Results 1 to 10 of about 2,700,982 (237)

Stress Erythropoiesis is a Key Inflammatory Response [PDF]

open access: yesCells, 2020
Bone marrow medullary erythropoiesis is primarily homeostatic. It produces new erythrocytes at a constant rate, which is balanced by the turnover of senescent erythrocytes by macrophages in the spleen.
Robert F. Paulson   +3 more
doaj   +8 more sources

Targeting Stress Erythropoiesis Pathways in Cancer [PDF]

open access: yesFrontiers in Physiology, 2022
Cancer-related anemia (CRA) is a common multifactorial disorder that adversely affects the quality of life and overall prognosis in patients with cancer.
Sanja Vignjević Petrinović   +4 more
doaj   +9 more sources

Microenvironmental dynamics in steady-state and stress erythropoiesis [PDF]

open access: yesBlood Science
Anemia is a condition marked by a shortage of red blood cells or hemoglobin, resulting in a diminished ability of the blood to carry oxygen. In response to anemia or hypoxia, the body activates a compensatory mechanism known as stress erythropoiesis ...
Chong Yang, Toshio Suda
doaj   +5 more sources

Editorial: Stress erythropoiesis [PDF]

open access: yesFrontiers in Physiology, 2023
Jaira Ferreira de Vasconcellos   +2 more
doaj   +6 more sources

Heme oxygenase-1 deletion affects stress erythropoiesis. [PDF]

open access: yesPLoS ONE, 2011
BACKGROUND:Homeostatic erythropoiesis leads to the formation of mature red blood cells under non-stress conditions, and the production of new erythrocytes occurs as the need arises.
Yu-An Cao   +5 more
doaj   +7 more sources

Gdf15 regulates murine stress erythroid progenitor proliferation and the development of the stress erythropoiesis niche [PDF]

open access: yesBlood Advances, 2019
: Anemic stress induces the proliferation of stress erythroid progenitors in the murine spleen that subsequently differentiate to generate erythrocytes to maintain homeostasis.
Siyang Hao   +8 more
doaj   +5 more sources

Metabolic regulation of stress erythropoiesis, outstanding questions, and possible paradigms [PDF]

open access: yesFrontiers in Physiology, 2023
Steady state erythropoiesis produces new erythrocytes at a constant rate to replace the senescent cells that are removed by macrophages in the liver and spleen.
Baiye Ruan   +2 more
doaj   +4 more sources

Functional requirements for a Samd14-capping protein complex in stress erythropoiesis [PDF]

open access: yeseLife, 2022
Acute anemia induces rapid expansion of erythroid precursors and accelerated differentiation to replenish erythrocytes. Paracrine signals—involving cooperation between stem cell factor (SCF)/Kit signaling and other signaling inputs—are required for the ...
Suhita Ray   +7 more
doaj   +5 more sources

Stress erythropoiesis: definitions and models for its study [PDF]

open access: yesExperimental Hematology, 2020
Steady-state erythropoiesis generates new erythrocytes at a constant rate, and it has enormous productive capacity. This production is balanced by the removal of senescent erythrocytes by macrophages in the spleen and liver. Erythroid homeostasis is highly regulated to maintain sufficient erythrocytes for efficient oxygen delivery to the tissues, while
Robert Paulson, Jane A Little
exaly   +5 more sources

Selenoproteins regulate stress erythroid progenitors and spleen microenvironment during stress erythropoiesis [PDF]

open access: yesBlood, 2018
Key Points Selenoproteins, and in particular SelenoW, are required for stress erythroid progenitor proliferation and maturation. Macrophages require selenoproteins to maintain erythropoietic niche competency.
Robert Paulson, Ross Hardison
exaly   +4 more sources

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