Swarnabh Bhattacharya
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Explore the profile of Swarnabh Bhattacharya including associated specialties, affiliations and a list of published articles.
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10
Citations
140
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Recent Articles
1.
Bhattacharya S, Tei G, Singh P, Malagola E, Eskiocak O, He R, et al.
bioRxiv
. 2025 Feb;
PMID: 39975049
Enterocytes and four secretory cell types derive from stem cells located in intestinal crypts. Whereas secretory goblet and Paneth cells have long been considered distinct, we find high overlap in...
2.
Gaynor L, Singh H, Tie G, Badarinath K, Madha S, Mancini A, et al.
Nature
. 2025 Jan;
PMID: 39778708
Oncogenic mutations that drive colorectal cancer can be present in healthy intestines for long periods without overt consequence. Mutation of Apc, the most common initiating event in conventional adenomas, activates...
3.
Singh P, Gu W, Madha S, Lynch A, Cejas P, He R, et al.
Cell Stem Cell
. 2024 May;
31(7):1038-1057.e11.
PMID: 38733993
Enteroendocrine cells (EECs) secrete serotonin (enterochromaffin [EC] cells) or specific peptide hormones (non-EC cells) that serve vital metabolic functions. The basis for terminal EEC diversity remains obscure. By forcing activity...
4.
Turovsky L, Kheshaiboun G, Yassen G, Nagosa S, Boyango I, Amitai-Lange A, et al.
Cell Death Dis
. 2024 Feb;
15(2):174.
PMID: 38409173
miR-184-knockout mice display perturbed epidermal stem cell differentiation. However, the potential role of miR-184 in skin pathology is unclear. Here, we report that miR-184 controls epidermal stem cell dynamics and...
5.
Singh P, Gu W, Madha S, Lynch A, Cejas P, He R, et al.
bioRxiv
. 2024 Jan;
PMID: 38260422
Enteroendocrine cells (EECs), which secrete serotonin (enterochromaffin cells, EC) or a dominant peptide hormone, serve vital physiologic functions. As with any adult human lineage, the basis for terminal cell diversity...
6.
Altshuler A, Amitai-Lange A, Nasser W, Dimri S, Bhattacharya S, Tiosano B, et al.
Stem Cell Reports
. 2023 Dec;
18(12):2313-2327.
PMID: 38039972
Recently, the murine cornea has reemerged as a robust stem cell (SC) model, allowing individual SC tracing in living animals. The cornea has pioneered seminal discoveries in SC biology and...
7.
Bhattacharya S, Mukherjee A, Pisano S, Dimri S, Knaane E, Altshuler A, et al.
Cell Death Differ
. 2023 Apr;
30(6):1601-1614.
PMID: 37095157
The cell fate decisions of stem cells (SCs) largely depend on signals from their microenvironment (niche). However, very little is known about how biochemical niche cues control cell behavior in...
8.
Bhattacharya S, Wolfenson H, Shivdasani R, Shalom-Feuerstein R
Trends Cell Biol
. 2021 Nov;
32(1):4-7.
PMID: 34801376
Recent studies highlight how stem cells (SCs) perceive and respond to various biomechanical cues from the extracellular niche and neighboring cells. These combined inputs drive certain stem cell behaviors, including...
9.
Altshuler A, Amitai-Lange A, Tarazi N, Dey S, Strinkovsky L, Hadad-Porat S, et al.
Cell Stem Cell
. 2021 May;
28(7):1248-1261.e8.
PMID: 33984282
The accessibility and transparency of the cornea permit robust stem cell labeling and in vivo cell fate mapping. Limbal epithelial stem cells (LSCs) that renew the cornea are traditionally viewed...
10.
Bhattacharya S, Serror L, Nir E, Dhiraj D, Altshuler A, Khreish M, et al.
Stem Cells
. 2018 Dec;
37(3):417-429.
PMID: 30548157
Mutations in key transcription factors SOX2 and P63 were linked with developmental defects and postnatal abnormalities such as corneal opacification, neovascularization, and blindness. The latter phenotypes suggest that SOX2 and...