Matthew J Sweet
Overview
Explore the profile of Matthew J Sweet including associated specialties, affiliations and a list of published articles.
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155
Citations
6664
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Recent Articles
1.
Wang Y, Yao Y, Zhang Y, Yu Y, Luo J, Sweet M, et al.
Adv Mater
. 2024 Nov;
37(3):e2401504.
PMID: 39558810
Nucleic acid delivery in hard-to-transfect macrophages have attracted increasing attention in diverse applications such as defence against bacterial infection. Regulated by microenvironments in specific applications, macrophages have a heterogenous nature...
2.
Wang Y, Curson J, Ramnath D, Das Gupta K, Reid R, Karunakaran D, et al.
Biochem J
. 2024 Oct;
481(21):1569-1584.
PMID: 39373581
Histone deacetylase 7 (HDAC7) is a member of the class IIa family of classical HDACs with important roles in cell development, differentiation, and activation, including in macrophages and other innate...
3.
Sweet M, Ramnath D, Singhal A, Kapetanovic R
Nat Rev Immunol
. 2024 Sep;
25(2):92-107.
PMID: 39294278
Macrophages destroy bacteria and other microorganisms through phagocytosis-coupled antimicrobial responses, such as the generation of reactive oxygen species and the delivery of hydrolytic enzymes from lysosomes to the phagosome. However,...
4.
Poon E, Liu L, Wu K, Lim J, Sweet M, Lohman R, et al.
Br J Pharmacol
. 2024 Sep;
181(23):4804-4821.
PMID: 39223784
Background And Purpose: Most inhibitors of histone deacetylases (HDACs) are not selective and are cytotoxic. Some have anti-inflammatory activity in disease models, but cytotoxicity prevents long-term uses in non-fatal diseases....
5.
Patrick R, Naval-Sanchez M, Deshpande N, Huang Y, Zhang J, Chen X, et al.
Cell Metab
. 2024 Jul;
36(8):1858-1881.e23.
PMID: 38959897
A mechanistic connection between aging and development is largely unexplored. Through profiling age-related chromatin and transcriptional changes across 22 murine cell types, analyzed alongside previous mouse and human organismal maturation...
6.
Nhu N, Rahman M, Goh K, Kim S, Phan M, Peters K, et al.
Nat Commun
. 2024 Feb;
15(1):1441.
PMID: 38383596
Bacteria adapt to selective pressure in their immediate environment in multiple ways. One mechanism involves the acquisition of independent mutations that disable or modify a key pathway, providing a signature...
7.
Das Gupta K, Curson J, Tarique A, Kapetanovic R, Schembri M, Fantino E, et al.
Proc Natl Acad Sci U S A
. 2024 Feb;
121(8):e2315190121.
PMID: 38363865
Cystic fibrosis transmembrane conductance regulator (CFTR) is an anion transporter required for epithelial homeostasis in the lung and other organs, with mutations leading to the autosomal recessive genetic disease CF....
8.
Duszyc K, von Pein J, Ramnath D, Currin-Ross D, Verma S, Lim F, et al.
Dev Cell
. 2023 Aug;
58(21):2235-2248.e6.
PMID: 37647898
Apoptosis is traditionally considered to be an immunologically silent form of cell death. Multiple mechanisms exist to ensure that apoptosis does not stimulate the immune system to cause inflammation or...
9.
Stow J, Sweet M
J Cell Biol
. 2023 May;
222(6).
PMID: 37213075
The exuberant phagocytosis of apoptotic cell corpses by macrophages in Drosophila embryos creates highly oxidative environments. Stow and Sweet discuss work from Clemente and Weavers (2023. J. Cell Biol.https://doi.org/10.1083/jcb.202203062) showing...
10.
Curson J, Liu L, Luo L, Muusse T, Lucas R, Gunther K, et al.
Eur J Immunol
. 2023 Apr;
53(7):e2250056.
PMID: 37058370
TLRs engage numerous adaptor proteins and signaling molecules, enabling a complex series of post-translational modifications (PTMs) to mount inflammatory responses. TLRs themselves are post-translationally modified following ligand-induced activation, with this...