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June 17, 2026Journal of Cell Science1 citations

Live imaging of epithelial phagocyte differentiation in the Drosophila ovary reveals transient and novel behaviors

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CCCaique Almeida Machado CostaCSCristian Santiago SantiagoJSJie Sun

Key Points

  • This research aims to investigate the differentiation of epithelial cells into non-professional phagocytes in response to various stressors.
  • Utilized time-lapse live imaging to observe follicle cell behaviors over time.
  • Analyzed epithelial behavior during colony formation and interactions with germline cells.
  • Documented JNK pathway activation and related cellular activities.
  • Demonstrated a gradual increase in JNK pathway activation during phagocytic processes.
  • Observed collective migration of non-professional phagocytes towards dying germline cells and engulfment of neighboring follicle cells.
  • Identified behavioral complexities in epithelial-derived non-professional phagocytes, suggesting they perform functions similar to professional phagocytes.

Abstract

The transformation of epithelial cells into non-professional phagocytes (NPPs) is a conserved and versatile adaptation that occurs in response to immune challenges, tissue remodeling and apoptotic debris clearance. In the Drosophila melanogaster ovary, follicle cells (FCs) acquire phagocytic capabilities under stress, providing a powerful model to study this process. Using time-lapse live imaging, we captured dynamic behaviors associated with FC-to-NPP differentiation that are too transient to detect by static imaging. Our approach confirmed established features, including germline cell death, cytoplasmic expansion and debris engulfment, and revealed previously unrecognized capabilities. These include a gradual increase in JNK pathway activation, after which NPPs exhibit collective migration toward dying germline cells, epithelial delamination, long-range target capture through pseudopodial extensions and the engulfment of neighboring FCs. These findings demonstrate that epithelial-derived NPPs can perform complex phagocytic tasks typically attributed to professional phagocytes, such as macrophages. Our work establishes the Drosophila ovary as a robust in vivo system to uncover conserved and novel aspects of epithelial plasticity and phagocytic function, particularly those involving transient behaviors missed by fixed-sample analyses.

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Cite This Study

Costa et al. (2026) studied this question.

synapsesocial.com/papers/6a3238acd50b63ecad204713https://doi.org/10.1242/jcs.264328
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