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Pain Relief After Colorectal Surgery: Spinal Combined With Painbuster® vs Painbuster® Alone.

Pain Relief After Colorectal Surgery: Single-shot Spinal Combined With Painbuster® vs Painbuster® Alone. A Pilot Randomised Controlled Trial

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT02210260
Acronym
PROSP
Enrollment
79
Registered
2014-08-06
Start date
2013-09-30
Completion date
2016-02-29
Last updated
2016-09-14

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Colorectal Cancer

Keywords

Cancer, Colorectal, Pain relief

Brief summary

Limiting surgical stress and managing postoperative pain are well understood to influence recovery and outcome from major surgery for colorectal cancer and both are fundamental aspects of enhanced recovery protocols. Traditional approaches for dealing with these problems such as epidural or patient controlled intravenous opioid analgesia are associated with problems that may be detrimental to postoperative recovery and surgical outcome. As a result there is evidence in the literature of increasing interest in alternative techniques such as intrathecal anaesthesia or continuous wound infusion of local anaesthetic, however nobody has examined the effect of combining the techniques or their impact on the surgical stress response. We intend to compare patients undergoing major resections for colorectal cancer receiving intrathecal anaesthesia in combination with a wound infusion of local anaesthetic with those receiving a continuous wound infusion alone. We will examine the surgical stress response and postoperative pain control in addition to objective measures of postoperative recovery. We suggest that our approach will attenuate the surgical stress response and provide optimal pain control that will ultimately translate in improved recovery and outcome following surgery for colorectal cancer.

Detailed description

This is a pilot randomised controlled trial Hypotheses - Following colorectal surgery, spinal anaesthesia combined with a continuous infusion of local anaesthetic into the surgical wound provides 1. better pain relief 2. a reduced stress response when compared to the use of continuous infusion of local anaesthetic into the surgical wound alone. Patients undergoing surgical resection for colorectal cancer will be randomised to receive either 1. A single shot of spinal anaesthesia plus a continuous infusion of local anaesthetic into the surgical wound or 2. Continuous infusion of local anaesthetic into the surgical wound Spinal Anaesthesia The spinal anaesthetic (SA) with be placed after commencement of general anaesthesia this will ensure the patients remain blinded to the intervention. SA will be performed in the lateral position using a midline approach. L3/4 interspace will be identified using Tuffier's as the anatomical landmark. After confirmation of correct placement using a 25G Whitacre needle, 12.5 mg of hyperbaric Bupivacaine in a mixture with 500mcg Diamorphine will be injected intrathecally. Infusion of local anaesthetic The catheter through which the infusion of local anaesthetic will be given, will be placed by the surgeon at the end of the procedure in a location determined by the surgical approach. A bolus dose of 20ml 0.25% L-Bupivacaine will be injected down the catheters prior to the connection of the elastomeric pump which will also contain 270ml 0.25% L-Bupivacaine General anaesthesia will be managed in the same way for both groups

Interventions

PROCEDUREContinuous infusion of local anaesthetic

A Painbuster® catheter will be placed by the surgeon at the end of the procedure in a location determined by the surgical approach. A bolus dose of 20ml 0.25% L-Bupivacaine will be injected down the catheters prior to the connection of the elastomeric pump which will also contain 270ml 0.25% L-Bupivacaine.

DRUGBupivacaine
PROCEDURESpinal and infusion of local anaesthetic

Spinal anaesthetic will be performed in the lateral position using a midline approach. L3/4 interspace will be identified using Tuffier's as the anatomical landmark. After confirmation of correct placement using a 25G Whitacre needle, 12.5 mg of hyperbaric Bupivacaine in a mixture with 500mcg Diamorphine will be injected intrathecally. PLUS Painbuster® catheters will be placed by the surgeon at the end of the procedure in a location determined by the surgical approach. A bolus dose of 20ml 0.25% L-Bupivacaine will be injected down the catheters prior to the connection of the elastomeric pump which will also contain 270ml 0.25% L-Bupivacaine.

500mcg

DEVICEA Painbuster® catheter
DEVICE25G Whitacre needle

Sponsors

York Teaching Hospitals NHS Foundation Trust
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
DOUBLE (Subject, Investigator)

Eligibility

Sex/Gender
ALL
Age
18 Years to No maximum
Healthy volunteers
No

Inclusion criteria

* All patients who are undergoing either laparoscopic or open colorectal resections will be considered eligible for the study.

Exclusion criteria

* Patients under 18 years of age. * Pregnant females. * Patients undergoing an abdominoperineal resection. * Patients who will not contemplate being randomized to receive a spinal anaesthetic. * Patients with a history of failure to place an epidural / spinal anaesthetic. * Hypersensitivity to local anaesthetics. * Lack of capacity to give consent.

Design outcomes

Primary

MeasureTime frameDescription
Neuroendocrine response to surgery24 hoursPeripheral blood samples taken at baseline, 60 minutes after surgical incision and 24 hours postoperatively will be analysed for cortisol and noradrenaline.

Secondary

MeasureTime frameDescription
Postoperative complicationsUp to 12 daysAll complications in the postoperative period will be recorded. Particular emphasis will be given to: Wound infection Cardiac failure: Complications related to spinal anaesthesia. Adequacy of deep vein thrombosis prophylaxis.
Episodes of hypotension in the postoperative periodUp to 12 daysThis will be defined as a sustained systolic blood pressure of less than 90 mm/Hg.
Postoperative painUp to 72 hours after surgeryThis will be assessed using a visual analogue scale . Measurements will be taken in recovery then once a day for 72 hours postoperatively. Pain scores will be measured at rest and on coughing.
Postoperative analgesic requirementUp to 72 hours after surgeryThe total quantity and type (opiate or non-opiate) of all analgesics administered for 72 hours postoperatively.
Length of hospital stay or fitness for dischargeUp to 12 daysDischarge criteria: 1. Good pain control with oral analgesia. 2. Tolerating solid food without nausea and vomiting. 3. No IV fluid or medication. 4. Independently mobile and self-caring or at the same level as prior to admission. 5. Stable observations and blood biochemistry. 6. No other concerns or complications preventing discharge.
Postoperative mobilityUp to 12 daysPostoperative mobility will be assessed as time until able to stand aided and unaided, duration of time spent out of bed on each postoperative day maximum walking distance with assistance on a daily basis.
Return of gut functionUp to 12 days4.2.8 Time to return of gut function This is defined by the oral/enteral tolerance of \> 80% of nutritional requirement. These requirements will be assessed individually for each patient in the study by an appropriately trained dietician
Oxidative stressFor 24 hoursPeripheral blood samples will be taken at baseline, 60 minutes after surgical incision and 24 hours postoperatively and analysed for heat shock proteins 37 and 32.
Inflammatory pathwayUp to 24 hours after surgeryPeripheral blood samples taken at baseline, 60 minutes after surgical incision and 24 hours postoperatively will be analysed for IL1. Peritoneal biopsies taken prior to closure of surgical wound and analysed for IL1.
Amount of postoperative IV fluid administeredUp to 12 daysTotal amount of IV fluid given in postoperative period

Countries

United Kingdom

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026