Showing posts with label summer school. Show all posts
Showing posts with label summer school. Show all posts

Thursday, July 11, 2013

My Report on Hirschsprung's Disease

Our final assignment for Human Biology was to write a paper about a disease of the human body, specifically how it's diagnosed, treatment options and patient prognosis. Because Gabriel was diagnosed with it, I decided to write about Hirschsprung’s Disease. After spending weeks learning about the human body, I feel like I have a much better understanding of how and why things sometimes go wrong and after writing this paper I have an entirely new perspective on this disease. I understand now that we truly have no control over our genes and the chromosomes that randomly combine to form our children. As much as I wish Gabriel had been a healthy baby, I also realize that there is no other combination of genes that could have resulted in him. In other words, there is no version of Gabriel without Hirschsprung’s Disease. And for some reason, that makes me want learn more about Hirschsprung’s, to spread awareness of it, and to shed my feelings of anger and bitterness towards it. 

(We were supposed to write our papers in "normal" non-medical language, but it was surprisingly difficult to do so after being immersed in anatomy for the past month. But hopefully this is a pretty comprehensible report even if you don't know anything about the digestive system.)

Hirschsprung’s Disease

Hirschsprung’s Disease is a rare gastrointestinal disorder that affects the large intestine, most commonly the upper rectum or both the rectum and the sigmoid colon. Undigested food, water and other waste products are moved through the large intestine via peristalsis, which is a wave-like motion that propels stool forward so that it can be eliminated from the body. In order for the brain to coordinate peristalsis in the gastrointestinal tract, it relies on special nerve cells called ganglion nerves that line the walls of the entire gastrointestinal tract. During early fetal development, these ganglion nerves are formed throughout the entire GI tract, beginning with the mouth and ending with the anus. In babies affected by Hirschsprung’s Disease, the ganglion nerves do not finish forming during fetal development, resulting in an inability for the brain to induce peristalsis in the lower part of the intestinal tract. Because there is no other way for stool to pass through the large intestines, oftentimes it will become obstructed in the area where ganglion nerves are absent.

Because a person is born with Hirschsprung’s Disease, doctors can usually diagnose a baby with this condition shortly after birth. Newborns are often suspected of having Hirschsprung’s Disease if they are unable to pass meconium (the substance that is responsible for a newborn’s first bowel movement), within 24-48 hours post-birth. Oftentimes this inability to pass meconium is accompanied by one or more additional symptoms such as vomiting, abdominal distention, diarrhea, jaundice, fever and lack of appetite. Nowadays, babies are not permitted to leave the hospital if they are unable to pass meconium and it is routine to check for disorders including Hirschsprung’s Disease if a newborn baby presents any of these symptoms. 

Doctors can run a few basic tests to confirm the diagnosis of Hirschsprung’s Disease. Because Hirschsprung’s Disease is characterized by the absence of ganglion nerve cells in the large intestine, a biopsy of intestinal tissue is the best way to verify suspicions. Doctors remove a small piece of the lining of the large intestine and then use a microscope to check for the presence of ganglion nerve cells. If ganglion nerves are seen, then Hirschsprung’s Disease can be ruled out as an explanation for the blockage. Instead if ganglion nerves are missing, the doctor can confirm that the child does indeed have Hirschsprung’s Disease.

There are a few other tests that doctors can perform if they believe that a baby has this condition. Abdominal x-rays are sometimes used to check for intestinal dilation which signifies an intestinal blockage. Abnormal dilation of the colon is called megacolon, the presence of which can be an indication of a serious GI disorder such as Hirschsprung’s Disease. For some x-rays, doctors may administer a barium enema beforehand, which involves injecting barium (a metallic liquid) into the rectum and then using an x-ray to view the intestines. The barium gives doctors a clearer image of the intestinal wall. Also, if Hirschsprung’s Disease is suspected in an older child, a doctor may order an anorectal manometry test. During this test, a small sensor is placed in the rectum and a computer is used to measure the pressure and strength of the anal and rectal muscles. Often, children with Hirschsprung’s Disease have a failure of the relaxation reflex of the internal anal sphincter, a small muscle that relaxes in order to initiate the elimination of stool from the body. In this case, a rectal biopsy would be necessary to confirm the diagnosis of Hirschsprung’s Disease.

If a baby is diagnosed shortly after birth, there is a high chance that they will respond well to treatment. Current treatment involves surgery in which surgeons remove the segment of the colon and rectum that is missing ganglion nerve cells. They then surgically attach the end of the remaining intestine to the anus. Depending on how much of the intestinal tract is missing ganglion nerves, doctors may be able to perform laparoscopic (minimally invasive) surgery or they may be able to perform a transanal “pull-through” in which they operate on the intestines through the anus. Other times, they may need to make an incision through the abdomen in order to remove the necessary part of the intestines. In some cases, a child may also require an operation called an ostomy if the doctors are concerned about an infection in the intestines or if the intestines are extremely dilated. An ostomy involves making a small opening in the belly, called a stoma, and attaching the end of the intestines to this opening. This allows stool to pass out of the body into an attached pouch, so that the intestines can be washed out and have time to heal. It usually takes a few months to a year for the intestines to fully heal and once they do, doctors can then perform the necessary pull-through surgery. After surgery, children are administered pain medication temporarily, but they do not require any lifelong medication.

Fortunately, most patients are able to fully recover from surgery and go on to have normal bowel habits. In some cases, people may suffer from chronic constipation, diarrhea or enterocolitis, which is an inflammation of the large intestines. Some children will die from complications related to having Hirschsprung’s disease such as intestinal failure, intestinal rupture and severe enterocolitis. The mortality rates increase with the severity of the disease and among those children who have other problems such as a congenital heart defect or Down syndrome. In mild cases where only a small section of the colon is missing ganglion nerves and surgery is able to be performed early on, children have an excellent rate of survival and recovery and will ultimately grow up to have normal lives. In some instances, children may be put on a special diet to reduce constipation or other GI problems, but for the most part, they do not require any further treatment.

Hirschsprung’s Disease is an extremely rare congenital disorder that only occurs in 1 in every 5000-7000 live births. It affects males five times as often as females and children with Down syndrome and other chromosomal anomalies are at higher risk of having it. The exact cause is unknown, however the majority of scientists agree that it is a genetic disorder. There is a lot of evidence to support the theory that Hirschsprung’s Disease has a hereditary factor. For example, a couple who has a child with Hirschsprung’s Disease has on average a 3%-25% chance of having another child who also has it. Also if one parent has the disease, there is a greater probability that their children will be affected. Newer research suggests the possibility that Hirschsprung’s Disease may be autosomal dominant (resides on a non-sex chromosome and only requires inheritance from one parent) in some families and may be caused by a genetic mutation in other cases. Some scientists believe that Hirschsprung’s Disease requires the mutation of at least two genes residing on two different chromosomes. It is also possible that it is carried on the X chromosome since it affects males at a significantly higher rate than females. Since boys only have one X chromosome, they are more susceptible to X chromosome diseases than girls who have two X chromosomes.

Rates of recurrence in a family vary depending on the affected child’s gender and disease severity. A couple is most likely to have another child with Hirschsprung’s Disease if they already have a daughter with the most severe form of the disease, especially if the next child is a boy. Instead if they have a son with the least severe form, they may have as low as a 1% chance of having another child with Hirschsprung’s Disease.

Despite growing research, the exact cause is still unknown. So far, there are no known ways to prevent the inheritance of Hirschsprung’s Disease and no external environmental factors seem to be involved. There is also no cure, but genetic testing is available for couples who want to know their risk of having a child with the disease. 

Saturday, June 22, 2013

Summer School

I've got some good news and bad news. The good news is that I survived my first week of summer school. The bad news is that I'm not completely sure I'm going to make it through the second week. 

Earlier this week, I had planned to write this beautifully inspired post about how much I've learned this past week and how fascinating my classes are and how great school is going, but honestly with the current state of my brain, that's not going to happen today. I'm tired from studying, I'm tired from classes, I'm tired from reading, and I'm tired from just thinking about another week of studying, classes and reading. 

So, I'll just say this. Summer school is intense. I'm taking Human Biology (a.k.a. Too Much Information To Absorb) and Psychology (a.k.a. Harder Than I Expected). Both classes are demanding, in that they need to cram a semester's worth of knowledge into just four weeks. That's not to say that I'm not enjoying them, because despite the lack of sleep and late night blurry vision, I'm finding both classes to be extremely interesting. Human Biology might actually be the most fascinating class I've ever taken. I really recommend this class to anyone, no matter what your career is or how old you are. Just don't take it during the summer, when you only have four weeks to learn EVERYTHING about the human body starting at the molecular level and working quickly through all eleven of the organ systems. 

With that said, I have to go study now. If I want to sleep at all this week, I need to make the most of my weekend and get ahead, or in the case of Psychology, rush to turn in my assignments on time. I imagine that one day in the future, I'll actually have the time and brain function necessary to write a proper update on school. Until then, I'll leave you with this little tidbit of information... The outer layer of skin, also called the epidermis, is comprised of stratified squamous epithelial tissue. I know that probably doesn't interest you now, but if you ever take Human Biology, trust me, you'll thank me then.