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Incidence of Postoperative Ketosis and Metabolic Acidosis

Incidence of Postoperative Ketosis and Metabolic Acidosis

Status
UNKNOWN
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT01860001
Acronym
POKACID
Enrollment
100
Registered
2013-05-22
Start date
2012-10-31
Completion date
2013-08-31
Last updated
2013-05-22

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

Conditions

Metabolic Acidosis

Keywords

cancer, metabolic acidosis

Brief summary

The aim of this study is to define the incidence and nature of acidosis after major surgery using Figge's equations to directly measure acidosis. This study will also aim to compare the ability of indirect measures (base deficit, anion gap,corrected anion gap and lactate) to identify the presence of tissue acids in this population. The incidence of postoperative ketoacidosis as a contributor to tissue acidosis will be assessed through the use of point of care urinalysis.

Detailed description

Metabolic acidosis is a frequent occurrence following major surgery. Monitoring acid base disturbances and in particular diagnosing the aetiology of the acidosis are important parts of assessing a patient's cardiovascular status following surgery. The presence of a metabolic acidosis is frequently attributed to anaerobic metabolism leading to the generation of lactic acid due to hypovolaemia and poor tissue perfusion. This commonly results in clinicians treating postoperative patients with a metabolic acidosis by administering intravenous fluids containing 0.9% saline or Hartmann's solution (compound sodium lactate). If the cause of the metabolic acidosis is not hypovolaemia, treatment with intravenous fluids may actually exacerbate the acidosis by causing hyperchloraemia. An often overlooked cause of metabolic acidosis after surgery is starvation leading to ketoacidosis. All patients are starved for a minimum of six hours prior to general anaesthesia due to the potential risk of aspiration of gastric contents into the bronchial tree. Many patients are in fact fasted for much longer periods than this. There is, however, little data describing the incidence of ketoacidosis following surgery. In addition, there may be other causes of acidosis after surgery which often overlooked but can be determined using equations and mathematical models. The aim of this study is to define the incidence and nature of acidosis after major cancer surgery using using equations to directly determine acids. This study will also aim to compare the ability of commonly used indirect measures (base deficit, anion gap, corrected anion gap and lactate) to identify the presence of tissue acids in this population. The incidence of postoperative ketoacidosis as a contributor to tissue acidosis will be assessed through the use of point of care urinalysis.

Interventions

None listed

Sponsors

Royal Marsden NHS Foundation Trust
Lead SponsorOTHER

Study design

Observational model
COHORT
Time perspective
PROSPECTIVE

Eligibility

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

Inclusion criteria

* Patients who have undergone major cancer surgery * Patients who have an arterial line in place * Patients who have a urinary catheter in place * Patients who will be admitted to intensive care following surgery * Adults \>18 years * Adults who are capable of reading and understanding English

Exclusion criteria

* Patient refusal * Patients without an arterial line or urinary catheter in place * Patients receiving glucose / sliding scale insulin for management of diabetes mellitus

Design outcomes

Primary

MeasureTime frame
Incidence of tissue acidosis, defined as tissue acids > 5mEq/L (Figge's equation) within one hour of completion of surgery31/08/13

Secondary

MeasureTime frame
Incidence of metabolic acidosis, defined by base deficit . 2 mEq/L (Henderson-Hasselback) within one hour of completion of surgery.31/08/13

Countries

United Kingdom

Contacts

Primary ContactTimothy Wigmore, BM BCH
timothy.wigmore@rmh.nhs.ukl02073528181
Backup ContactShaman Jhanji, MB ChB PhD
shama.jhanji@rmh.nhs.uk020780846323

Outcome results

None listed

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