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"Ji Yong Lee"

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"Ji Yong Lee"

Original Articles

Pain & Musculoskeletal rehabilitation

Preclinical Study of Dual-Wavelength Light-Emitting Diode Therapy in an Osteoarthritis Rat Model
Won Woo Choi, Sung Hoon Kim, Ji Hyun Kim, Kyungmin Kim, Sun Jung Kim, Minwoo Kim, Han-Sung Kim, Hana Lee, Ji Yong Lee, Sang Yeol Yong
Ann Rehabil Med 2023;47(6):483-492.   Published online December 6, 2023
DOI: https://doi.org/10.5535/arm.23138
Objective
To evaluate the efficacy of light-emitting diode (LED) and their dual-wavelengths as a treatment strategy for osteoarthritis.
Methods
We induced osteoarthritis in male Sprague-Dawley rats by intra-articular injection of sodium iodoacetate into the right rear knee joint. The animals with lesions were divided into an untreated group and an LED-treated group (n=7 each). In the LED-treated group, the lesioned knee was irradiated with lasers (850 and 940 nm) and dose (3.15 J/cm2) for 20 minutes per session, twice a week for 4 weeks. Knee joint tissues were stained and scanned using an in vivo micro-computed tomography (CT) scanner. Serum interleukin (IL)-6 and IL-18 levels were determined using enzyme-linked immuno-sorbent assay. Several functional tests (lines crossed, rotational movement, rearing, and latency to remain rotating rod) were performed 24 hours before LED treatment and at 7, 14, 21, and 28 days after treatment.
Results
LED-treated rats showed improved locomotor function and suppressed matrix-degrading cytokines. Micro-CT images indicated that LED therapy had a preserving effect on cartilage and cortical bone.
Conclusion
LED treatment using wavelengths of 850 and 940 nm resulted in significant functional, anatomical, and histologic improvements without adverse events in a rat model. Further research is required to determine the optimal wavelength, duration, and combination method, which will maximize treatment effectiveness.

Citations

Citations to this article as recorded by  
  • Effects of Dual Wavelength Photobiomodulation on Osseointegration in Grafted Areas
    Lucas de Sousa Goulart Pereira, Julia Raulino Lima, Elcio Marcantonio, Priscilla Barbosa Ferreira Soares, Suzane Cristina Pigossi, Guilherme José Pimentel Lopes de Oliveira
    Lasers in Surgery and Medicine.2026; 58(5): 429.     CrossRef
  • BTEX-K Ameliorates Rheumatoid Arthritis Through Regulating the NF-κB and PPAR-γ Signaling Pathways in Incomplete Freund’s Adjuvant-Induced Arthritis Mice
    Joonpyo Hong, Jin-Ho Lee, Ga Young Lee, Jin-Hwan Oh, Hana Lee, Han Sung Kim, Tack-Joong Kim
    Biomedicines.2025; 13(7): 1524.     CrossRef
  • Photobiomodulation Literature Watch December 2023
    James D. Carroll
    Photobiomodulation, Photomedicine, and Laser Surgery.2024; 42(10): 660.     CrossRef
  • 7,120 View
  • 97 Download
  • 2 Web of Science
  • 3 Crossref
The Modulation of Neurotrophin and Epigenetic Regulators: Implication for Astrocyte Proliferation and Neuronal Cell Apoptosis After Spinal Cord Injury
Jong Heon Kim, Sung-Hoon Kim, Sung-Rae Cho, Ji Yong Lee, Ji Hyun Kim, Ahreum Baek, Hong Sun Jung
Ann Rehabil Med 2016;40(4):559-567.   Published online August 24, 2016
DOI: https://doi.org/10.5535/arm.2016.40.4.559
Objective

To investigate alterations in the expression of the main regulators of neuronal survival and death related to astrocytes and neuronal cells in the brain in a mouse model of spinal cord injury (SCI).

Methods

Eight-week-old male imprinting control region mice (n=36; 30–35 g) were used in this study and randomly assigned to two groups: the naïve control group (n=18) and SCI group (n=18). The mice in both groups were randomly allocated to the following three time points: 3 days, 1 week, and 2 weeks (n=6 each). The expression levels of regulators such as brain-derived neurotrophic factor (BDNF), glial cell line-derived neurotrophic factor (GDNF), nerve growth factor (NGF), histone deacetylase 1 (HDAC1), and methyl-CpG-binding protein 2 (MeCP 2) in the brain were evaluated following thoracic contusive SCI. In addition, the number of neuronal cells in the motor cortex (M1 and M2 areas) and the number of astrocytes in the hippocampus were determined by immunohistochemistry.

Results

BDNF expression was significantly elevated at 2 weeks after injury (p=0.024). The GDNF level was significantly elevated at 3 days (p=0.042). The expression of HDAC1 was significantly elevated at 1 week (p=0.026). Following SCI, compared with the control the number of NeuN-positive cells in the M1 and M2 areas gradually and consistently decreased at 2 weeks after injury. In contrast, the number of astrocytes was significantly increased at 1 week (p=0.029).

Conclusion

These results demonstrate that the upregulation of BDNF, GDNF and HDAC1 might play on important role in brain reorganization after SCI.

Citations

Citations to this article as recorded by  
  • Cerebrospinal fluid extracellular vesicle-derived miR-9-3p in spinal cord injury with neuroprotective implications and biomarker development
    Tomoharu Tanaka, Satoru Morimoto, Keitaro Ito, Kaori Yasutake, Chris Kato, Munehisa Shinozaki, Kota Suda, Takeshi Maeda, Yoshiyuki Yato, Masaya Nakamura, Hideyuki Okano, Narihito Nagoshi
    Communications Biology.2025;[Epub]     CrossRef
  • Epigenetic modifications of inflammation in spinal cord injury
    Zhi-jun Lu, Qi-lin Pan, Fei-xiang Lin
    Biomedicine & Pharmacotherapy.2024; 179: 117306.     CrossRef
  • The RNA Binding Protein HuR Promotes Neuronal Apoptosis in Rats with Spinal Cord Injury via the HDAC1/RAD21 Axis
    Changsheng Wang, Xiaobo Zhang, Xitian Zhu, Rongsheng Chen, Nancheng Lian
    Neuroscience.2023; 522: 109.     CrossRef
  • Haloperidol alters neurotrophic factors and epigenetic parameters in an animal model of schizophrenia induced by ketamine
    Samira S. Valvassori, Richard T. da Rosa, Gustavo C. Dal‐Pont, Roger B. Varela, Gustavo A. Mastella, Thiani Daminelli, Gabriel R. Fries, João Quevedo, Alexandra I. Zugno
    International Journal of Developmental Neuroscience.2023; 83(8): 691.     CrossRef
  • Subacute and Chronic Spinal Cord Injury: A Scoping Review of Epigenetics and Secondary Health Conditions
    Letitia Y Graves, Kayla F Keane, Jacquelyn Y Taylor, Tzu-fang Wang, Leorey Saligan, Kath M Bogie
    Epigenetics Insights.2023;[Epub]     CrossRef
  • Homeodomain Interacting Protein Kinase 2-Modified Rat Spinal Astrocytes Affect Neurofunctional Recovery After Spinal Cord Injury
    Renbo Li, Jian Han, Bo Chen, Jingbo Shang
    Current Neurovascular Research.2022; 19(2): 171.     CrossRef
  • Euxanthone inhibits traumatic spinal cord injury via anti-oxidative stress and suppression of p38 and PI3K/Akt signaling pathway in a rat model
    Rubin Yao, Lirong Ren, Shiyong Wang, Ming Zhang, Kaishun Yang
    Translational Neuroscience.2021; 12(1): 114.     CrossRef
  • Reactive astrocytes increase expression of proNGF in the mouse model of contused spinal cord injury
    Ying-Ying Cheng, Hai-Kang Zhao, Liang-Wei Chen, Xin-Yi Yao, Yu-Ling Wang, Zhen-Wen Huang, Guo-Peng Li, Zhe Wang, Bei-Yu Chen
    Neuroscience Research.2020; 157: 34.     CrossRef
  • Multimodal treatment for spinal cord injury: a sword of neuroregeneration upon neuromodulation
    Ya Zheng, Ye-Ran Mao, Ti-Fei Yuan, Dong-Sheng Xu, Li-Ming Cheng
    Neural Regeneration Research.2020; 15(8): 1437.     CrossRef
  • Spinal cord injury induced Neuregulin 1 signaling changes in mouse prefrontal cortex and hippocampus
    Wei-kang Xue, Wei-jiang Zhao, Xiang-he Meng, Hui-fan Shen, Pei-zhi Huang
    Brain Research Bulletin.2019; 144: 180.     CrossRef
  • The Role of Apoptosis in the Pathogenic Mechanism of Critical States (Review)
    A. I. Glukhov, G. K. Gryzunova, L. I. Usai, T L. Aleynikova, N. V. Chernikova, A. Yu. Burt
    General Reanimatology.2019; 15(2): 79.     CrossRef
  • Pre-Injection of Small Interfering RNA (siRNA) Promotes c-Jun Gene Silencing and Decreases the Survival Rate of Axotomy-Injured Spinal Motoneurons in Adult Mice
    Ying-qin Li, Fa-huan Song, Ke Zhong, Guang-yin Yu, Prince Last Mudenda Zilundu, Ying-ying Zhou, Rao Fu, Ying Tang, Ze-min Ling, Xiaoying Xu, Li-hua Zhou
    Journal of Molecular Neuroscience.2018; 65(3): 400.     CrossRef
  • Glial fibrillary acidic protein levels are associated with global histone H4 acetylation after spinal cord injury in rats
    MayaraFerraz de Menezes, Fabrício Nicola, IvyReichert Vital da Silva, Adriana Vizuete, VivianeRostirola Elsner, LéderLeal Xavier, CarlosAlberto Saraiva Gonçalves, CarlosAlexandre Netto, RégisGemerasca Mestriner
    Neural Regeneration Research.2018; 13(11): 1945.     CrossRef
  • Elucidation of Gene Expression Patterns in the Brain after Spinal Cord Injury
    Ahreum Baek, Sung-Rae Cho, Sung Hoon Kim
    Cell Transplantation.2017; 26(7): 1286.     CrossRef
  • Urinary Levels of IL-1β and GDNF in Preterm Neonates as Potential Biomarkers of Motor Development: A Prospective Study
    Rafael Coelho Magalhães, Janaina Matos Moreira, Érica Leandro Marciano Vieira, Natália Pessoa Rocha, Débora Marques Miranda, Ana Cristina Simões e Silva
    Mediators of Inflammation.2017; 2017: 1.     CrossRef
  • Gambogic acid inhibits spinal cord injury and inflammation through suppressing the p38 and Akt signaling pathways
    Qiao Fu, Chaojian Li, Lehua Yu
    Molecular Medicine Reports.2017;[Epub]     CrossRef
  • 7,471 View
  • 60 Download
  • 15 Web of Science
  • 16 Crossref
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