- Research Article
349
- 10.1016/j.ccell.2023.02.015
Activated fibroblasts in cancer: Perspectives and challenges.
- Mar 01, 2023
- Cancer cell
- Giuseppina Caligiuri + 1 more +1
Publications from 2021 to 2026
Showing 10 of 13 papers
Activated fibroblasts in cancer: Perspectives and challenges.
Suppression of tumor-associated neutrophils by lorlatinib attenuates pancreatic cancer growth and improves treatment with immune checkpoint blockade
Pancreatic ductal adenocarcinoma (PDAC) patients have a 5-year survival rate of only 8% largely due to late diagnosis and insufficient therapeutic options. Neutrophils are among the most abundant immune cell type within the PDAC tumor microenvironment (TME), and are associated with a poor clinical prognosis. However, despite recent advances in understanding neutrophil biology in cancer, therapies targeting tumor-associated neutrophils are lacking. Here, we demonstrate, using pre-clinical mouse models of PDAC, that lorlatinib attenuates PDAC progression by suppressing neutrophil development and mobilization, and by modulating tumor-promoting neutrophil functions within the TME. When combined, lorlatinib also improves the response to anti-PD-1 blockade resulting in more activated CD8 + T cells in PDAC tumors. In summary, this study identifies an effect of lorlatinib in modulating tumor-associated neutrophils, and demonstrates the potential of lorlatinib to treat PDAC.
Read moreDetection of Chemotherapy-resistant Pancreatic Cancer Using a Glycan Biomarker, sTRA.
A subset of pancreatic ductal adenocarcinomas (PDACs) is highly resistant to systemic chemotherapy, but no markers are available in clinical settings to identify this subset. We hypothesized that a glycan biomarker for PDACs called sialylated tumor-related antigen (sTRA) could be used for this purpose. We tested for differences between PDACs classified by glycan expression in multiple systems: sets of cell lines, organoids, and isogenic cell lines; primary tumors; and blood plasma from human subjects. The sTRA-expressing models tended to have stem-like gene expression and the capacity for mesenchymal differentiation, in contrast to the nonexpressing models. The sTRA cell lines also had significantly increased resistance to seven different chemotherapeutics commonly used against pancreatic cancer. Patients with primary tumors that were positive for a gene expression classifier for sTRA received no statistically significant benefit from adjuvant chemotherapy, in contrast to those negative for the signature. In another cohort, based on direct measurements of sTRA in tissue microarrays, the patients who were high in sTRA again had no statistically significant benefit from adjuvant chemotherapy. Furthermore, a blood plasma test for the sTRA glycan identified the PDACs that showed rapid relapse following neoadjuvant chemotherapy. This research demonstrates that a glycan biomarker could have value to detect chemotherapy-resistant PDAC in clinical settings. This capability could aid in the development of stratified treatment plans and facilitate biomarker-guided trials targeting resistant PDAC.
Read moreDetection of incipient pancreatic cancer with novel tumor-specific antibodies in mouse models
Abstract Pancreatic ductal adenocarcinoma (PDAC) is a highly lethal malignancy, as 90% of patients do not survive beyond five years from diagnosis. This dismal prognosis is largely due to the advanced stage of the disease at diagnosis, which precludes potentially curative surgical resection. Although early detection strategies hold significant promise for improving patient outcomes, there is still no accurate diagnostic tool to detect incipient PDAC. Here, we sought to develop antibodies for the early detection of PDAC by positron-emission tomography (PET) imaging. Accordingly, we establish a pipeline to generate novel tumor-specific monoclonal antibodies (mAbs) against cell-surface proteins of PDAC patient-derived organoids (PDOs). We identify a panel of 16 tumor organoid-binding antibodies (TOBi-bodies) that display high reactivity to human PDAC tissues but not to matched adjacent normal pancreas. We then employ biochemical, flow cytometric, mass spectrometric, and CRISPR/Cas9-mediated knockout methods to determine the cognate antigens of these TOBi-bodies. We identify two mAbs that bind to tumor-specific variants of the surface protein CEACAM6 and show minimal binding to normal tissues. PET imaging in mouse models using these TOBi-bodies enables the detection of incipient human organoid-derived PDAC tumors that are rather undetectable by palpation or high-resolution ultrasound imaging techniques. We propose that further development of these mAbs as PET radiotracers could facilitate the early detection and accurate staging of PDAC.
Read moreThe Era of COVID-19 and the Rise of Science Collectivism in Cancer Research.
The coronavirus SARS-CoV-2 has created a global pandemic that has killed more than a quarter million people since December 2019, halted commerce, and disrupted our ability to research cancer in the laboratory and clinic and care for our patients. A return to a functioning society can be facilitated by the active participation of cancer researchers to diagnose and treat SARS-CoV-2-infected patients, and the direct and indirect benefits of our involvement cannot be overstated.
Read moreOrganoid Models for Cancer Research
Organoid cultures have emerged as powerful model systems accelerating discoveries in cellular and cancer biology. These three-dimensional cultures are amenable to diverse techniques, including high-throughput genome and transcriptome sequencing, as well as genetic and biochemical perturbation, making these models well suited to answer a variety of questions. Recently, organoids have been generated from diverse human cancers, including breast, colon, pancreas, prostate, bladder, and liver cancers, and studies involving these models are expanding our knowledge of the etiology and characteristics of these malignancies. Co-cultures of cancer organoids with non-neoplastic stromal cells enable investigation of the tumor microenvironment. In addition, recent studies have established that organoids have a place in personalized medicine approaches. Here, we describe the application of organoid technology to cancer discovery and treatment.
Read moreStromal biology and therapy in pancreatic cancer: ready for clinical translation?
Pancreatic ductal adenocarcinoma (PDA) is notoriously aggressive and hard to treat. The tumour microenvironment (TME) in PDA is highly dynamic and has been found to promote tumour progression, metastasis niche formation and therapeutic resistance. Intensive research of recent years has revealed an incredible heterogeneity and complexity of the different components of the TME, including cancer-associated fibroblasts, immune cells, extracellular matrix components, tumour vessels and nerves. It has been hypothesised that paracrine interactions between neoplastic epithelial cells and TME compartments may result in either tumour-promoting or tumour-restraining consequences. A better preclinical understanding of such complex and dynamic network systems is required to develop more powerful treatment strategies for patients. Scientific activity and the number of compelling findings has virtually exploded during recent years. Here, we provide an update of the most recent findings in this area and discuss their translational and clinical implications for basic scientists and clinicians alike.
Read moreCurrent status of blood substitute research: towards a new paradigm.
For many reasons, haemoglobin, modified to prolong its circulation time, seems to be the optimal choice for a cell-free O2 carrier (blood substitute) because of its capacity to reversibly bind O2 in the lung and release it in tissue. After refining methods to prepare highly purified haemoglobin solutions and to chemically or genetically modify haemoglobin to overcome renal toxicity and to prolong retention time, a number of unwanted effects were observed in human clinical trials. These included symptoms referable to the GI tract, elevated pancreatic enzymes and hypertension, presumed to be the result of vasoconstriction. Studies on the mechanism of vasoconstriction induced by haemoglobin, using new techniques to investigate the microcirculation have led to a surprising new paradigm for the design of safe and effective solutions. These include increased O2 affinity (low P50) and increased viscosity and oncotic pressure. These second-generation solutions hold greater promise for clinical development.
Read moreLetter from the chair
No abstract available.
Über die Natur des Sedimentgleichgewichtes im Litoral
Unter Beachtung der Fortschritte der modernen Brandungsforschung sowie neuerer Beobachtungsergebnisse im Litoral erscheint die vonCornaglia entwickelte Theorie der neutralen Linie, die das einzelne Sedimentkorn isoliert in Ansatz brachte, unhaltbar. An ihre Stelle tritt die den tatsachlichen Verhaltnissen besser Rechnung tragende Theorie des «Massenmomentes» der brandenden Wellen, die nicht mehr das einzelne Korn, sondern die gesamte unter der Einwirkung der Oszillation entstehende Suspensionswolke betrachtet. Die Vorteile dieser neuen Betrachtungsweise werden kurz skizziert und an Hand einiger Beispiele naher erlautert.
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