Michael Glinka
Overview
Explore the profile of Michael Glinka including associated specialties, affiliations and a list of published articles.
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Articles
11
Citations
252
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Recent Articles
1.
Wicks M, Glinka M, Hill B, Houghton D, Sharghi M, Ferreira I, et al.
J Pathol Inform
. 2023 Sep;
14:100328.
PMID: 37693862
Pathologists need to compare histopathological images of normal and diseased tissues between different samples, cases, and species. We have designed an interactive system, termed Comparative Pathology Workbench (CPW), which allows...
2.
Campbell I, Glinka M, Shaban F, Kirkwood K, Nadalin F, Adams D, et al.
J Clin Med
. 2023 Jun;
12(12).
PMID: 37373578
Crohn's disease (CD) is a chronic inflammatory bowel disease with a high prevalence throughout the world. The development of Crohn's-related fibrosis, which leads to strictures in the gastrointestinal tract, presents...
3.
Burger A, Baldock R, Adams D, Din S, Papatheodorou I, Glinka M, et al.
BMC Med Inform Decis Mak
. 2023 Feb;
23(1):36.
PMID: 36793076
Background: The Human Cell Atlas resource will deliver single cell transcriptome data spatially organised in terms of gross anatomy, tissue location and with images of cellular histology. This will enable...
4.
Conde-Gonzalez A, Glinka M, Dutta D, Wallace R, Callanan A, Oreffo R, et al.
Biomater Adv
. 2022 Dec;
145:213250.
PMID: 36563509
Regenerative medicine strategies place increasingly sophisticated demands on 3D biomaterials to promote tissue formation at sites where tissue would otherwise not form. Ideally, the discovery/fabrication of the 3D scaffolds needs...
5.
Cidonio G, Glinka M, Kim Y, Dawson J, Oreffo R
Methods Mol Biol
. 2020 Aug;
2147:63-72.
PMID: 32840811
Biofabrication is revolutionizing substitute tissue manufacturing. Skeletal stem cells (SSCs) can be blended with hydrogel biomaterials and printed to form three-dimensional structures that can closely mimic tissues of interest. Our...
6.
Cidonio G, Glinka M, Kim Y, Kanczler J, Lanham S, Ahlfeld T, et al.
Biofabrication
. 2020 Apr;
12(3):035010.
PMID: 32259804
Acellular soft hydrogels are not ideal for hard tissue engineering given their poor mechanical stability, however, in combination with cellular components offer significant promise for tissue regeneration. Indeed, nanocomposite bioinks...
7.
Czekanska E, Geng J, Glinka M, White K, Kanczler J, Evans N, et al.
J Mater Chem B
. 2020 Apr;
6(27):4437-4445.
PMID: 32254661
The combination of supportive biomaterials and bioactive factors to stimulate endogenous progenitor cells is of key interest for the treatment of conditions in which intrinsic bone healing capacities are compromised....
8.
Cidonio G, Alcala-Orozco C, Lim K, Glinka M, Mutreja I, Kim Y, et al.
Biofabrication
. 2019 Apr;
11(3):035027.
PMID: 30991370
Bioprinting of living cells is rapidly developing as an advanced biofabrication approach to engineer tissues. Bioinks can be extruded in three-dimensions (3D) to fabricate complex and hierarchical constructs for implantation....
9.
Inoue K, Ichiyanagi K, Fukuda K, Glinka M, Sasaki H
PLoS Genet
. 2017 Jul;
13(7):e1006926.
PMID: 28749988
Mammalian genomes harbor millions of retrotransposon copies, some of which are transpositionally active. In mouse prospermatogonia, PIWI-interacting small RNAs (piRNAs) combat retrotransposon activity to maintain the genomic integrity. The piRNA...
10.
Saal L, Briese M, Kneitz S, Glinka M, Sendtner M
RNA
. 2014 Sep;
20(11):1789-802.
PMID: 25246652
Neuronal function critically depends on coordinated subcellular distribution of mRNAs. Disturbed mRNA processing and axonal transport has been found in spinal muscular atrophy and could be causative for dysfunction and...