Exercise-Induced Circulating Hematopoietic Stem and Progenitor Cells in Well-Trained Subjects
Overview
Affiliations
It has been proposed that exercise-induced systemic oxidative stress increases circulating hematopoietic stem and progenitor cell (HPC) number in active participants, while HPC clonogenicity is reduced post-exercise. However, HPCs could be protected against exercise-induced reactive oxygen species in a trained state. Therefore, we characterized the acute exercise-induced HPC profile of well-trained participants including cell number, clonogenicity, and clearance. Twenty-one healthy, well-trained participants-12 runners, 9 cyclists; age 30.0 (4.3) years-performed a strenuous acute exercise session consisting of 4 bouts of 4-min high-intensity with 3-min low-intensity in-between, which is known to elicit oxidative stress. Average power/speed of intense phases was 85% of the peak achieved in a previous incremental test. Before and 10 min after exercise, CD34+/45dim cell number and clonogenicity, total oxidative (TOC), and antioxidative (TAC) capacities, as well as CD31 expression on detected HPCs were investigated. TOC significantly decreased from 0.093 (0.059) nmol/l to 0.083 (0.052) nmol/l post-exercise ( = 0.044). Although HPC proportions significantly declined below baseline (from 0.103 (0.037)% to 0.079 (0.028)% of mononuclear cells, < 0.001), HPC concentrations increased post-exercise [2.10 (0.75) cells/μl to 2.46 (0.98) cells/μl, = 0.002] without interaction between exercise modalities, while HPC clonogenicity was unaffected. Relating HPC concentrations and clonogenicity to exercise session specific (anti-) oxidative parameters, no association was found. CD31 median fluorescent intensity expression on detected HPCs was diminished post-exercise [from 1,675.9 (661.0) to 1,527.1 (558.9), = 0.023] and positively correlated with TOC ( = 0.60, = 0.005). These results suggest that acute exercise-reduced oxidative stress influences HPC clearance but not mobilization in well-trained participants. Furthermore, a well-trained state protected HPCs' clonogenicity from post-exercise decline.
Factors affecting the features of platelet-rich plasma in patients with knee osteoarthritis.
Karaborklu Argut S, Celik D, Naci Ergin O, Kilicoglu O Acta Orthop Traumatol Turc. 2023; 57(4):148-153.
PMID: 37670448 PMC: 10544179. DOI: 10.5152/j.aott.2023.22077.
Kropfl J, Beltrami F, Gruber H, Schmidt-Trucksass A, Dieterle T, Spengler C Exp Physiol. 2023; 108(10):1259-1267.
PMID: 37572028 PMC: 10988490. DOI: 10.1113/EP091277.
Wang Z, Sim H, Liu W, Kim J, Lee J, Kook S Aging Dis. 2023; 15(2):755-766.
PMID: 37548936 PMC: 10917547. DOI: 10.14336/AD.2023.0713.
How Does Lifestyle Affect Hematopoiesis and the Bone Marrow Microenvironment?.
Vanhie J, DE Lisio M Toxicol Pathol. 2022; 50(7):858-866.
PMID: 36114677 PMC: 9669729. DOI: 10.1177/01926233221123523.
Rentz T, Wanschel A, de Carvalho Moi L, Lorza-Gil E, de Souza J, Dos Santos R Front Physiol. 2020; 11:599379.
PMID: 33329050 PMC: 7719785. DOI: 10.3389/fphys.2020.599379.