1.The Potential Role of Exercise Training and Mechanical Loading on Bone-Associated Skeletal Nerves
Stefano NEGRI ; T. Jake SAMUEL ; Seungyong LEE
Journal of Bone Metabolism 2021;28(4):267-277
The spatial distribution, innervation, and functional role of the bone-associated skeletal nerves have been previously reported in detail. However, studies examining exercise-induced associations between skeletal nerves and bone metabolism are limited. This review introduces a potential relationship between exercise and the skeletal nerves and discusses how it can contribute to exercise-induced bone anabolism. First, the background and current understanding of nerve fiber types and their functions in the skeleton are provided. Next, the influence of exercise and mechanical loading on the skeletal nervous system is elaborated. Effective synthesis of recent studies could serve as an established baseline for the novel discovery of the effects of exercise on skeletal nerve density and bone anabolic activity in the future. Therefore, this review overviews the existing evidence for the neural control of bone metabolism and the potential positive effects of exercise on the peripheral skeletal nervous system. The influence of exercise training models on the relationships of sensory nerve signals with osteoblast-mediated bone formation and the increased bone volume provides the first insight on the potential importance of exercise training in stimulating positive adaptations in the skeletal nerve-bone interaction and its downstream effect on bone metabolism, thereby highlighting its therapeutic potential in a variety of clinical populations.
2.Moderate-Intensity Exercise Preserves Bone Mineral Density and Improves Femoral Trabecular Bone Microarchitecture in Middle-Aged Mice
Seungyong LEE ; Yun-A SHIN ; Jinkyung CHO ; Dong-Ho PARK ; Changsun KIM
Journal of Bone Metabolism 2022;29(2):103-111
Background:
Aging leads to significant bone loss and elevated osteoporosis risk. Exercise slows age-related bone loss; however, the effects of various moderate-intensity exercise training volumes on bone metabolism remain unclear. This study aimed to determine the degree to which different volumes of moderate-intensity aerobic exercise training influence bone mineral density (BMD), bone mineral content (BMC), femoral trabecular bone microarchitecture, and cortical bone in middle-aged mice.
Methods:
Twenty middle-aged male C57BL/6 mice were randomly assigned 8 weeks of either (1) non-exercise (CON); (2) moderate-intensity with high-volume exercise (EX_MHV); or (3) moderate-intensity with low-volume exercise (EX_MLV) (N=6-7, respectively). Femoral BMD and BMC were evaluated using dual energy X-ray absorptiometry, and trabecular and cortical bone were measured using micro-computed tomography.
Results:
Femoral BMD in EX_MHV but not EX_MLV was significantly higher (P<0.05) than in CON. The distal femoral fractional trabecular bone volume/tissue volume (BV/TV, %) was significantly higher (P<0.05) in both EX_MHV and EX_MLV than in CON mice. Increased BV/TV was induced by significantly increased trabecular thickness (mm) and tended to be higher (P<0.10) in BV (mm3) and lower in trabecular separation (mm) in EX_MHV and EX_MLV than in CON. The femoral mid-diaphysis cortical bone was stronger in EX_MLV than EX_MHV.
Conclusions
Long-term moderate-intensity aerobic exercise with low to high volumes can be thought to have a positive effect on hindlimb BMD and attenuate age-associated trabecular bone loss in the femur. Moderate-intensity aerobic exercise may be an effective and applicable exercise regimen to prevent age-related loss of BMD and BV.
3.Association between E-Cigarette Smoking Experience and Depressive Symptoms Using the Korea National Health and Nutrition Examination Survey 2016
Gayoon PARK ; Hyejeong YEO ; Dongyeon KANG ; Seungyong LIM ; Junyong LEE ; Nayeon MOON
Korean Journal of Family Practice 2019;9(5):448-453
BACKGROUND: Although the prevalence of e-cigarette smoking is increasing worldwide, the harmfulness of e-cigarette is not obvious. A previous study reported that e-cigarette smoking is associated with depressive symptoms in college students irrespective of tobacco smoking. However, there has been no research that has addressed this issue in the general population to date. This study was conducted to clarify the association between e-cigarette smoking and depressive symptoms in Korean adults.METHODS: The cross-sectional study collected raw data from the 7th Korea National Health and Nutrition Examination Survey (2016) and included 5,742 adults, who were ≥19 years and responded to the survey of smoking and mental health section. Multivariate logistic regression analysis was used to determine the odds ratio of depressive symptoms by e-cigarette smoking experience and included sex, age, educational level, marital status, household income level, self-rated health, activity restriction, obesity, tobacco smoking experience, alcohol drinking experience, and stress perception level as covariates. Depressive symptoms were assessed using the patient health questionnaire-9, Korean edition.RESULTS: The rate of depressive symptoms in subjects was 5.6% (n=354) in total. Individuals with depressive symptoms were more likely to have used e-cigarettes (15.6%) than those without depressive symptoms (8.6%; P=0.001). The e-cigarette experienced group showed a higher risk of depressive symptoms (odds ratio, 1.71; 95% confidence interval, 1.004–2.924) than the e-cigarette unexperienced group. The result was adjusted based on the abovementioned covariates.CONCLUSION: In Korean adults, a significant association between e-cigarette smoking experience and depressive symptoms was observed.
Adult
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Alcohol Drinking
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Cross-Sectional Studies
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Depression
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Electronic Cigarettes
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Family Characteristics
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Humans
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Korea
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Logistic Models
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Marital Status
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Mental Health
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Nutrition Surveys
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Obesity
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Odds Ratio
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Prevalence
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Smoke
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Smoking
4.Position Statement: Exercise Guidelines for Osteoporosis Management and Fall Prevention in Osteoporosis Patients
Seongryu BAE ; Seungyong LEE ; Hyuntae PARK ; Yongin JU ; Seok-Ki MIN ; Jinkyung CHO ; Hyojin KIM ; Yong-Chan HA ; Yumie RHEE ; Young-Pyo KIM ; Changsun KIM
Journal of Bone Metabolism 2023;30(2):149-165
Background:
The effectiveness of exercise for improving osteoporosis and fall prevention in patients diagnosed with osteoporosis or osteopenia has not been fully summarized. The Korean Society for Bone and Mineral Research and the Korean Society of Exercise Physiology has developed exercise guidelines for patients with osteoporosis or osteopenia and provide evidence-based recommendations.
Methods:
A systematic review identified randomized controlled trials (RCT) assessing the effect of resistance, impact, balance, aerobic training, and physical activity in osteoporosis and osteopenia on bone quality, physical performance, quality of life, and fall prevention. PubMed, Embase, KoreaMed, and RISS were searched from January 2000 to August 2022. Ten key questions were established to review the evidence and formulate recommendations.
Results:
The 50 RCTs reported that even with osteoporosis and osteopenia, resistance and impact training consistently maximized bone strength, improved body strength and balance, and eventually reduced fall incidences. Resistance exercise combining 3 to 10 types of free weight and mechanical exercise of major muscle groups performed with an intensity of 50% to 85% 1-repetition maximum, 5 to 12 repetitions/set, 2 to 3 days/week, for 3 to 12 months is recommended. Impact exercises such as jumping chin-ups with drop landings and jump rope performed 50 jumps/session for at least 6 months with 3 or more days/week are recommended.
Conclusions
A multi-component exercise mainly comprised of resistance and impact exercise seems to be an effective strategy to attenuate the risk factors of osteoporosis and osteopenia. The integration of exercise guidelines and individualized exercise plans has significant potential to reduce the morbidity and mortality of osteoporosis.
5.Nanoparticle-Based Chimeric Antigen Receptor Therapy for Cancer Immunotherapy
Seungyong SHIN ; Pyunghwajun LEE ; Jieun HAN ; Se-Na KIM ; Jaesung LIM ; Dae-Hwan PARK ; Taejong PAIK ; Junhong MIN ; Chun Gwon PARK ; Wooram PARK
Tissue Engineering and Regenerative Medicine 2023;20(3):371-387
Adoptive cell therapy with chimeric antigen receptor (CAR)-engineered T cells (CAR-Ts) has emerged as an innovative immunotherapy for hematological cancer treatment. However, the limited effect on solid tumors, complex processes, and excessive manufacturing costs remain as limitations of CAR-T therapy. Nanotechnology provides an alternative to the conventional CAR-T therapy. Owing to their unique physicochemical properties, nanoparticles can not only serve as a delivery platform for drugs but also target specific cells. Nanoparticle-based CAR therapy can be applied not only to T cells but also to CAR-natural killer and CAR-macrophage, compensating for some of their limitations. This review focuses on the introduction of nanoparticle-based advanced CAR immune cell therapy and future perspectives on immune cell reprogramming.