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Introduction to Personal Genetics Personal Genetics Education Project (pgEd) Harvard Medical School - Wu Laboratory www.pged.org 2015.

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Presentation on theme: "Introduction to Personal Genetics Personal Genetics Education Project (pgEd) Harvard Medical School - Wu Laboratory www.pged.org 2015."— Presentation transcript:

1 Introduction to Personal Genetics Personal Genetics Education Project (pgEd) Harvard Medical School - Wu Laboratory www.pged.org 2015

2 A Prion Love Story https://www.youtube.com/watch?v= pA5xUT4Nq3o https://www.youtube.com/watch?v= pA5xUT4Nq3o If interested, here is an article about the couple: – http://www.newyorker.com/books/page -turner/a-prion-love-story http://www.newyorker.com/books/page -turner/a-prion-love-story

3 Do Now Discuss with the following questions with the person (or people) next to you: 1.What are the potential benefits to knowing more about your genetic predisposition to (chance of developing) a disease? 2.What are the possible downsides to knowing? 3.Aside from health and medical information, what else might you be curious to learn about from your DNA?

4 Genetics is getting more personal because learning about our own DNA is rapidly becoming inexpensive and accessible. DNA analysis can provide: Insights about our health, behavior, family history and other traits. Highly personal information with personal, social and familial impact. Information about genes and traits directly to consumers.

5 “Under $1,000 dollars in this decade” “Widely available in the next 5-10 years” “Transforming health care for the next generation” Quote sources: New York Times Photo: www.flickr.com Why might personal genetics matter to you?

6 The Beery twins’ story highlights the promise of personalized medicine www.the-scientist.com

7 The Beery Family https://www.youtube.com/watch?v= yUQFHecs8EQ https://www.youtube.com/watch?v= yUQFHecs8EQ

8 Personal choices based on genetic information Getty Images Angelina Jolie reveals she chose to undergo a double mastectomy. Jolie had a genetic test and found she carried a mutation in the BRCA1 gene. Doctors estimated there was a very high chance she would get breast cancer.

9 www.monashultrasound.com.au Fetus and mother share a blood supply. Fetal cells release DNA that enters the maternal bloodstream. Maternal blood now contains a mixture of maternal cell-free DNA and fetal cell-free DNA. Non-Invasive Prenatal Testing (NIPT)

10 www.post-gazette.com “DNA tests locate genetic branches of African Americans’ family trees”

11 Oxford Nanopore MinION 2014 Applied Biosystems 3730 DNA Analyzers 2002 Genome sequencing technology www.flickr.com www.nanoporetech.com

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13 Direct-to-consumer analysis for sale on the internet

14 The “lighter side” of DNA analysis

15 Health-related risks sold directly to consumers: an evolving landscape

16 1.Clinical utility: How likely is it you or your doctor can take action based on genetic information? 2.How much might this information impact you and your family? 3.How can we ensure access for everyone? 4.Will people understand that our environment (health care, family, society, etc.) also shapes who we are? Challenges in personal genetics

17 Four Corners activity

18 People should get counseling from a doctor or genetic counselor when they get genetic testing because they will not be able to handle the information otherwise.

19 People should have the right to learn whatever they want about their DNA because it is their own body.

20 I would only want to find out my likelihood of developing a disease if there are ways to prevent or treat it.

21 Parents undergoing in vitro fertilization should have the option to screen embryos for mutations likely to cause a serious disease.

22 Parents should be able to choose a child’s traits, such as eye color and sex, for non-medical reasons.

23 Employers should use genetic information to make hiring or firing decisions about employees.

24 Parents should be able to find out whatever they would like about their children’s DNA before they turn 18.

25 I would want to know if someone I was dating had a strong genetic predisposition to a serious disease.


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