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Profil bibliographique

Charlotte Kuperwasser

Informations fournies par OpenAlex. Research Africa ne déduit ni nationalité, ni poste, ni coordonnées personnelles.

141Publications signalées
15044Citations signalées
2Affiliations récentes

Les institutions déclarées

Les domaines associés

Cancer Cells and MetastasisCancer Genomics and DiagnosticsHead and Neck Cancer StudiesCancer-related Molecular PathwaysEpigenetics and DNA Methylation

Les publications récentes

Accès ouvert 2026 preprint OpenAlex

Targeting fibroblast activation suppresses chemotherapy-induced pro-invasive remodeling of the extracellular matrix

Anna Yui, Liyi Peng, Katie C. Lew, Dylan J. Landau et autres

Abstract Triple-negative breast cancer (TNBC) is an aggressive subtype of breast cancer that accounts for nearly 20% of breast cancer diagnoses. Despite recent approvals of novel therapeutic agents for TNBC, neoadjuvant chemotherapy remains part of standard of care treatment for TNBC patients. …

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0 citations bioRxiv (Cold Spring Harbor Laboratory)
Accès ouvert 2025 erratum OpenAlex

Correction: Single-cell organogenesis captures complex breast tissue formation in three dimensions

Gat Rauner, Nicole Traugh, Colin J. Trepicchio, Meadow E. Parrish et autres

There were errors in Development (2025) 152, dev204813 (doi:10.1242/dev.204813).The authors contacted us to say that there were three incorrectly cited references. The updated citations are detailed below.In the first paragraph of the ‘Results: Regeneration, architecture and patterning of patient-derived organoids from single …

0 citations Development
2025 article OpenAlex

Single-cell organogenesis captures complex breast tissue formation in three dimensions

Gat Rauner, Nicole Traugh, Colin J. Trepicchio, Meadow E. Parrish et autres

Current breast organoid models, primarily based on self-assembly, face limitations in accurately mimicking the complex stages of tissue development, notably in replicating detailed tissue architectures and cellular diversity. Here, we demonstrate that a solitary human breast stem cell can, within a controlled …

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5 citations Development
Accès ouvert 2025 preprint OpenAlex

Triple-Negative Breast Cancer Cells Activate Sensory Neurons via TRPV1 to Drive Nerve Outgrowth and Tumor Progression

Hanan Bloomer, Savannah R. Parker, Wesley Clawson, M. Caron et autres

Abstract The tumor microenvironment in triple-negative breast cancer (TNBC) is characterized by increased sensory nerve density, which contributes to cancer progression by promoting migration and metastasis. However, the origin of tumor-innervating nerves and the mechanisms driving sensory innervation into tumors remain poorly …

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5 citations bioRxiv (Cold Spring Harbor Laboratory)
Accès ouvert 2025 article OpenAlex

DDR1 regulates RUNX1-CBFβ to control breast stem cell differentiation

Colin Trepicchio, Gat Rauner, Nicole Traugh, Ruohong Wang et autres

Understanding epithelial stem cell differentiation and morphogenesis during breast tissue development is essential, as disruption in these processes underlie breast cancer formation. We used a next-generation single-cell-derived organoid model to investigate how individual stem cells give rise to complex tissue. We show …

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3 citations Stem Cell Reports
2025 preprint OpenAlex

Immune-Epithelial Interactions via TGF-β Orchestrates Stem-Cell Niche Formation and Morphogenesis

Nicole Traugh, Colin Trepicchio, Gat Rauner, Meadow E. Parrish et autres

Abstract Mesenchymal-epithelial interactions are well-established for organogenesis, but the role of immune cells in these processes remains less explored. Organoids offer powerful models for studying tissue development, especially where in vivo models are limited. In this study, we established an immune-epithelial co-culture …

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0 citations bioRxiv (Cold Spring Harbor Laboratory)
Accès ouvert 2025 preprint OpenAlex

Next-Generation Breast Organoids Capture Human Organogenesis With High-Resolution Live Imaging

Gat Rauner, Nicole Traugh, Colin J. Trepicchio, Meadow E. Parrish et autres

Organoids have emerged as a powerful tool for modeling tissue growth and diseases. In this study, we introduce a groundbreaking organotypic culture technique that replicates the morphology, scale, and heterogeneity of human breast tissue, and includes a mesenchymal-like stromal component. A standout …

0 citations Qeios

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