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Completed

NCT Number: NCT05458453

An Exploratory Study of Esketamine in Patients After Thoracoscopic Surgery

Thoracic surgery can produce severe postoperative acute pain, which can easily lead to cough weakness, atelectasis, respiratory restriction, pneumonia, hypoxemia, secretion retention, respiratory failure and other adverse events. Esketamine can reduce the demand of analgesic opioids, reduce the respiratory depression caused by opioids, improve ventilation, significantly reduce postoperative pain and prolong the analgesic time after thoracic surgery. Therefore, the application of esketamine in postoperative analgesia of patients undergoing thoracoscopic surgery may help to improve the respiratory function of clinical patients and further improve the postoperative analgesia effect, so as to achieve the purpose of accelerating the surgical rehabilitation of patients undergoing thoracoscopic surgery. Esketamine is rarely used in perioperative period in China, and the development of its safe and reasonable application methods and potential role in perioperative anesthesia needs further research and verification. Generally speaking, at present, there is still a lack of evaluation of ketamine in improving respiratory function, pain, anxiety and depression after thoracoscopic surgery, and there is no direct clinical evidence.

At present, sufentanil is the most commonly used drug for postoperative analgesia in patients undergoing clinical surgery. As a strong opioid, although sufentanil can provide good analgesic effect, the respiratory depression caused by sufentanil is not conducive to the recovery of postoperative lung function in patients undergoing thoracic surgery. The action sites of esketamine include N- methyl-aspartic acid (NMDA) receptor, opioid receptor, monoamine receptor, M cholinergic receptor, sodium channel, calcium channel, etc., which can relieve respiratory depression caused by opioids, stimulate respiration, relax airway smooth muscle, prevent hyperalgesia caused by opioids, reduce the dosage of postoperative analgesics and prolong the duration of postoperative analgesia. Therefore, esketamine is likely to improve postoperative respiratory function of patients after thoracoscopic surgery and play a good role. To sum up, this study is intended to include patients undergoing elective thoracoscopic surgery. Through a prospective randomized controlled double-blind clinical trial, different analgesic drugs of intravenous patient-controlled analgesia and simple conventional opioid analgesic sufentanil are used as the control. Combined with the investigation of preoperative and postoperative tidal volume, oxygenation index, postoperative pain and postoperative recovery outcome, the effects of esketamine on postoperative respiratory function, postoperative pain and overall rehabilitation of these patients are compared, so as to provide direct clinical evidence for improving postoperative lung function of patients undergoing elective thoracoscopic surgery, and at the same time, provide a choice for thoracoscopic surgery.

To explore the effect of esketamine on improving postoperative respiratory function, pain, depression and anxiety and overall rehabilitation of patients undergoing thoracoscopic surgery. Compound esketamine is used for postoperative analgesia, thus providing direct clinical evidence for improving postoperative pulmonary function of patients undergoing elective thoracoscopic surgery, and providing reference for improving postoperative pain, anxiety and depression of patients undergoing elective thoracoscopic surgery.

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Key information

Age range

18 year–75 year

Sex eligibility

All sexes

Study type

Interventional

Phase

Phase 4

Primary location

Department of Anesthesiology, The Second Affiliated Hospital, Chongqing Medical University, Chongqing, Chongqing Municipality, China

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Who can participate

Healthy volunteers accepted: No

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • Patients undergoing thoracoscopic surgery are required to use PCIA for analgesia;
  • ASA grade I-III;
  • The patient's age is 18-75 years old; 4、18.5 < BMI < 28;
  • Obtain the informed consent of patients and their families;

Exclusion criteria

  • Patients with previous history of thoracic surgery or combined history of thoracic trauma;
  • Patients with severe hypertension and poor control;
  • Patients with hyperthyroidism and poor control;
  • Patients at risk of increased intracranial pressure;
  • Patients with mental illness;
  • Patients who are allergic to any drug in the test;
  • Patients who take anti-inflammatory drugs, opioids or related diseases for a long time;
  • Pregnant or lactating patients;

Treatment and study plan

Esketamine

Drug

Self-controlled intravenous analgesia pump was used for continuous injection, and it was prepared according to sufentanil 1.5ug/ml+ esketamine 0.75ug/ml+16mg ondansetron. After the operation, the analgesic pump was connected, and sufentanil 0.1ug/kg/h+ esketamine 0.05mg/kg/h was pumped continuously for 24 hours. The continuous infusion of analgesia pump is (kg body weight/15) ml/h. (e.g. 60kg, pump speed 4ml/h, total amount 96ml).

Primary outcomes

  1. Minute ventilation volume 0

    Time frame: Before anesthesia induction

    Minute ventilation volume before anesthesia induction

  2. Minute ventilation volume 1

    Time frame: Within 5 minutes after extubation

    Minute ventilation volume after extubation

  3. Minute ventilation volume 2

    Time frame: postoperative day 1 (POD1) morning

    Minute ventilation volume on the first morning

  4. Minute ventilation volume 3

    Time frame: postoperative day 1 (POD1) afternoon

    Minute ventilation volume on the first afternoon

  5. Minute ventilation volume 4

    Time frame: postoperative day 2 (POD2) morning

    Minute ventilation volume on the next morning

  6. Minute ventilation volume 5

    Time frame: postoperative day 2 (POD2) afternoon

    Minute ventilation volume on the next afternoon

  7. Tidal volume 0

    Time frame: Before anesthesia induction

    Tidal volume before anesthesia induction

  8. Tidal volume 1

    Time frame: Within 5 minutes after extubation

    Tidal volume after extubation

  9. Tidal volume 2

    Time frame: Day1 (The first morning after surgery)

    Tidal volume on the first morning after surgery

  10. Tidal volume 3

    Time frame: Day1(The afternoon of the first day after surgery)

    Tidal volume on the first afternoon after surgery

  11. Tidal volume 4

    Time frame: day 2 ( second morning after surgery)

    Tidal volume on the next morning after surgery

  12. Tidal volume 5

    Time frame: day 2 ( second afternoon after surgery)

    Tidal volume on the next afternoon after surgery

  13. Respiratory rate 0

    Time frame: Before anesthesia induction

    Respiratory rate before anesthesia induction

  14. Respiratory rate 1

    Time frame: Within 5 minutes after extubation

    Respiratory rate after extubation

  15. Respiratory rate 2

    Time frame: Day1 (The first morning after surgery)

    Respiratory rate on the first morning after surgery

  16. Respiratory rate 3

    Time frame: Day1 (The afternoon of the first day after surgery)

    Respiratory rate on the first afternoon after surgery

  17. Respiratory rate 4

    Time frame: day 2 ( second morning after using surgery)

    Respiratory rate on the next morning after surgery

  18. Respiratory rate 5

    Time frame: day 2 ( second afternoon after surgery)

    Respiratory rate on the next afternoon after surgery

Secondary outcomes

  1. Vas score 1

    Time frame: Within 5 minutes after extubation

    The higher the score, the more painful it is.

  2. Vas score 2

    Time frame: postoperative day 1 (POD1) morning

    The higher the score, the more painful it is.

  3. Vas score 3

    Time frame: postoperative day 1 (POD1) afternoon

    The higher the score, the more painful it is.

  4. Vas score 4

    Time frame: postoperative day 2 (POD2) morning

    The higher the score, the more painful it is.

  5. Vas score 5

    Time frame: postoperative day 2 (POD2) afternoon

    The higher the score, the more painful it is.

  6. Oxygenation index 0

    Time frame: Before anesthesia induction

    Oxygenation index (calculated as PaO2/FiO2) before anesthesia induction

  7. Oxygenation index 1

    Time frame: Within 5 minutes after extubation

    Oxygenation index (calculated as PaO2/FiO2) after extubation

  8. Oxygenation index 3

    Time frame: postoperative Day 1

    Oxygenation index (calculated as PaO2/FiO2) on the first morning

  9. Incidence of postoperative pulmonary complications during hospitalization

    Time frame: From end of the surgery to hospital discharge with about mean of 7 days after surgery

    postoperative pulmonary complications during hospitalization was assessed using the Melbourne Group Scale, whcih reached four or more of the 8 criteria would be diagnosed with postoperative pulmonary complications.

  10. incidence of hypoxemia during the first and second day after surgery

    Time frame: from end of the surgery to the second day after surgery

    hypoxemia is defined as SpO2<92% during the first and second day after surgery

Other outcomes

  1. Depression scale 0

    Time frame: Before anesthesia induction

    PHQ-9, The higher the score, the more depressed.

  2. Depression scale 2

    Time frame: Day 1(the first morning after using PCIA)

    PHQ-9,The higher the score, the more depressed.

  3. Depression scale 4

    Time frame: day 2 ( second morning after using PCIA)

    PHQ-9,The higher the score, the more depressed.

  4. anxiety score 0

    Time frame: Before anesthesia induction

    GAD-7,The higher the score, the more anxious.

  5. anxiety score 2

    Time frame: Day1(the first morning after using PCIA)

    GAD-7,The higher the score, the more anxious.

  6. anxiety score 4

    Time frame: day 2 ( second morning after using PCIA)

    GAD-7,The higher the score, the more anxious.

  7. sleep quality during the first two days after surgery

    Time frame: from end of the surgery to the second day after surgery

    assessed by Richards-Campbell sleep score, which higher socre represents better sleep quality

Sponsors and collaborators

Lead sponsor

The Second Affiliated Hospital of Chongqing Medical University

Other

Registry information

Important dates

Study start
2022
Primary completion
2023
Study completion
2023
First posted
Jul 14, 2022
Registry last updated
Aug 16, 2023

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

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This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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