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Methods in Molecular Biology (Clifton, N.J.)|February 11, 2022
In Ovo Gain- and Loss-of-Function Approaches to Study Gut MorphogenesisBhargav D Sanketi, Natasza A KurpiosMethods in Molecular Biology (Clifton, N.J.)|February 11, 2022
Avian Embryos as a Model to Study Vascular DevelopmentBhargav D Sanketi, Natasza A KurpiosSTAR Protocols|March 29, 2023
Visualizing and manipulating the production and accumulation of hyaluronan for functional assessment in chicken embryosBhargav D Sanketi, Aravind Sivakumar, Natasza A KurpiosAnnual Review of Cell and Developmental Biology|April 23, 2025
Morphogenesis of the Vertebrate Intestine: From Form to FunctionBhargav D Sanketi, Liqing Huang, Natasza A KurpiosEvolution & Development|January 19, 2021
Changes in Nkx2.1, Sox2, Bmp4, and Bmp16 expression underlying the lung-to-gas bladder evolutionary transition in ray-finned fishesEmily C Funk, Catriona Breen, Bhargav D Sanketi, et al.EMBO Reports|March 21, 2023
Inhibition of ATM kinase rescues planarian regeneration after lethal radiationDivya A Shiroor, Kuang-Tse Wang, Bhargav D Sanketi, et al.Science (New York, N.Y.)|September 22, 2022
<i>Pitx2</i> patterns an accelerator-brake mechanical feedback through latent TGFβ to rotate the gutBhargav D Sanketi, Noam Zuela-Sopilniak, Elizabeth Bundschuh, et al.Developmental Cell|March 27, 2024
Villus myofibroblasts are developmental and adult progenitors of mammalian gut lymphatic musculatureBhargav D Sanketi, Madhav Mantri, Liqing Huang, et al.Biorxiv : the Preprint Server for Biology|January 30, 2023
Origin and adult renewal of the gut lacteal musculature from villus myofibroblastsBhargav D Sanketi, Madhav Mantri, Liqing Huang, et al.Cell|August 15, 2025
Prevalent mesenchymal drift in aging and disease is reversed by partial reprogrammingJinlong Y Lu, William B Tu, Ronghui Li, et al.Pageof 1