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Ching-Tang Wu

Publications and source records attributed to Ching-Tang Wu.

25 records · Page 2Linked to original sources

Treatment of cerebral vasospasm after subarachnoid hemorrhage--a review.

Delayed cerebral ischemia as a result of cerebral vasospasm is the most common cause of death and disability after aneurysmal subarachnoid hemorrhage (SAH). It leads to death or permanent neurologic deficits in over 17-40% of SAH patients. The initial and main symptom of cerebral vasospasm is diffuse headache and may be accompanied with a slight increase in discomfort from neck stiffness and fever. The clinical diagnosis of cerebral vasospasm is made when the patient experiences an altered level of consciousness or a new focal neurologic deficit. There has been a great progress in identifying the patients at risk, putative mechanisms, and possible treatment options for cerebral vasospasm. However, the problem is by no means solved, mainly due to a limited understanding of the pathologic mechanisms of this complex disease. The iatrogenic factors that can increase the risk of cerebral vasospasm include prolongation of the subarachnoid clot by antifibrinolytic drugs, hypotension, inappropriate treatment of hyponatremia, hypovolemia, hyperthermia and increased intracranial pressure. Nimodipine has been shown to improve neurologic outcome and decrease the incidence of cerebral vasospasm. Triple H therapy is a treatment designed to augment cerebral blood flow for patient with cerebral vasospasm. Hypervolemic hypertension is induced with intravenous volume expansion with crystalloid or colloid to increase cardiac output and raise blood pressure. However, small randomized trials showed no clear benefit. Recently, balloon and chemical angioplasty with superselective intra-arterial injection of vasodilators has emerged as the primary intervention for treating medically refractory ischemia from cerebral vasospasm and in many centers is being used as a first-line treatment or even prophylactically. In addition, promising new treatments for cerebral vasospasm or its ischemic complications include magnesium sulfate, fasudil hydrochloride, tirilazad mesylate, erythropoietin, and induced hypothermia; however, all still need further clinical trials. Newly recognized mediators of cerebral vasospasm after SAH include endothelium-derived mediators, vascular smooth-muscle-derived mediators, proinflammatory mediators involved in blood-brain barrier disruption, cytokines and adhesion molecules, stress-induced gene activation, and platelet-derived growth factors. Moreover, observations in the laboratory have, in many circumstances, matched those of reported small series. Larger, prospective, randomized trials are needed to verify several hypotheses of molecular pathophysiology and clinical treatment regimens.

Angioplasty↗

Dobutamine modulates lipopolysaccharide-induced macrophage inflammatory protein-1alpha and interleukin-8 production in human monocytes.

UNLABELLED: Chemokines mediate the migration of leukocytes to sites of inflammation. The CC chemokine macrophage inflammatory protein (MIP)-1alpha and the CXC chemokine interleukin (IL)-8 are reported to play an important role in early inflammatory stages, wound healing, sepsis, and some cardiovascular diseases, including acute coronary syndromes and congestive heart failure. We conducted this study to investigate the effect of dobutamine on lipopolysaccharide (LPS)-induced MIP-1alpha and IL-8 production by human monocytic THP-1 cells. Monocytes were incubated in vitro with LPS for 4 or 16 h at 37 degrees C in the presence or absence of dobutamine. The effect of dobutamine on MIP-1alpha and IL-8 synthesis was examined by using an enzyme-linked immunosorbent assay, and MIP-1alpha and IL-8 messenger RNA (mRNA) were examined by using reverse transcriptase-polymerase chain reaction. Dobutamine significantly inhibited LPS-induced MIP-1alpha and IL-8 production by THP-1 cells in a dose-dependent manner. Salbutamol had a similar suppressive effect on LPS-stimulated MIP-1alpha and IL-8 production. MIP-1alpha mRNA was also suppressed by 10 micro M dobutamine, whereas, at the same concentration, dobutamine had no significant effect on the IL-8 mRNA level. Moreover, we found that dobutamine suppressed the MIP-1alpha-induced chemotaxis in THP-1 differentiated macrophages. These findings suggest that dobutamine may inhibit macrophage chemotaxis, as well as MIP-1alpha and IL-8 production by monocytes. The site of chemokine regulation is at the transcriptional level for MIP-1alpha and might be at the posttranscriptional level for IL-8. IMPLICATIONS: Macrophage inflammatory protein (MIP)-1alpha and interleukin (IL)-8 are reported to play an important role in early inflammatory stages, wound healing, sepsis, and some cardiovascular diseases. Our study suggests that dobutamine may inhibit macrophage chemotaxis, as well as lipopolysaccharide-induced MIP-1alpha and IL-8 production by human monocytes.

Adrenergic beta-Agonists↗

Closed-circuit anesthesia prolongs the neuromuscular blockade of rocuronium.

BACKGROUND: Volatile anesthetics are known to potentiate the neuromuscular blocking effect of nondepolarizing muscle relaxants. The influences of anesthetic techniques, closed-circuit anesthesia (CCA) and high flow semi-closed anesthesia (SCA), on the neuromuscular blockade of rocuronium has not yet been studied in detail. This study was purposed to compare the effects of isoflurane conveyed in minimal flow (CCA) and in high flow (SCA) on the neuromuscular blockade of rocuronium. METHODS: Fifty females scheduled for elective laparoscopic gynecological surgery were enrolled for study and randomly assigned to receive either CCA (n = 25) or SCA (n = 25). Anesthesia was induced with fentanyl 2 micrograms/kg, thiopental 5 mg/kg and rocuronium 0.6 mg/kg. Two percent isoflurane in high O2 flow (3 l/min) was given for 10 min to all patients initially to wash isoflurane in the functional residual capacity of both lungs and the breathing circuit. After the wash in, for CCA group, the O2 flow was reduced to 300 ml/min with isoflurane vaporizer setting adjusted to 3-5% for anesthesia maintenance, while for SCA group, anesthesia was maintained with 1.5-2% isoflurane in 3 l/min O2 flow throughout the surgery. Electromyogram was used to determine neuromuscular blockade. Rocuronium (0.15 mg/kg) was given to maintain muscle relaxation when T1 reached 25% of control. We maintained the anesthetic depth until the recordings of T1 twitch response which reached 75% was completed. Onset time, duration, recovery index and intubating conditions were recorded. The hemodynamic parameters and the inhaled/exhaled concentrations were also measured every 15 min after skin incision in both groups. RESULTS: The onset time and intubating conditions were similar in both groups. In comparison with SCA group, longer clinical durations (54.1 +/- 14.4 vs. 45.4 +/- 9.2 min, P < 0.05), longer durations of maintained dose (41.1 +/- 11.1 vs. 30.2 +/- 8.6 min, P < 0.01) and longer recovery index (34.2 +/- 10.7 vs. 20.9 +/- 5.4 min, P < 0.0001) were observed in CCA group. CONCLUSIONS: We conclude that CCA may further prolong the neuromuscular blocking effect of rocuronium than SCA.

Adolescent↗

Low-dose vasopressin infusion can be an alternative in treating patients with refractory septic shock combined with chronic pulmonary hypertension--a case report.

Septic shock is still the major cause of death in surgical intensive care unit. Fluid support, inotropic agents, and broad spectrum antibiotics are still the mainstay of traditional therapy. Here, we present a case of septic shock arising from gangrenous ischemic bowel, complicated by chronic pulmonary hypertension, which was refractory to catecholamine vasoprerssors. We successfully stabilized the hemodynamics and reduce the pulmonary hypertension with low-dose vasopressin infusion.

Aged↗

A lethal pulmonary embolism during percutaneous vertebroplasty.

IMPLICATIONS: This case report describes a fatal cardiac arrest during percutaneous vertebroplasty. This serves to remind us that life threatening intraoperative pulmonary embolism may occur in this minimal invasive procedure. Surgical precautions and invasive cardiovascular monitoring may be required in high-risk patients.

Aged↗

Preoperative cotreatment with dextromethorphan and ketorolac provides an enhancement of pain relief after laparoscopic-assisted vaginal hysterectomy.

OBJECTIVES: Both N-methyl-D-aspartate receptor antagonists and nonsteroidal anti-inflammatory drugs have been demonstrated to produce better postoperative pain relief. The concept of multimodal analgesia has also been used for clinical pain management. The aim of the present study was to examine the analgesic effect of preoperative cotreatment with dextromethorphan (DM) and ketorolac on postoperative pain management after laparoscopic-assisted vaginal hysterectomy (LAVH). METHODS: Eighty ASA physical status I or II patients scheduled for LAVH were included and randomly assigned to 1 of 4 groups. Patients received intramuscular (IM) chorpheniramine 20 mg+ intravenous (IV) 2 mL of normal saline, IM DM 40 mg+IV 2 mL of normal saline, IM chorpheniramine 20 mg+IV 60 mg (2 mL) of ketorolac, and IM DM 40 mg+IV ketorolac 60 mg as the groups C, DM, Keto, and DM+Keto, respectively. All patients were given a patient-controlled analgesia (PCA) with morphine for pain relief postoperatively. Analgesic effects were evaluated using Visual Analog Scale pain scores at rest and during coughing, time to first PCA request for pain relief, total morphine consumption, bed rest time, and the time to first passage of flatus for 48 hours after surgery. RESULTS: Patients in DM and Keto groups had significantly better pain relief than patients in group C. Patients in DM+Keto group exhibited the best postoperative pain relief among groups in the following several categories: time to first trigger of PCA, total morphine consumption, the worst Visual Analog Scale, bed rest time, and the time to first passage of flatus, demonstrating an enhanced effect between DM and ketorolac. Neither synergistic nor antagonistic interaction was observed between DM and ketorolac. DISCUSSION: Preoperative treatment with both DM and ketorolac diminish postoperative pain. Our results suggest that the N-methyl-D-aspartate antagonist-DM and the nonsteroidal anti-inflammatory drugs-ketorolac cotreatment provide an enhancement of analgesia for postoperative pain management in patients after LAVH surgery.

Adult↗