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Ernst Lengyel

@lengyel-ovca-lab.bsky.social
81 followers 58 following 6 posts

Physician scientist studying ovarian cancer obgyn.uchicago.edu/research/lengyel…

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Reposted by Ernst Lengyel
uchicagoobgyn.bsky.social @uchicagoobgyn.bsky.social · 16/07/2026
New research from the Lengyel Laboratory is featured on the cover of the June issue of Trends in Pharmacological Sciences. The invited review explores how advances in NNMT biology & inhibitor development are accelerating progress toward new therapies. ➡️ loom.ly/eoXA2QU
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Ernst Lengyel @lengyel-ovca-lab.bsky.social · 12/08/2025
I’m proud to share our lab's latest work in collaboration with @mannlab.bsky.social is featured on the cover of @cp-cancercell.bsky.social. The artwork illustrates the malignant progression of borderline ovarian tumors to LGSOCs. ‬‬‬‬‬‬‬ Read the publication: www.cell.com/cancer-cell/...
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Reposted by Ernst Lengyel
Cancer Cell @cp-cancercell.bsky.social · 11/08/2025
Leap onto the August issue of Cancer Cell, out now: www.cell.com/cancer-cell/...
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Ernst Lengyel @lengyel-ovca-lab.bsky.social · 23/07/2025
Proud to share our new @nature.com study: We developed the 1st NNMT inhibitor that reprograms cancer-associated fibroblasts, boosting immune response & stopping tumor growth in ovarian cancer models, especially when paired with immunotherapy. nature.com/articles/s41...
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Reposted by Ernst Lengyel
uchicagoobgyn.bsky.social @uchicagoobgyn.bsky.social · 23/07/2025
New in @nature.com: Drs. @lengyel-ovca-lab.bsky.social, Janna Heide & co-authors discovered a first-of-its-kind NNMT inhibitor that reprograms cancer-associated fibroblasts and restores immune response in ovarian cancer. A major step toward more effective therapies. www.nature.com/articles/s41...
nature.com
NNMT inhibition in cancer-associated fibroblasts restores antitumour immunity - Nature
An NNMT inhibitor reduces tumour burden and metastasis in multiple mouse cancer models and restores immune checkpoint blockade efficacy by decreasing cancer-associated-fibroblast-mediated recruitment ...
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Reposted by Ernst Lengyel
UChicago Cancer @uchicagocancer.bsky.social · 23/07/2025
🔥 Hot off the press: In a new @nature.com study, Ernst Lengyel, MD, PhD and team show that blocking NNMT in tumor-supporting cells restores immune response & stops ovarian cancer growth, offering a new strategy to treat one of the deadliest cancers. @lengyel-ovca-lab.bsky.social ow.ly/zzfZ50Wu3UW
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Reposted by Ernst Lengyel
lisaschweizer.bsky.social @lisaschweizer.bsky.social · 27/06/2025
I’m thrilled to share that the main work of my PhD has been published @cp-cancercell.bsky.social ! With @mannlab.bsky.social & @lengyel-ovca-lab.bsky.social, we mapped the progression from borderline ovarian tumors to LGSC using spatial proteo-transcriptomics and identified new therapeutic targets.
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Reposted by Ernst Lengyel
Cancer Cell @cp-cancercell.bsky.social · 27/06/2025
Online Now: Spatial proteo-transcriptomic profiling reveals the molecular landscape of borderline ovarian tumors and their invasive progression
dlvr.it
Spatial proteo-transcriptomic profiling reveals the molecular landscape of borderline ovarian tumors and their invasive progression
Schweizer et al. profile the tumor progression from non-invasive serous borderline tumors of the ovary to metastatic low-grade serous ovarian cancer. By integrating cell-type resolved Deep Visual Proteomics and spatial transcriptomics, they identify and validate several drivers of transformation as well as a novel combination treatment for this chemo-resistant disease.
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Reposted by Ernst Lengyel
Max Planck Institute of Biochemistry @mpibiochem.bsky.social · 26/06/2025
An interdisciplinary study uncovers how benign borderline ovarian tumors develop into invasive low-grade serous carcinoma, opening a new avenue for targeted therapy. ❕Publication: www.cell.com/cancer-cell/... ❕Press Release: www.biochem.mpg.de/when-tumors-...
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Reposted by Ernst Lengyel
Mann Lab @mannlab.bsky.social · 26/06/2025
Our paper on ovarian cancer #LGSC is out in @Cancer_Cell. Using deep visual proteomics #DVP and spatial transcriptomics, we mapped how non-invasive tumors become deadly ovarian disease, and found a promising new treatment combination. www.cell.com/cancer-cell/...
cell.com
Spatial proteo-transcriptomic profiling reveals the molecular landscape of borderline ovarian tumors and their invasive progression
Schweizer et al. profile the tumor progression from non-invasive serous borderline tumors of the ovary to metastatic low-grade serous ovarian cancer. By integrating cell-type resolved Deep Visual Prot...
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Ernst Lengyel @lengyel-ovca-lab.bsky.social · 26/06/2025
Proud to share our latest work in ‪#CancerCell‬ in collaboration with the @mannlab.bsky.social: we map the progression from borderline ovarian tumors to low-grade serous ovarian cancer and propose a promising new therapeutic strategy. ‬‬ www.sciencedirect.com/science/arti...
sciencedirect.com
Spatial proteo-transcriptomic profiling reveals the molecular landscape of borderline ovarian tumors and their invasive progression
Epithelial serous borderline tumors (SBT) are non-invasive neoplastic ovarian lesions that may recur as chemo-resistant low-grade serous cancer (LGSC)…
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Ernst Lengyel @lengyel-ovca-lab.bsky.social · 08/02/2025
We describe a comprehensive cell atlas of healthy human fallopian tubes during the menstrual cycle and menopause using single-cell RNA and ATAC sequencing in NatureCommunication. Team work with Drs. Weigert, Li, Chen, Basu www.nature.com/articles/s41...
nature.com
A cell atlas of the human fallopian tube throughout the menstrual cycle and menopause - Nature Communications
The fallopian tube undergoes extensive cellular and molecular changes during the menstrual cycle and aging. Here, Weigert et al. present a single-cell atlas of the normal human fallopian tube revealin...
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Ernst Lengyel @lengyel-ovca-lab.bsky.social · 09/01/2025
We participated in a study led by Honami Naora Ph.D. from MD Anderson characterizing the role of B-cells in early ovarian cancer metastasis “Neutrophil extracellular traps promote pre-metastatic niche formation in the omentum by expanding innate-like B cells that express IL-10” dlvr.it/TH7nCc
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