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Nucleotide-Binding Oligomerization Domain 2 Contributes to Limiting Growth of Mycobacterium abscessus in the Lung of Mice by Regulating Cytokines and Nitric Oxide Production

  • Lee, Jun-Young
  • Lee, Moo-Seung
  • Kim, Dong Jae
  • Yang, Soo-Jin
  • Lee, Sang-Jin
  • Noh, Eui-Jeong
  • Shin, Sung Jae
  • Park, Jong-Hwan
  • 2017-11
  • Lee, Jun-Young. (2017-11). Nucleotide-Binding Oligomerization Domain 2 Contributes to Limiting Growth of Mycobacterium abscessus in the Lung of Mice by Regulating Cytokines and Nitric Oxide Production. Frontiers in Immunology, 8(NOV). doi: 10.3389/fimmu.2017.01477
  • Frontiers Media S.A.
  • View : 960
  • Download : 231

Pyruvate Dehydrogenase Kinase Is a Metabolic Checkpoint for Polarization of Macrophages to the M1 Phenotype

  • Min, Byong-Keol
  • Park, Sungmi
  • Kang, Hyeon-Ji
  • Kim, Dong Wook
  • Ham, Hye Jin
  • Ha, Chae-Myeong
  • Choi, Byung-Jun
  • Lee, Jung Yi
  • Oh, Chang Joo
  • Yoo, Eun Kyung
  • et al
  • 2019-05
  • Min, Byong-Keol. (2019-05). Pyruvate Dehydrogenase Kinase Is a Metabolic Checkpoint for Polarization of Macrophages to the M1 Phenotype. doi: 10.3389/fimmu.2019.00944
  • Frontiers Media S.A.
  • View : 757
  • Download : 172

Region-specific amyloid-β accumulation in the olfactory system influences olfactory sensory neuronal dysfunction in 5xFAD mice

  • Son, Gowoon
  • Yoo, Seung Jun
  • Kang, Shinwoo
  • Rasheed, Ameer Abu Bakr
  • Jung, Da Hae
  • Park, Hyunjun
  • Cho, Bongki
  • Steinbusch, Harry W. M.
  • Chang, Keun-A
  • Suh, Yoo-Hun
  • et al
  • 2021-01
  • Son, Gowoon. (2021-01). Region-specific amyloid-β accumulation in the olfactory system influences olfactory sensory neuronal dysfunction in 5xFAD mice. Alzheimer's Research and Therapy, 13(1), 4. doi: 10.1186/s13195-020-00730-2
  • BioMed Central
  • View : 801
  • Download : 222
  • Park, Dongseok
  • Kim, Seungjoon
  • Kim, Hyeonho
  • Shin, Jungsu
  • Jung, Hyeji
  • Um, Ji Won
  • 2020-12
  • Park, Dongseok. (2020-12). Seizure progression triggered byIQSEC3loss is mitigated by reducing activated microglia in mice. GLIA, 68(12), 2661–2673. doi: 10.1002/glia.23876
  • John Wiley & Sons Inc.
  • View : 619
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