Team:KAIST-Korea/Notebook/Diary/April
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Alcanivorax Borkumensis is the bacteria that releases enzyme that can decompose oil. And we can design like insulin producing system to solve oil spilling problems in ocean. | Alcanivorax Borkumensis is the bacteria that releases enzyme that can decompose oil. And we can design like insulin producing system to solve oil spilling problems in ocean. | ||
problem | problem | ||
- | There already exists this system. | + | There already exists this system. <br> |
=== idea2 === | === idea2 === | ||
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Virus targets specific cells. They generally have one host. With this idea we can make drug delivery system. We can use receptor of coronavirus to target. Since we commonly catch a cold but we don't get seriously hurt, we could use this system on DDS. | Virus targets specific cells. They generally have one host. With this idea we can make drug delivery system. We can use receptor of coronavirus to target. Since we commonly catch a cold but we don't get seriously hurt, we could use this system on DDS. | ||
problem | problem | ||
- | It has to be tested to be proved to be a drug. | + | It has to be tested to be proved to be a drug.<br> |
=== idea3 === | === idea3 === |
Revision as of 10:01, 3 July 2010
April 17, 18, 22Brain storming/gathering ideas idea1Alcanivorax Borkumensis is the bacteria that releases enzyme that can decompose oil. And we can design like insulin producing system to solve oil spilling problems in ocean.
problem
There already exists this system. idea2Virus targets specific cells. They generally have one host. With this idea we can make drug delivery system. We can use receptor of coronavirus to target. Since we commonly catch a cold but we don't get seriously hurt, we could use this system on DDS.
problem
It has to be tested to be proved to be a drug. idea3There are common system call photosynthesis. We can use this idea to make new bacteria to imitate this system. And make this as a paint or we can extract only the chloroplast part alone or using cyanobacteria to make some kind of battery. We can use cyanobacteria because it literally do photosynthesis. And in case of stromatolite we can use it as building structure. problem We have to make e.coli to be as big as chloroplast. And we have to make it to be paint. There is problem when there is no sun or in bad wether. When it rains it could mess up sewage system. idea4Making a NAND gate with E.coli. We can use 0/1 logic with some kind of chemicals as input and output. And we can make middle phase chemical not to mixed up with input and output chemical. We are thinking of lactose tryptophan as input. Since Stanford has basic skills on this we can use this. If we make this, we can make a flip flop which is basic component of memory system. problem If we use chemical as input and output we have to control chemical level. We have to make a system threshold to differentiate 0 or 1. idea5 This idea is making a photographer with yeast. We are making a photographer with RGB cone cell and fluorescence. There are already exists a study about cone cell receptors. We are thinking that we make RGB ratio as 40:20:1 like human retina. Film would be yeast. Therefore it can grow infinitely. problem film is not copiable. We have to be careful not to get light on film after taking a picture. It is not a matter of sensing but processing the images on brain. Therefore we are not sure that it would work. idea6 copyteria. We make a system as a copier. We put dye or degrader in e.coli. it would be important to design threshold. We have to make bacteria to be alive during the coping process and loose its color after the coping process. So we are making bacteria ink. problem We don't know the threshold for the light to be copied. And we might have to do this in dark room. Since the idea is getting the image from the reflected image we don't know how this reflected image would be copied. April 30Brain storming idea1 leeches prevent blood to be harden. And there are product using vampire bat. If we use bacteria this as anti coagulant. We can localize this using bacteria. idea2 Using bacteria we could make a carrier that have chemicals that can cure cancer with targeting. idea3 Using magnetosome we could make a system that can detect magnetic field like other iGEM team detected toxicity. problem This bacteria is reacting passively to the magnetic field. Therefore it is not appropriate for detection. idea4 Want to make a oscillator. There are memory network that remembers. And with that we can combine this with telomere. We can later use this protocol. idea5 Using vibration maybe we can make bacteria make sound. idea6 If we can make a NAND gate, we can make a calculator. Maybe we can make a compare system. And maybe we can use this for comparing concentration difference. And in case of NAND gate maybe we can in one cell system. If we make this in one cell then we can apply on other similar systems. idea7 We can put antigen in mosquitoes saliva And naturally we put antigens in people to get tolerance to malaria. Since malaria mosquitoes are active at night we can use mosquitoes that are active at day. problem It could make a problem if accidently inject too much antigens. idea8 In case of DDS packing is the problem. And we can use vesicle system for packing. idea9 Using Na+ pump maybe we can make electricity. Even there is a similar study that is exists. There are microorganism battery which circulate electron. If we use this system in bacteria we might make battery. idea10 RBC can trap virus because virus can't replicate in RBC. But this system need to use fake cell only to delay. And only has probability to trap. Therefore it is not perfect system. Maybe Since it is making delay, we can use it at rabies because its infection timing is faster than recovering timing. idea11 There are many steps in mammalian cell replication if we make a mammalian cell replicatable in vitro, it would be very convenient in laboratory life. Idea sum-up Maybe we can work on mammalian cell replication tool or DDS that works on respiratory system. So we decided to look for that information.
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