Area of research
Rehabilitation · Immunology
Research interest
Research interests include Medicine, Cytotoxic T cell, CD8, Immunology, Breast cancer, and Aerobic exercise.
Exercise-induced β2-adrenergic receptor activation enhances effector lymphocyte mobilization in humans and suppresses lymphoma growth in mice through NK-cells
Human lymphocytes mobilized with exercise have an anti-tumor transcriptomic profile and exert enhanced graft-versus-leukemia effects in xenogeneic mice
Exercise mobilizes diverse antigen specific T-cells and elevates neutralizing antibodies in humans with natural immunity to SARS CoV-2
Salutary effects of moderate but not high intensity aerobic exercise training on the frequency of peripheral T-cells associated with immunosenescence in older women at high risk of breast cancer: a randomized controlled trial
Acute exercise mobilizes NKT-like cells with a cytotoxic transcriptomic profile but does not augment the potency of cytokine-induced killer (CIK) cells
The impact of high-intensity interval exercise training on NK-cell function and circulating myokines for breast cancer prevention among women at high risk for breast cancer
Mental health, physical symptoms and biomarkers of stress during prolonged exposure to Antarctica's extreme environment
Recent COVID-19 vaccination has minimal effects on the physiological responses to graded exercise in physically active healthy people
Systemic β-Adrenergic Receptor Activation Augments the ex vivo Expansion and Anti-Tumor Activity of Vγ9Vδ2 T-Cells
Salivary antimicrobial proteins and stress biomarkers are elevated during a 6-month mission to the International Space Station
β2-Adrenergic receptor signaling mediates the preferential mobilization of differentiated subsets of CD8+ T-cells, NK-cells and non-classical monocytes in response to acute exercise in humans
NK cell function is impaired during long-duration spaceflight
Vigorous exercise mobilizes CD34+ hematopoietic stem cells to peripheral blood via the β2-adrenergic receptor