Jacqueline L Whatmore
Overview
Explore the profile of Jacqueline L Whatmore including associated specialties, affiliations and a list of published articles.
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26
Citations
488
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Recent Articles
1.
Hydrogen Sulfide Is a Novel Protector of the Retinal Glycocalyx and Endothelial Permeability Barrier
Allen C, Wolanska K, Malhi N, Benest A, Wood M, Amoaku W, et al.
Front Cell Dev Biol
. 2021 Sep;
9:724905.
PMID: 34557493
Significantly reduced levels of the anti-inflammatory gaseous transmitter hydrogen sulfide (HS) are observed in diabetic patients and correlate with microvascular dysfunction. HS may protect the microvasculature by preventing loss of...
2.
Bell J, Adio A, Pitt A, Hayman L, Thorn C, Shore A, et al.
J Vasc Res
. 2021 Sep;
59(1):50-60.
PMID: 34544081
Introduction: Microvascular remodelling is a symptom of cardiovascular disease. Despite the mechanical environment being recognized as a major contributor to the remodelling process, it is currently only understood in a...
3.
Pranjol Z, Whatmore J
Adv Exp Med Biol
. 2020 Jun;
1259:1-16.
PMID: 32578168
Cancer remains a major and leading health problem worldwide. Lack of early diagnosis, chemoresistance, and recurrence of cancer means vast research and development are required in this area. The complexity...
4.
Allen C, Malhi N, Whatmore J, Bates D, Arkill K
Microcirculation
. 2020 May;
27(6):e12623.
PMID: 32352608
Objective: The gold standard for measuring blood-retinal barrier permeability is the Evans blue assay. However, this technique has limitations in vivo, including non-specific tissue binding and toxicity. This study describes...
5.
Pranjol M, Zinovkin D, Maskell A, Stephens L, Achinovich S, Los D, et al.
J Transl Med
. 2019 Jul;
17(1):216.
PMID: 31269957
Background: New treatment options for metastasised high-grade serous carcinoma (HGSC) are urgently needed. HGSC frequently metastasises to the omentum, inducing angiogenesis in the local omental microvasculature to facilitate tumour growth....
6.
Aung M, Slade K, Freeman L, Kos K, Whatmore J, Shore A, et al.
Diabetologia
. 2019 Jun;
62(9):1701-1711.
PMID: 31203378
Aims/hypothesis: Glucagon-like peptide-1 (GLP-1) analogues reduce the risk of macrovascular disease in diabetes; however, little is known about their microvascular effects. This research examined the microvascular actions of the GLP-1...
7.
Tabish T, Pranjol M, Horsell D, Rahat A, Whatmore J, Winyard P, et al.
Cancers (Basel)
. 2019 Mar;
11(3).
PMID: 30845739
Overexpression and secretion of the enzymes cathepsin D (CathD) and cathepsin L (CathL) is associated with metastasis in several human cancers. As a superfamily, extracellularly, these proteins may act within...
8.
Pranjol M, Gutowski N, Hannemann M, Whatmore J
Curr Cancer Drug Targets
. 2018 Sep;
19(3):231-242.
PMID: 30173647
Background: Metastasis still remains the major cause of therapeutic failure, poor prognosis and high mortality in epithelial ovarian cancer (EOC) patients. Previously, we showed that EOC cells secrete a range...
9.
Tabish T, Pranjol M, Karadag I, Horsell D, Whatmore J, Zhang S
Int J Nanomedicine
. 2018 Mar;
13:1525-1538.
PMID: 29588582
Background: Protein-graphene interactions have the potential to play a pivotal role in the future directions of nanomedicine. These interactions lead to diverse processes such as generation of protein coronas, nano-bio...
10.
Tabish T, Pranjol M, Hayat H, Rahat A, Abdullah T, Whatmore J, et al.
Nanotechnology
. 2017 Oct;
28(50):504001.
PMID: 29064374
The intriguing properties of reduced graphene oxide (rGO) have paved the way for a number of potential biomedical applications such as drug delivery, tissue engineering, gene delivery and bio-sensing. Over...