Tiny Bombs in your Blood - The Complement System

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The human body is insane. This video made me feel like I'm a big ass planet with little aliens that take care of me and would lay their lives down for their planet, damn, I'm gonna start leading a healthier lifestyle.

πŸ‘οΈŽ︎ 170 πŸ‘€οΈŽ︎ u/geckill πŸ“…οΈŽ︎ Jul 28 2019 πŸ—«︎ replies

imagine being covered by flies... now, imagine them turning into wasps

no.

πŸ‘οΈŽ︎ 310 πŸ‘€οΈŽ︎ u/Celestial_Tribunal πŸ“…οΈŽ︎ Jul 28 2019 πŸ—«︎ replies

It's nice to know that there is something in me being complemented.

πŸ‘οΈŽ︎ 90 πŸ‘€οΈŽ︎ u/Certainshade86 πŸ“…οΈŽ︎ Jul 28 2019 πŸ—«︎ replies

Like most people I only knew about the WBC system, it was very interesting to see a system that I've never even heard of that protects us. Kurzegesagt is one of the finest and informative channels out there on YouTube.

πŸ‘οΈŽ︎ 58 πŸ‘€οΈŽ︎ u/[deleted] πŸ“…οΈŽ︎ Jul 28 2019 πŸ—«︎ replies

I did A2 Level Biology in Secondary School, and I might have forgotten a few things, but I can't recall ever learning about the Complement System. Fascinating stuff.

now imagine being covered in flies again, now, imagine them being turned into wasps

Could you fucking not, please.

πŸ‘οΈŽ︎ 28 πŸ‘€οΈŽ︎ u/Chrisixx πŸ“…οΈŽ︎ Jul 28 2019 πŸ—«︎ replies

I love these swarm systems that act super intelligently even though they're made up of a lot of stupid things. Its like an ant-colony or a bee-hive.

πŸ‘οΈŽ︎ 23 πŸ‘€οΈŽ︎ u/StaniX πŸ“…οΈŽ︎ Jul 28 2019 πŸ—«︎ replies

The effectiveness of the membrane attack complex depends however on what the target cell is. If the pathogen is eukaryotic like fungi, then Na and H2O rush in and cause the cell to burst. If it's a gram negative bacteria which means they have an outer membrane and a thinner cell wall, so an enzyme can pass through and digest the cell wall in order to diminish the integrity of the cell. Finally if it's gram positive bacteria, that means it has a big cell wall and no plasma membrane which means the MAC is not as effective.

πŸ‘οΈŽ︎ 8 πŸ‘€οΈŽ︎ u/[deleted] πŸ“…οΈŽ︎ Jul 28 2019 πŸ—«︎ replies

Oh god not the complement system. Studying this is a mess of alphabet soup.

πŸ‘οΈŽ︎ 6 πŸ‘€οΈŽ︎ u/omgitsbutters πŸ“…οΈŽ︎ Jul 28 2019 πŸ—«︎ replies

How is this always posted so fast? Are you sitting in front of the Kurzgesagt channel and press F5 all day? If so, how do I apply for his job?

πŸ‘οΈŽ︎ 21 πŸ‘€οΈŽ︎ u/rattatally πŸ“…οΈŽ︎ Jul 28 2019 πŸ—«︎ replies
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Every living being needs to fight off other living beings that want to feast on them.​ <font color="#FEFEFE">Every living being needs to fight off other living beings that want to feast on them.​</font> <font color="#FEFEFE">Every living being needs to fight off other living beings that want to feast on them.​</font> So as multicellular life evolved over billions of years, it came up with ways to defend itself.​ <font color="#FEFEFE">So as multicellular life evolved over billions of years, it came up with ways to defend itself.​</font> <font color="#FEFEFE">So as multicellular life evolved over billions of years, it came up with ways to defend itself.​</font> Today humans have a sophisticated defense network,​ <font color="#FEFEFE">Today humans have a sophisticated defense network,​</font> <font color="#FEFEFE">Today humans have a sophisticated defense network,​</font> like physical barriers, defense cells, and weapons factories.​ <font color="#FEFEFE">like physical barriers, defense cells, and weapons factories.​</font> <font color="#FEFEFE">like physical barriers, defense cells, and weapons factories.​</font> But one of the most important defenses of our body is largely unknown:​ <font color="#FEFEFE">But one of the most important defenses of our body is largely unknown:​</font> <font color="#FEFEFE">But one of the most important defenses of our body is largely unknown:​</font> The Complement System​ <font color="#FEFEFE">The Complement System​</font> <font color="#FEFEFE">The Complement System​</font> It evolved over 700 million years ago and is an army of over 30 different proteins​ <font color="#FEFEFE">It evolved over 700 million years ago and is an army of over 30 different proteins​</font> <font color="#FEFEFE">It evolved over 700 million years ago and is an army of over 30 different proteins​</font> that work together in a complex and elegant dance to stop intruders.​ <font color="#FEFEFE">that work together in a complex and elegant dance to stop intruders.​</font> <font color="#FEFEFE">that work together in a complex and elegant dance to stop intruders.​</font> All in all, about 15 quintillion of them are saturating every fluid in your body right now.​ <font color="#FEFEFE">All in all, about 15 quintillion of them are saturating every fluid in your body right now.​</font> <font color="#FEFEFE">All in all, about 15 quintillion of them are saturating every fluid in your body right now.​</font> Guided by nothing but chemistry,​ <font color="#FEFEFE">Guided by nothing but chemistry,​</font> <font color="#FEFEFE">Guided by nothing but chemistry,​</font> these proteins are one of the most effective weapons we have against invaders.​ <font color="#FEFEFE">these proteins are one of the most effective weapons we have against invaders.​</font> <font color="#FEFEFE">these proteins are one of the most effective weapons we have against invaders.​</font> Many other parts of the immune system are just tools to activate the Complement System.​ <font color="#FEFEFE">Many other parts of the immune system are just tools to activate the Complement System.​</font> <font color="#FEFEFE">Many other parts of the immune system are just tools to activate the Complement System.​</font> But it's also really dangerous.​ <font color="#FEFEFE">But it's also really dangerous.​</font> <font color="#FEFEFE">But it's also really dangerous.​</font> Imagine having trillions of little bombs inside your blood that could go off at any moment.​ <font color="#FEFEFE">Imagine having trillions of little bombs inside your blood that could go off at any moment.​</font> <font color="#FEFEFE">Imagine having trillions of little bombs inside your blood that could go off at any moment.​</font> So our cells use numerous mechanisms to prevent​ ​complement from accidentally attacking ​​<i>them​</i>.​ <font color="#FEFEFE">So our cells use numerous mechanisms to prevent​ ​complement from accidentally attacking ​​<i>them​</i>.​</font> <font color="#FEFEFE">So our cells use numerous mechanisms to prevent​ ​complement from accidentally attacking ​​<i>them​</i>.​</font> Okay, what exactly does it do and what makes it so dangerous?​ <font color="#FEFEFE">Okay, what exactly does it do and what makes it so dangerous?​</font> <font color="#FEFEFE">Okay, what exactly does it do and what makes it so dangerous?​</font> In a nutshell, The Complement System does three things:​ <font color="#FEFEFE">In a nutshell, The Complement System does three things:​</font> <font color="#FEFEFE">In a nutshell, The Complement System does three things:​</font> it cripples enemies, it activates the immune system, and it rips holes in things until they die.​ <font color="#FEFEFE">it cripples enemies, it activates the immune system, and it rips holes in things until they die.​</font> <font color="#FEFEFE">it cripples enemies, it activates the immune system, and it rips holes in things until they die.​</font> But, how?​ <font color="#FEFEFE">But, how?​</font> <font color="#FEFEFE">But, how?​</font> After all, these are mindless proteins randomly drifting around without will or direction.​ <font color="#FEFEFE">After all, these are mindless proteins randomly drifting around without will or direction.​</font> <font color="#FEFEFE">After all, these are mindless proteins randomly drifting around without will or direction.​</font> Well, this is actually part of the strategy.​ <font color="#FEFEFE">Well, this is actually part of the strategy.​</font> <font color="#FEFEFE">Well, this is actually part of the strategy.​</font> Complement proteins float around in a sort-of passive mode.​ <font color="#FEFEFE">Complement proteins float around in a sort-of passive mode.​</font> <font color="#FEFEFE">Complement proteins float around in a sort-of passive mode.​</font> They do nothing, until they get activated and change their shape.​ <font color="#FEFEFE">They do nothing, until they get activated and change their shape.​</font> <font color="#FEFEFE">They do nothing, until they get activated and change their shape.​</font> In the world of proteins, your shape determines what you can and cannot do.​ <font color="#FEFEFE">In the world of proteins, your shape determines what you can and cannot do.​</font> <font color="#FEFEFE">In the world of proteins, your shape determines what you can and cannot do.​</font> Because shape determines what you can interact with and in what way.​ <font color="#FEFEFE">Because shape determines what you can interact with and in what way.​</font> <font color="#FEFEFE">Because shape determines what you can interact with and in what way.​</font> For example, in your passive shape you might do nothing.​ <font color="#FEFEFE">For example, in your passive shape you might do nothing.​</font> <font color="#FEFEFE">For example, in your passive shape you might do nothing.​</font> In your active shape, however, you might, for example, change the shape of other proteins​ <font color="#FEFEFE">In your active shape, however, you might, for example, change the shape of other proteins​</font> <font color="#FEFEFE">In your active shape, however, you might, for example, change the shape of other proteins​</font> activating them so they can activate others.​ <font color="#FEFEFE">activating them so they can activate others.​</font> <font color="#FEFEFE">activating them so they can activate others.​</font> Mechanisms like this one can start cascades that spread very quickly.​ <font color="#FEFEFE">Mechanisms like this one can start cascades that spread very quickly.​</font> <font color="#FEFEFE">Mechanisms like this one can start cascades that spread very quickly.​</font> Imagine the complement proteins as being like millions of matches very close together.​ <font color="#FEFEFE">Imagine the complement proteins as being like millions of matches very close together.​</font> <font color="#FEFEFE">Imagine the complement proteins as being like millions of matches very close together.​</font> Once one catches fire, it ignites the ones around it.​ <font color="#FEFEFE">Once one catches fire, it ignites the ones around it.​</font> <font color="#FEFEFE">Once one catches fire, it ignites the ones around it.​</font> They ignite more and suddenly you have a big fire.​ <font color="#FEFEFE">They ignite more and suddenly you have a big fire.​</font> <font color="#FEFEFE">They ignite more and suddenly you have a big fire.​</font> To show the actual mechanisms of The Complement System is a tad complicated and overwhelming.​ <font color="#FEFEFE">To show the actual mechanisms of The Complement System is a tad complicated and overwhelming.​</font> <font color="#FEFEFE">To show the actual mechanisms of The Complement System is a tad complicated and overwhelming.​</font> So, we'll simplify here.​ <font color="#FEFEFE">So, we'll simplify here.​</font> <font color="#FEFEFE">So, we'll simplify here.​</font> Now, let's imagine you cut yourself and a bunch of bacteria enter the wound​ <font color="#FEFEFE">Now, let's imagine you cut yourself and a bunch of bacteria enter the wound​</font> <font color="#FEFEFE">Now, let's imagine you cut yourself and a bunch of bacteria enter the wound​</font> and make it into the surrounding tissue.​ <font color="#FEFEFE">and make it into the surrounding tissue.​</font> <font color="#FEFEFE">and make it into the surrounding tissue.​</font> Our complement attack begins with C3.​ <font color="#FEFEFE">Our complement attack begins with C3.​</font> <font color="#FEFEFE">Our complement attack begins with C3.​</font> C3 is the first match, the initial spark that will start our fire.​ <font color="#FEFEFE">C3 is the first match, the initial spark that will start our fire.​</font> <font color="#FEFEFE">C3 is the first match, the initial spark that will start our fire.​</font> And to do that, C3 needs to switch from passive to active.​ <font color="#FEFEFE">And to do that, C3 needs to switch from passive to active.​</font> <font color="#FEFEFE">And to do that, C3 needs to switch from passive to active.​</font> How this happens is complex, but let's just say it can happen randomly​ <font color="#FEFEFE">How this happens is complex, but let's just say it can happen randomly​</font> <font color="#FEFEFE">How this happens is complex, but let's just say it can happen randomly​</font> through other complement proteins that bind to enemies or through antibodies.​ <font color="#FEFEFE">through other complement proteins that bind to enemies or through antibodies.​</font> <font color="#FEFEFE">through other complement proteins that bind to enemies or through antibodies.​</font> All you really need to know is that C3 breaks into two smaller proteins,​ <font color="#FEFEFE">All you really need to know is that C3 breaks into two smaller proteins,​</font> <font color="#FEFEFE">All you really need to know is that C3 breaks into two smaller proteins,​</font> C3a and C3b, that are now activated.​ <font color="#FEFEFE">C3a and C3b, that are now activated.​</font> <font color="#FEFEFE">C3a and C3b, that are now activated.​</font> One of these parts, the C3b protein, is like a seeker missile specialized in bacteria, fungi, and viruses.​ <font color="#FEFEFE">One of these parts, the C3b protein, is like a seeker missile specialized in bacteria, fungi, and viruses.​</font> <font color="#FEFEFE">One of these parts, the C3b protein, is like a seeker missile specialized in bacteria, fungi, and viruses.​</font> It has a fraction of a second to find a victim or it will be neutralized by water molecules.​ <font color="#FEFEFE">It has a fraction of a second to find a victim or it will be neutralized by water molecules.​</font> <font color="#FEFEFE">It has a fraction of a second to find a victim or it will be neutralized by water molecules.​</font> If C3b does find a target, it anchors itself very tightly to its surface and doesn't let go.​ <font color="#FEFEFE">If C3b does find a target, it anchors itself very tightly to its surface and doesn't let go.​</font> <font color="#FEFEFE">If C3b does find a target, it anchors itself very tightly to its surface and doesn't let go.​</font> By doing so, the protein changes its shape again.​ <font color="#FEFEFE">By doing so, the protein changes its shape again.​</font> <font color="#FEFEFE">By doing so, the protein changes its shape again.​</font> In its new shape, it's now able to grab other proteins and start a small cascade,​ <font color="#FEFEFE">In its new shape, it's now able to grab other proteins and start a small cascade,​</font> <font color="#FEFEFE">In its new shape, it's now able to grab other proteins and start a small cascade,​</font> changing its shape multiple times, adding other complement proteins to itself.​ <font color="#FEFEFE">changing its shape multiple times, adding other complement proteins to itself.​</font> <font color="#FEFEFE">changing its shape multiple times, adding other complement proteins to itself.​</font> Finally, it transforms itself into a recruiting platform known as C3 Convertase.​ <font color="#FEFEFE">Finally, it transforms itself into a recruiting platform known as C3 Convertase.​</font> <font color="#FEFEFE">Finally, it transforms itself into a recruiting platform known as C3 Convertase.​</font> This platform is an expert at activating more C3 proteins that start the whole cycle anew.​ <font color="#FEFEFE">This platform is an expert at activating more C3 proteins that start the whole cycle anew.​</font> <font color="#FEFEFE">This platform is an expert at activating more C3 proteins that start the whole cycle anew.​</font> An amplification loop begins.​ <font color="#FEFEFE">An amplification loop begins.​</font> <font color="#FEFEFE">An amplification loop begins.​</font> Soon, thousands of proteins cover the bacteria.​ <font color="#FEFEFE">Soon, thousands of proteins cover the bacteria.​</font> <font color="#FEFEFE">Soon, thousands of proteins cover the bacteria.​</font> For the bacteria, this is very bad.​ <font color="#FEFEFE">For the bacteria, this is very bad.​</font> <font color="#FEFEFE">For the bacteria, this is very bad.​</font> It can cripple the bacteria and make them helpless, or slow them down.​ <font color="#FEFEFE">It can cripple the bacteria and make them helpless, or slow them down.​</font> <font color="#FEFEFE">It can cripple the bacteria and make them helpless, or slow them down.​</font> Imagine being covered by thousands of flies.​ <font color="#FEFEFE">Imagine being covered by thousands of flies.​</font> <font color="#FEFEFE">Imagine being covered by thousands of flies.​</font> But, there's more.​ <font color="#FEFEFE">But, there's more.​</font> <font color="#FEFEFE">But, there's more.​</font> Do you remember the other part of C3β€”the C3a protein?​ <font color="#FEFEFE">Do you remember the other part of C3β€”the C3a protein?​</font> <font color="#FEFEFE">Do you remember the other part of C3β€”the C3a protein?​</font> C3a is like a distress beacon.​ <font color="#FEFEFE">C3a is like a distress beacon.​</font> <font color="#FEFEFE">C3a is like a distress beacon.​</font> Thousands of them flood away from the site of battle screaming for attention.​ <font color="#FEFEFE">Thousands of them flood away from the site of battle screaming for attention.​</font> <font color="#FEFEFE">Thousands of them flood away from the site of battle screaming for attention.​</font> Passive immune cells notice the C3a proteins,​ <font color="#FEFEFE">Passive immune cells notice the C3a proteins,​</font> <font color="#FEFEFE">Passive immune cells notice the C3a proteins,​</font> and awaken from their slumber to follow the protein tracks to the site of infection.​ <font color="#FEFEFE">and awaken from their slumber to follow the protein tracks to the site of infection.​</font> <font color="#FEFEFE">and awaken from their slumber to follow the protein tracks to the site of infection.​</font> The more alarm proteins they encounter, the more aggressive they get.​ <font color="#FEFEFE">The more alarm proteins they encounter, the more aggressive they get.​</font> <font color="#FEFEFE">The more alarm proteins they encounter, the more aggressive they get.​</font> This way, complement guides reinforcements exactly to the place where they're needed the most.​ <font color="#FEFEFE">This way, complement guides reinforcements exactly to the place where they're needed the most.​</font> <font color="#FEFEFE">This way, complement guides reinforcements exactly to the place where they're needed the most.​</font> So far, the complement has slowed down the invaders and called for help.​ <font color="#FEFEFE">So far, the complement has slowed down the invaders and called for help.​</font> <font color="#FEFEFE">So far, the complement has slowed down the invaders and called for help.​</font> Now, it's beginning to actively help to kill the enemy.​ <font color="#FEFEFE">Now, it's beginning to actively help to kill the enemy.​</font> <font color="#FEFEFE">Now, it's beginning to actively help to kill the enemy.​</font> The first immune cells to arrive at the battlefield are ​​<i>phagocytes​</i>.​ <font color="#FEFEFE">The first immune cells to arrive at the battlefield are ​​<i>phagocytes​</i>.​</font> <font color="#FEFEFE">The first immune cells to arrive at the battlefield are ​​<i>phagocytes​</i>.​</font> Which means, cells that swallow you whole, trap you in a tiny prison, and then kill you with acid.​ <font color="#FEFEFE">Which means, cells that swallow you whole, trap you in a tiny prison, and then kill you with acid.​</font> <font color="#FEFEFE">Which means, cells that swallow you whole, trap you in a tiny prison, and then kill you with acid.​</font> But, to swallow an enemy, they need to grab it first.​ <font color="#FEFEFE">But, to swallow an enemy, they need to grab it first.​</font> <font color="#FEFEFE">But, to swallow an enemy, they need to grab it first.​</font> Which is not easy because bacteria prefer not to be grabbed and are sort-of slippery.​ <font color="#FEFEFE">Which is not easy because bacteria prefer not to be grabbed and are sort-of slippery.​</font> <font color="#FEFEFE">Which is not easy because bacteria prefer not to be grabbed and are sort-of slippery.​</font> But now, the complement that has anchored itself to the bacteria​ <font color="#FEFEFE">But now, the complement that has anchored itself to the bacteria​</font> <font color="#FEFEFE">But now, the complement that has anchored itself to the bacteria​</font> acts as a sort-of glue that makes it easy for the immune cells to catch their victims.​ <font color="#FEFEFE">acts as a sort-of glue that makes it easy for the immune cells to catch their victims.​</font> <font color="#FEFEFE">acts as a sort-of glue that makes it easy for the immune cells to catch their victims.​</font> But it gets even better.​ <font color="#FEFEFE">But it gets even better.​</font> <font color="#FEFEFE">But it gets even better.​</font> Imagine being covered in flies again.​ <font color="#FEFEFE">Imagine being covered in flies again.​</font> <font color="#FEFEFE">Imagine being covered in flies again.​</font> Now, imagine them turning into wasps.​ <font color="#FEFEFE">Now, imagine them turning into wasps.​</font> <font color="#FEFEFE">Now, imagine them turning into wasps.​</font> Another cascade is about to begin.​ <font color="#FEFEFE">Another cascade is about to begin.​</font> <font color="#FEFEFE">Another cascade is about to begin.​</font> On the surface of a bacteria, the C3 recruitment platform changes its shape again​ <font color="#FEFEFE">On the surface of a bacteria, the C3 recruitment platform changes its shape again​</font> <font color="#FEFEFE">On the surface of a bacteria, the C3 recruitment platform changes its shape again​</font> and begins to recruit new proteins.​ <font color="#FEFEFE">and begins to recruit new proteins.​</font> <font color="#FEFEFE">and begins to recruit new proteins.​</font> Together, they begin the construction of a bigger structure: a Membrane Attack Complex.​ <font color="#FEFEFE">Together, they begin the construction of a bigger structure: a Membrane Attack Complex.​</font> <font color="#FEFEFE">Together, they begin the construction of a bigger structure: a Membrane Attack Complex.​</font> Piece-by-piece, new proteins shaped like long spears anchor themselves deep into the bacteria's membranes,​ <font color="#FEFEFE">Piece-by-piece, new proteins shaped like long spears anchor themselves deep into the bacteria's membranes,​</font> <font color="#FEFEFE">Piece-by-piece, new proteins shaped like long spears anchor themselves deep into the bacteria's membranes,​</font> until they rip a hole into them that can't be closed again.​ <font color="#FEFEFE">until they rip a hole into them that can't be closed again.​</font> <font color="#FEFEFE">until they rip a hole into them that can't be closed again.​</font> Fluids rush into the bacteria and their insides spill out.​ <font color="#FEFEFE">Fluids rush into the bacteria and their insides spill out.​</font> <font color="#FEFEFE">Fluids rush into the bacteria and their insides spill out.​</font> They bleed to death.​ <font color="#FEFEFE">They bleed to death.​</font> <font color="#FEFEFE">They bleed to death.​</font> The remaining bacteria are maimed and distracted by the complement,​ <font color="#FEFEFE">The remaining bacteria are maimed and distracted by the complement,​</font> <font color="#FEFEFE">The remaining bacteria are maimed and distracted by the complement,​</font> and quickly taken care of by the arriving immune cells.​ <font color="#FEFEFE">and quickly taken care of by the arriving immune cells.​</font> <font color="#FEFEFE">and quickly taken care of by the arriving immune cells.​</font> The invasion has been nipped in the bud before it had the opportunity to become dangerous.​ <font color="#FEFEFE">The invasion has been nipped in the bud before it had the opportunity to become dangerous.​</font> <font color="#FEFEFE">The invasion has been nipped in the bud before it had the opportunity to become dangerous.​</font> You probably didn't even notice it.​ <font color="#FEFEFE">You probably didn't even notice it.​</font> <font color="#FEFEFE">You probably didn't even notice it.​</font> But while bacteria are not happy about complement,​ <font color="#FEFEFE">But while bacteria are not happy about complement,​</font> <font color="#FEFEFE">But while bacteria are not happy about complement,​</font> the enemies it might be the most useful against are actually viruses.​ <font color="#FEFEFE">the enemies it might be the most useful against are actually viruses.​</font> <font color="#FEFEFE">the enemies it might be the most useful against are actually viruses.​</font> Viruses have one problem: they need to travel from cell to cell.​ <font color="#FEFEFE">Viruses have one problem: they need to travel from cell to cell.​</font> <font color="#FEFEFE">Viruses have one problem: they need to travel from cell to cell.​</font> Outside of cells, they're basically hoping to randomly bump against a cell to infect by pure chance.​ <font color="#FEFEFE">Outside of cells, they're basically hoping to randomly bump against a cell to infect by pure chance.​</font> <font color="#FEFEFE">Outside of cells, they're basically hoping to randomly bump against a cell to infect by pure chance.​</font> Here, they're completely defenseless.​ <font color="#FEFEFE">Here, they're completely defenseless.​</font> <font color="#FEFEFE">Here, they're completely defenseless.​</font> And here, complement is able to intercept and cripple them,​ <font color="#FEFEFE">And here, complement is able to intercept and cripple them,​</font> <font color="#FEFEFE">And here, complement is able to intercept and cripple them,​</font> so they become harmless and guide the immune system to devour them.​ <font color="#FEFEFE">so they become harmless and guide the immune system to devour them.​</font> <font color="#FEFEFE">so they become harmless and guide the immune system to devour them.​</font> Without complement, virus infections would be a lot more deadly.​ <font color="#FEFEFE">Without complement, virus infections would be a lot more deadly.​</font> <font color="#FEFEFE">Without complement, virus infections would be a lot more deadly.​</font> But wait, if we have such an effective weapon, why do we ever get sick?​ <font color="#FEFEFE">But wait, if we have such an effective weapon, why do we ever get sick?​</font> <font color="#FEFEFE">But wait, if we have such an effective weapon, why do we ever get sick?​</font> The problem is that in a war, both sides adapt.​ <font color="#FEFEFE">The problem is that in a war, both sides adapt.​</font> <font color="#FEFEFE">The problem is that in a war, both sides adapt.​</font> For example, when the ​​<i>vaccinia virus​</i> infects a cell,​ <font color="#FEFEFE">For example, when the ​​<i>vaccinia virus​</i> infects a cell,​</font> <font color="#FEFEFE">For example, when the ​​<i>vaccinia virus​</i> infects a cell,​</font> it forces it to produce a protein that shuts complement activation down.​ <font color="#FEFEFE">it forces it to produce a protein that shuts complement activation down.​</font> <font color="#FEFEFE">it forces it to produce a protein that shuts complement activation down.​</font> This way, the virus creates safe zones around the cells it infects.​ <font color="#FEFEFE">This way, the virus creates safe zones around the cells it infects.​</font> <font color="#FEFEFE">This way, the virus creates safe zones around the cells it infects.​</font> When it kills them, and tries to infect more, it has a higher chance of being successful.​ <font color="#FEFEFE">When it kills them, and tries to infect more, it has a higher chance of being successful.​</font> <font color="#FEFEFE">When it kills them, and tries to infect more, it has a higher chance of being successful.​</font> Or some bacteria, for example, can grab certain molecules from the blood that keep the complement system calm​ <font color="#FEFEFE">Or some bacteria, for example, can grab certain molecules from the blood that keep the complement system calm​</font> <font color="#FEFEFE">Or some bacteria, for example, can grab certain molecules from the blood that keep the complement system calm​</font> and make themselves invisible.​ <font color="#FEFEFE">and make themselves invisible.​</font> <font color="#FEFEFE">and make themselves invisible.​</font> So the complement system, while being extremely important,​ <font color="#FEFEFE">So the complement system, while being extremely important,​</font> <font color="#FEFEFE">So the complement system, while being extremely important,​</font> is only one player in the complex and beautiful organization that is our immune system.​ <font color="#FEFEFE">is only one player in the complex and beautiful organization that is our immune system.​</font> <font color="#FEFEFE">is only one player in the complex and beautiful organization that is our immune system.​</font> A beautiful example of how many mindless things can do smart things together.​ <font color="#FEFEFE">A beautiful example of how many mindless things can do smart things together.​</font> <font color="#FEFEFE">A beautiful example of how many mindless things can do smart things together.​</font> This video was sponsored by ​​<i>you​</i>.​ <font color="#FEFEFE">This video was sponsored by ​​<i>you​</i>.​</font> <font color="#FEFEFE">This video was sponsored by ​​<i>you​</i>.​</font> Without your direct support, this channel would not exist.​ <font color="#FEFEFE">Without your direct support, this channel would not exist.​</font> <font color="#FEFEFE">Without your direct support, this channel would not exist.​</font> And it's hard to overstate how grateful we are for that.​ <font color="#FEFEFE">And it's hard to overstate how grateful we are for that.​</font> <font color="#FEFEFE">And it's hard to overstate how grateful we are for that.​</font> In 2019, an average kurzgesagt video took at least 1200 hours to produce.​ <font color="#FEFEFE">In 2019, an average kurzgesagt video took at least 1200 hours to produce.​</font> <font color="#FEFEFE">In 2019, an average kurzgesagt video took at least 1200 hours to produce.​</font> We need months to research and write our scripts, clear them with experts,​ <font color="#FEFEFE">We need months to research and write our scripts, clear them with experts,​</font> <font color="#FEFEFE">We need months to research and write our scripts, clear them with experts,​</font> illustrate and animate every scene from scratch, and to compose original music.​ <font color="#FEFEFE">illustrate and animate every scene from scratch, and to compose original music.​</font> <font color="#FEFEFE">illustrate and animate every scene from scratch, and to compose original music.​</font> This is only possible through a combination of sponsorships,​ <font color="#FEFEFE">This is only possible through a combination of sponsorships,​</font> <font color="#FEFEFE">This is only possible through a combination of sponsorships,​</font> your support on Patreon, and selling merch​ <font color="#FEFEFE">your support on Patreon, and selling merch​</font> <font color="#FEFEFE">your support on Patreon, and selling merch​</font> like this poster and postcards we made about The Complement System.​ <font color="#FEFEFE">like this poster and postcards we made about The Complement System.​</font> <font color="#FEFEFE">like this poster and postcards we made about The Complement System.​</font> If you, yourself, want to support us,​ <font color="#FEFEFE">If you, yourself, want to support us,​</font> <font color="#FEFEFE">If you, yourself, want to support us,​</font> you can do so by watching, becoming a Patreon, and maybe getting a personal bird.​ <font color="#FEFEFE">you can do so by watching, becoming a Patreon, and maybe getting a personal bird.​</font> <font color="#FEFEFE">you can do so by watching, becoming a Patreon, and maybe getting a personal bird.​</font> Or, by getting one of our calendars or posters.​ <font color="#FEFEFE">Or, by getting one of our calendars or posters.​</font> <font color="#FEFEFE">Or, by getting one of our calendars or posters.​</font> The purpose of kurzgesagt is to make the best videos we can​ <font color="#FEFEFE">The purpose of kurzgesagt is to make the best videos we can​</font> <font color="#FEFEFE">The purpose of kurzgesagt is to make the best videos we can​</font> and to make science more approachable.​ <font color="#FEFEFE">and to make science more approachable.​</font> <font color="#FEFEFE">and to make science more approachable.​</font> Thank you so much for making this possible.​ <font color="#FEFEFE">Thank you so much for making this possible.​</font> <font color="#FEFEFE">Thank you so much for making this possible.​</font> <i>​​</i>
Info
Channel: Kurzgesagt – In a Nutshell
Views: 6,351,283
Rating: 4.9762506 out of 5
Keywords: Complement system, Immune system, virus, bacterium, funghi, bacteria, cell, Phagocyte, Phagocytes, Phagocytosis, Antibody, Protein, proteins, C3, C3a, C3b, C3 Convertase, C5 Convertase, C5b, Membrane Attack Complex, Blood Stream, Blood, Injury, Infection, Infected Cell
Id: BSypUV6QUNw
Channel Id: undefined
Length: 8min 40sec (520 seconds)
Published: Sun Jul 28 2019
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