4.Overcoming osteoporosis and beyond: Locomotive syndrome or dysmobility syndrome
Osteoporosis and Sarcopenia 2018;4(3):77-78
No abstract available.
Osteoporosis
5.Implications of Mitochondrial Unfolded Protein Response and Mitokines: A Perspective on Fatty Liver Diseases
Endocrinology and Metabolism 2019;34(1):39-46
The signaling network of the mitochondrial unfolded protein response (UPR(mt)) and mitohormesis is a retrograde signaling pathway through which mitochondria-to-nucleus communication occurs in organisms. Recently, it has been shown that the UPR(mt) is closely associated with metabolic disorders and conditions involving insulin resistance, such as alcoholic and non-alcoholic fatty liver and fibrotic liver disease. Scientific efforts to understand the UPR(mt) and mitohormesis, as well as to establish the mitochondrial proteome, have established the importance of mitochondrial quality control in the development and progression of metabolic liver diseases, including non-alcoholic fatty liver disease (NAFLD) and non-alcoholic steatohepatitis (NASH). In this review, we integrate and discuss the recent data from the literature on the UPR(mt) and mitohormesis in metabolic liver diseases, including NAFLD/NASH and fibrosis.
Alcoholics
;
Fatty Liver
;
Fibrosis
;
Humans
;
Insulin Resistance
;
Liver Diseases
;
Metabolism
;
Mitochondria
;
Non-alcoholic Fatty Liver Disease
;
Obesity
;
Proteome
;
Quality Control
;
Unfolded Protein Response
6.T-Cell Senescence in Human Metabolic Diseases
Ha Thi NGA ; Thi Linh NGUYEN ; Hyon-Seung YI
Diabetes & Metabolism Journal 2024;48(5):864-881
Immunosenescence denotes a state of dysregulated immune cell function characterized by a confluence of factors, including arrested cell cycle, telomere shortening, markers of cellular stress, mitochondrial dysfunction, loss of proteostasis, epigenetic reprogramming, and secretion of proinflammatory mediators. This state primarily manifests during the aging process but can also be induced in various pathological conditions, encompassing chronic viral infections, autoimmune diseases, and metabolic disorders. Age-associated immune system alterations extend to innate and adaptive immune cells, with T-cells exhibiting heightened susceptibility to immunosenescence. In particular, senescent T-cells have been identified in the context of metabolic disorders such as obesity, diabetes, and cardiovascular diseases. Recent investigations suggest a direct link between T-cell senescence, inflammation, and insulin resistance. The perturbation of biological homeostasis by senescent T-cells appears intricately linked to the initiation and progression of metabolic diseases, particularly through inflammation-mediated insulin resistance. Consequently, senescent T-cells are emerging as a noteworthy therapeutic target. This review aims to elucidate the intricate relationship between metabolic diseases and T-cell senescence, providing insights into the potential roles of senescent T-cells in the pathogenesis of metabolic disorders. Through a comprehensive examination of current research findings, this review seeks to contribute to a deeper understanding of the complex interplay between immunosenescence and metabolic health.
7.Letter: Insufficient Experience in Thyroid Fine-Needle Aspiration Leads to Misdiagnosis of Thyroid Cancer (Endocrinol Metab 2014;29:293-9, Jung Il Son et al.).
Endocrinology and Metabolism 2014;29(4):590-591
No abstract available.
Biopsy, Fine-Needle*
;
Diagnostic Errors*
;
Thyroid Gland*
;
Thyroid Neoplasms*
8.Molecular Understanding and Assessment of Hypoparathyroidism.
Hyon Seung YI ; Byoungho CHOI ; Sihoon LEE
Endocrinology and Metabolism 2011;26(1):25-32
No abstract available.
Hypoparathyroidism
9.Oncogenes, mitochondrial metabolism, and quality control in differentiated thyroid cancer.
Hyon Seung YI ; Joon Young CHANG ; Koon Soon KIM ; Minho SHONG
The Korean Journal of Internal Medicine 2017;32(5):780-789
Thyroid cancer is one of the most common malignancies of endocrine organs, and its incidence rate has increased steadily over the past several decades. Most differentiated thyroid tumors derived from thyroid epithelial cells exhibit slow-growing cancers, and patients with these tumors can achieve a good prognosis with surgical removal and radioiodine treatment. However, a small proportion of patients present with advanced thyroid cancer and are unusually resistant to current drug treatment modalities. Thyroid tumorigenesis is a complex process that is regulated by the activation of oncogenes, inactivation of tumor suppressors, and alterations in programmed cell death. Mitochondria play an essential role during tumor formation, progression, and metastasis of thyroid cancer. Recent studies have successfully observed the mitochondrial etiology of thyroid carcinogenesis. This review focuses on the recent progress in understanding the molecular mechanisms of thyroid cancer relating to altered mitochondrial metabolism.
Carcinogenesis
;
Cell Death
;
Epithelial Cells
;
Humans
;
Incidence
;
Metabolism*
;
Mitochondria
;
Neoplasm Metastasis
;
Oncogenes*
;
Prognosis
;
Quality Control*
;
Thyroid Gland*
;
Thyroid Neoplasms*
10.Mitochondrial Stress and Mitokines: Therapeutic Perspectives for the Treatment of Metabolic Diseases
Benyuan ZHANG ; Joon Young CHANG ; Min Hee LEE ; Sang-Hyeon JU ; Hyon-Seung YI ; Minho SHONG
Diabetes & Metabolism Journal 2024;48(1):1-18
Mitochondrial stress and the dysregulated mitochondrial unfolded protein response (UPRmt) are linked to various diseases, including metabolic disorders, neurodegenerative diseases, and cancer. Mitokines, signaling molecules released by mitochondrial stress response and UPRmt, are crucial mediators of inter-organ communication and influence systemic metabolic and physiological processes. In this review, we provide a comprehensive overview of mitokines, including their regulation by exercise and lifestyle interventions and their implications for various diseases. The endocrine actions of mitokines related to mitochondrial stress and adaptations are highlighted, specifically the broad functions of fibroblast growth factor 21 and growth differentiation factor 15, as well as their specific actions in regulating inter-tissue communication and metabolic homeostasis. Finally, we discuss the potential of physiological and genetic interventions to reduce the hazards associated with dysregulated mitokine signaling and preserve an equilibrium in mitochondrial stress-induced responses. This review provides valuable insights into the mechanisms underlying mitochondrial regulation of health and disease by exploring mitokine interactions and their regulation, which will facilitate the development of targeted therapies and personalized interventions to improve health outcomes and quality of life.