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Implication of Fluid Strategies Upon Hepatic Outcome in Hepatobiliary Surgery

Implications of Variable Intraoperative Fluid Strategies Upon the Hepatic Outcome in Hepatobiliary Surgery

Status
UNKNOWN
Phases
Phase 1Phase 2
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT03923816
Enrollment
100
Registered
2019-04-23
Start date
2019-10-01
Completion date
2021-10-01
Last updated
2019-04-23

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

Conditions

Hepatic Complication

Brief summary

compare the effect of two different protocol of fluid therapy in patients undergoing elective hepatobiliary surgery under general anesthesia regarding hemodynamics and SGPT change pre- and postoperative.

Detailed description

Fluid administration during and after surgery is an essential part of postoperative care to maintain the patients' fluid and biochemical balance. Abdominal surgical procedures are associated with dehydration from preoperative fasting , bowel preparation, and intra- and postoperative fluid and electrolyte loss(1). So, perioperative fluid management has been a topic of much debate over years and has intensified especially over the past several years. The controversies include the type of fluid, the timing of administration and the volume administrated. Following much discussions and ongoing controversy on colloids versus crystalloids(2-5) and the ideal composition of the various intravenous solutions(6-8),the main focus more recently has been on the volume of fluids. Fluid therapy strategies have been developed and implemented in clinical practice over several decades. The data suggest that aggressive or liberal intraoperative fluid resuscitation is harmful during open abdominal operation, whereas a restrictive fluid protocol has better outcomes, including fewer postoperative complications and a shorter discharge time. (9-11). However , a restrictive fluid regimen has several limitations (12). Overly restricted or inadequate fluid administration may lead to insufficient intravascular volume, tissue hypoperfusion, cellular oxygenation impairment and potential organ dysfunction(13), prolonged recovery of bowel function, and impair tissue oxygenation, which might ultimately impair wound healing including healing of anastomosis.(14, 15) Recently, The Pleth variability index (PVI) derived from respiratory variations in peripheral perfusion index (PI) has been suggested to be an effective dynamic indicator of fluid responsiveness. Different from other invasive dynamic indices, PVI provides clinicians with a numerical value obtained noninvasively. (16-18) PVI is calculated as \[(PImax - PImin)/PImax\] X 100, where PImax and PImin represent the maximal and the minimal value, respectively, of the plethysmographic perfusion index (PI) over one respiratory cycle (16, 19). PI is the ratio between pulsatile and no pulsatile infrared light absorption from the pulse oximeter, and it is physiologically equivalent to the amplitude of the plethysmographic waveform (20). A PVI value of \>13% before volume expansion discriminated between fluid responders and non-responders with 81% sensitivity and 100% specificity. An extremely important feature of fluid therapy is ability to modulate inflammatory response in all its aspects with impact on a rate of neutrophil activation and modulation of cytokine and adhesive molecules expression. Isotonic sodium chloride solution and Ringer's lactate solution were shown to have pro-inflammatory properties while so called low volume therapy. Saline solution seems to be the most pro-inflammatory infusion fluid exerting negative impact on both macro- and microcirculation (21). Infusions of high volume of sodium chloride result in elevated serum chloride levels leading to acid-base imbalance and increase of free hydrogen ions (22). Some available literature data show potential impact of Ringer's lactate therapy on induction of inflammatory response (23) but other reports do not support such phenomenon (24). Acetates similarly to lactates act as buffers and are easily broken down to bicarbonates. The difference between them is that lactates are metabolized mainly in the liver while acetates are metabolized in all body cells. The latter is especially beneficial in liver insufficiency, lactic acidosis and microcirculation insufficiency leading to organ hypoperfusion.

Interventions

DRUGConservative fluid strategy: 12 mL/kg/h of Lactated Ringer (LR).&Restrictive fluid strategy:6 mL/kg/h of Lactated Ringer (LR).

comparison of two intraoperative fluid strategies upon hepatic outcome in hepatobiliary surgery

Sponsors

Assiut University
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
SUPPORTIVE_CARE
Masking
TRIPLE (Subject, Investigator, Outcomes Assessor)

Eligibility

Sex/Gender
ALL
Age
18 Years to 80 Years
Healthy volunteers
No

Inclusion criteria

* patients\>18 years old, undergoing elective hepatobiliary surgery under general anesthesia and American Society of Anesthesiologists grade II.

Exclusion criteria

* 1-patient refusal. 2-psychiatric disorders. 3-pregnancy and lactation. 4-preexisting neurological dysfunction (history of cerebrovascular stroke CVS) 5-metastatic cancer. 6-Inflammatory bowel disease. 7-Diabetes mellitus. 8-Renal insufficiency (serum creatinine level more than 180 μmol/l). 9- unexpected intraoperative findings (inoperable). 10-accidental massive intraoperative hemorrhage.

Design outcomes

Primary

MeasureTime frameDescription
SGPT change pre- and postoperativepreoperative and in the first and second day postoperativeeffects of different fluid strategies in change of SGBT level pre- and postoperative

Contacts

Primary ContactAhmed Safwat
a.safwat1988@gmail.com+201011237474
Backup ContactEmad Zarief
emadzarief@yahoo.com+201007046058

Outcome results

None listed

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