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25
result(s) for
"Alborelli, Ilaria"
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A nanobody-based toolset to investigate the role of protein localization and dispersal in Drosophila
by
Bieli, Dimitri
,
Caussinus, Emmanuel
,
Affolter, Markus
in
Animals
,
Cell Biology
,
Decapentaplegic (Dpp) protein
2017
The role of protein localization along the apical-basal axis of polarized cells is difficult to investigate in vivo, partially due to lack of suitable tools. Here, we present the GrabFP system, a collection of four nanobody-based GFP-traps that localize to defined positions along the apical-basal axis. We show that the localization preference of the GrabFP traps can impose a novel localization on GFP-tagged target proteins and results in their controlled mislocalization. These new tools were used to mislocalize transmembrane and cytoplasmic GFP fusion proteins in the Drosophila wing disc epithelium and to investigate the effect of protein mislocalization. Furthermore, we used the GrabFP system as a tool to study the extracellular dispersal of the Decapentaplegic (Dpp) protein and show that the Dpp gradient forming in the lateral plane of the Drosophila wing disc epithelium is essential for patterning of the wing imaginal disc.
Journal Article
Cell-free DNA analysis in healthy individuals by next-generation sequencing: a proof of concept and technical validation study
2019
Pre-symptomatic screening of genetic alterations might help identify subpopulations of individuals that could enter into early access prevention programs. Since liquid biopsy is minimally invasive it can be used for longitudinal studies in healthy volunteers to monitor events of progression from normal tissue to pre-cancerous and cancerous condition. Yet, cell-free DNA (cfDNA) analysis in healthy individuals comes with substantial challenges such as the lack of large cohort studies addressing the impact of mutations in healthy individuals or the low abundance of cfDNA in plasma. In this study, we aimed to investigate the technical feasibility of cfDNA analysis in a collection of 114 clinically healthy individuals. We first addressed the impact of pre-analytical factors such as cfDNA yield and quality on sequencing performance and compared healthy to cancer donor samples. We then confirmed the validity of our testing strategy by evaluating the mutational status concordance in matched tissue and plasma specimens collected from cancer patients. Finally, we screened our group of healthy donors for genetic alterations, comparing individuals who did not develop any tumor to patients who developed either a benign neoplasm or cancer during 1–10 years of follow-up time. To conclude, we have established a rapid and reliable liquid biopsy workflow that allowed us to study genomic alterations with a limit of detection as low as 0.08% of variant allelic frequency in healthy individuals. We detected pathogenic cancer mutations in four healthy donors that later developed a benign neoplasm or invasive breast cancer up to 10 years after blood collection. Even though larger prospective studies are needed to address the specificity and sensitivity of liquid biopsy as a clinical tool for early cancer detection, systematic screening of healthy individuals will help understanding early events of tumor formation.
Journal Article
T cell subtype profiling measures exhaustion and predicts anti-PD-1 response
2022
Anti-PD-1 therapy can provide long, durable benefit to a fraction of patients. The on-label PD-L1 test, however, does not accurately predict response. To build a better biomarker, we created a method called T Cell Subtype Profiling (TCSP) that characterizes the abundance of T cell subtypes (TCSs) in FFPE specimens using five RNA models. These TCS RNA models are created using functional methods, and robustly discriminate between naïve, activated, exhausted, effector memory, and central memory TCSs, without the reliance on non-specific, classical markers. TCSP is analytically valid and corroborates associations between TCSs and clinical outcomes. Multianalyte biomarkers based on TCS estimates predicted response to anti-PD-1 therapy in three different cancers and outperformed the indicated PD-L1 test, as well as Tumor Mutational Burden. Given the utility of TCSP, we investigated the abundance of TCSs in TCGA cancers and created a portal to enable researchers to discover other TCSP-based biomarkers.
Journal Article
Mixed-methods process evaluation of ctDNA use to guide decision-making in patients with advanced solid cancers: study protocol for a substudy of the LIQPLAT trial
by
Hinke, Jennifer
,
Alborelli, Ilaria
,
Matter, Matthias S
in
Biopsy
,
Cancer
,
Circulating Tumor DNA - blood
2025
IntroductionThere is an urgent need to better understand how information from circulating tumour DNA (ctDNA) can be integrated into routine care for patients with advanced solid cancer.Methods and analysisThe implementation of liquid biopsies in routine care of patients with advanced solid cancer trial (LIQPLAT) is a single-centre, single-arm trial investigating the implementation of ctDNA in the routine care of patients with advanced solid cancer. We present a mixed-methods process evaluation embedded in the LIQPLAT trial, following Medical Research Council guidance and the Reach, Effectiveness, Adoption, Implementation, Maintenance framework. We show a logic model, which details the causal chain and related assumptions from recruiting patients into the trial to the goal of improving quality of life and survival. Data collection is longitudinal and includes: semistructured interviews with healthcare professionals (pathologists, biologists, oncologists; planned n=20) and patients (planned n=15) to identify implementation barriers and facilitators; recordings of molecular tumour board meetings to analyse clinical decision-making; the 23-item Normalisation MeAsure Development survey for healthcare professionals (planned n=20) at four time points. Quantitative data from hospital records will be used to assess implementation outcomes like patient acceptance rates and ctDNA workflow success. Qualitative data will undergo thematic and content analysis, and quantitative data will be analysed using a Bayesian framework.Ethics and disseminationThe LIQPLAT trial was approved by the regional ethics committee of Northwestern and Central Switzerland (BASEC 2024-00358). The qualitative aspects of the process evaluation were exempted from ethics review according to the Swiss Human Research Act. We follow guidelines for data security, confidentiality and information governance. Results will be submitted for publication in peer-reviewed journals and discussed at conferences.Trial registration numberNCT06367751, SNCTP000005844.
Journal Article
Tumor immune dynamics and long-term clinical outcome of stage IIIA NSCLC patients treated with neoadjuvant chemoimmunotherapy
2025
Neoadjuvant chemoimmunotherapy offers promise to improve outcomes for patients with resectable non-small cell lung cancer (NSCLC). Yet not all patients derive treatment benefits, and reliable biomarkers of response are still lacking. We here assess the long-term clinical outcome of neoadjuvant chemotherapy and perioperative anti-PD-L1 inhibition in resectable stage IIIA NSCLC in the SAKK 16/14 trial and provide a comprehensive characterization of anti-tumor immune responses for biomarker-based treatment personalization. We report secondary outcomes of median event-free survival (EFS) of 4.0 years and median overall survival not being reached after a median follow-up of 5.4 years. Computer-aided spatial image analysis emphasizes the importance of CD8
+
T cell positioning in tumors, and larger tertiary lymphoid structures in pre-treatment biopsies correlate with improved EFS. Genomic techniques reveal the association of intratumoral TCR diversity with response. Finally, circulating proliferating CD39
+
PD-1
+
CD8
+
T cells and elevated levels of CCL15 post-treatment are seen in patients with sustained therapeutic benefit. NCT02572843.
Neoadjuvant immunochemotherapy against NSCLC has been tested in clinical trials. Here, the authors follow up longer-term survival and measure immune cell phenotype changes in a single-arm phase II clinical trial of neoadjuvant immunochemotherapy, indicating association of intratumoural TCR diversity and CD8 T cell positioning.
Journal Article
Cancer Diagnosis Using a Liquid Biopsy: Challenges and Expectations
by
Quagliata, Luca
,
Donato, Cinzia
,
Castro-Giner, Francesc
in
Apoptosis
,
cancer diagnosis
,
cancer treatment
2018
The field of cancer diagnostics has recently been impacted by new and exciting developments in the area of liquid biopsy. A liquid biopsy is a minimally invasive alternative to surgical biopsies of solid tissues, typically achieved through the withdrawal of a blood sample or other body fluids, allowing the interrogation of tumor-derived material including circulating tumor cells (CTCs) and circulating tumor DNA (ctDNA) fragments that are present at a given time point. In this short review, we discuss a few studies that summarize the state-of-the-art in the liquid biopsy field from a diagnostic perspective, and speculate on current challenges and expectations of implementing liquid biopsy testing for cancer diagnosis and monitoring in the clinical setting.
Journal Article
Case Report: mRNA vaccination-mediated STAT3 overactivation with agranulocytosis and clonal T-LGL expansion
by
Recher, Mike
,
Tzankov, Alexandar
,
Parmentier, Stefani
in
2019-nCoV Vaccine mRNA-1273
,
Ad26COVS1
,
Adenoviridae
2023
Vaccines against SARS-CoV-2 are the most effective measure against the COVID-19 pandemic. The safety profile of mRNA vaccines in patients with rare diseases has not been assessed systematically in the clinical trials, as these patients were typically excluded. This report describes the occurrence of agranulocytosis within days following the first dose of an mRNA-1273 vaccination against COVID-19 in a previously healthy older adult. The patient was diagnosed with a suspected STAT3 wild-type T-cell large granular lymphocytic leukaemia (T-LGL). Neutropenia was successfully treated with IVIG, glucocorticoids, and G-CSF. In vitro experiments aimed at elucidating the pathways potentially causing the mRNA vaccine-associated neutropenia indicated that the mRNA, but not the adenoviral Ad26.COV2.S vector vaccine, triggered strong IL-6/STAT3 activation in vitro, resulting in excessive T-cell activation and neutrophil degranulation in the patient but not in controls. mRNA-1273 activated TLR-3 suggesting TLR mediated IL-6/STAT3 pathway activation. To complete the primary series of COVID-19 immunization, we used a single dose of Ad26.COV2.S vector vaccine without reoccurrence of neutropenia. The T-LGL clone remained stable during the follow-up of more than 12 months without ongoing therapy. Our data suggest that switching the immunization platform may be a reasonable approach in subjects with rare associated hematologic side effects due to excess STAT3-mediated stimulation following mRNA vaccination. Using in vitro testing before re-administration of a (COVID) vaccine also has relevance for other rare immune events after (mRNA) vaccination.
Journal Article
ERBB2 Mutation Testing in NSCLC: A Pan-European Real-World Evaluation of the Oncomine Precision Assay
by
Bordone, Olivier
,
Alborelli, Ilaria
,
Souza da Silva, Ricella
in
Biopsy
,
Data analysis
,
ErbB-2 protein
2025
Background/Objectives: The non-small-cell lung cancer (NSCLC) therapeutic landscape has undergone a profound transformation with the introduction of multiple personalized treatment options. Mutations in ERBB2 (HER2) have recently emerged as promising novel targets for the treatment of non-squamous NSCLC (nsNSCLC). Accurate, rapid, and efficient molecular profiling is crucial for identifying patients who may benefit from targeted therapies, including HER2-directed agents. Materials and Methods: Here, we aimed to retrospectively assess the performance of the Oncomine™ Precision Assay* (OPA) in combination with the Ion Torrent Genexus™ Integrated Sequencer* (Thermo Fisher Scientific. Waltham, MA, USA) for detecting ERBB2 mutations in nsNSCLC. A total of 108 archived nsNSCLC samples, consisting of biopsies, resections, and cytological specimens, were used to assess concordance with in-house-validated orthogonal tests. Results: The OPA showed high sensitivity and specificity with an overall accuracy of 100% for single-nucleotide variants (SNVs) and insertions and deletions (Indels). SNVs and Indels with allele frequencies as low as 5% were correctly identified across samples with a tumor cell content ranging from 5% to 95%. Additionally, the assay demonstrated high reproducibility across the six participating laboratories. The turnaround time of the OPA was notably shorter compared to traditional orthogonal methods, facilitating rapid molecular report generation. Conclusions: The OPA in combination with the Ion Torrent Genexus™ System allows for highly sensitive and specific detection of relevant ERBB2 mutations. The assay’s streamlined workflow, coupled with its automated data analysis pipeline, enables a fast turnaround time for testing across a range of sample types. This includes samples with reduced tumor cell content and limited available input. This study demonstrates the future potential of using this assay in a clinical setting.
Journal Article
The evolutionarily conserved long non‐coding RNA LINC00261 drives neuroendocrine prostate cancer proliferation and metastasis via distinct nuclear and cytoplasmic mechanisms
2021
Metastatic neuroendocrine prostate cancer (NEPC) is a highly aggressive disease, whose incidence is rising. Long noncoding RNAs (lncRNAs) represent a large family of disease‐ and tissue‐specific transcripts, most of which are still functionally uncharacterized. Thus, we set out to identify the highly conserved lncRNAs that play a central role in NEPC pathogenesis. To this end, we performed transcriptomic analyses of donor‐matched patient‐derived xenograft models (PDXs) with immunohistologic features of prostate adenocarcinoma (AR+/PSA+) or NEPC (AR−/SYN+/CHGA+) and through differential expression analyses identified lncRNAs that were upregulated upon neuroendocrine transdifferentiation. These genes were prioritized for functional assessment based on the level of conservation in vertebrates. Here, LINC00261 emerged as the top gene with over 3229‐fold upregulation in NEPC. Consistently, LINC00261 expression was significantly upregulated in NEPC specimens in multiple patient cohorts. Knockdown of LINC00261 in PC‐3 cells dramatically attenuated its proliferative and metastatic abilities, which are explained by parallel downregulation of CBX2 and FOXA2 through distinct molecular mechanisms. In the cell cytoplasm, LINC00261 binds to and sequesters miR‐8485 from targeting the CBX2 mRNA, while inside the nucleus, LINC00261 functions as a transcriptional scaffold to induce SMAD‐driven expression of the FOXA2 gene. For the first time, these results demonstrate hyperactivation of the LINC00261‐CBX2‐FOXA2 axes in NEPC to drive proliferation and metastasis, and that LINC00261 may be utilized as a therapeutic target and a biomarker for this incurable disease. Neuroendocrine prostate cancer (NEPC) is a highly aggressive disease with high incidence of metastasis. Here, we identified LINC00261 among the top upregulated transcripts in NEPC. Inside the nucleus, LINC00261 promoted anchorage‐independent growth and metastatic gene programs by recruiting the SMAD2/3 transcriptional machinery to FOXA2 cis‐regulatory elements. Cytoplasmic LINC00261 blocked the binding of miR‐8485 to CBX2 and induced a CBX2‐driven proliferative gene program. Our study demonstrates the role of LINC00261‐CBX2‐FOXA2 axis in proliferation and metastasis of NEPC.
Journal Article
Ex vivo drug sensitivity testing predicts treatment outcomes in advanced ovarian cancer
by
Tanna, Tanmay
,
Heinzelmann-Schwarz, Viola
,
Lombardo, Flavio C.
in
631/67/1059/99
,
631/67/1517/1709
,
631/67/70
2026
Effective management of advanced epithelial ovarian cancer (EOC) is challenging, with most patients relapsing despite standard therapies, highlighting the need for personalized treatment. Functional ex vivo drug testing enables matching patients to effective therapies based on drug sensitivity. We present DRUGSENS, a scalable, clinically adaptable ex vivo screening platform that quantitatively assesses single-cell, on-target drug effects in cell lines and patient-derived samples. DRUGSENS offers high-resolution analysis of responses to single agents and relevant drug combinations, guiding personalized treatment across tumor types. The semi-automated assay integrates immunofluorescence-based confocal imaging with computational analysis using QuPath, Fiji, and a dedicated R package. We profiled 21 samples from 17 patients in chemotherapy-naive and relapsed states, achieving 100% culture success and delivering results within 10 days. Most samples showed limited sensitivity to multiple agents, indicating multidrug resistance. Notably, ex vivo drug responses correlated significantly with progression-free and overall survival. DRUGSENS supports rapid, clinically relevant functional profiling in EOC, providing a valuable tool to inform treatment recommendations and prioritize drugs for clinical application.
Journal Article