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Recruiting NCT06023472

Microfluidic Chip vs Density Gradient Centrifugation on the Euploidy Rate of Pre-implantation Genetic Testing

No phase Interventional Infertility Genetic Disease Chromosomal Rearrangement Aneuploidy

For patients and families

In plain language

An automatic summary of structured registry data. It is an orientation aid, not a substitute for the official protocol or a physician assessment.

What is being studied
The protocol lists: microfluidic chip, density gradient centrifugation.
Who it may be relevant to
Registry conditions: Infertility, Genetic Disease, Chromosomal Rearrangement, Aneuploidy. Basic parameters: up to 43 years · All.
What needs checking
Age, condition and sex are only basic indicators. Prior treatment, laboratory values and other mandatory requirements appear in the eligibility criteria below.
Where it takes place
China
Next step
Save the trial, show it to the treating physician, and confirm current recruitment with the study center. Costs, documents and travel →
Official title

A Randomized Comparison of Microfluidic Chip vs Density Gradient Centrifugation on the Euploidy Rate of Pre-implantation Genetic Testing

Overview

Infertile women attending for PGT at the Centre of Assisted Reproduction and Embryology, Queen Mary Hospital and Kwong Wah Hospital will be recruited during ovarian stimulation for IVF. Subsequently, they will be randomly assigned on the day of oocyte retrieval by a laboratory staff into one of the following two groups in a 1:1 ratio : (1) the microfluidic chip group and (2) the density gradient centrifugation group for sperm preparation and subsequent use in fertilization. Other IVF procedures will be the same as the standard practice of the Centre. Both women and clinicians will be blinded from the group allocation i.e. a double blind study.

Detailed description

The study aims to investigate the treatment of couples undergoing in vitro fertilization (IVF). Eligible couples will be recruited for the study after providing informed written consent following counseling. The IVF protocol involves various steps. Women will undergo preimplantation genetic testing (PGT) as clinically indicated. Ovarian stimulation will be carried out using gonadotropin injections, and regular ultrasound monitoring will be conducted to track the growth of follicles. To prevent a premature LH surge, progestin primed ovarian stimulation or a GnRH antagonist will be administered. Once at least three follicles reach a size of over 17 mm, a trigger injection of either human chorionic gonadotrophin or a GnRH agonist will be given to induce final maturation. Oocyte retrieval will be performed 36 hours after the trigger under transvaginal ultrasound guidance.

The recruited women will be randomly assigned to one of two groups: the microfluidic chip group or the density gradient centrifugation group. Randomization and blinding will be ensured to maintain the integrity of the study. Only the laboratory staff involved in sperm preparation will be aware of the group assignment, while the women and clinicians will be blinded to the treatment groups.

Semen specimens will be collected by masturbation on the day of oocyte retrieval, following a period of 2-7 days of sexual abstinence. The semen samples will undergo evaluation according to WHO guidelines, including semen volume, sperm concentration, and percent motile spermatozoa. Sperm DNA damage will be assessed using an alkaline single-cell gel electrophoresis (Comet) assay. The extent of DNA damage in spermatozoa will be examined using specific parameters.

Sperm preparation will be performed based on the randomization list. In the microfluidic chip group, the Sperm Separation Device will be used, and the prepared sample will be collected in a test tube. In the density gradient centrifugation group, sperm preparation will be completed using a discontinuous density gradient centrifugation method, and the resulting sperm pellet will be washed and resuspended.

Oocytes will be fertilized through intracytoplasmic sperm injection, and normal fertilization will be confirmed by the presence of two pronuclei. A few cells will be taken from the blastocysts for comprehensive chromosome analysis. Cryopreservation of all blastocysts will be done, and only euploid blastocysts without aneuploidies will be replaced in subsequent frozen embryo transfer cycles.

Frozen embryo transfer (FET) will be performed in subsequent natural or hormonal replacement cycles, depending on the women's menstrual cycle regularity.

Pregnancy outcomes will be monitored through urine pregnancy tests and transvaginal ultrasounds. If the pregnancy test is positive, further ultrasounds will be done to confirm fetal viability and the number of fetuses. Pregnancy and delivery data will be retrieved after delivery, and information on pregnancy outcomes, number of babies born, birth weights, and obstetric complications will be recorded.

The study aims to assess the effectiveness of the two different sperm preparation methods and their impact on IVF outcomes, including pregnancy rates and obstetric complications.

Interventions

  • Device microfluidic chip
    Microfluidic chip method has been used for sperm sorting in order to select the most motile and morphologically normal sperm for use in assisted reproductive technologies (ART) such as in vitro fertilization (IVF) and intracytoplasmic sperm injection (ICSI).
  • Device density gradient centrifugation
    Density-gradient centrifugation is a commonly used method for sperm separation and purification. It is a technique that involves layering a semen sample on top of a gradient of different densities of a solution, typically a mixture of colloidal silica and sucrose, and then centrifuging the sample. The centrifugal force causes the sperm to migrate through the gradient, where they become separated based on their density.

Primary outcome measures

  • Euploid rate of blastocysts [Time frame: 3 months]
Secondary outcome measures (8)
  • Live birth rate of the first embryo transfer [Time frame: 3 years]
  • Positive urine pregnancy test rate per the first embryo transfer [Time frame: 3 years]
  • Clinical pregnancy rate of the first embryo transfer [Time frame: 3 years]
  • Ongoing pregnancy rate [Time frame: 3 years]
  • Miscarriage rate pregnancy [Time frame: 3 years]
  • Multiple pregnancy rate [Time frame: 3 years]
  • DNA fragmentation [Time frame: 3 years]
  • Ectopic pregnancy rate [Time frame: 3 years]

Eligibility criteria

Inclusion criteria

  • Women aged <43 years at the time of ovarian stimulation for IVF
  • Women undergoing PGT for monogenic diseases, structural rearrangement of chromosomes or aneuploidy
  • Sperm concentration of the raw semen with at least 0.15 million motile sperm per ml or 100 motile sperm per 50 low power field (200x) of observation

Exclusion criteria

  • Use of frozen semen for insemination
  • Use of donor oocytes and spermatozoa
  • Submucosal fibroid or hydrosalpinx shown on pelvic scanning and not surgically treated;
  • Women who had been recruited into this study before and
  • Women joining other randomized trials

Criteria are shown verbatim from the registry (in English). Final eligibility is always assessed by the study center.

Healthy volunteers: No

Study design

Allocation
Randomized
Model
Parallel assignment
Masking
Quadruple blind
Primary purpose
Treatment

Study locations

China · 1 center
  • Department of Obstetrics and Gynaecology — Hong Kong

Identifiers

NCT: NCT06023472 · UW 23-297

Primary sources (government registries)

View this study on ClinicalTrials.gov ↗