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Top 5 ways apple cider vinegar boosts health

Apple cider vinegar, a renowned household remedy, has been employed for ages in both cooking and traditional medicinal practices.

Apple-cider-vinegar , Home-remedy , Traditional-medicine , Health-benefits , Mother , Proteins , Enzymes , Beneficial-bacteria , Antimicrobial-properties , Eczema , Top-ways-apple-cider-vinegar-boosts-health

Imaging the smallest atoms provides insights into an enzyme's unusual biochemistry - This could help in the design of enzymes for the chemical industry

When your wounds heal and your liver detoxifies a poison such as histamine you ingested, you can thank the class of enzymes known as copper amine oxidases for their assistance. Identifying the exa ...

Osaka , Japan , Toshihide-okajima , Takato-yano , Motoyasu-adachi , Naomine-yano , Kazuo-kurihara , Katsuyuki-tanizawa , Katsuhiro-kusaka , Takeshi-murakawa , Yoshiaki-kawano , Yasuteru-shigeta

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plastic is broken down. we design enzymes that break down plastic waste. and the resulting chemicals that we make from that, we can manufacture into all sorts of new products like paints, coatings, fertilisers, cleaning products and, ultimately, new plastic. the beauty of biology is that it enables us to carry out chemical reactions at very, very low temperatures, and so we can use enzymes that enable these sorts of chemical reactions to happen at very low temperatures and pressures to break down those plastics into those building blocks to make those new plastics again. there are two sides to this equation — one is we make way too much of this stuff, but the other is we don't actually know what to do with most of it once we're done using it. even if we stopped making plastics tomorrow, we still have 10 billion tons that are just sort of sitting around, taking up space, and we might want to do something with that. wow, that's pretty impressive to see bits of that cup just turn to wax like that.

Products , Plastic , Enzymes , Beauty , Sorts , Chemicals , Cleaning-products , Waste , Fertilisers , Paints , Biology , Coatings

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we can manufacture into all sorts of new products like paints, coatings, fertilisers, cleaning products and, ultimately, new plastic. the beauty of biology is that it enables us to carry out chemical reactions at very, very low temperatures, and so we can use enzymes that enable these sorts of chemical reactions to happen at very low temperatures and pressures to break down those plastics into those building blocks to make those new plastics again. there are two sides to this equation — one is we make way too much of the stuff, but the other is we don't actually know what to do with most of it once we're done using it, right. even if we stopped making plastics tomorrow, we still have 10 billion tons that are just sort of sitting around, taking up space, and we might want to do something with that. wow, that's pretty impressive to see bits of that cup turn to wax like that. i know — when it was still in cup form, i kept tapping it to check it was properly solid, and it was! laughs well, listen, that's it for the shortcut of click

Products , Temperatures , Enzymes , Plastic , Beauty , Reactions , Sorts , Cleaning-products , Fertilisers , Paints , Biology , Coatings

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itjust looks the same. and now, if i take this one, and i tilt it, it flows like a candle. what you will have in nature is that you will have a bottle, biotransforming and becoming a wax, and that wax will then be fully biodegraded, like a banana peel or apple core, by nature. we've looked at other companies before who are trying to solve the plastic problem. what is it about your products that means they can actually do the job? we've published more papers in the space than anyone else, so we put our data out there to be rigorously reviewed by other experts in the field. but what we're trying to do is create something that is capable of moving the needle on a 100 million ton per annum problem. they are continuing to develop the technology, and while there's no silver bullet, there are alternatives being worked on. founded by 22—year—old jacob nathan, epoch biodesign is looking to change the way plastic is broken down. we design enzymes that break down plastic waste. and the resulting chemicals that we make from that,

One , Nature , Same , Biotransformed , Bottle , Candle , Biotransforming , Itjust , Space , Products , Companies , Problem

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million ton per annum problem. they are continuing to develop the technology and while there is no silver bullet, there are alternatives being worked on. founded by 22—year—old jacob nathan, one company is looking to change the way plastic is broken down. igrate to change the way plastic is broken down.— to change the way plastic is broken down. ~ , , , broken down. we design enzymes that break down _ broken down. we design enzymes that break down plastic _ broken down. we design enzymes that break down plastic waste i that break down plastic waste and the resulting chemicals that we make from that, we can manufacture into all sorts of products like paints, clothing, fertilisers, cleaning product and ultimately new plastic. the beauty of biology is that it enables us to carry out chemical reactions at very low temperatures, so we can use enzymes that enable these sorts of chemical reactions to happen at very low temperatures and pressures to break down those plastics into those building blocks to make these new plastics again. there are two sides to this equation, one as we make way too much of the stuff, and the other as we don't actually know what to do with most of it once when i'm using it. even if we stopped making plastics tomorrow, we still have 10 billion tons that

Technology , Annum-problem , Silver-bullet , Alternatives , 22 , 100-million , Company , Products , Plastic , Way , Enzymes , Igrate

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we design enzymes that break down plastic waste. and the resulting chemicals that we make from that, we can manufacture into all sorts of new products like paints, coatings, fertilisers, cleaning products and ultimately new plastic. the beauty of biology is that it enables us to carry out chemical reactions at very, verylow temperatures, so we can use enzymes that enable these sorts of chemical reactions to happen at very low temperatures and pressures, to break down those plastics into those building blocks to make those new plastics again. there are two sides to this equation — one is we make way too much of this stuff, and the other is that we don't actually know what to do with most of it once we're done using it. even if we stopped making plastics tomorrow, we still have 10 billion tons that are just sort of sitting around taking up space, and we might want to do something with that. wow, that's pretty impressive to see bits of that cup just turn to wax like that. i know, when it was still in cup form i kept tapping it to check it was solid,

Products , Plastic , Enzymes , Beauty , Sorts , Chemicals , Cleaning-products , Waste , Fertilisers , Paints , Biology , Coatings

Jesse Watters Primetime

we need to put a little sea salt first thing in our morning. have 12, 16 ounces, a little dash of lemon, that starts to get some enzymes and vitamins going and that starts the rehydration process to get us functioning optimally from there circadian rhythm. all in tune with the rhythms of our own body along with rhythm. life and movement are the next keys. photo receptors not only in our eyes but all the way through our skin cells. if can you get out and get a little bit of light. artificial light will do. as it will keep you from falling asleep at night it will wake you up in the morning. once you start moving. that's when the body questions the cue that all right, we are yesterday to go, own the day. we are ready to go, own the day as a microcosm for owning our life. >> jesse: this should only take 15 minutes. i have been doing it since i read the book. i will wake up and chug mineral water with lemon and little sea salt. i go right outside and get sun

Thing , Sea-salt , Lemon , Vitamins , Enzymes , Rehydration-process , Dash , 16 , 12 , Pacific-all-the-way , Life , Eyes

Talking Business

start for you? first of all, thank you for _ start for you? first of all, thank you for having - start for you? first of all, thank you for having me i start for you? first of all, i thank you for having me on. start for you? first of all, - thank you for having me on. i'm 22, ifinished up school a thank you for having me on. i'm 22, i finished up school a few years ago and i was working on a research project during my final year of high school, i was interested in if there were ways we could use biology to solve the problem of plastic waste. i went looking for microbes and nature that could break down plastic waste. i went into major and took samples and brought them back to the lab and the early results were exciting but i wasn't quite sure of how to progress the science from there somewhere met my co—founder professor of systems and synthetic biology, geico douglas calc, and we went ahead and start of the company together. and start of the company together-— and start of the company touether. g ., . .,, , ., ., together. jacob, explain how the company _ together. jacob, explain how the company works. - together. jacob, explain how the company works. at - together. jacob, explain how. the company works. at epoque together. jacob, explain how- the company works. at epoque we desiuned the company works. at epoque we designed enzymes _ the company works. at epoque we designed enzymes to _ the company works. at epoque we designed enzymes to break - the company works. at epoque we designed enzymes to break down | designed enzymes to break down plastic waste that otherwise go to level or incineration —— epoch. we get plastic waste from our partners and they send it to us for processing and we then turn those plastics into chemicals using our enzymes and then we sell those chemicals to a variety of different applications, everything from

All , Waste , Ways , Ifinished-up-school-a , Biology , Research-project , High-school , Problem , 22 , Big-boss-of-epoque , Samples , Nature

Talking Business

new polymer manufacturing to heat coatings, fertilisers, cleaning products, a whole variety of different industries, and this is a way to make the exact same molecules that we make today using fossil carbon but instead we make it from waste plastic. is there potential for other substances? i'mjust is there potential for other substances? i'm just wondering what these, you know, how far these enzymes can go.- these enzymes can go. yeah, enzymes _ these enzymes can go. yeah, enzymes are _ these enzymes can go. yeah, enzymes are inherently - enzymes are inherently programmable. not always predictable but you can programme them to do different things and so, nature has created a set of functionalities to enable life to happen but those aren't necessarily the same functionalities that humans may want to get rid of a whole bunch of different pollutants or other things we put out into the world. we can programme these enzymes to break down everything from plastics too persistent organic chemicals and also use them to manufacture really all of the chemicals and products that we need to make the world go around. g ., . .,, ., ., ,., around. jacob, how have you found the — around. jacob, how have you found the uk _ around. jacob, how have you found the uk as _ around. jacob, how have you found the uk as a _ around. jacob, how have you found the uk as a place - around. jacob, how have you found the uk as a place to i found the uk as a place to start this business? of course,

Way , Variety , Heat-coatings , Fossil-carbon , Industries , Waste-plastic , Polymer-manufacturing , Fertilisers , Molecules , Enzymes , Substances , I-mjust