results in reducing RNV and promoting the restoration of normal retinal blood vessels in OIR model through modulation of the Wnt pathway. This study provided a theoretical basis for the further understanding of RNV, and highlighted the innovative and potential of tFNAs-miR22 as a therapeutic option for ischemic retinal diseases.
Abstract Background Lung cancer brain metastases (LC-BrMs) are frequently associated with dismal mortality rates in patients with lung cancer; however, standard of care therapies for LC-BrMs are still limited in their efficacy. A deep understanding of molecular mechanisms and tumor microenvironment of LC-BrMs will provide us with new insights into developing novel therapeutics for treating patients with LC-BrMs. Methods Here, we performed integrated analyses of genomic, transcriptomic, proteomic, metabolomic, and single-cell RNA sequencing data which were derived from a total number of 154 patients with paired and unpaired primary lung cancer and LC-BrM, spanning four published and two newly generated patient cohorts on both bulk and single cell levels. Results We uncovered that LC-BrMs exhibited a significantly greater intra-tumor heterogeneity. We also observed that mutations in a subset of genes were almost always shared by both primary lung cancers and LC-BrM lesions, including TTN, TP53, MUC16, LRP1B, RYR2, and EGFR. In addition, the genome-wide landscape of somatic copy number alterations was similar between primary lung cancers and LC-BrM lesions. Nevertheless, several regions of focal amplification were significantly enriched in LC-BrMs, including 5p15.33 and 20q13.33. Intriguingly, integrated analyses of transcriptomic, proteomic, and metabolomic data revealed mitochondrial-specific metabolism was activated but tumor immune microenvironment was suppressed in LC-BrMs. Subsequently, we validated our results by conducting real-time quantitative reverse transcription PCR experiments, immunohistochemistry, and multiplexed immunofluorescence staining of patients’ paired tumor specimens. Therapeutically, targeting oxidative phosphorylation with gamitrinib in patient-derived organoids of LC-BrMs induced apoptosis and inhibited cell proliferation. The combination of gamitrinib plus anti-PD-1 immunotherapy significantly improved survival of mice bearing LC-BrMs. Patients with a higher expression of mitochondrial metabolism genes but a lower expression of immune genes in their LC-BrM lesions tended to have a worse survival outcome. Conclusions In conclusion, our findings not only provide comprehensive and integrated perspectives of molecular underpinnings of LC-BrMs but also contribute to the development of a potential, rationale-based combinatorial therapeutic strategy with the goal of translating it into clinical trials for patients with LC-BrMs.
Background:Currently, there is a lack of well-established markers to predict the efficacy of chemoimmunotherapy in small-cell lung cancer (SCLC). Neutrophil-to-lymphocyte ratio (NLR), platelet-to-lymphocyte ratio (PLR), advanced lung cancer inflammation index (ALI) and prognostic nutritional index (PNI) are associated with prognosis in several tumors, whereas their predictive role in SCLC remains unclear.Methods:A retrospective study was conducted at Sun Yat-sen University Cancer Center, involving extensive-stage SCLC (ES-SCLC) patients who received first-line chemoimmunotherapy between January 2020 and December 2021. Peripheral blood biomarkers were extracted from medical records and their correlation with prognosis and immune-related adverse events (IRAEs) was analyzed.Results:A total of 114 patients were included. Patients with a low PLR, high ALI and high PNI had prolonged progression-free survival (PFS) compared to those with a high PLR, low ALI and low PNI. Patients with a low NLR, low PLR, high ALI and high PNI had prolonged overall survival (OS) compared to those with a high NLR, high PLR, low ALI and low PNI. Cox regression model showed that PNI was an independent risk factor for both PFS and OS. ROC curve showed that PNI outperforms NLR, PLR and ALI in predicting both PFS and OS. The PNI-based nomogram demonstrated strong predictive capability for both PFS and OS. In addition, there was a significant correlation between PNI and IRAEs.Conclusion:A high baseline PNI might be associated with improved prognosis and the occurrence of IRAEs in ES-SCLC patients treated with first-line chemoimmunotherapy.
This study aimed to explore the effect and the molecular mechanism of tetrahedral framework nucleic acids (tFNAs), a novel self-assembled nanomaterial with excellent biocompatibility and superior endocytosis ability, in inhibition of pathological retinal neovascularization (RNV) and more importantly, in amelioration of vaso-obliteration (VO) in ischaemic retinopathy. tFNAs were synthesized from four single-stranded DNAs (ssDNAs). Cell proliferation, wound healing and tube formation assays were performed to explore cellular angiogenic functions in vitro. The effects of tFNAs on reducing angiogenesis and inhibiting VO were explored by oxygen-induced retinopathy (OIR) model in vivo. In vitro, tFNAs were capable to enter endothelial cells (ECs), inhibit cell proliferation, tube formation and migration under hypoxic conditions. In vivo, tFNAs successfully reduce RNV and inhibit VO in OIR model via the PI3K/AKT/mTOR/S6K pathway, while vascular endothelial growth factor fusion protein, Aflibercept, could reduce RNV but not inhibit VO. This study provides a theoretical basis for the further understanding of RNV and suggests that tFNAs might be a novel promising candidate for the treatment of blind-causing RNV.
Abstract Background Due to the blood-brain barrier, plasma is not an ideal source to evaluate the genetic characteristics of central nervous system tumors. Thus, cerebrospinal fluid (CSF) is becoming an alternative biopsy type to evaluate the genetic landscape of intracranial tumors. We aimed to explore the genetic profiles of CSF-derived circulating tumor DNA (ctDNA) to predict intracranial tumor responses and monitor mutational evolution during the treatment of non-small cell lung cancer (NSCLC) patients with brain metastases. Methods We conducted a prospective study of 92 newly diagnosed NSCLC patients with brain metastases. Paired CSF and plasma samples were collected at baseline, 8 weeks after treatment initiation, and disease progression. All samples underwent next-generation sequencing of 425 cancer-related genes. Results At baseline, the positive detection rates of ctDNA in CSF, plasma, and extracranial tumors were 63.7% (58/91), 91.1% (82/90), and 100% (58/58), respectively. A high level of genetic heterogeneity was observed between paired CSF and plasma, while concordance in driver mutations was also observed. A higher number of unique copy number variations was detected in CSF-ctDNA than in plasma. ctDNA positivity of CSF samples at baseline was associated with poor outcomes (HR=2.565, P=0.003). Moreover, patients with ≥ 50% reductions in the concentrations of CSF ctDNA after 8 weeks of treatment had significantly longer intracranial progression-free survivals (PFS) than patients with < 50% reductions in CSF ctDNA concentrations (13.27 months vs 6.13 months, HR=0.308, P=0.017). A ≥ 50% reduction in CSF ctDNA concentrations had better concordance with radiographic intracranial tumor responses than plasma. A ≥ 50% reduction in plasma ctDNA concentrations was also associated with longer extracranial PFS (11.57 months vs 6.20 months, HR=0.406, P=0.033). Based on clonal evolution analyses, the accumulation of subclonal mutations in CSF ctDNA was observed after 8 weeks of treatment. The clonal mutations that remained in more than 80% in CSF after 8 weeks also predicted shorter intracranial PFS (HR=3.785, P=0.039). Conclusions CSF ctDNA exhibited unique genetic profiles of brain metastases, and dynamic changes in CSF ctDNA could better predict intracranial tumor responses and track clonal evolution during treatment in NSCLC patients with brain metastases. Trial registration ClinicalTrials.gov identifier: NCT 03257735.
2040 Background: Immunotherapy has been the standard first-line therapy in patients with advanced non-small cell lung cancer (NSCLC), and shown a certain efficacy for patients with brain metastases. however, the appropriate predictive biomarkers for intracranial tumor response to immunotherapy are unclear. We conducted this prospective study to explore the immunological cytokines in cerebrospinal fluid (CSF) to predict intracranial tumor response to immunotherapy in NSCLC patients with brain metastases. Methods: We prospectively enrolled treatment-naive, EGFR/ALK wild-type NSCLC patients with brain metastases in this study. Patients received chemotherapy plus camrelizumab (a humanized anti-PD-1 monoclonal antibody) as first-line treatment, and paired plasma and cerebrospinal fluid (CSF) samples were collected at baseline and first treatment evaluation (8-week). All samples were detected for 92 Immuno-Oncology cytokines using the Olink panels, and were explored for predictive biomarkers to immunotherapy. The Mann-Whitney U test was performed to compare the immunological cytokine expression between intracranial response and non-response groups. And logistic LASSO regression model was used to variate selection and develop a CSF immuno-cytokine model to predict intracranial tumor response. Results: Between April 2020 and May 2022, a total of 28 patients were enrolled this study.At baseline, most immunological cytokines were significantly lower in paired CSF than in plasma, whereas a subset including CD83, PTN, TNFRSF21, TWEAK, ICOSLG, DCN, IL-18 and MCP-1 were increasing expressed in CSF samples. For patients with objective intracranial tumor response compared to patients with non-response, the baseline CSF levels of LAMP3 were significantly higher, whereas the CXCL10, IL-12, CXCL11, IL-18, TIE2, HGF and PDCD1 levels were significantly lower. And patients with lower HGF, IL-18 or PDCD1 levels had significantly longer intracranial progression-free survival to immunotherapy. The above CSF immunological cytokines were significantly decreased at first treatment evaluation in patients with intracranial tumor response. Our logistic CSF immuno-cytokine model selected TIE2, IL-18, LAMP3, PDCD1 and IL-12 that were significantly associated with intracranial tumor response, and yielded a mean AUC of 0.91, compared to PD-L1 expression (mean AUC of 0.72). Conclusions: Immunological cytokines in CSF could predict intracranial tumor response to immunotherapy in NSCLC patients with brain metastases, and findings require validation in a larger prospective cohort.
9095 Background: Combination of tyrosine kinase inhibitor (TKI) and chemotherapy has shown improved clinical outcomes in advanced epidermal growth factor receptor ( EGFR) mutated non-small cell lung cancer (NSCLC) patients. We conducted this phase 3, randomized, controlled trial to further investigate the clinical efficacy and safety of gefitinib combined with chemotherapy in EGFR mutated NSCLC patients with brain metastases. Methods: Treatment-naïve, confirmed brain metastases and EGFR sensitive mutated NSCLC patients were screened from six centers in China. The eligible patients were randomly assigned (1:1) to receive gefitinib alone or gefitinib plus pemetrexed-platinum chemotherapy until intracranial progressive diseases, unacceptable adverse, or any cause of death. Theprimary endpoint was intracranial progression-free survival (iPFS), secondary endpoints were PFS, overall survival, intracranial objective response rate, overall objective response rate, and safety. This study is registered at ClinicalTrials. gov, number NCT01951469. Results: From January 2017 to June 2021, 161 patients were randomly assigned to receive gefitinib (n = 81) or gefitinib plus pemetrexed-platinum chemotherapy (n = 80), the median follow-up time was 18.2 (IQR 11.8-29.7) months. The median intracranial PFS was 15.6 (14.3-16.9) months in gefitinib plus chemotherapy group versus 9.1 (8.0-10.2) months in gefitinib group (HR = 0.36, 95% CI, 0.25-0.53, P < 0.001). Similarly, the median PFS was also significantly longer in gefitinib plus chemotherapy than gefitinib alone (16.3 months vs 9.5 months, P < 0.001). In addition, gefitinib plus chemotherapy had better intracranial objective response rate (85.0% versus 63.0%, P = 0.002) and overall objective response rate (80.0% versus 64.2%, P = 0.035) than gefitinib alone. At the data cutoff, 50.3% of patients (35 patients in gefitinib plus chemotherapy group and 46 patients in gefitinib group) had died. The 3-year OS rate was significantly higher in gefitinib plus chemotherapy group (47.4%, 95% CI 36.3-58.7) than in gefitinib group (24.9%, 95% CI 15.1-34.3, P = 0.003). And median overall survival was 35.0 months (95% CI, 28.8-41.3 months) in gefitinib plus chemotherapy group versus 28.9 months (95% CI, 23.4-34.4 months) in gefitinib group (HR = 0.66, 95% CI, 0.42-1.03, P = 0.065). Grade 3 or worse adverse events were more common in gefitinib plus chemotherapy group (40.0% versus 21.0%, P = 0.010), but most of them were manageable. Conclusions: Inuntreated EGFR mutated NSCLC patients with brain metastases, gefitinib plus chemotherapy significantly improved intracranial PFS, PFS and a tendency of OS than gefitinib alone, and could be the optional first-line treatment. Clinical trial information: NCT01951469.
Importance Use of tyrosine kinase inhibitors (TKIs) is the standard therapy for epidermal growth factor receptor ( EGFR )–mutated non–small cell lung cancer (NSCLC) with brain metastases. Several studies have shown that adding chemotherapy to EGFR-TKIs could improve progression-free survival (PFS) in patients with EGFR -mutant advanced NSCLC; however, the efficacy of these agents in patients with brain metastases remains unclear. Objective To investigate the efficacy and safety of gefitinib plus chemotherapy (pemetrexed with platinum) compared with gefitinib alone in patients with untreated EGFR- mutant NSCLC brain metastases. Design, Setting, and Participants This open-label prospective, multicenter, phase 3 randomized clinical trial was conducted in 6 centers in China from January 13, 2016, to August 27, 2021. The median follow-up time was 21.1 months (IQR, 13.5-31.8 months). Patients with untreated confirmed brain metastases and EGFR -sensitive mutated NSCLC were enrolled. Interventions The eligible patients were randomly assigned (1:1) to receive gefitinib plus chemotherapy or gefitinib alone. Main Outcomes and Measures The primary end point was intracranial PFS; secondary end points included PFS, overall survival (OS), intracranial objective response rate, overall objective response rate, and safety. Intention-to-treat analysis was performed. Results A total of 161 patients (87 [54.0%] women; mean [SD] age, 55 [9.8] years; range, 26-80 years) were enrolled and randomized to receive gefitinib (n = 81) or gefitinib plus chemotherapy (n = 80). The median intracranial PFS was 15.6 months (95% CI, 14.3-16.9 months) in the gefitinib plus chemotherapy group vs 9.1 months (95% CI, 8.0-10.2 months) in the gefitinib group (hazard ratio, 0.36; 95% CI, 0.25-0.53; P < .001). Similarly, the median PFS was significantly longer with gefitinib plus chemotherapy than gefitinib alone (16.3; 95% CI, 14.4-18.2 months vs 9.5; 95% CI, 8.3-10.8 months; P < .001). Gefitinib plus chemotherapy had a better intracranial objective response rate (85.0%; 95% CI, 77.0%-93.0% vs 63.0%; 95% CI, 52.2%-73.7%; P = .002) and overall objective response rate (80.0%; 95% CI, 71.0%-89.0% vs 64.2%; 95% CI, 53.5%-74.9%; P = .03) than gefitinib alone. At data cutoff, the median OS was also significantly longer in the gefitinib plus chemotherapy group vs the gefitinib group (35.0 vs 28.9 months; hazard ratio, 0.65; 95% CI, 0.43-0.99; P = .04). Grade 3 or worse adverse events were more common with gefitinib plus chemotherapy, most of which were manageable. Conclusions and Relevance In this randomized clinical trial, gefitinib plus chemotherapy significantly improved intracranial PFS, PFS, and OS compared with gefitinib alone in patients with untreated EGFR- mutant NSCLC brain metastases and could be an optional first-line treatment for these patients. Trial Registration ClinicalTrials.gov Identifier: NCT01951469