Latihan shadowing: The Immune System Explained I - Bacteria Infection
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- Every second of your life you are under attack.0:00
- Billions of bacteria, viruses and fungi are trying to make you their home.0:03
- Still, our bodies have developed a super complex little army with guards, soldiers, intelligence, weapons factories and communicators to protect you from, well, dying.0:07
- For this video, let's assume the immune system has 12 different jobs.0:17
- For example, kill enemies, communicate, etc.0:21
- And it has 21 different cells and two protein forces.0:25
- These cells have up to four different jobs.0:29
- Let's assign them.0:32
- Here are the interactions.0:33
- Now, let's make this understandable.0:35
- First of all, let's add colors to the jobs.0:38
- Now, let's illustrate the cells.0:41
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- The central color represents the main job of the cell, while the surrounding ones represent secondary duties.0:43
- Now, the immune system looks like this.0:49
- Now, the interactions.0:52
- Isn't this complexity just awesome?0:54
- For this video, we will only talk about these cells and ignore the rest.0:56
- So what happens in the case of an infection?1:03
- It's a beautiful day when suddenly a wild rusty nail appears and you cut yourself.1:12
- The first barrier of the immune system is breached, your skin.1:18
- Nearby bacteria seize on the opportunity and enter your wound.1:22
- They start using up the body's resources and double their numbers about every 20 minutes.1:25
- At first, they fly under the radar, but when a certain bacteria population is reached, they change their behavior and start to damage the body by changing the environment around1:31
- them.1:39
- The immune system has to stop them as fast as possible.1:40
- First of all, your guard cells, known as macrophages, intervene.1:44
- They are huge cells that guard every border region of the body.1:48
- Most of the time, they alone can suffocate an attack because they can devour up to 100 intruders each.1:52
- They swallow the intruder whole and trap it inside a membrane.1:58
- Then the enemy gets broken down by enzymes and is killed.2:01
- On top of that, they cause inflammation by ordering the blood vessels to release water into the battlefield, so fighting becomes easier.2:05
- You notice this as a very mild swelling.2:12
- When the macrophages fight for too long, they call in heavy backup by releasing messenger proteins that communicate location and urgency.2:14
- Neutrophiles leave their patrol routes in the blood and move to the battlefield.2:22
- The neutrophiles fight so furiously that they kill healthy cells in the process.2:27
- On top of that, they generate barriers that trap and kill the bacteria.2:31
- They are indeed so deadly that they evolved to commit suicide after five days to prevent them from causing too much damage.2:35
- If this is not enough to stop the invasion, the brain of the immune system kicks in.2:42
- The dendritic cell gets active.2:46
- It reacts to the signals of the soldiers and starts collecting samples from the enemies.2:49
- They rip them into pieces and present the parts on their outer layer.2:53
- Now, the dendritic cell makes a crucial decision.2:57
- Should they call for antivirus forces that eradicate infected body cells or an army of bacteria killers?3:00
- In this case, antibacteria forces are necessary.3:06
- It then travels to the closest lymph node in about a day.3:09
- Here, billions of helper and killer T -cells are waiting to be activated.3:12
- When T -cells are born, they go through a difficult and complicated training process and only a quarter survives.3:17
- The surviving cells are equipped with a specific setup.3:23
- And the dendritic cell is on its way looking for a helper T -cell with a setup that's just right.3:26
- It's looking for a helper T -cell that combined to the parts of the intruders which the dendritic cell has presented on its membrane.3:32
- When it finally finds one, the chain reaction takes place.3:38
- The helper T -cell is activated.3:41
- It quickly duplicates thousands of times.3:44
- Some become memory T -cells that stay in the lymph node and will make you practically immune against this enemy.3:47
- Some travel to the field of battle to help out.3:52
- And the third group goes on to travel to the center of the lymph node to activate a very powerful weapons factory.3:54
- Like the T -cells, they're born with a specific setup.4:00
- And when a B -cell and a T -cell with the same setup meet, hell breaks loose.4:03
- The B -cell duplicates rapidly and starts producing millions of little weapons.4:07
- They work so hard that they would literally die from exhaustion very fast.4:12
- Here, helper T -cells play another important role.4:17
- They stimulate the hardworking factories and tell them, don't die yet, we still need you.4:20
- Keep going.4:24
- This also ensures that the factories die if the infection is over so the body doesn't waste energy or hurt itself.4:26
- But what is produced by the B -cells?4:32
- You've heard of them, of course, antibodies.4:34
- Little proteins that are engineered to bind to the surface of the specific intruder.4:37
- There are even different kinds of antibodies that have slightly different jobs.4:42
- The helper T -cells tell the plasma cells which type is needed the most in this particular invasion.4:46
- Millions of them flood the blood and saturate the body.4:51
- Meanwhile, at the site of infection, the situation is getting dire.4:55
- The intruders have multiplied in number and start hurting the body.4:59
- Guard and attack cells fight hard but also die in the process.5:03
- Helper T -cells support them by ordering them to be more aggressive and to stay alive longer.5:07
- But without help, they can't overwhelm the bacteria.5:12
- But now the second line of defense arrives.5:15
- Billions of antibodies flood the battlefield and disable lots of the intruders rendering them helpless or killing them in the process.5:18
- They also stun the bacteria and make them an easy target.5:25
- Their back is built to connect to killer cells so they can connect and kill the enemy more easily.5:28
- Macrophages are especially good at gnoming up the bacteria which antibodies have attached to.5:34
- Now the balance shifts.5:39
- In a team effort, the infection is wiped out.5:41
- At this point, millions of body cells have already died.5:44
- No big deal, the losses are quickly replenished.5:48
- Most immune cells are now useless and without the constant signals they commit suicide so as not to waste any resources.5:51
- But some stay behind, the memory cells.5:59
- If this enemy is encountered ever again in the future, they will be ready for it and probably kill it before you even notice.6:02
- This was a very, very simplified explanation of parts of the immune system at work.6:09
- Can you imagine how complex this system is?6:14
- Even at this level when we ignore so many players and all the chemistry.6:16
- Life is awfully complicated, but if we take the time to understand it we always encounter endless wonders and great beauty.6:20
- This bird has magical powers.6:30
- Let's see a demonstration.6:33
- Bring in the latest scientific research.6:35
- Wow, that's a lot of complicated stuff about the immune system and all its cells.6:38
- How could someone possibly understand all of this?6:43
- Incredible!6:46
- This overview is delightful and easy to grasp, but still scientifically accurate.6:47
- Let's make it a bit more difficult.6:52
- Can she make all of evolution visible at a glance?6:55
- This is brilliant.6:59
- You can clearly see the relationships between species and how they evolved.7:01
- And look at those illustrations.7:05
- These posters are ready to be shared with the world.7:07
- These very special pieces of Kotzkart are now available on our shop along with many other science products all researched with care and created with love by the burbs with7:11
- magical powers.7:20
- Every Kotzkart product you buy directly funds another moment we get to spend working on our videos.7:21
- Thank you so much for being a part of our story and for making this channel possible.7:28
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