Jeffrey A Beamish
Overview
Explore the profile of Jeffrey A Beamish including associated specialties, affiliations and a list of published articles.
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Articles
18
Citations
372
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0
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Recent Articles
1.
McElliott M, Telang A, Ference-Salo J, Al-Suraimi A, Chowdhury M, Otto E, et al.
Am J Physiol Renal Physiol
. 2024 Dec;
328(1):F95-F106.
PMID: 39620904
Acute kidney injury (AKI) is a common clinical syndrome with few effective treatments. Though the kidney can regenerate after injury, the molecular mechanisms regulating this process remain poorly understood. Pax2...
2.
Telang A, Ference-Salo J, McElliott M, Chowdhury M, Beamish J
Sci Rep
. 2024 Oct;
14(1):22927.
PMID: 39358473
Primary cultures of proximal tubule cells are widely used to model the behavior of kidney epithelial cells in vitro. However, de-differentiation of primary cells upon culture has been observed and...
3.
Beamish J, Watts J, Dressler G
J Biol Chem
. 2024 Jul;
300(8):107520.
PMID: 38950862
Acute kidney injury (AKI) is a common condition associated with significant morbidity, mortality, and cost. Injured kidney tissue can regenerate after many forms of AKI. However, there are no treatments...
4.
Soofi A, Li V, Beamish J, Abdrabh S, Hamad M, Das N, et al.
Am J Physiol Renal Physiol
. 2023 Nov;
326(2):F178-F188.
PMID: 37994409
Chronic kidney disease is increasing at an alarming rate and correlates with the increase in diabetes, obesity, and hypertension that disproportionately impact socioeconomically disadvantaged communities. Iron plays essential roles in...
5.
Beamish J, Telang A, McElliott M, Al-Suraimi A, Chowdhury M, Ference-Salo J, et al.
Kidney Int
. 2023 Nov;
105(2):312-327.
PMID: 37977366
Acute kidney injury (AKI) is a common condition that lacks effective treatments. In part, this shortcoming is due to an incomplete understanding of the genetic mechanisms that control pathogenesis and...
6.
Beamish J, Telang A, McElliott M, Al-Suraimi A, Chowdhury M, Ference-Salo J, et al.
bioRxiv
. 2023 Oct;
PMID: 37873377
Translational Statement: Identifying the molecular and genetic regulators unique to the nephron that dictate vulnerability to injury and regenerative potential could lead to new therapeutic targets to treat ischemic kidney...
7.
Friend N, Beamish J, Margolis E, Schott N, Stegemann J, Putnam A
J Biomed Mater Res A
. 2023 Jun;
112(4):549-561.
PMID: 37326361
There is a significant clinical need to develop effective vascularization strategies for tissue engineering and the treatment of ischemic pathologies. In patients afflicted with critical limb ischemia, comorbidities may limit...
8.
McElliott M, Al-Suraimi A, Telang A, Ference-Salo J, Chowdhury M, Soofi A, et al.
Sci Rep
. 2023 Apr;
13(1):6361.
PMID: 37076596
Recovery from acute kidney injury can vary widely in patients and in animal models. Immunofluorescence staining can provide spatial information about heterogeneous injury responses, but often only a fraction of...
9.
Margolis E, Cleveland D, Kong Y, Beamish J, Wang W, Baker B, et al.
Lab Chip
. 2021 Feb;
21(6):1150-1163.
PMID: 33538719
Supportive stromal cells of mesenchymal origins regulate vascular morphogenesis in developmental, pathological, and regenerative contexts, contributing to vessel formation, maturation, and long-term stability, in part via the secretion of bioactive...
10.
Friend N, Rioja A, Kong Y, Beamish J, Hong X, Habif J, et al.
Sci Rep
. 2020 Sep;
10(1):15562.
PMID: 32968145
Revascularization of ischemic tissues is a major barrier to restoring tissue function in many pathologies. Delivery of pro-angiogenic factors has shown some benefit, but it is difficult to recapitulate the...