Intravenous Lidocaine Infusion in the Management of Post-operative Pain in Colorectal Patients
Visão geral do estudo
Status
Status
Condições
Condições
Intervenção / Tratamento
Intervenção / Tratamento
Descrição detalhada
Tipo de estudo
Tipo de estudo
Estágio
Estágio
- Fase 2
- Fase 1
Contactos e Locais
Locais de estudo
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Ohio
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Cincinnati, Ohio, Estados Unidos, 45229
- Cincinnati Children's Hospital Medical Center
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Critérios de participação
Critérios de elegibilidade
Critérios de elegibilidade
Idades elegíveis para estudo
Aceita Voluntários Saudáveis
Gêneros Elegíveis para o Estudo
Descrição
Inclusion Criteria:
- male or female children 1-15 years of age
- ASA physical status 1-3
- scheduled for colorectal surgery with abdominal incision
- scheduled for complex urology surgical case
Exclusion Criteria:
- ASA physical status > 3
- postoperative intubation planned ahead of surgery
- history of chronic use of opioid
- history of hepatic,renal, or cardiac failure
- history of organ transplant
- BMI > 30
- history of cardiac arrhythmia
- history of long QT syndrome
- history of allergic reaction to lidocaine or similar agents
- history of seizure disorder
- patient without Peripherally Inserted Central Catheter or other central access with contraindication to inhalation induction
- family history or know patient susceptibility to malignant hyperthermia
Plano de estudo
Como o estudo é projetado?
Detalhes do projeto
- Finalidade Principal: Tratamento
- Alocação: Randomizado
- Modelo Intervencional: Atribuição Paralela
- Mascaramento: Triplo
Número de braços
Armas e Intervenções
Grupo de Participantes / BraçoGrupo de Participantes / Braço |
Intervenção / TratamentoIntervenção / Tratamento |
|---|---|
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Comparador Ativo: Lidocaine
The treatment group will receive a 1.5mg/kg intravenous lidocaine bolus over 10 minutes.
The bolus will be followed by an intravenous lidocaine infusion of 1 mg/kg/hr.
The infusion will be stopped after extubation prior to leaving the operating room or after 5 hours from the start of the infusion
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The treatment group will receive a 1.5mg/kg intravenous lidocaine bolus over 10 minutes after induction by means of an infusion pump.
This bolus will be followed by an intravenous lidocaine infusion of 1 mg/kg/hr.
The infusion will be stopped after extubation prior to leaving the operative room or after 5 hours from the start of the infusion, which ever comes first.
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Comparador de Placebo: Saline
The saline will be administered over an infusion pump over 10 minutes and followed by a bolus.
The infusion will be stopped after extubation prior to leaving the operating room or after 5 hours from the start of the infusion.
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The treatment group will receive a 1.5mg/kg intravenous lidocaine bolus over 10 minutes after induction by means of an infusion pump.
This bolus will be followed by an intravenous lidocaine infusion of 1 mg/kg/hr.
The infusion will be stopped after extubation prior to leaving the operative room or after 5 hours from the start of the infusion, which ever comes first.
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O que o estudo está medindo?
Medidas de resultados primários
Medidas de resultados primários
Medida de resultado |
Descrição da medida |
Prazo |
|---|---|---|
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Length of stay in hospital following abdominal surgery
Prazo: participants will be followed for the duration of hospital stay, an average of 1 week
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The primary outcome measure will be to monitor the length of stay in hospital following abdominal surgery.
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participants will be followed for the duration of hospital stay, an average of 1 week
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Medidas de resultados secundários
Medidas de resultados secundários
Medida de resultado |
Descrição da medida |
Prazo |
|---|---|---|
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Postoperative pain scores
Prazo: participants will be followed post-op, average 5 days
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Study staff will monitor patients pain every 15 minutes in the PACU and record documentation every 4 hours while on the floor.
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participants will be followed post-op, average 5 days
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Cumulative morphine consumption
Prazo: participants will be followed post-op, average 5 days
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Staff will document how much morphine a patient uses post-operatively after abdominal surgery.
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participants will be followed post-op, average 5 days
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Incidences of opioid adverse-effects
Prazo: participants will be followed post-op, average 5 days
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Study staff will monitor nursing notes for respiratory depression, sedation, nausea and vomiting
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participants will be followed post-op, average 5 days
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Time to passage of flatus and bowel movement
Prazo: participants will be followed post-op, average 5 days
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Study staff will review nursing notes for time of passage of flatus and first bowel movement.
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participants will be followed post-op, average 5 days
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End-tidal Sevoflurane in operating room throughout surgery
Prazo: participants will be measured until the end of the OR case, on average 6 hours
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participants will be measured until the end of the OR case, on average 6 hours
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Serial lidocaine levels for pharmacokinetics and safety levels
Prazo: participants will be measured until the end of the OR case, on average 6 hours and 24 hours post-operatively
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2 samples will be drawn at time of baseline IV placement Blood draw 0-3 minutes after bolus is complete Blood draw 9-15 minutes after the bolus is complete 2 blood samples will be drawn at the end of continuous infusion (either at end of surgery after extubation prior to leaving OR or after 5 hours from the start of the infusion) Blood draw 1 hour following the infusion Blood draw 2-3 hours following the end of the infusion 2 blood samples will be drawn 24 hours after surgery dependent of necessary labs
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participants will be measured until the end of the OR case, on average 6 hours and 24 hours post-operatively
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Pro- and anti-inflammatory cytokine measurements: IL-6, IL-8, IL-10, IL-1RA
Prazo: participants will be measured until the end of the OR case, on average 6 hours and 24 hours post-operatively
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2 samples will be drawn at time of baseline IV placement Blood draw 0-3 minutes after bolus is complete Blood draw 9-15 minutes after the bolus is complete 2 blood samples will be drawn at the end of continuous infusion (either at end of surgery after extubation prior to leaving OR or after 5 hours from the start of the infusion) Blood draw 1 hour following the infusion Blood draw 2-3 hours following the end of the infusion 2 blood samples will be drawn 24 hours after surgery dependent of necessary labs
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participants will be measured until the end of the OR case, on average 6 hours and 24 hours post-operatively
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Genetic variants
Prazo: participants will be measured until the end of the OR case, on average 6 hours and 24 hours post-operatively
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2 samples will be drawn at time of baseline IV placement Blood draw 0-3 minutes after bolus is complete Blood draw 9-15 minutes after the bolus is complete 2 blood samples will be drawn at the end of continuous infusion (either at end of surgery after extubation prior to leaving OR or after 5 hours from the start of the infusion) Blood draw 1 hour following the infusion Blood draw 2-3 hours following the end of the infusion 2 blood samples will be drawn 24 hours after surgery dependent of necessary labs
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participants will be measured until the end of the OR case, on average 6 hours and 24 hours post-operatively
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Colaboradores e Investigadores
Patrocinador
Patrocinador
Investigadores
Investigadores
- Investigador principal: Smokey J Clay, MD, Children's Hospital Medical Center, Cincinnati
Publicações e links úteis
Publicações Gerais
- Kuo CP, Jao SW, Chen KM, Wong CS, Yeh CC, Sheen MJ, Wu CT. Comparison of the effects of thoracic epidural analgesia and i.v. infusion with lidocaine on cytokine response, postoperative pain and bowel function in patients undergoing colonic surgery. Br J Anaesth. 2006 Nov;97(5):640-6. doi: 10.1093/bja/ael217. Epub 2006 Sep 4.
- Harvey KP, Adair JD, Isho M, Robinson R. Can intravenous lidocaine decrease postsurgical ileus and shorten hospital stay in elective bowel surgery? A pilot study and literature review. Am J Surg. 2009 Aug;198(2):231-6. doi: 10.1016/j.amjsurg.2008.10.015. Epub 2009 Mar 12.
- Duedahl TH, Hansen EH. A qualitative systematic review of morphine treatment in children with postoperative pain. Paediatr Anaesth. 2007 Aug;17(8):756-74. doi: 10.1111/j.1460-9592.2007.02213.x.
- Kain ZN, Mayes LC, Caldwell-Andrews AA, Karas DE, McClain BC. Preoperative anxiety, postoperative pain, and behavioral recovery in young children undergoing surgery. Pediatrics. 2006 Aug;118(2):651-8. doi: 10.1542/peds.2005-2920.
- Bulloch B, Tenenbein M. Validation of 2 pain scales for use in the pediatric emergency department. Pediatrics. 2002 Sep;110(3):e33. doi: 10.1542/peds.110.3.e33.
- Groudine SB, Fisher HA, Kaufman RP Jr, Patel MK, Wilkins LJ, Mehta SA, Lumb PD. Intravenous lidocaine speeds the return of bowel function, decreases postoperative pain, and shortens hospital stay in patients undergoing radical retropubic prostatectomy. Anesth Analg. 1998 Feb;86(2):235-9. doi: 10.1097/00000539-199802000-00003.
- Ash-Bernal R, Wise R, Wright SM. Acquired methemoglobinemia: a retrospective series of 138 cases at 2 teaching hospitals. Medicine (Baltimore). 2004 Sep;83(5):265-273. doi: 10.1097/01.md.0000141096.00377.3f.
- McGrath PA, Seifert CE, Speechley KN, Booth JC, Stitt L, Gibson MC. A new analogue scale for assessing children's pain: an initial validation study. Pain. 1996 Mar;64(3):435-443. doi: 10.1016/0304-3959(95)00171-9.
- Kaba A, Laurent SR, Detroz BJ, Sessler DI, Durieux ME, Lamy ML, Joris JL. Intravenous lidocaine infusion facilitates acute rehabilitation after laparoscopic colectomy. Anesthesiology. 2007 Jan;106(1):11-8; discussion 5-6. doi: 10.1097/00000542-200701000-00007.
- Candiotti KA, Yang Z, Morris R, Yang J, Crescimone NA, Sanchez GC, Bird V, Leveillee R, Rodriguez Y, Liu H, Zhang YD, Bethea JR, Gitlin MC. Polymorphism in the interleukin-1 receptor antagonist gene is associated with serum interleukin-1 receptor antagonist concentrations and postoperative opioid consumption. Anesthesiology. 2011 May;114(5):1162-8. doi: 10.1097/ALN.0b013e318216e9cb.
- Yardeni IZ, Beilin B, Mayburd E, Levinson Y, Bessler H. The effect of perioperative intravenous lidocaine on postoperative pain and immune function. Anesth Analg. 2009 Nov;109(5):1464-9. doi: 10.1213/ANE.0b013e3181bab1bd.
- Annabi EH, Barker SJ. Severe methemoglobinemia detected by pulse oximetry. Anesth Analg. 2009 Mar;108(3):898-9. doi: 10.1213/ane.0b013e318172af73.
- LUND PC, CWIK JC. PROPITOCAINE (CITANEST) AND METHEMOGLOBINEMIA. Anesthesiology. 1965 Jul-Aug;26:569-71. doi: 10.1097/00000542-196507000-00020. No abstract available.
Datas de registro do estudo
Datas Principais do Estudo
Início do estudo
Início do estudo
Conclusão Primária (Antecipado)
Conclusão Primária
Conclusão do estudo (Antecipado)
Conclusão do estudo
Datas de inscrição no estudo
Enviado pela primeira vez
Enviado pela primeira vez
Enviado pela primeira vez que atendeu aos critérios de CQ
Enviado pela primeira vez que atendeu aos critérios de CQ
Primeira postagem (Estimativa)
Primeira postagem
Atualizações de registro de estudo
Última Atualização Postada (Estimativa)
Última Atualização Postada
Última atualização enviada que atendeu aos critérios de controle de qualidade
Última atualização enviada que atendeu aos critérios de controle de qualidade
Última verificação
Última verificação
Mais Informações
Termos relacionados a este estudo
Termos MeSH relevantes adicionais
- Processos Patológicos
- Complicações pós-operatórias
- Dor
- Manifestações Neurológicas
- Dor, Pós-operatório
- Efeitos Fisiológicos das Drogas
- Mecanismos Moleculares de Ação Farmacológica
- Agentes Antiarrítmicos
- Depressores do Sistema Nervoso Central
- Agentes do Sistema Nervoso Periférico
- Agentes do Sistema Sensorial
- Anestésicos
- Moduladores de transporte de membrana
- Anestésicos Locais
- Bloqueadores de canal de sódio dependentes de voltagem
- Bloqueadores dos Canais de Sódio
- Lidocaína
Outros números de identificação do estudo
Outros números de identificação do estudo
- CCHMC 2012-0674
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