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..koji kuratz Rusi proizvode.. :D

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Post by Guest Sun 2 Feb - 14:19

https://www.srbijadanas.com/vesti/svet/okrutnoj-bolesti-najzad-dosao-kraj-rusi-napravili-robota-koji-unistava-rak-video-2020-02-02
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Post by Guest Sun 2 Feb - 14:19

..koji kuratz Rusi proizvode.. :D Nanor
02.02.2020. • 09:07 Srbija Danas/Agencije
OKRUTNOJ BOLESTI NAJZAD DOŠAO KRAJ: Rusi napravili robota koji RAZARA RAK! (VIDEO)
Foto: YoutubePrintscreen/ ColdFusion
Rezultati istraživanja su objavljeni u listu "Chemistry – A European journal" 



Naučnici sa Univerziteta ITMO u Sankt Peterburgu predložili su novi koncept za borbu protiv onkoloških oboljenja. Napravili su nanorobota od DNK fragmenata koji ne samo da može uništiti ćelije raka, već ih istovremeno i prepoznaje u celom telu.
NAJAVLJUJU NEGZIT! Evropska unija se raspada, sledeća koja napušta savez je Holandija?..koji kuratz Rusi proizvode.. :D Profimedia-0271672205

[size=14]NAJAVLJUJU NEGZIT! Evropska unija se raspada, sledeća koja napušta savez je Holandija?

ZABELEŽEN PRVI SMRTNI SLUČAJ OD KORONAVIRUSA VAN KINE! Broj žrtava se popeo na 305!..koji kuratz Rusi proizvode.. :D Vrs

ZABELEŽEN PRVI SMRTNI SLUČAJ OD KORONAVIRUSA VAN KINE! Broj žrtava se popeo na 305!

DUBOKO ZABRINUT ZBOG ESKALACIJE SUKOBA! Gutereš pozvao na prekid sukoba u Siriji..koji kuratz Rusi proizvode.. :D Guteres

DUBOKO ZABRINUT ZBOG ESKALACIJE SUKOBA! Gutereš pozvao na prekid sukoba u Siriji

Stvaranje efikasnih lekova za borbu protiv raka, koji ne bi izazvali ozbiljne neželjene efekte, jedan je od najvažnijih zadataka za hemičare, farmaceute i biologe. Naučnici polažu velike nade u gensku terapiju koja je usmerena na borbu protiv mutacija koje se odvijaju u ljudskim ćelijama. 
- DNK je osnova ćelije. Ona sadrži genetičke informacije potrebne da bi se kodirali proteini, koje su od životnog značaja za postojanje ćelije - kaže Katerina Gončarova, jedan od autora istraživanja.
- Kada ćelija postane kancerozna, događa se "kvar" u genomu. Nakon toga ona počinje da sintetiše "štetne" proteine, a ne one koji su potrebni našem organizmu. Kao rezultat, ćelije počinju nekontrolisano da se razmnožavaju i proces se ne može zaustaviti - tumorska masa postaje sve veća i veća.  
Kako funkcioništu nanoroboti  u borbi protiv raka
Naučnici sa Univerziteta u Sankt Peterburgu su sa američkim kolegama sa Univerziteta Centralna Florida izučili svojstva nekih dezoksiriboza (DNK) koje mogu prepoznati patogene molekule RNK i preseći ih.

Autori su sintetisali u laboratoriji dezoksiriboze koje se same kopiraju i na njihovoj osnovi stvorili neku vrstu nanorobota koji je sposoban da označi određene vrste ćelija raka uz pomoć svetlećih molekula i uništi ih. 
- Naš DNK-nanorobot se sastoji od dva dela: detekcionog i terapeutskog. Terapeutski deo preseca patogenu RNK: što je više sečemo, manje se proizvodi protein koji je štetan. Drugi deo našeg robota omogućava nam da otkrijemo pogođene ćelije - uz prisustvo "pogrešne" RNK u ćeliji naša supstanca se kombinuje sa oligonukleotidima (jednostruki polulanci DNK ili RNK) koji se veštačkim putem unose u ćeliju, seče lance i tada dolazi do fluorescencije - objašnjava Gončarova.  
Naučnici su testirali svoj izum na modelu gena KRAS, koji za većinu onkoloških oboljenja služi kao "molekularni prekidač" koji aktivira neograničeni rast ćelija. Nanorobot je uspešno otkrio RNK koja je odgovorna za sintezu patogenih proteina i uspeo je da raseče. Novi nano-uređaj selektivno osvetljava i seče molekule RNK, vezane za KRAS, ignorišući sve ostale molekule.   
Pred naučnicima su eksperimenti na živim ćelijama i životinjama. Takođe mora se rešiti problem "isporuke" nanorobota u pogođene ćelije. U toku su radovi na nano-kontejnerima za ciljane isporuke preparata u različite laboratorije, uključujući i onu na Univerzitetu ITMO. 
Iz pres-službe Univerziteta ITMO su istakli da je cena još jedna potencijalna prednost predloženog koncepta. Izrada takvog nanorobota čak i u laboratorijskim uslovima košta svega oko 1000-1500 rubalja (15 do 20 evra). 
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Post by AssadNaPodmornici Sun 2 Feb - 14:19

Srbija danas bog te hebo hahaha

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Post by Guest Sun 2 Feb - 14:20

komentar u vezi temije Yoda..ono...??
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Post by Guest Sun 2 Feb - 14:21

dakle objavljeno OVDJE,sto niej nesto sitno da znaci..

Rezultati istraživanja su objavljeni u listu "Chemistry – A European journal" 
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Post by Guest Sun 2 Feb - 14:23

evo Yoda,ako ti smeta srpski portal..doduse rusi je,pa tako...Rusi su srbi..i vice versa.. lol! lol! lol!
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Post by Guest Sun 2 Feb - 14:23

https://sputniknews.com/science/202001291078173403-russian-researchers-invent-super-low-cost-cancer-fighting-nanobots/
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Post by AssadNaPodmornici Sun 2 Feb - 14:24

srbija danas , hahaha

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Post by Guest Sun 2 Feb - 14:24

pa svakako bolje nego Hrvacka danas..ybtg,a vi jos u -Juniji..da niste,srbi bi rulali nad vama
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Post by AssadNaPodmornici Sun 2 Feb - 14:25

Legendovich wrote:evo Yoda,ako ti smeta srpski portal..doduse rusi je,pa tako...Rusi su srbi..i vice versa.. lol! lol! lol!
pa normalno da smeta srpski portal jer u 99% vremena spamanju fake vijesti. imaš i kod nas logično, yutarnji, dnevno, pirznajem, istinomprotiv laži, tportal,  stavi neki reelvatniji izvor pa ćemo komentirati

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Post by Guest Sun 2 Feb - 14:25

AssadNaPodmornici wrote:
Legendovich wrote:evo Yoda,ako ti smeta srpski portal..doduse rusi je,pa tako...Rusi su srbi..i vice versa.. lol! lol! lol!
pa normalno da smeta srpski portal jer u 99% vremena spamanju fake vijesti. imaš i kod nas logično, yutarnji, dnevno, pirznajem, istinomprotiv laži, tportal,  stavi neki reelvatniji izvor pa ćemo komentirati
evo da mi se ne jogunish..

cinjenica objavljeno u EJ,a onda link na ..

[url=Russian Researchers Invent Super Low-Cost Cancer-Fighting Nanobots © CC0 TECH 17:03 GMT 29.01.2020(updated 17:11 GMT 29.01.2020) Get short URL2160 Subscribe The concept of using microscopic man-made devices for everything from cancer treatment to dislodging blood clots and treating heart disease has been around for quite some time, but only recently have doctors and scientists worldwide begun working to make the leap from scientific theory to practical reality. Researchers from the Information Technologies, Mechanics and Optics University (ITMO) in St. Petersburg, Russia have developed a new cancer-fighting tool using tiny biological nanorobots created from DNA fragments capable of searching out and destroying some types of cancer cells. In a recently published article in the peer-reviewed scientific publication Chemistry: A European Journal, researchers explained how their nanodevice can both discover errant cancerous ribonucleic acid (RNA) targets, and cleave onto and break them up to prevent their spread. “DNA is the basis of the cell; it contains the genetic information necessary to encode the proteins vital for a cell’s existence,” Ekaterina Goncharova, study coauthor and engineer at ITMO’s department of chemistry and molecular biology, explained in a university press release. “When a cell becomes cancerous, it faces a malfunction in its genome, after which it starts to synthesize ‘bad’ proteins – i.e. not those which our body needs. As a result, cells begin to multiply uncontrollably, this processes becomes impossible to stop, and a tumourous mass grows and grows,” she added. Accordingly, the scientists say that if the production of these ‘malfunctioning’ proteins can be stopped, cancer cells will be unable to continue dividing and will start to die off. To achieve this outcome, the Russian researchers have experimented with deoxyribozymes, a type of DNA enzyme which, under certain circumstances, cleave to bonds in RNA which contain the pathogenic proteins. First Studying the properties of deoxyribozymes capable of recognizing pathogenic RNA molecules and attacking them, scientists at ITMO then synthensized them in a lab environment, thus creating a type of nanobot which can label certain types of cancer cells with the help of luminous molecules, and to destroy them. “Our DNA-based nanobot consists of two components, one charged with detection and the other with therapy,” Goncharova explained. “The therapeutic component cuts the pathogenic RNA; the more it is cut, the less harmful protein is produced. The second component of the nanobot allows us to detect affected cells. When the presence of the ‘wrong’ kind of RNA is detected in a cell, our tool combines with a oligonucleotide which is artificially introduced into the cell and cleaves it, causing a fluorescent glow.” Goncharova and her colleagues have tested their nanorobots on the KRAS gene, the molecular ‘on/off switch’ of sorts which uses protein dynamics and is known to be responsible for the pathogenesis of up to 20 percent of human cancers. In the testing, the team’s nanobots successfully discovered the RNA responsible for the synthesis of pathogenic proteins, and were able to successfully destroy it while safely ignoring all other molecules. Scientists now plan to continue their research, including experimentation on living cells and eventually, animals. Work is also underway at ITMO and elsewhere on the creation of special nano-containers for targeted drug delivery. According to researchers, their tool’s potential low cost is one of its significant advantages, with the creation of a batch of nanorobots in laboratory conditions estimated to cost just between 1,000 and 1,500 rubles (equivalent to $16-24 US). Furthermore, the scientists believe their approach has potential for application in the diagnostics and therapy of all kinds of other illnesses, from viral infections to genetic disorders.]Russian Researchers Invent Super Low-Cost Cancer-Fighting Nanobots © CC0 TECH 17:03 GMT 29.01.2020(updated 17:11 GMT 29.01.2020) Get short URL2160 Subscribe The concept of using microscopic man-made devices for everything from cancer treatment to dislodging blood clots and treating heart disease has been around for quite some time, but only recently have doctors and scientists worldwide begun working to make the leap from scientific theory to practical reality. Researchers from the Information Technologies, Mechanics and Optics University (ITMO) in St. Petersburg, Russia have developed a new cancer-fighting tool using tiny biological nanorobots created from DNA fragments capable of searching out and destroying some types of cancer cells. In a recently published article in the peer-reviewed scientific publication Chemistry: A European Journal, researchers explained how their nanodevice can both discover errant cancerous ribonucleic acid (RNA) targets, and cleave onto and break them up to prevent their spread. “DNA is the basis of the cell; it contains the genetic information necessary to encode the proteins vital for a cell’s existence,” Ekaterina Goncharova, study coauthor and engineer at ITMO’s department of chemistry and molecular biology, explained in a university press release. “When a cell becomes cancerous, it faces a malfunction in its genome, after which it starts to synthesize ‘bad’ proteins – i.e. not those which our body needs. As a result, cells begin to multiply uncontrollably, this processes becomes impossible to stop, and a tumourous mass grows and grows,” she added. Accordingly, the scientists say that if the production of these ‘malfunctioning’ proteins can be stopped, cancer cells will be unable to continue dividing and will start to die off. To achieve this outcome, the Russian researchers have experimented with deoxyribozymes, a type of DNA enzyme which, under certain circumstances, cleave to bonds in RNA which contain the pathogenic proteins. First Studying the properties of deoxyribozymes capable of recognizing pathogenic RNA molecules and attacking them, scientists at ITMO then synthensized them in a lab environment, thus creating a type of nanobot which can label certain types of cancer cells with the help of luminous molecules, and to destroy them. “Our DNA-based nanobot consists of two components, one charged with detection and the other with therapy,” Goncharova explained. “The therapeutic component cuts the pathogenic RNA; the more it is cut, the less harmful protein is produced. The second component of the nanobot allows us to detect affected cells. When the presence of the ‘wrong’ kind of RNA is detected in a cell, our tool combines with a oligonucleotide which is artificially introduced into the cell and cleaves it, causing a fluorescent glow.” Goncharova and her colleagues have tested their nanorobots on the KRAS gene, the molecular ‘on/off switch’ of sorts which uses protein dynamics and is known to be responsible for the pathogenesis of up to 20 percent of human cancers. In the testing, the team’s nanobots successfully discovered the RNA responsible for the synthesis of pathogenic proteins, and were able to successfully destroy it while safely ignoring all other molecules. Scientists now plan to continue their research, including experimentation on living cells and eventually, animals. Work is also underway at ITMO and elsewhere on the creation of special nano-containers for targeted drug delivery. According to researchers, their tool’s potential low cost is one of its significant advantages, with the creation of a batch of nanorobots in laboratory conditions estimated to cost just between 1,000 and 1,500 rubles (equivalent to $16-24 US). Furthermore, the scientists believe their approach has potential for application in the diagnostics and therapy of all kinds of other illnesses, from viral infections to genetic disorders.[/url]
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Post by Guest Sun 2 Feb - 14:26

https://sputniknews.com/science/202001291078173403-russian-researchers-invent-super-low-cost-cancer-fighting-nanobots/
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Post by Guest Sun 2 Feb - 14:27

[url=Made in Russia: Chemists Invent Unique Disease-Fighting 'Nano-Grenades' © Photo : Pixabay TECH 16:48 GMT 23.11.2018Get short URL 0 143 Subscribe Scientists from Russia and around the world have been experimenting in the use of nanoparticles to fight cancer and other diseases, with such particles used to deliver otherwise dangerous toxins to tumors or infected areas to avoid damaging healthy tissue, or designed to attach to infected areas to attract white blood cells or laser beams. Researchers from ITMO University in St. Petersburg have come up with a unique 'transforming nanoparticle' architecture which changes its structure when illuminated by a laser. The scientists' research, published in the Bioconjugate Chemistry academic journal, combined the best properties of two approaches to the creation of nanoparticles, experimenting with photosensitive nanomaterial technology and a chemical 'switch' method they recently developed. North Pole expedition © SPUTNIK / VLADIMIR ASTAPKOVICH Krasnoyarsk Scientists Discover Fish With the Greatest Health Benefits The latter consists of titanium dioxide nanoparticles which can split water into hydrogen and oxygen atoms when exposed to light. When placed in a solution of organic compounds, the oxygen produced begins to interact with molecules, changing the acid-base balance. Scientists experimented with this technique using larger nanoparticles, and determined that they can be collected from nanomaterial 'switches' and molecules whose stability changes depending on pH levels, allowing them to 'open' or 'close' in a manner similar to that of nanoparticles illuminated with a laser. Using this architecture, ITMO University chemistry professor Ekaterina Skorb and her colleagues created hollow nanoparticles covered by a covering of polymer filaments and granules of titanium oxide and silver. When illuminated with an infrared laser, the structure of the nanoparticle collapses from heat and oxygen, which releases the particle's contents. Researchers tested out their nanoparticles on bacteria whose DNA was modified to glow when molecules came into contact with artificial sugars which were injected into the nanoparticles. After illuminating these 'nano-grenades' with an infrared laser, the sugars escaped the nanoparticles' membranes, lighting up the bacteria and proving the method's effectiveness. As an important bonus, neither the nanoparticles nor their structural collapse affected the viability of the bacteria's cells. Scientists © PHOTO : PIXABAY Russian Scientists Discover Way to Detect Early-Stage Lung Cancer in Record Time According to Dr. Skorb, the ease with which infrared radiation passes through the human body means that the use of such nanoparticles to fight cancerous tumors or various infections will be possible in virtually any part of the body.]Made in Russia: Chemists Invent Unique Disease-Fighting 'Nano-Grenades' © Photo : Pixabay TECH 16:48 GMT 23.11.2018Get short URL 0 143 Subscribe Scientists from Russia and around the world have been experimenting in the use of nanoparticles to fight cancer and other diseases, with such particles used to deliver otherwise dangerous toxins to tumors or infected areas to avoid damaging healthy tissue, or designed to attach to infected areas to attract white blood cells or laser beams. Researchers from ITMO University in St. Petersburg have come up with a unique 'transforming nanoparticle' architecture which changes its structure when illuminated by a laser. The scientists' research, published in the Bioconjugate Chemistry academic journal, combined the best properties of two approaches to the creation of nanoparticles, experimenting with photosensitive nanomaterial technology and a chemical 'switch' method they recently developed. North Pole expedition © SPUTNIK / VLADIMIR ASTAPKOVICH Krasnoyarsk Scientists Discover Fish With the Greatest Health Benefits The latter consists of titanium dioxide nanoparticles which can split water into hydrogen and oxygen atoms when exposed to light. When placed in a solution of organic compounds, the oxygen produced begins to interact with molecules, changing the acid-base balance. Scientists experimented with this technique using larger nanoparticles, and determined that they can be collected from nanomaterial 'switches' and molecules whose stability changes depending on pH levels, allowing them to 'open' or 'close' in a manner similar to that of nanoparticles illuminated with a laser. Using this architecture, ITMO University chemistry professor Ekaterina Skorb and her colleagues created hollow nanoparticles covered by a covering of polymer filaments and granules of titanium oxide and silver. When illuminated with an infrared laser, the structure of the nanoparticle collapses from heat and oxygen, which releases the particle's contents. Researchers tested out their nanoparticles on bacteria whose DNA was modified to glow when molecules came into contact with artificial sugars which were injected into the nanoparticles. After illuminating these 'nano-grenades' with an infrared laser, the sugars escaped the nanoparticles' membranes, lighting up the bacteria and proving the method's effectiveness. As an important bonus, neither the nanoparticles nor their structural collapse affected the viability of the bacteria's cells. Scientists © PHOTO : PIXABAY Russian Scientists Discover Way to Detect Early-Stage Lung Cancer in Record Time According to Dr. Skorb, the ease with which infrared radiation passes through the human body means that the use of such nanoparticles to fight cancerous tumors or various infections will be possible in virtually any part of the body. "This area of research is interesting not only from the perspective of the localized delivery of medicines, but also for the creation of a computer in which biological molecules can be used instead of silicon chips. This will pave the way for high-precision control of chemical processes, 'smart' medicines and the ability to control molecular machines," Dr. Skorb said, as quoted by the Russian Science Foundation's press service.[/url]
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Post by abraham Sun 2 Feb - 14:37

Moze li se kako soda bikarbona ugurati u sve to. Do sada je soda bikarbona lijecila sve. Djumbir isto nije los. Muahahahahha Kila mozga....

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Post by Guest Sun 2 Feb - 14:49

balkanac sa balkana i moze,ali balkan iz balkanca nikako..koji mozak??'....ganglije josh u povojima.. lol! lol! lol!
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Post by Counter-Strike Sun 2 Feb - 14:51

Legendovich wrote:pa svakako bolje nego Hrvacka danas..ybtg,a vi jos u -Juniji..da niste,srbi bi rulali nad vama
jesi vidio kako oni nano-botovi razarju viruse,ima tih virusa sto su se oteli kontroli ali ima i lijeka apoteka :chiefi

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Post by Guest Sun 2 Feb - 14:55

Unimatrix_Zero wrote:
Legendovich wrote:pa svakako bolje nego Hrvacka danas..ybtg,a vi jos u -Juniji..da niste,srbi bi rulali nad vama
jesi vidio kako oni nano-botovi razarju viruse,ima tih virusa sto su se oteli kontroli ali ima i lijeka apoteka :chiefi
nope..nisam vidio,bash pogledam..svabi isto rade cuda sa nano-tehnologijom..siroko podrucje primjene..
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Post by Leviathan2 Sun 2 Feb - 15:26

Legendovich wrote:
Unimatrix_Zero wrote:
Legendovich wrote:pa svakako bolje nego Hrvacka danas..ybtg,a vi jos u -Juniji..da niste,srbi bi rulali nad vama
jesi vidio kako oni nano-botovi razarju viruse,ima tih virusa sto su se oteli kontroli ali ima i lijeka apoteka :chiefi
nope..nisam vidio,bash pogledam..svabi isto rade cuda sa nano-tehnologijom..siroko podrucje primjene..
pusti jebate
za njih su rusi zaostali :)
ako kazes da su rusi najjaci u razvoju umjetne inteligencije, reci ce kurac, ameri il kinezi
ako im kazes da rusi preradjuju atomski otpad i prodaju ga nazad na uporabu, reci ce da je to laz i da to oni skladiste negdje iza urala
ako im kazes da su najdalje otisli u razvoju bespilotnog transporta i cak ga primjenjuju i na poljima a ne samo na cestama, reci ce da je to srpska propaganda
ako kazes da razvijaju motor za daljnja kosmicka putovanja, reci ce da je to sf, (motor je vec izumljen, sad se radi na njegovom ispitivanju)
itd itd
ipak su rusi zaostali jer ne rade ajfune koje su i kinezi preshisali

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Post by Ringo10 Sun 2 Feb - 15:55

Ruski uvoz rapidno opada što zanči da je privreda Rusije diversificirana a diversificira se i još više.

Problem je što im izvoz još nije dovoljno diversificiran i zato treba postići mnogo veći i raznovrsniji izvoz proizvoda i roba visoke dodane vrijednosti.

A za to treba vremena ... jer još rade da zadovolje unutrašnje tržište.
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Post by aben Sun 2 Feb - 16:04

ne zun, jo imun ladu nivu; dojdes di triba a ko da si u lunaparku

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