Bette J Dzamba
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Explore the profile of Bette J Dzamba including associated specialties, affiliations and a list of published articles.
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Articles
7
Citations
238
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0
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Recent Articles
1.
Comlekoglu T, Dzamba B, Pacheco G, Shook D, Sego T, Glazier J, et al.
Biol Open
. 2024 Aug;
13(8).
PMID: 39162010
Collectively migrating Xenopus mesendoderm cells are arranged into leader and follower rows with distinct adhesive properties and protrusive behaviors. In vivo, leading row mesendoderm cells extend polarized protrusions and migrate...
2.
Comlekoglu T, Dzamba B, Pacheco G, Shook D, Sego T, Glazier J, et al.
bioRxiv
. 2023 Oct;
PMID: 37904937
Summary Statement: We present a novel Cellular-Potts model of collective cell migration to investigate the relative roles of cohesotaxis, tissue geometry, and cell intercalation on migration velocity of mesendoderm.
3.
Watanabe H, Belyea B, Paxton R, Li M, Dzamba B, DeSimone D, et al.
Circ Res
. 2021 May;
129(2):262-276.
PMID: 33993729
[Figure: see text].
4.
Dzamba B, DeSimone D
Curr Top Dev Biol
. 2018 Jun;
130:245-274.
PMID: 29853179
Extracellular matrices (ECMs) are structurally and compositionally diverse networks of collagenous and noncollagenous glycoproteins, glycosaminoglycans, proteoglycans, and associated molecules that together comprise the metazoan matrisome. Proper deposition and assembly of...
5.
Bjerke M, Dzamba B, Wang C, DeSimone D
Dev Biol
. 2014 Aug;
394(2):340-56.
PMID: 25127991
Collective cell movements are integral to biological processes such as embryonic development and wound healing and also have a prominent role in some metastatic cancers. In migrating Xenopus mesendoderm, traction...
6.
Dzamba B, Jakab K, Marsden M, Schwartz M, DeSimone D
Dev Cell
. 2009 Mar;
16(3):421-32.
PMID: 19289087
In this study we demonstrate that planar cell polarity signaling regulates morphogenesis in Xenopus embryos in part through the assembly of the fibronectin (FN) matrix. We outline a regulatory pathway...
7.
Charbonneau N, Dzamba B, Ono R, Keene D, Corson G, Reinhardt D, et al.
J Biol Chem
. 2002 Nov;
278(4):2740-9.
PMID: 12429739
Fibrillins are microfibril-forming extracellular matrix macromolecules that modulate skeletal development. In humans, mutations in fibrillins result in long bone overgrowth as well as other distinct phenotypes. Whether fibrillins form independent...