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Intramuscular Oxytocics: A Randomised Control Trial

Intramuscular Oxytocics: A Randomised Control Trial of Intramuscular Carbetocin, Syntocinon and Syntometrine for the Third Stage of Labour Following Vaginal Birth

Status
Completed
Phases
Phase 3
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT02216383
Acronym
IMox
Enrollment
5798
Registered
2014-08-15
Start date
2015-02-28
Completion date
2018-10-30
Last updated
2018-11-14

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

Conditions

Post Partum Haemorrhage

Keywords

Post partum haemorrhage, Active Management of Third Stage of Labour, Carbetocin, Syntocinon, Syntometrine, Birth experience, Labour

Brief summary

A quarter of all pregnancy and child-birth related deaths are due to excessive bleeding after the birth, post-partum haemorrhage (PPH). In the UK, PPH affects approx 10% of new mothers. PPH can be frightening for women and cause them to need additional treatments prolonging their hospital stay. Commonly PPH is caused by an inadequately contracted womb after childbirth. Giving the mother an injection of uterotonic medicine following the birth of their baby can prevent this. It reduces the risk of PPH by 66%. In the UK, the two medicines most commonly used are Syntocinon and Syntometrine. Syntometrine is longer acting, but a published review of trials concluded that Syntometrine is no better at preventing severe blood loss. Syntometrine is associated with more side effects including nausea, vomiting, and high blood pressure, and has been linked with rare, but fatal, cases of stroke. All guidelines therefore recommend Syntocinon for preventing PPH.Following a telephone survey of all maternity units in the UK, 71.4% of units still routinely use Syntometrine. Carbetocin is a newer medicine, already widely used after caesarean section, but not yet after vaginal birth. Other studies have shown that Carbetocin is slightly better at preventing bleeding after birth when compared to Syntometrine, has fewer side effects than Syntometrine, and that it may be just as good as Syntocinon at preventing PPH. No studies have directly compared all three medicines or compared their overall cost; information vital to the NHS. Investigators propose a trial of 5712 women over 13 months, in four maternity units to compare the effectiveness, side effects and cost of Syntocinon, Syntometrine and Carbetocin, for women having a vaginal birth. Women will be randomly allocated to receive one of these drugs. Women and staff will not know which drug they receive. Staff will collect data such as the number of extra drugs and treatments needed and the volume of blood lost. Women will be asked to complete a side effects questionnaire. Investigators will perform an analysis of cost effectiveness once all results are available. Aim: To directly compare the effectiveness, side effects and cost of Syntocinon, Syntometrine and Carbetocin given intramuscularly to prevent PPH in the 3rd stage of labour.

Detailed description

BACKGROUND Around a quarter of all global pregnancy and child-birth related deaths are due to excessive bleeding after the birth of the baby and placenta, or post-partum haemorrhage (PPH). In the UK, PPH affects approximately 10% of new mothers. PPH can be extremely frightening for women and can cause them to need additional treatments including blood transfusion and removal of the womb as well as prolonging their hospital stay. The most common cause of PPH is an inadequately contracted womb after childbirth. Giving the mother an injection of uterotonic medicine following the birth of their baby can prevent this. It reduces the risk of PPH by 66% and this should routinely be offered to all labouring women. In the UK, the two medicines most commonly used for this purpose are Syntocinon and Syntometrine. Both mimic natural hormones. Syntometrine is longer acting, but a published review of trials comparing these two medicines concluded that Syntometrine is no better at preventing severe blood loss. Syntometrine is associated with more side effects including nausea, vomiting, and high blood pressure, and has been linked with rare, but fatal, cases of stroke. All guidelines therefore recommend Syntocinon for preventing PPH. Our group conducted a telephone survey of all maternity units in the UK, and found that 71.4% of units still routinely use Syntometrine. Investigators estimate that 40,000-70,000 women per year are experiencing distressing nausea and vomiting in the emotionally important first few hours following childbirth. These women are also receiving a medicine with the potential to cause dangerous high blood pressure. Carbetocin is a newer medicine, already widely used after caesarean section, but not yet after vaginal birth. Other studies have shown that Carbetocin is slightly better at preventing bleeding after birth when compared to Syntometrine, that it has fewer side effects than Syntometrine, and that it may be just as good as Syntocinon at preventing PPH. No studies have directly compared all three medicines or compared their overall cost; information vital to the NHS. METHOD Investigators propose a trial of 5712 women over 13 months, in four maternity units in the South-West to compare the effectiveness, side effects and cost of Syntocinon, Syntometrine and Carbetocin, for women having a vaginal birth. Women will be randomly allocated to receive one of these drugs. Women and staff will not know which drug they receive, so as not to influence the results collected. Staff will collect data such as the number of extra drugs and treatments needed and the volume of blood lost. Women will be asked to complete a side effects questionnaire. Investigators will perform an analysis of cost effectiveness once all results are available. AIMS To directly compare the effectiveness, side effects and cost of Syntocinon, Syntometrine and Carbetocin given intramuscularly to prevent PPH in the 3rd stage of labour.

Interventions

DRUGCarbetocin

The intervention is the administration of one dose of study drug to the recruited patient at the time of delivery. Carbetocin, listed here, is one of the of the three study drugs.

The intervention is the administration of one dose of study drug to the recruited patient at the time of delivery. Syntocinon, listed here, is one of the of the three study drugs.

The intervention is the administration of one dose of study drug to the recruited patient at the time of delivery. Syntometrine, listed here, is one of the of the three study drugs.

Sponsors

Ferring Pharmaceuticals
CollaboratorINDUSTRY
University of Bristol
CollaboratorOTHER
University of the West of England
CollaboratorOTHER
Royal United Hospital Bath NHS Trust
CollaboratorOTHER
Gloucestershire Hospitals NHS Foundation Trust
CollaboratorOTHER
University Hospitals Bristol and Weston NHS Foundation Trust
CollaboratorOTHER
North Bristol NHS Trust
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
PREVENTION
Masking
QUADRUPLE (Subject, Caregiver, Investigator, Outcomes Assessor)

Eligibility

Sex/Gender
FEMALE
Age
18 Years to No maximum
Healthy volunteers
Yes

Inclusion criteria

* ≥18 years of age at time of delivery * Singleton pregnancy * Vaginal birth (spontaneous and instrumental) * \>24 weeks gestation

Exclusion criteria

* Significant APH (\>50ml) or suspected or proven placenta abruption * Maternal coagulation disorder * Intrauterine fetal death * Patients who would decline blood products if required * Known or suspected hypertensive disorders, including pre-eclampsia, pregnancy induced hypertension, essential hypertension (even if blood pressure well controlled) * Hypertension in labour, or patients who have not had their blood pressure checked in labour * Patients with peripheral, hepatic or cardiac disease * Patients with an allergy or hypersensitivity to any of the active ingredients in Carbetocin, Syntometrine or Syntocinon * Epilepsy

Design outcomes

Primary

MeasureTime frameDescription
Requirement for additional uterotonic drugs within 24 hours of birthFrom administration of prophylactic uterotonic agent to discharge from labour ward, within an expected average of 6 hours.Proportion of patients requiring additional uterotonic drugs after administration of study drug

Secondary

MeasureTime frameDescription
Transfusion of blood products (type and number of units given)From delivery until transfer from Labour Ward, within an expected average of 6 hours.Number of units of blood transfused, or volume of own blood returned to patient if intraoperative cell salvage used
Manual removal of placenta in theatreFrom delivery until transfer from Labour WardThe requirement for the placenta to be removed in theatre
Requirement for surgical intervention to manage PPHFrom delivery until transfer from Labour Ward, within an expected average of 2 daysAs a result of significant PPH a surgical intervention was required to manage the PPH
Maternal hypertensionFirst two postnatal hours following administration of study drugHypertension
Maternal hypotensionIn first two postnatal hoursBP \<90/60
Estimated volume of blood loss at deliveryWithin 24 hours of deliveryEstimated volume of blood loss at delivery
Abdominal pain in the first two postnatal hours, recorded in Case Report Form (CRF) by midwifeFirst 2 post natal hoursPatient reported secondary outcome
Post-partum vomitingFirst 2 post natal hoursPatient reported secondary outcome
Need for anti-emeticFirst 2 post natal hoursPatient reported secondary outcome By definition, labour starts when the patient is at least 3-4cm dilated with regular, painful contractions.
HeadacheFirst two post natal hoursPatient reported secondary outcome
Maternal experience of side effectsIn first two post natal hoursCaptured using maternal side effects questionnaire
Maternally-reported health-related quality of life24 hours after delivery and 14 days after deliveryhealth-related quality of life reported by mother

Countries

United Kingdom

Outcome results

None listed

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