Results 71 to 80 of about 19,433,217 (243)
Crèdits vol.33, n.1, març 2015
Crèdits
Revista Enseñanza de las Ciencias
doaj +1 more source
ABSTRACT Introduction Hyperlipidemia is a major risk factor for atherosclerotic cardiovascular disease (ASCVD). Although statins are the cornerstone of lipid‐lowering therapy, their use may be limited in some patients by adverse effects. This study evaluated the possible impact of non‐drug treatment using double‐filtration plasmapheresis (DFPP) on CD14+
Yun Cheng +3 more
wiley +1 more source
v. : ill.; 32 cm (original analog pub.)Archived web contentThe digital publication of the Stony Brook Statesman was made possible through the kind support of The Stony Brook Alumni ...
Stony Brook University Statesman
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Créditos vol. 33, n.2, junio 2015
Créditos
Revista Enseñanza de las Ciencias
doaj +1 more source
Organoids in pediatric cancer research
Organoid technology has revolutionized cancer research, yet its application in pediatric oncology remains limited. Recent advances have enabled the development of pediatric tumor organoids, offering new insights into disease biology, treatment response, and interactions with the tumor microenvironment.
Carla Ríos Arceo, Jarno Drost
wiley +1 more source
v. : ill.; 32 cm (original analog pub.)Archived web contentThe digital publication of the Stony Brook Statesman was made possible through a grant from the Stony Brook Alumni ...
Stony Brook University Statesman
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Gut microbiome and aging—A dynamic interplay of microbes, metabolites, and the immune system
Age‐dependent shifts in microbial communities engender shifts in microbial metabolite profiles. These in turn drive shifts in barrier surface permeability of the gut and brain and induce immune activation. When paired with preexisting age‐related chronic inflammation this increases the risk of neuroinflammation and neurodegenerative diseases.
Aaron Mehl, Eran Blacher
wiley +1 more source
v. : ill.; 32 cm (original analog pub.)Archived web contentThe digital publication of the Stony Brook Statesman was made possible through a grant from the Stony Brook Alumni ...
Stony Brook University Statesman
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Diversity and complexity in neural organoids
Neural organoid research aims to expand genetic diversity on one side and increase tissue complexity on the other. Chimeroids integrate multiple donor genomes within single organoids. Self‐organising multi‐identity organoids, exogenous cell seeding, or enforced assembly of region‐specific organoids contribute to tissue complexity.
Ilaria Chiaradia, Madeline A. Lancaster
wiley +1 more source
v. : ill.; 32 cm (original analog pub.)Archived web contentThe digital publication of the Stony Brook Statesman was made possible through the kind support of The Stony Brook Alumni ...
Stony Brook University Statesman
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