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Effects of Sesquiterpene Lactones on Primary Cilia Formation (Ciliogenesis)

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URI: http://hdl.handle.net/10498/31907

DOI: 10.3390/TOXINS15110632

ISSN: 2072-6651

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OA_2023_0453.pdf (2.435Mb)
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Author/s
Murillo-Pineda, Marina; Coto-Cid, Juan M.; Romero, María; García Zorrilla, JesúsAuthority UCA; Chinchilla Salcedo, NuriaAuthority UCA; Medina-Calzada, Zahara; Varela Montoya, Rosa MaríaAuthority UCA; Juárez-Soto, Álvaro; Macías Domínguez, Francisco AntonioAuthority UCA; Reales Rodríguez, ElenaAuthority UCA
Date
2023
Department
Biomedicina, Biotecnología y Salud Pública; Química Orgánica
Source
Toxins - 2023, Vol. 15 n. 11, artículo número 632
Abstract
Sesquiterpene lactones (SLs), plant-derived metabolites with broad spectra of biological effects, including anti-tumor and anti-inflammatory, hold promise for drug development. Primary cilia, organelles extending from cell surfaces, are crucial for sensing and transducing extracellular signals essential for cell differentiation and proliferation. Their life cycle is linked to the cell cycle, as cilia assemble in non-dividing cells of G0/G1 phases and disassemble before entering mitosis. Abnormalities in both primary cilia (non-motile cilia) and motile cilia structure or function are associated with developmental disorders (ciliopathies), heart disease, and cancer. However, the impact of SLs on primary cilia remains unknown. This study evaluated the effects of selected SLs (grosheimin, costunolide, and three cyclocostunolides) on primary cilia biogenesis and stability in human retinal pigment epithelial (RPE) cells. Confocal fluorescence microscopy was employed to analyze the effects on primary cilia formation (ciliogenesis), primary cilia length, and stability. The effects on cell proliferation were evaluated by flow cytometry. All SLs disrupted primary cilia formation in the early stages of ciliogenesis, irrespective of starvation conditions or cytochalasin-D treatment, with no effect on cilia length or cell cycle progression. Interestingly, grosheimin stabilized and promoted primary cilia formation under cilia homeostasis and elongation treatment conditions. Thus, SLs have potential as novel drugs for ciliopathies and tumor treatment.
Subjects
sesquiterpene lactones; grosheimin; costunolide; primary cilia; ciliogenesis
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  • Articulos Científicos Biomedicina [577]
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This work is under a Creative Commons License Atribución 4.0 Internacional

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