Sang-Hwan Do
Seoul National University · 医学
研究室紹介
Professor Sang-Hwan Do's research lab specializes in anesthetic pharmacology and neuroprotection, with a focus on the mechanisms of action of local anesthetics, volatile anesthetics, and adjuvants like magnesium sulfate and dexmedetomidine in perioperative medicine. The lab investigates ion transporters—particularly glutamate transporters such as EAAT3—highlighting their modulation by anesthetic agents and signaling pathways like protein kinase C and PI3K. Research also emphasizes clinical applications, including reducing postoperative pain and airway complications through optimized anesthetic techniques and prophylactic interventions.
Research Overview
Research Output Trend
Figures are computed from collected data and may differ slightly.
Selected Papers
15Magnesium sulfate has been used in preeclampsia patients in order to prevent seizure. It is also used for the treatment of arrhythmia and asthma and as an anesthetic adjunct in patients undergoing surgery for pheochromocytoma. However, its potentiating effects on perioperative analgesia and muscle relaxation have drawn attention recently. These characteristics of magnesium (anesthetic- and analgesic-sparing effect) enable anesthesiologists to reduce the use of anesthetics during surgery and the
The prophylactic use of 0.2 mg/kg of dexamethasone significantly decreases the incidence and severity of sore throat and hoarseness 1 h and 24 h after tracheal extubation of a DLT.
BACKGROUND: In patients undergoing total knee arthroplasty under spinal anesthesia, we compared the postoperative analgesic effect of intraoperative sedation with dexmedetomidine versus propofol. We hypothesized that sedation with dexmedetomidine would result in lower postoperative opioid analgesic consumption than with propofol. METHODS: Forty-eight patients were enrolled and randomly assigned to either a dexmedetomidine group (n = 24), which received a loading dose of 1 μg/kg dexmedetomidine o
BACKGROUND: Glutamate transporters play an important role in maintaining extracellular glutamate homeostasis. The authors studied the effects of volatile anesthetics on one type of glutamate transporters, excitatory amino acid transporter type 3 (EAAT3), and the role of protein kinase C in mediating these effects. METHODS: Excitatory amino acid transporter type 3 was expressed in Xenopus oocytes by injection of EAAT3 mRNA. Using two-electrode voltage clamp, membrane currents were recorded before
The PLMA showed significantly lower oropharyngeal leak pressures than did the LTS or CobraPLA in the neck extension and rotation positions. Caution is warranted when changing the position of the head and neck when using the Cobra-PLA or LTS as gastric insufflation or ventilatory difficulty may occur.
By using the Xenopus oocyte expression system, we investigated the effects of lidocaine on a glutamate transporter (EAAT3). Our findings suggest that lidocaine enhances EAAT3 activity at certain concentrations and that protein kinase C and phosphatidylinositol 3-kinase may mediate these lidocaine effects.
INTRODUCTION: Up to 75% of the patients undergoing laparoscopic cholecystectomy develop postoperative nausea and vomiting (PONV). Both ramosetron, a serotonin subtype 3 (5-HT3) antagonist, and dexamethasone are effective for PONV prophylaxis following laparoscopic cholecystectomy but their combined effect has not been investigated. We investigated the efficacy and tolerance of ramosetron alone and ramosetron with dexamethasone for PONV prophylaxis after laparoscopic cholecystectomy. METHODS: Sev
A preoperative increase in blood pressure after position change may be a good variable to predict hypotension during spinal anesthesia for cesarean delivery.