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Showing posts with label chromosomal disorder. Show all posts
Showing posts with label chromosomal disorder. Show all posts

Saturday, November 14, 2009

New groundbreaking technique creates embryo from 3 parents

Saturday, November 14, 2009
New genetic research appears to create healthy embryos that will grow into healthy children. Iris WaichlerBritish scientists at Newcastle University have just released information on a new technique they have created that will impact the world of infertility treatment. Their original research goal was to prevent children from getting inherited medical disorders.

HOW DOES IT WORK?

The technique as described by the British researchers was to "prevent diseases by altering human embryos, which are the product of two mothers and one father." Researchers had been working with a woman who had mitochondrial disease which she passed to her daughter. The researchers determined that they could, "prevent the passing of mitochondrial disease in a child by extracting nuclear DNA from a mother with mitochondrial disease and a father, then injecting that DNA into a donor egg from a woman without mitochondrial disease."

Read more...

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Thursday, September 3, 2009

Patients Get the Present When Genetics & IVF Institute Celebrates 25th Anniversary

Thursday, September 3, 2009
Patients Get the Present When Genetics & IVF Institute Celebrates 25th AnniversaryGenetics & IVF Institute (GIVF), an infertility clinic in the greater Washington, DC area that serves patients from across the country and the world, is celebrating its 25th Anniversary by giving patients a 25% discount on Preimplantation Genetic Diagnosis (PGD) procedures completed between August 1 and December 31, 2009 at GIVF. (Medical eligibility criteria apply.) PGD normally costs $5,000, but with the discount, patients can save up to $1250.00

Thanks to a new testing program, Genetics & IVF Institute offers preimplantation genetic diagnosis (PGD) for most inherited genetic conditions, including myotonic dystrophy, various muscular dystrophies, neurofibromatosis (NF), Cystic Fibrosis, Beta Thalassemia, Hemophilia A, Retinoblastoma, Myotonic Dystrophy, Duchenne-Becker Dystrophy, Spinal Muscular Atrophy (SMA), Limb-Girdle Muscular Dystrophy and more.


GIVF's PGD laboratory also offers PGD for structural chromosome rearrangements and X-linked diseases through the use of a PGD technology called fluorescence in situ hybridization (FISH).

Normally, PGD at GIVF costs $5,000. Thanks to the anniversary discount, patients who have a completed PGD procedure at GIVF before December 31, 2009 may save up to $1,250. Patients interested in learning more about the PGD program, the discount or other information should contact GIVF at 703-698-7355 or visit GIVF's website, http://www.givf.com.

Read more: http://www.emediawire.com/releases/2009/8/prweb2767844.htm

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Friday, August 28, 2009

New method may prevent disease inheritance

Friday, August 28, 2009
Beaverton, Ore. -- U.S. researchers say they have used implanted donor eggs to prevent the inheritance of a class of mitochondrial disorders in non-human primates.

Scientists at the Oregon Health Science University in Beaverton, Ore., said they transferred hereditary material from the egg of a primate mother into a donor female's egg from which the hereditary material had been emptied. The resulting eggs were fertilized with donor sperm and implanted in the mothers, producing offspring having mitochondria only from the donated egg.


Read more: http://www.themoneytimes.com/20090826/new-method-may-prevent-disease-inheritance-id-1081514.html

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Saturday, August 1, 2009

Reproductive Health Declines as Chemicals Exposure Increases

Saturday, August 1, 2009
Troubling national trends show increases in reproductive health problems as the widespread use of certain chemicals has increased dramatically. A new analysis of available data makes several recommendations for U.S. chemicals policy to address the growing health concerns and potential links to toxic chemicals.

Among the recommendations is a call for greater public disclosure of chemical safety information, increased federal research on safer chemical substitutes, and removing political influence from assessments of chemical safety.

The analysis, Reproductive Roulette, produced by the Center for American Progress (CAP), draws on numerous scientific studies that show a clear degradation over the last several decades in both male and female adult reproductive health nationwide, as well as more developmental problems among young children.



Read more: http://www.ombwatch.org/node/10256



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Friday, July 3, 2009

Fertility Method For Older Women Spawns Doubts

Friday, July 3, 2009
Fertility Method For Older Women Spawns DoubtsFor more than a decade, thousands of older women undergoing in-vitro fertilization have relied on an expensive embryo-screening procedure to boost their chances of getting pregnant. But mounting evidence suggests that the procedure doesn’t help people become mothers.

The technique, known as pre-implantation genetic screening, or PGS, is performed in dozens of fertility clinics across the country. Most medical experts agree that embryo screening can significantly reduce the risk of serious chromosome-related illnesses, such as Down syndrome. But for older women trying to have a baby, the weight of evidence is now shifting against current PGS techniques.

Read more:
http://online.wsj.com/article/SB10001424052970203366604574237912351241156.html?mod=googlenews_wsj


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Tuesday, April 28, 2009

The importance of folate, zinc and antioxidants

Tuesday, April 28, 2009
Picture by lizvandhal
The importance of folate, zinc and antioxidants in the pathogenesis and prevention of subfertilityThe importance of folate, zinc and antioxidants in the pathogenesis and prevention of subfertility

UV radiation destroys folic acid, a precursor for folate, the lack of which may result in birth defects.

Current treatments of subfertile couples are usually empiric, as the true cause of subfertility often remains unknown. Therefore, we outline the role of nutritional and biochemical factors in reproduction and subfertility. A literature search was performed using MEDLINE, Science Direct and bibliographies of published work with both positive and negative results.

The studies showed that folate has a role in spermatogenesis. In female reproduction, folate is also important for oocyte quality and maturation, implantation, placentation, fetal growth and organ development. Zinc has also been implicated in testicular development, sperm maturation and testosterone synthesis.

In females, zinc plays a role in sexual development, ovulation and the menstrual cycle. Both folate and zinc have antioxidant properties that counteract reactive oxygen species (ROS). Thiols, such as glutathione, balance the levels of ROS produced by spermatozoa and influence DNA compaction and the stability and motility of spermatozoa. Oocyte maturation, ovulation, luteolysis and follicle atresia are also affected by ROS.

After fertilization, glutathione is important for sperm nucleus decondensation and pronucleus formation. Folate, zinc, ROS and thiols affect apoptosis, which is important for sperm release, regulation of follicle atresia, degeneration of the corpus luteum and endometrial shedding.

Therefore, the concentrations of these nutrients may have substantial effects on reproduction. In conclusion, nutritional and biochemical factors affect biological processes in male and female reproduction. Further research should identify pathways that may lead to improvements in care and treatment of subfertility.

Read more:
http://scienceblogs.com/gnxp/2009/04/folate_fertility_skin_color.php?utm_source=sbhomepage&utm_medium=link&utm_content=channellink


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Monday, March 9, 2009

New DNA Test is Basis for Groundbreaking IVF Refund Plan

Monday, March 9, 2009
Comparative Genomic Hybridization - a genetic process that analyzes the chromosomal integrity of the egg or embryo prior to it being transferred to a womans uterus in the course of In Vitro FertilizationFri, 06 Mar 2009 - NEW YORK, N.Y. — The Sher Institutes of Reproductive Medicine (SIRM) announced today the introduction of the world’s first CGH-Risk Sharing Plan that guarantees qualified IVF patients a baby or offers a full refund of the clinic’s medical fees. CGH is an acronym for Comparative Genomic Hybridization - a genetic process that analyzes the chromosomal integrity of the egg or embryo prior to it being transferred to a woman’s uterus in the course of In Vitro Fertilization. CGH reveals whether an egg or embryo has the correct number of chromosomes.

Read more...
http://enewschannels.com/2009/03/06/enc6128_193223.php



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Friday, April 18, 2008

Racing to Beat the Maternal Clock

Friday, April 18, 2008
Photo by health.nytimes.com
A doctor is silhouetted as he walks past a poster showing images of the development of a human fetus at a fertility clinic.

In Brief:
5 Despite continuing refinements in fertility treatments, researchers have not been able to provide what career-minded adults seek: an extension of the years in which a woman is fertile.

5 The viability of conventionally frozen eggs is still inferior to that of frozen sperm and embryos.

5 The freezing of ovarian tissue, still highly experimental, may offer new options to cancer patients facing sterilizing treatments.

With genetic abnormalities in many embryos correcting themselves by day five, clinics are waiting longer to transfer embryos into patients.

In the nearly 30 years since Louise Brown made history as the first test-tube baby, more than one million infants have been conceived by means of in vitro fertilization. Assisted reproductive technologies continue to advance, but increasingly they are pushing against one of nature’s great barriers to fertility: maternal age.


“Many infertility specialists are surprised by the number of otherwise highly educated older couples with unrealistic expectations of fertility,” Dr. Bradley J. Van Voorhis, a fertility expert at the University of Iowa School of Medicine, wrote recently in The New England Journal of Medicine. “The negative effect of a woman’s age on fertility cannot be overemphasized.”

Certainly, new options to extend fertility are testing the limits of who can get pregnant, and when. They are also raising fresh medical, economic and ethical concerns.

Whereas scientists for decades have been freezing human embryos for later implantation into the womb, now a process called vitrification enables technicians to flash-freeze unfertilized human eggs in a matter of seconds, greatly improving their survival rates.
The process is considered superior to conventional slow-freezing methods because it prevents the formation of ice crystals in the egg that could damage DNA. Sperm later meets thawed egg through in vitro fertilization, and the resulting embryo is implanted in the womb. The technique increases the chances of successful pregnancy later in life for a young woman without a partner who must, or wants to, defer starting a family.

“I think this will emancipate women as much as the birth control pill did in 1960,” said Dr. Sherman Silber, a fertility specialist in St. Louis, Mo., one of a limited number of doctors in the country to offer the novel procedure. In a recent study in Spain, there were no differences in pregnancy rates in women undergoing in vitro fertilization with embryos from either fresh or flash-frozen eggs. About 45 percent in each group conceived.

The experimental procedure, however, is not without its sacrifices — and skeptics. Potent drugs must be used to stimulate a patient’s ovaries, and then the eggs must be aspirated while she is sedated. Vitrification is also expensive, often more than $5,000 just for freezing the eggs, in addition to the cost of fertilization.

Vitrification may improve the odds that older women will be able to conceive from eggs that they donated when they were younger, but it doesn’t offer much help to middle-aged women whose eggs were never frozen. There’s little point in a woman preserving her eggs if she’s over 35 years old, when fertility starts to diminish. The younger the eggs, the better their quality.

Still, many fertility centers limit egg-freezing services only to younger cancer patients facing treatments that will leave them sterile. Patients usually are warned that frozen eggs are not as reliable as frozen embryos and sperm because of the egg’s extreme sensitivity to temperature.

“I’ve had to tell young women facing cancer treatment and the loss of ovarian function that it’s not really reliable,” said Dr. Richard Marrs, managing partner of California Fertility Partners in Los Angeles. “The odds are better for them if they freeze embryos.”

Trying to improve the odds, some researchers, including Dr. Silber, have begun freezing not only eggs but ovarian tissue as well. Thin slices from the ovary are removed through a small incision below the navel, preserved with slow freezing, then transplanted back into the woman’s body when she’s ready to try to get pregnant, in some cases years later. The aim is to have the tissue grow and start functioning again, triggering normal ovulation cycles and eventually leading to conception.

The American Society for Reproductive Medicine has acknowledged the potential of frozen eggs and ovarian tissues, but for now recommends these experimental techniques only for younger women undergoing cancer treatments, not for those postponing pregnancy for lifestyle reasons like pursuing a career. “The biological clock is real for most women, and that has to be recognized,” said Sean Tipton, a spokesman for the society.

More widely used fertility techniques that were developed to improve the odds of a successful pregnancy in older women, like pre-implantation genetic diagnosis, or P.G.D., are not without their controversies, too. Developed about a decade ago to weed out embryos with genetic abnormalities prior to implantation, P.G.D. might one day help parents select not just a child’s gender, but perhaps his eye color or other characteristics.
Many reputable clinics find it a slippery ethical slope and employ the procedure only on a limited basis. “We use P.G.D., but we’re very selective when we use it,” Dr. Marrs said. “The prime reason to do it is if you have a family history of single gene disorders like Tay-Sachs, Huntington’s chorea, cystic fibrosis.”

Furthermore, critics claim, P.G.D. may have resulted in clinics discarding healthy embryos. Several studies have shown that many genetic abnormalities appearing in a three-day-old embryo correct themselves by the fifth day. As a result of this finding, a number of clinics now wait until the fifth day to test and transfer embryos into the woman’s uterus. Doctors also tend to transfer fewer of them, thereby reducing the incidence of multiple births and its attendant complications, including premature labor and low birth weight.

Despite these refinements in assisted reproductive technologies, fertility scientists have not been able to change the basic fact that a woman’s fertility diminishes with age.

“The younger the woman, the better her chances of fertility,” said Dr. Zev Rosenwaks, director of The Center for Reproductive Medicine and Infertility at New York-Presbyterian Hospital. “If there are any signs of infertility — absence of periods, irregular periods — couples should pay attention. Seek help earlier rather than later.”


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Friday, April 11, 2008

Low Folate Diet Linked To Sperm Abnormality

Friday, April 11, 2008
Photo by www.action.org.ukLow Folate Diet Linked To Sperm Abnormality
The old adage "we are what we eat" received further support this week, and may even suggest "we are what our parents ate" when a new study by researchers in the US revealed that healthy men who have a diet low in folate have a higher risk of chromosomal abnormalities in their sperm. Chromosomal abnormalities in sperm are known to cause a range of congenital conditions such as Down syndrome and learning and development disorders.

The study is the work of scientists at the University of California (UC), Berkeley, and the Lawrence Berkeley National Laboratory, and is published in the 19th March issue of the journal Human Reproduction.

Women of childbearing age are encouraged to maintain a healthy intake of folate because it is essential for healthy fetal development, and to prevent neural tube birth defects such as spina bifida or anencephaly (severe type of brain damage). That is why folic acid is now added to bread, cereal, flour and other grain products in the US.

But this is the first study to suggest that folate intake in men may affect their children.

Researcher at UC Berkeley's School of Public Health and coordinator of the study, Suzanne Young, said:

"Recent studies have suggested that paternal diet affects sperm count and motility, which is important for conception, but this new study takes it further to say that male diet may be important for healthy offspring as well."

Young said their study was the first to examine the effects of diet on chromosomal abnormalities in sperm.

"These abnormalities would cause either miscarriages or children with genetic syndromes if the sperm fertilized an egg," explained Young.

The researchers said that about 1 to 4 per cent of healthy male sperm has an abnormal number of chromosomes, or aneuploidy. These abnormalities arise when cells divide (meiosis) in the testis, but their cause is not well understood.

If an aneuploidic sperm fertilizes a normal egg, the fetus would either miscarry or develop a chromosomal disorder, such as trisomy, where cells have three copies of each chromosome instead of the more usual two (one from each parent).

In this study the investigators looked at three chromosomes linked with common types of aneuploidy in live births: X, Y and chromosome 21. Down syndrome, for example, is caused by having an extra chromosome 21. Klinefelter syndrome, which can affect language and learning development, is caused by an extra X chromosome in boys, and boys carrying an extra Y chromosome have XYY syndrome, also linked to learning and behavioral difficulties.

The participants were 97 non-smoking men with no previous history of reproductive or fertility problems. The aged from 22 to 80 and were either still working at or had retired from a government research laboratory.

The men filled in questionnaires about their diet and supplements like multi-vitamins and other nutrients. Semen samples were taken up to a week later.

After taking out the effects of age, alcohol and medical history, the results showed that men who reported the highest folate intake had a 19 per cent lower rate of aneuploidic sperm that men with moderate folate intake, and 20 per cent lower than men with the lowest folate intake.

The analysis did not show any links between aneuploidy and other nutrients such as zinc, calcium, beta-carotene and other vitamins, said the researchers, who concluded that:

"Men with high folate intake had lower overall frequencies of several types of aneuploid sperm."

Co-principal investigator of the study, professor of epidemiology and maternal and child health at UC Berkeley's School of Public Health, Brenda Eskenazi, said:

""The emphasis related to the birth of a healthy baby has been weighted towards the health and diet of women, not just during pregnancy, but before."

"What we're finding now is that a nutritious diet, specifically folate intake, may be beneficial for men as well when it comes to producing healthy offspring," she added.

Folate, which occurs naturally in a range of foods such as liver, leafy green vegetables, peas, beans, lentils and citrus fruits, is a water soluble vitamin of the B group.

Folate is essential for DNA, RNA and protein synthesis and the development of new cells. It also helps to control homocysteine, an amino acid that has been linked to heart disease.

But before men hoping to become dads rush out to buy folic acid or start maxing out on lentils, they should take note, as the researchers themselves suggested, that this study only found a link between folate and healthy sperm, it did not establish for certain that there is a cause and effect relationship.

Study co-principal investigator and chair of the Radiation Biosciences Department at Lawrence Berkeley National Laboratory, Andrew Wyrobek, cautioned:

"We can't yet say that increasing folate in your diet will lead to healthier sperm."

"But we did come up with enough evidence to justify a larger, clinical and pharmacological trial in men to examine the causal relationships between dietary folate levels and chromosomal abnormalities in their sperm,"
added Wyrobek.

This information will help us set dietary folate levels that may reduce the risk of miscarriage or birth defects linked to the fathers," he said.

If further research supports these findings, the researchers suggest it might be a good idea to increase the current recommended 400 micrograms daily allowance of folate for men hoping to become dads.

"The association of folate, zinc and antioxidant intake with sperm aneuploidy in healthy non-smoking men."


Hum. Reprod. Advance Access published on March 19, 2008.
DOI:10.1093/humrep/den036

Click here for Abstract.

Sources: Journal abstract, press statement from University of California, Berkeley.
http://www.medicalnewstoday.com/articles/101208.php


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Tuesday, April 8, 2008

A Method To Select Eggs With The Best Chance Of Leading To Successful Pregnancy Developed By Researchers

Tuesday, April 8, 2008
Photo by stylesr1
choosing the best eggA research team supervised by Universite Laval scientist Marc-Andre Sirard has identified genetic markers that allow the selection of eggs with the best chance of leading to successful pregnancy after in vitro fertilization (IVF). This finding could both increase the success rate of single embryo transfer and diminish the risk of multiple pregnancies. The details of the method developed by the researchers, for which an international patent application has been filed, are explained on the website of the scientific journal Human Reproduction.

Eggs recovered in the course of the IVF process are surrounded by follicular cells that are removed before the actual fertilization procedure begins. "While in the ovaries, these cells and the eggs are in very close interaction," explains Sirard. "A first experiment we conducted on bovine follicular cells led us to believe that these cells might possess specific markers that would be able to give us information about the quality of an egg."

With the help of 40 women recruited in a fertility clinic, researchers compared follicular cells surrounding eggs that ultimately led to successful pregnancies - i.e. "good" eggs - to cells surrounding ovules that did not result in pregnancy. This comparison led to the identification of five genes expressed more abundantly in follicular cells surrounding good eggs.

Currently, the way to assess which embryos are to be transferred into a woman's uterus is based on visible criteria such as appearance and division rate. "At least 30% of embryos that look normal through visual examination nonetheless show chromosome abnormalities," explains Professor Sirard, illustrating the limits of this type of assessment. The method developed by Sirard's team makes it possible to objectively select ovules that have the best chance of success without altering the integrity of the embryos.

This new genomic tool could also solve an ethical problem confronting both fertility clinic doctors and the people who consult them: In order to increase the chances of pregnancy, many embryos are implanted simultaneously into the woman in the hope that at least one will survive. This procedure along with improved IVF techniques has led to an increase in multiple pregnancies. Even if doctors now tend to transfer fewer embryos, multiple pregnancies still occur in 30% of couples who resort to IVF in North America and 23% in European couples.


"By selecting the embryo with the best potential, it would be possible to limit the number of embryos transferred, and thus the number of multiple pregnancies, while maintaining good success rates," concludes Marc-André Sirard.

Information:
Marc-André Sirard
Centre de recherche en biologie de la reproduction
Université Laval

Source: Jean-François Huppé,
Université Laval
http://www.medicalnewstoday.com/articles/100529.php



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Wednesday, March 26, 2008

Sex chromosome gene link to infertility

Wednesday, March 26, 2008
Photo by www.untangledlife.comsperm meets egg
PHILADELPHIA, March 18 (UPI) -- A particular sex chromosome -- meiosis-specific gene -- has been linked to infertility by researchers in the United States, Sweden and Germany.

The study, published in Genes & Development, finds disrupting the TEX11 gene located on the X chromosome in mice renders the males sterile and reduces female fecundity.

The TEX11 is also located on the human X chromosome, and the researchers say mutations may be responsible for non-measurable sperm levels in men. Like other X-linked disorders, such as color blindness, genetic mutation could be passed on from the mother. The researchers hypothesize that a screening of the TEX11 gene may provide a prebirth diagnosis for infertility in men.

This is the first meiosis-specific factor ever found on the X chromosome, the researchers say. Meiosis is the process of cell division whereby chromosomes exchange paternal and maternal genetic material to produce genetically diverse gametes -- sperm or eggs. Defects in meiosis are a leading cause of both infertility and birth defects.

The study was conducted by Jeremy Wang of the University of Pennsylvania's School of Veterinary Medicine in Philadelphia with involvement by researchers from the Massachusetts Institute of Technology, Washington State University, Karolinska Institute in Sweden and the University of Wurzburg in Germany.

Source: http://www.upi.com/NewsTrack/Health/2008/03/18/sex_chromosome_gene_link_to_infertility/5141/


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Monday, March 10, 2008

UK trial for IVF womb technique

Monday, March 10, 2008
Photo by http://news.bbc.co.uk UK trial for IVF womb technique - Could the womb produce better quality embryos than the test-tube?
An IVF technique which lets eggs develop in the womb rather than the test-tube straight after fertilisation is to be trialled in the UK.

Researchers hope that the natural environment of the womb will help produce stronger embryos.

At present, an embryo is transferred to the womb after a few days growing in special liquid in a laboratory.

But this new technique would see fertilised eggs placed in a device which is then planted in the womb.

After a few days the device is taken out and the embryo deemed to have the best chances of survival reimplanted.

Initial, anecdotal evidence from pilots in Belgium suggests the embryos produced in vivo rather than in vitro are of a higher quality - and therefore have a better chance of survival.

In addition to establishing whether the technique improves the chances of pregnancy, researchers are also keen to find out whether these embryos have fewer chromosomal abnormalities - which can lead to conditions such as Down's Syndrome.

"We have often wondered whether the rate of abnormality is higher with in vitro embryos, but we have never been able to establish this," says Dr Simon Fishel, head of the Care Fertility group of clinics which is carrying out the study.

"Hopefully this trial will at least provide a partial answer."

Multiple births

The group is recruiting 40 women under the age of 37 to take part in the trial, which will be carried out in Nottingham.

There is currently intense interest in developing new techniques which produce better quality embryos, and thus minimise the need for several embryos to be transferred to the womb in the hope that one will survive.

This technique is producing large numbers of multiple births, which can put the lives of both mother and baby at risk.

Reproductive specialists were cautious about the trial.

"It's an interesting idea, but it's not entirely clear what they are trying to do," says Professor Adam Balen of the British Fertility Society.

"Even in natural conceptions the eggs do not spend those first days in the womb, but in the fallopian tubes.

"I'd like to see a bit more science before I got too excited about this."

Richard Kennedy of the Centre for Reproductive Medicine in Coventry agreed.

"Of course the more you can circumvent artificial systems the better, but one of my concerns about this would be that you have to put it in, remove it, before then putting it in again. "

Care Fertility says it hopes to have an initial results by May or June, and a clearer picture of how successful the technique is by the end of year.

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Monday, February 18, 2008

The Risk of Major Birth Defects after Intracytoplasmic Sperm Injection and in Vitro Fertilization

Monday, February 18, 2008
Background: It is not known whether infants conceived with use of intracytoplasmic sperm injection or in vitro fertilization have a higher risk of birth defects than infants conceived naturally.

Methods: We obtained data from three registries in Western Australia on births, births after assisted conception, and major birth defects in infants born between 1993 and 1997. We assessed the prevalence of major birth defects diagnosed by one year of age in infants conceived naturally or with use of intracytoplasmic sperm injection or in vitro fertilization.

Results: Twenty-six of the 301 infants conceived with intracytoplasmic sperm injection (8.6 percent) and 75 of the 837 infants conceived with in vitro fertilization (9.0 percent) had a major birth defect diagnosed by one year of age, as compared with 168 of the 4000 naturally conceived infants (4.2 percent; P greater than 0.001 for the comparison between either type of technology and natural conception).


As compared with natural conception, the odds ratio for a major birth defect by one year of age, after adjustment for maternal age and parity, the sex of the infant, and correlation between siblings, was 2.0 (95 percent confidence interval, 1.3 to 3.2) with intracytoplasmic sperm injection, and 2.0 (95 percent confidence interval, 1.5 to 2.9) with in vitro fertilization. Infants conceived with use of assisted reproductive technology were more likely than naturally conceived infants to have multiple major defects and to have chromosomal and musculoskeletal defects.

Conclusions: Infants conceived with use of intracytoplasmic sperm injection or in vitro fertilization have twice as high a risk of a major birth defect as naturally conceived infants.

New England Journal of Medicine: Volume 346:725-730, March 7, 2002, Number 10

Full article: https://content.nejm.org/cgi/content/full/346/10/725?ck=nck

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Monday, December 31, 2007

Novel IVF test may cut risk of twins, triplets

Monday, December 31, 2007
Washington , Dec 31 (ANI): A revolutionary in vitro fertilisation (IVF) test, which may slash the risk of multiple births while increasing the chances of pregnancy, will soon be offered to British couples.

The pre-implantation genetic screening (PGS) test aims to boost the success rates when only a single
embryo is transplanted into the womb, so that multiple pregnancies may be prevented.

However, a different form of PGS is already licensed to detect chromosomal abnormalities that cause embryos to fail, but only for older patients or those with a history of miscarriage or IVF failure.

The PGS test is also controversial with almost no proof to establish the fact that it aids in conception. It was recently reported that the
British Fertility Society had recommended that its members stop using it.

In the more advanced version of PGS, around 50-100 women will be recruited. It will be conducted by
Dagan Wells, of the Reprogenetics UK clinic and the University of Oxford .

Wells is seeking permission from the
fertility regulator for the test, with a view to identifying the best embryo produced by young IVF patients aged under 35 having good prognosis.

If successful, the trial may influence many more infertile couples into opting for single embryos, corresponding to the
Human Fertilisation and Embryology Authority's strategy to cut IVF twin and triplet births from one in four to one in ten.

At present, almost 90 per cent of IVF cycles use two embryos, because clinics and couples fear that the
pregnancy rates may decline by using just one embryo.

I think this is going to be a wonderful thing for moving towards single embryo transfer. If you're only going to put back one embryo, its more important than ever that you get the best one, and that is what we think this test can do,
Times Online quoted Dr Wells as saying.

The new technique has been used on three women in America and two of them are now pregnant.

The PGS aims to identify chromosomal abnormalities called aneuploidies, which affect up to two thirds of embryos and cause implantation failure or miscarriage.

It is dependent on three new technologies, and comes with improved accuracy and lower risk.

Source:
http://www.thaindian.com/newsportal/health/novel-ivf-test-may-cut-risk-of-twins-triplets_10010842.html

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Sunday, December 23, 2007

£2,000 test may harm pregnancy chances

Sunday, December 23, 2007
Fertility clinics should stop recommending a £2,000 embryo quality test because there is no evidence that it works and it could damage patients’ chances of pregnancy, an influential group of medical professionals says.

The British Fertility Society (BFS) is to advise its members not to offer the pre-implantation genetic screening (PGS) test, which is approved for women who are over 35 or who have a history of IVF failure and miscarriage, The Times has learnt.

The procedure is designed to choose embryos with the best chance of developing normally, by screening for genetic abnormalities. Eight British clinics are licensed to perform preimplantation genetic screening. It costs typically about £2,000, and is not available on the NHS. A review by the British Fertility Society of published research, however, has found no evidence that it improves pregnancy rates and some indications that it might actually harm infertile couples’ chances of having a baby.

The society, which represents 800 doctors, nurses and counsellors involved in reproductive medicine, will say that the test should ideally be offered in a research setting. Its new policy, which has been seen by The Times, will also insist that any patients who want PGS should be warned that there is no evidence that it is helpful.

Richard Anderson, Professor of Clinical Reproductive Science at the University of Edinburgh, who led the review, said that although PGS was still being refined and might one day be useful the existing research was too flimsy to justify selling it to patients.

“There is a conflict between the published evidence from properly defined clinical studies and the opinions of people who consider themselves experts in this,” he said. “This is one of those issues where medicine and money clash, and I do not think they make happy bedfellows.”

The new policy will say: “It is clear that there is currently no compelling evidence that PGS improves the clinical pregnancy rate or live birthrate or reduces the miscarriage rate. It remains possible that PGS may be of benefit under certain circumstances, for example where the number of embryos replaced is strictly limited. Therefore, PGS should preferably be offered within the context of robustly designed randomised trials performed in experienced centres.”

An earlier draft had recommended that PGS be offered only as part of a clinical trial, but Professor Anderson said the BFS had reluctantly agreed to water down this conclusion after comments from the test’s practitioners.The document will say: “Patients should be informed that there is no robust evidence that PGS for advanced maternal age improves live birthrate. Indeed from the evidence available the live birthrate may be significantly reduced following PGS.” It will also call for further research.

Alan Thornhill, scientific director of the Bridge Centre in London, said that PGS could be beneficial for certain patients. His clinic offers it to about 5 per cent of women, who are known to be at high risk of the chromosomal abormalities it detects.

“The key is patient selection,” he said. “It is not helpful across the board, but that is not how it is done and there are clearly patients who can benefit from undertaking PGS. To decree that it should happen in randomised clinical trials is all very well, but there are very specific individual patients who can be helped outside that setting.”

PGS has been licensed in Britain since 2002 for women who have had repeated miscarriages or multiple failed attempts at IVF. In 2005, the last year for which figures are available, 205 cycles were conducted on 166 women, with 42 live births.

It aims to detect a chromosomal disorder called aneuploidy, which affects up to two thirds of embryos and causes them to die or miscarry. However, it has been tested in only two randomised prospective studies, neither of which showed a benefit.

The most recent study, from the University of Amsterdam, found that PGS actually reduced birthrates. Its methodology, however, has been heavily criticised by PGS experts.

Full article: http://www.timesonline.co.uk/tol/news/uk/science/article3080618.ece


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"In 2005, there were more than 104,000 births in the United States to women ages 40 through 44, and over 6,500 to women 45 and older. In 2004, there were 1,786 live births to women over 42, using donor eggs."

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