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  • ÀüÀÓ±³¼ö(Àǰú´ëÇÐ)
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  • ȨÆäÀÌÁö ¹Ù·Î°¡±â http://biomed.skku.edu/ionchannel
  • Àü°øºÐ¾ß £ü Àü±â»ý¸®ÇÐ, ÀÌ¿Âä³Î, ±ÙÀ°»ý¸®ÇÐ
  • ¿¬¶ôó     £ü (ÀüÈ­) 031-299-6102 / (fax) 031-299-6129
  • À̸ÞÀÏ     £ü tongmkang@skku.edu

ÁÖ¿ä°æ·Â

  • ÇзÂ
    1988. 2: ¼­¿ï´ëÇб³ ¼öÀǰú´ëÇÐ, ¼öÀÇÇлç
    1994. 8: ¼­¿ï´ëÇб³ ´ëÇпø, ¼öÀÇÇйڻç (»ý¸®ÇÐ)

    °æ·Â
    1994 - 1995: ´Ü±¹´ëÇб³ Àǰú´ëÇÐ, Á¶±³
    1995 - 1998: »ï¼º»ý¸í°úÇבּ¸¼Ò, ¿¬±¸¿ø
    1998 - ÇöÀç: ¼º±Õ°ü´ëÇб³ Àǰú´ëÇÐ »ý¸®Çб³½Ç, ÀüÀÓ°­»ç/Á¶±³¼ö/ºÎ±³¼ö/±³¼ö
    2001 - 2003: Visiting Assistant Professor, Department of Physiology, University of Texas Southwestern Medical Center at Dallas, USA
    2006 - 2024: Çѱ¹ÀÌ¿ÂÅë·Î¿¬±¸È¸, Ãѹ«
    2006 - 2008: ´ëÇÑ»ý¸®ÇÐȸ, ±âȹ°£»ç
    2008 - 2010: ´ëÇÑ»ý¸®ÇÐȸ, °¨»ç
    2008 - 2020: ´ëÇÑ»ý¸®ÇÐȸ, ÇмúÀ§¿ø
    2010 - ÇöÀç: ´ëÇÑ»ý¸®ÇÐȸ, ÀÌ»ç
    2011 - 2013: ºÎÆíÁýÀ§¿øÀå(Associate Editor), Korean Journal of Physiology & Pharmacology
    2013 - 2023: ´ëÇÑ»ý¸®ÇÐȸ, °£ÇàÀÌ»ç
    2013 - 2023: ÆíÁýÀ§¿øÀå(Editor-in-Chief), Korean Journal of Physiology & Pharmacology
    2016 - 2017: ÆíÁýÀ§¿øÀå(Editor-in-Chief), Precision and Future Medicine
    2017 - ÇöÀç: ÆíÁýÀ§¿ø(Editorial Board Member), Pflugers Archiv-European Journal of Physiology
    2020 - 2023: ´ëÇÑÀÇÇÐÇмúÁöÆíÁýÀÎÇùÀÇȸ(KAMJE), Æò°¡À§¿øÈ¸ °£»ç

ÁÖ¿ä°ü½É¿¬±¸

  • - ÀÌ¿Âä³Î ¹× ¼¼Æ÷Ä®½·½ÅÈ£(Ion channels & intracellular calcium signaling)
    - ÀÌ¿Âä³ÎÁúȯ(Channelopathies): ºÎÁ¤¸Æ(arrhythmias), ¿ä½Ç±Ý(OAB/UI), ³­Ã»(hearing loss)
    - ÀÌ¿Âä³Î ½Å¾à°³¹ß ¹× hERG ½ÉÀåµ¶¼ºÆò°¡(Ion channel drug discovery & hERG assay)
    - ±ÙÀ°»ý¸®ÇÐ(Muscle Physiology): ½ÉÀå±Ù(heart), ÆòȰ±Ù(smooth muscles), °ñ°Ý±Ù(skeletal muscles)
    - Àΰø±ÙÀ° °³¹ß(Development of artificial muscles)

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  • 1. Comprehensive genetic profiling of sensorineural hearing loss using an integrative diagnostic approach. Cell Rep Med (2025) 6(7):102206.
    2. Novel KCNQ4 variants in different functional domains confer genotype- and mechanism-based therapeutics in patients with nonsyndromic hearing loss. Exp Mol Med (2021) 53(7):1192-1204.
    3. Biomimetic cell-actuated artificial muscle with nanofibrous bundles. Microsyst Nanoeng (2021) 7:70.
    4. Nanoscale imaging of rat atrial myocytes by scanning ion conductance microscopy reveals heterogeneity of T-tubule openings and ultrastructure of the cell membrane. Korean J Physiol Pharmacol (2020) 24(6):529-543.
    5. Whole-exome sequencing identifies two novel mutations in KCNQ4 in individuals with nonsyndromic hearing loss. Sci Rep (2018) 8:16659.
    6. Optogenetic modulation of urinary bladder contraction for lower urinary tract dysfunction. Sci Rep (2017) 7:40872.
    7. mTOR controls ChREBP transcriptional activity and pancreatic ¥â cell survival under diabetic stress. J Cell Biol (2017) 216(7):2091-2105.
    8. Bio-inspired hybrid carbon nanotube muscles. Sci Rep (2016) 6:26687.
    9. Positive feedback control between STIM1 and NFATc3 is required for C2C12 myoblast differentiation. Biochem Biophys Res Commun (2013) 430(2):722-8.
    10. Enhanced actuation of PPy/CNT hybrid fibers using porous structured DNA hydrogel. Sensors and Actuators B (2010) 145:89-92.
    11. Tough supersoft sponge fibers with tunable stiffness from a DNA self-assembly technique. Angew Chem Int Ed Engl (2009) 48(28):5116-20.
    12. Switchable redox activity by proton fuelled DNA nano-machines. Chem Commun (Camb) (2009) 14(10):1240-2.
    13. Fullerene attachment enhances performance of a DNA nanomachine. Adv. Mater. (2009) 21:1-4.
    14. Loss of autophagy diminishes pancreatic beta cell mass and function with resultant hyperglycemia. Cell Metabolism (2008) 8(4)318-324.
    15. DNA-Wrapped single-walled carbon nanotube hybrid fibers for supercapacitors and artificial muscles. Adv. Mater. (2008) 20:466-470.
    16. DNA hydrogel fiber with self-entanglement prepared by using an ionic liquid. Angew Chem Int Ed Engl (2008) 47(13):2470-4.
    17. Multiple transport modes of the cardiac Na+/Ca2+ exchanger. Nature (2004) 427(6974):544-548.
    18. Ion fluxes in giant excised cardiac membrane patches detected and quantified with ion-selective microelectrodes. J Gen Physiol (2003) 121:325-347.
    19. The properties of carbachol-activated nonselective cation channels at the single channel level in guinea pig gastric myocytes. Jpn J Pharmacol (2001) 85(3):291-8.