Genetic Diagnosis in Cyprus: PGT-A, PGT-M, and PGT-SR
Preimplantation genetic testing is a laboratory procedure that allows embryos created through IVF to be screened for specific chromosomal or genetic characteristics before transfer to the uterus. At the Vita Altera IVF Center in Cyprus, the genetic diagnosis process is tailored to each individual, based on the couple’s age, genetic history, carrier status, previous pregnancies, IVF outcomes, and the specific type of PGT to be performed.
Preimplantation Genetic Testing — What is PGT?
Preimplantation genetic testing involves examining cell samples taken from embryos created during IVF in the laboratory for specific chromosomal or genetic conditions.
PGT is not a standalone method for achieving pregnancy. To perform the test, it is first necessary to stimulate the ovaries with medication, retrieve the eggs, fertilize them with sperm cells, and allow the embryos to reach the appropriate developmental stage in the laboratory.Embryo biopsy is typically performed on embryos that have reached the blastocyst stage, by removing a few cells from the outer cell layer (which will later form the placenta). The aim is to avoid directly interfering with the inner cell mass that will form the fetus.After the biopsy, the embryo is usually frozen and stored using vitrification. Once the genetic analysis is complete, an embryo deemed suitable for transfer based on the test results can be thawed and transferred in a subsequent treatment cycle after preparing the uterus.Genetic Diagnosis and the PGT Process in Cyprus
The genetic diagnosis process in Cyprus consists of genetic counseling, IVF treatment, embryo biopsy, genetic laboratory analysis, result evaluation, and the transfer of suitable embryos.
At the Vita Altera IVF Center, the couple’s personal and family medical history, available genetic reports, chromosome analyses, carrier screening results, and information from previous pregnancies are evaluated before treatment.For patients planning PGT-M or PGT-SR, the genetic laboratory may need to prepare before the IVF treatment begins. This may involve documenting the known genetic alteration, obtaining samples from family members, or designing a patient-specific test.Patients coming from Turkey or other countries can share their existing genetic and IVF reports before an online consultation. After reviewing the documents, missing tests, laboratory preparation, and a tentative treatment schedule can be determined.Genetic Pre-Assessment
Evaluation of personal and family medical history, genetic test results, and the type of PGT being considered.Embryo Biopsy
A cell sample is taken from embryos that have reached the appropriate developmental stage by experienced embryologists for genetic analysis.Personalized Transfer
A transfer plan is created by evaluating genetic results, embryo development, and uterine preparation together.What is the Difference Between PGT-A, PGT-M, and PGT-SR?
The PGT method to be applied is determined by the type of genetic condition being investigated. Each test examines different diseases or chromosomal changes.
PGT-A
Applied to assess the chromosome number in embryos. Helps identify embryos suspected of having missing or extra chromosomes.PGT-M
Applied to assess the risk of transmitting a known, specific single-gene disorder or pathogenic genetic variant to the embryo.PGT-SR
Investigates unbalanced chromosomal structures in embryos when one partner has a chromosomal structural rearrangement, such as a translocation or inversion.What is PGT-A?
PGT-A is an abbreviation for preimplantation genetic testing for aneuploidy. It aims to assess whether embryos have a numerical excess or deficiency of chromosomes.
Human cells normally have a total of 46 chromosomes, arranged in 23 pairs. An embryo having a missing or extra chromosome is termed aneuploidy.Embryos with a normal chromosome number within the scope of PGT-A are reported as euploid, while those with identified chromosome number changes are reported as aneuploid.Some embryo biopsies may show intermediate results where both normal and abnormal chromosome signals are present together. These results may be termed mosaic and require further genetic counseling.Who Might Consider PGT-A?
The decision for PGT-A should not be based solely on age or a single previous failed treatment. Factors such as the number of embryos available, ovarian reserve, previous pregnancies, and the couple’s treatment goals are all evaluated together.
- Women of advanced reproductive age undergoing IVF
- Couples with a history of recurrent pregnancy loss of chromosomal origin
- Patients who had a previous pregnancy with a chromosomal anomaly
- Patients with multiple blastocysts where transfer prioritization is planned
- Some couples prioritizing single embryo transfer
- Suitable patients planning to accumulate embryos for multiple children
- Cases deemed appropriate by the physician and genetic specialist upon individual assessment
What is PGT-M?
PGT-M is an abbreviation for preimplantation genetic testing for monogenic conditions. It is applied to assess the risk of transmitting a specific single-gene disorder or known genetic variant to the embryos.
For PGT-M to be planned, the genetic alteration causing the disease in the family usually needs to have been previously identified and documented.The genetic laboratory can develop a patient-specific test system by evaluating the couple’s genetic results, the inheritance pattern, and samples from family members if necessary.After preparation is complete, biopsies are taken from embryos created through IVF, and the embryos are examined for the specified genetic condition.Which Diseases Can PGT-M Be Used For?
PGT-M can be considered for many hereditary diseases where the genetic cause and the variant within the family have been identified. Not every disease or genetic change is technically suitable for PGT-M.
Beta Thalassemia
If disease-associated variants in the HBB gene are known, embryos can be evaluated for beta thalassemia.Cystic Fibrosis
Transmission of known disease-associated variants in the CFTR gene to embryos can be investigated.Spinal Muscular Atrophy
Carrier status and disease risk associated with the SMN1 gene can be evaluated after appropriate genetic preparation.Sickle Cell Disease
If an HBB variant is identified in the family, embryos can be examined for disease and carrier status.Hemophilia
Suitable PGT-M approaches can be considered when a familial disease variant associated with the F8 or F9 genes is identified.Some Hereditary Cancer Syndromes
PGT-M for specific, documented high-risk genetic variants should be addressed with ethics, medical evaluation, and genetic counseling.What is PGT-SR?
PGT-SR is an abbreviation for preimplantation genetic testing for structural rearrangements. It aims to assess whether a chromosomal structural rearrangement found in one partner leads to an unbalanced chromosome structure in the embryos.
A person carrying a balanced chromosome rearrangement can be completely healthy; however, during the formation of their egg or sperm cells, there is a possibility that chromosomal material is transferred to the embryo in an unbalanced way.Unbalanced embryos may fail to implant, cause early pregnancy loss, or be associated with a chromosomal health issue.PGT-SR can help identify embryos suitable for transfer that are chromosomally balanced or compatible with a normal result. Depending on the test method used, a normal embryo and a balanced carrier embryo may not always be distinguishable from each other.Who is PGT-SR Applicable For?
PGT-SR is mostly considered when a structural rearrangement is identified in the chromosome analysis of the prospective mother or father.
- Couples where one partner is a carrier of a reciprocal translocation
- Individuals who are carriers of a Robertsonian translocation
- Patients with chromosomal inversion carrier status
- Couples with a chromosomal change identified after recurrent pregnancy loss
- Couples who have previously had a pregnancy with an unbalanced chromosome structure
- Those with a family history of known chromosomal structural rearrangements
- Patients deemed suitable by a genetic specialist following chromosome analysis
Who is Suitable for Genetic Diagnosis?
There is no single standard patient group for PGT application. The type of test and its necessity are determined based on the couple’s genetic history and treatment characteristics.
- Couples known to carry a single-gene disorder
- Individuals with a family history of serious hereditary diseases
- Carriers of chromosomal translocations or inversions
- Couples who had a previous pregnancy affected by a genetic or chromosomal disorder
- Patients experiencing recurrent miscarriages of chromosomal origin
- Suitable patients of advanced reproductive age undergoing IVF
- Couples with multiple embryos where embryo prioritization is planned
- Families at risk of a serious genetic disease linked to sex chromosomes
- Patients deemed suitable jointly by the genetic specialist and IVF doctor
Why is Genetic Counseling Important Before PGT?
Genetic counseling ensures that the couple correctly understands the purpose of the test, the inheritance pattern, potential results, limitations, and alternative reproductive options.
Disease Transmission Risk
Explains whether the genetic disease follows an autosomal recessive, autosomal dominant, X-linked, or other inheritance pattern.Embryo Outcomes
Discusses the possible embryo outcomes: affected, carrier, unaffected, euploid, aneuploid, mosaic, or inconclusive.Test Limitations
Explains which genetic conditions the test can detect and which health issues it does not assess.Alternative Options
Discusses alternatives such as natural conception with prenatal diagnosis, donation options, or IVF without PGT.Which Tests Are Performed Before PGT?
The tests requested may vary depending on the type of PGT to be performed, the disease known in the family, and the couple’s health status regarding IVF treatment.
Genetic Evaluations
- Consultation with a genetic specialist
- Genetic test reports of the prospective parents
- Karyotype (chromosome analysis)
- Molecular report on the known genetic variant
- Carrier screening tests
- Genetic reports from previous pregnancies or children
- DNA samples from family members, if necessary
- PGT laboratory pre-assessment evaluation
IVF Evaluations
- Gynecological examination and ultrasound
- AMH and ovarian reserve tests
- Antral follicle count
- Semen analysis
- Infectious disease screenings
- Evaluation of the uterus and endometrial lining
- Thyroid and necessary general health tests
- Previous IVF and embryology reports
How is the Genetic Diagnosis Process in Cyprus Performed?
The PGT process is a multi-stage program comprising genetic preparation, IVF treatment, embryo biopsy, genetic analysis, and frozen embryo transfer.
Initial Consultation and Medical Evaluation
The couple’s medical history, age, previous pregnancies, IVF results, and genetic test reports are reviewed.Genetic Counseling
The disease or chromosomal change to be investigated, inheritance risk, test options, and possible outcomes are evaluated.PGT Laboratory Preparation
For PGT-M and some PGT-SR cases, the genetic laboratory reviews the reports and completes the necessary patient-specific test preparation.Controlled Ovarian Stimulation
To obtain multiple eggs, the prospective mother is administered hormonal medications appropriate for her age and ovarian reserve.Follicle Development Monitoring
The ovarian response to treatment is monitored with ultrasound and necessary blood tests. Medication dosages can be adjusted based on results.Egg Retrieval
Eggs in follicles that have reached appropriate development are collected via ultrasound-guided egg retrieval.Fertilization
Mature eggs are fertilized in the laboratory with suitable sperm cells. Microinjection (ICSI) may be used depending on the treatment plan.Embryo Development Monitoring
Embryos developing from fertilized eggs are monitored by experienced embryologists until they reach the blastocyst stage.Embryo Biopsy
A few cells are taken from the outer cell layer of blastocysts suitable for biopsy for genetic examination.Embryo Freezing
After biopsy, embryos are stored using vitrification until the genetic test results are complete.Genetic Laboratory Analysis
The cell samples obtained are analyzed for chromosomal or specific genetic changes according to the type of PGT applied.Result Evaluation
Genetic results are evaluated alongside embryo development information, and embryos that can be prioritized for transfer are identified.Uterine Preparation for Transfer
The prospective mother’s endometrial lining is prepared for embryo transfer via a natural or medicated cycle.Frozen Embryo Transfer
The embryo with a suitable result is thawed, its viability is assessed, and it is transferred to the uterus.Pregnancy and Prenatal Follow-up
If pregnancy occurs, standard prenatal follow-ups, along with prenatal screening or diagnostic tests recommended by the doctor and genetic specialist, are further evaluated.How is Embryo Biopsy Performed?
Embryo biopsy is a sensitive embryology laboratory procedure that allows a limited number of cells to be taken from a suitably developed embryo for genetic testing.
In current practice, biopsy is usually performed when the embryo reaches the blastocyst stage on the fifth, sixth, or, in suitable cases, seventh day.A few cells are separated from the outer cell layer of the embryo. The removed cells are sent to the genetic laboratory, while the embryo is frozen using vitrification.Embryo biopsy requires an experienced team and appropriate laboratory conditions. Even when performed carefully, the possibility of the embryo being affected by the biopsy, freezing, or thawing stages cannot be completely eliminated.What is Genetic Analysis with NGS?
Next-Generation Sequencing (NGS) is one of the laboratory technologies that can be used to analyze genetic material obtained from embryo biopsies for specific chromosomal or genetic characteristics.
In PGT-A applications, NGS can be used to broadly assess the numerical status of chromosomes.The technique used for PGT-M or PGT-SR applications is not limited solely to the name NGS. Depending on the type of disease and genetic change, linkage analysis, variant analysis, or different molecular methods may be necessary.The analysis platform and the laboratory’s reporting thresholds can affect the classification of results. Interpretation of mosaic and segmental results, in particular, may vary between laboratories.How are PGT Results Interpreted?
PGT results can be reported using different terms depending on the type of test, laboratory method, and the genetic condition being investigated.
Euploid Result
Indicates that the chromosome numbers evaluated within the scope of PGT-A are found to be compatible with a normal result.Aneuploid Result
Indicates that a result was obtained suggesting that one or more chromosomes are missing or extra in the examined cells.Mosaic Result
Refers to an intermediate result suggesting that signals from cells with different chromosomal structures are present together in the biopsy sample.Inconclusive Result
Indicates that no interpretable result could be obtained for the embryo due to insufficient DNA, technical reasons, or analysis quality.PGT-M Unaffected Result
May indicate that the genetic result associated with the investigated familial disease was not detected in the embryo.Carrier Result
May indicate that the embryo is a carrier for a specific recessive disease but is not expected to be affected by the disease.What Does a Mosaic Embryo Mean?
A mosaic result is a laboratory finding suggesting that the cell sample taken from the embryo biopsy contains signals from both normal cells and cells carrying chromosomal changes.
Because the biopsy is taken from only a small part of the embryo, the test result may not precisely reflect the distribution of cells throughout the entire embryo.The chances of implantation and ongoing pregnancy for mosaic embryos may be lower than for euploid embryos; however, it is known that some mosaic embryos have resulted in healthy births.The decision to transfer should be made by evaluating the affected chromosome, the type of change, the mosaic rate, whether it’s a segmental or whole chromosome change, the availability of other embryos, and the couple’s preferences.What Happens to an Embryo with an Inconclusive Result?
For some embryo biopsies, an interpretable genetic result may not be obtained due to insufficient DNA or technical reasons.
An inconclusive result does not mean the embryo is genetically normal or abnormal. The embryo is evaluated as having an undetermined genetic status.Based on the embryo’s developmental characteristics, biopsy history, and the couple’s current number of embryos, options such as re-biopsy, transfer without testing, or continued storage may be considered.Embryo Transfer After PGT
After the genetic test results are complete, an embryo found suitable for transfer can be used in a frozen embryo transfer cycle once the prospective mother’s uterus is prepared.
Result Evaluation
Genetic results, embryo developmental characteristics, and laboratory reports are reviewed together.Embryo Prioritization
If multiple embryos with suitable results are available, the transfer order is determined based on embryological characteristics and the treatment plan.Uterine Preparation
The endometrial lining is prepared either by tracking natural ovulation or using estrogen and progesterone medications.Embryo Thawing
The embryo selected for transfer is thawed using controlled laboratory procedures, and its viability is assessed.Embryo Transfer
The viable embryo is transferred into the prospective mother’s uterus using a thin catheter, guided by ultrasound.Pregnancy Test and Follow-up
A pregnancy test is performed on the specified date after the transfer. If positive, a pregnancy ultrasound and necessary prenatal follow-ups are scheduled.Does PGT Replace Genetic Testing During Pregnancy?
PGT is the examination of a limited cell sample taken from an embryo before pregnancy for specific genetic conditions. It does not replace all screening and diagnostic tests performed during pregnancy.
Pregnancies achieved through PGT require standard pregnancy monitoring, ultrasound evaluations, and prenatal screenings appropriate for the woman’s age and health history.Particularly after PGT-M and PGT-SR, prenatal diagnostic options such as chorionic villus sampling (CVS) or amniocentesis may be discussed with the genetic specialist to confirm results.The necessary tests are determined based on the investigated genetic disease, PGT result, the prospective mother’s age, and pregnancy findings.Is Sex Selection Performed with PGT?
Information about sex chromosomes may technically emerge during PGT. However, selecting embryos based solely on personal sex preference should be evaluated within the scope of medical, ethical, and legal regulations.
If there is a family history of serious X-linked genetic diseases, such as hemophilia or Duchenne muscular dystrophy, the embryo’s sex chromosomes may be relevant for assessing disease transmission risk.In such cases, the goal is not merely to choose a female or male child but to reduce the risk of transmitting the known serious genetic disease in the family.Risks and Limitations of PGT
PGT can provide important information; however, the test has biological, technical, and clinical limitations.
No embryos reaching biopsy
Not all collected eggs may fertilize, and not all resulting embryos may reach the blastocyst or biopsy stage.No transferable results
All tested embryos may show results that are not suitable for the investigated disease or chromosomal change.Inconclusive results
Interpretable results may not be obtained for some embryos due to DNA quantity, sample quality, or technical reasons.Mosaic results
Uncertainty may arise regarding whether the result represents the entire embryo when the biopsy sample contains different cell groups.Possibility of false or misclassification
No genetic test offers 100% accuracy. Sample quality, DNA amplification, and biological variations can affect results.Impact of embryo procedures
Even when performed by an experienced team, the potential for the embryo to be affected by biopsy, freezing, and thawing cannot be completely eliminated.Undetected conditions
PGT provides information only about the genetic conditions within the scope of the test and does not exclude all diseases.No guarantee of pregnancy
Transferring an embryo with a suitable result does not guarantee implantation, pregnancy, or live birth.Potential Advantages of PGT
The potential benefits of PGT may vary depending on the test type, the nature of the genetic risk, and the number of embryos available to the couple.
Reducing the risk of genetic disease transmission
PGT-M can help assess the risk of transmitting a known, serious single-gene disorder in the family to the embryo.Identifying unbalanced chromosomal structures
PGT-SR can help identify embryos compatible with unbalanced chromosome structures in carriers of translocations or inversions.Supporting embryo prioritization
PGT-A can help prioritize embryos for transfer in some patients with multiple blastocysts.Facilitating single embryo transfer planning
In suitable patients, evaluating genetic results alongside embryo development can support the decision for single embryo transfer.Managing recurrent genetic risk
For families who have had a previous pregnancy with a specific genetic condition, planning for a new pregnancy can be more detailed.Informed decision-making
Couples can make more informed decisions by receiving genetic counseling about embryo results and alternative options.PGT and Genetic Diagnosis Costs in Cyprus
PGT and genetic diagnosis costs in Cyprus may vary depending on the type of PGT applied, the number of embryos tested, personalized genetic preparation, and the scope of the IVF treatment.
PGT is not only a genetic laboratory test. The treatment may include various stages such as ovarian stimulation, egg retrieval, fertilization, embryo culture, embryo biopsy, vitrification, and frozen embryo transfer.Key factors that may affect the total cost include:- Application of PGT-A, PGT-M, or PGT-SR
- Genetic counseling and pre-assessment
- Custom PGT-M test development process
- Obtaining additional DNA samples from family members
- IVF treatment and medications used
- Egg retrieval procedure and anesthesia
- Microinjection (ICSI) procedure
- Blastocyst culture
- Embryo biopsy
- Number of embryos to be tested
- NGS or other genetic analysis methods used
- Vitrification and storage of embryos
- Need for re-biopsy of embryos with inconclusive results
- Frozen embryo transfer
- Uterine preparation and medications before transfer
Why Vita Altera IVF Center?
At Vita Altera, genetic diagnosis is handled not merely as sending cells to a laboratory, but as a holistic process comprising genetic counseling, IVF treatment, embryo biopsy, safe storage, and personalized embryo transfer.
- Personalized PGT-A, PGT-M, and PGT-SR planning
- Detailed evaluation of genetic reports before treatment
- Genetic counseling and laboratory coordination
- Experienced obstetricians and gynecologists
- Experienced embryology and laboratory team
- Blastocyst culture and embryo biopsy
- Coordination with advanced genetic analysis laboratories
- EmbryoScope+ for embryo development monitoring
- Chip ID sample matching and security system
- Modern embryo vitrification applications
- Personalized frozen embryo transfer
- Counseling for mosaic and inconclusive results
- Personal patient coordinator support
- Multilingual patient counseling
- Online pre-consultation opportunity
- Regular follow-up before and after treatment

