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Serovodoro d serni styj vodoro d sulfi d vodoro da digidrosulfi d formula H2S himicheskoe veshestvo predstavlyayushee soboj binarnoe neorganicheskoe soedinenie molekula kotorogo sostoit iz dvuh atomov vodoroda i odnogo atoma sery Silno yadovit obladaet kislotnymi svojstvami korrozionno aktiven razrushaet stal i drugie splavy SerovodorodObshieSistematicheskoe naimenovanie sulfid vodorodaTradicionnye nazvaniya serovodorod sernistyj vodorodHim formula H2SRac formula H2SFizicheskie svojstvaSostoyanie gazMolyarnaya massa 34 082 g molPlotnost 1 5206 n u g litrEnergiya ionizacii 10 46 0 01 eV i 10 45 eVTermicheskie svojstvaTemperatura plavleniya 82 30 C kipeniya 60 28 CPredely vzryvaemosti 4 1 ob Trojnaya tochka 187 61 K 85 54 C 0 0232 MPaKriticheskaya tochka 373 6 100 45 C 9 007 MPa 67 4 sm molDavlenie para 17 6 0 1 atmHimicheskie svojstvaKonstanta dissociacii kisloty pKa displaystyle pK a 6 89 19 2Rastvorimost v vode 0 699 0 C 0 379 20 C 0 025 40 C v etanole 3 44 0 C 2 3 10 C 1 43 20 C v benzole 2 6 20 C v toluole 2 7 20 C StrukturaDipolnyj moment 3 2E 30 Kl mKlassifikaciyaReg nomer CAS 7783 06 4PubChem 402 i 18779926Reg nomer EINECS 231 977 3SMILES SInChI InChI 1S H2S h1H2RWSOTUBLDIXVET UHFFFAOYSA NRTECS MX1225000ChEBI 16136Nomer OON 1053ChemSpider 391BezopasnostLD50 713 ppm krysa 1 chas 673 ppm mysh 1 chas 634 ppm mysh 1 chas 444 ppm krysa 4 chasa 600 ppm chelovek 30 min 800 ppm chelovek 5 min Toksichnost Chrezvychajno yadovit SDYaV Koncentracii svyshe 1000 ppm chasto vyzyvayut mgnovennyj kollaps i ostanovku dyhaniya Piktogrammy ECBNFPA 704 440POIPrivedeny dannye dlya standartnyh uslovij 25 C 100 kPa esli ne ukazano inoe Mediafajly na Vikisklade Pri normalnyh usloviyah serovodorod predstavlyaet soboj bescvetnyj gaz so sladkovatym vkusom obespechivayushij harakternyj nepriyatnyj tyazhyolyj zapah tuhlyh yaic tuhlogo myasa i musora Ploho rastvorim v vode horosho v etanole V bolshih koncentraciyah yadovit Ogneopasen Koncentracionnye predely vosplameneniya v smesi s vozduhom sostavlyayut 4 5 45 serovodoroda Ispolzuetsya v himicheskoj promyshlennosti dlya sinteza nekotoryh soedinenij polucheniya elementarnoj sery sernoj kisloty sulfidov Soderzhitsya v prirodnom gaze nefti Serovodorod takzhe ispolzuyut v lechebnyh celyah naprimer v serovodorodnyh vannah Nahozhdenie v prirodeV prirode vstrechaetsya redko v sostave poputnyh neftyanyh gazov prirodnogo gaza vulkanicheskih gazah v rastvoryonnom vide v prirodnyh vodah naprimer v Chyornom more sloi vody raspolozhennye glubzhe 150 200 m soderzhat rastvoryonnyj serovodorod Obrazuetsya pri gnienii belkov kotorye soderzhat v sostave serosoderzhashie aminokisloty metionin i ili cistein Nebolshoe kolichestvo serovodoroda soderzhitsya v kishechnyh gazah cheloveka i zhivotnyh Fizicheskie svojstvaTermicheski ustojchiv pri temperaturah bolshe 400 C razlagaetsya na prostye veshestva seru i vodorod Molekula serovodoroda imeet izognutuyu formu poetomu ona polyarna m 0 102 D V otlichie ot vody v serovodorode ne obrazuyutsya vodorodnye svyazi poetomu serovodorod v obychnyh usloviyah ne szhizhaetsya Rastvor serovodoroda v vode ochen slabaya serovodorodnaya kislota Perehodit v sverhprovodyashee sostoyanie pri davlenii poryadka 100 GPa 1 mln atmosfer Pri etom temperatura sverhprovodyashego perehoda nachinaet rezko vozrastat pri davlenii vyshe 150 GPa i dostigaet 150 K 120 C pri davlenii poryadka 200 GPa Eto privelo k otkrytiyu stabilnoj fazy soedineniya sery i vodoroda obladavshej na moment otkrytiya rekordnoj temperaturoj sverhprovodyashego perehoda 203 K 70 C pri davlenii 150 GPa V etoj faze himicheskaya formula veshestva blizhe k H3S Zavisimost kriticheskoj temperatury pri kotoroj serovodorod H2S i ego izotopolog D2S perehodyat v sverhprovodyashee sostoyanie ot davleniya Zavisimost ot davleniya kriticheskoj temperatury pri kotoroj v sverhprovodyashee sostoyanie perehodyat gidrid sery HxS i dejterid sery DxS nahodyashiesya v optimalnoj fazeHimicheskie svojstvaSobstvennaya ionizaciya zhidkogo serovodoroda nichtozhno mala V vode serovodorod malo rastvorim vodnyj rastvor H2S yavlyaetsya ochen slaboj kislotoj H2S HS H displaystyle mathsf H 2 S rightarrow HS H Ka 6 9 10 7 pKa 6 89 dd Vodnye rastvory serovodoroda medlenno mutneyut iz za poyavleniya v nih sery ibo serovodorod medlenno okislyaetsya kislorodom vozduha Reagiruet so shelochami H2S 2NaOH Na2S 2H2O displaystyle mathsf H 2 S 2NaOH rightarrow Na 2 S 2H 2 O srednyaya sol pri izbytke NaOH H2S NaOH NaHS H2O displaystyle mathsf H 2 S NaOH rightarrow NaHS H 2 O kislaya sol pri otnoshenii 1 1 dd Serovodorod silnyj vosstanovitel Okislitelno vosstanovitelnye potencialy S 2e S2 Eh 0 444B displaystyle mathsf S 2e rightarrow S 2 Eh 0 444B S 2H 2e H2S Eh 0 144B displaystyle mathsf S 2H 2e rightarrow H 2 S Eh 0 144B dd V vozduhe gorit sinim plamenem obrazuya sernistyj angidrid 2H2S 3O2 2H2O 2SO2 displaystyle mathsf 2H 2 S 3O 2 rightarrow 2H 2 O 2SO 2 uparrow dd pri nedostatke kisloroda 2H2S O2 2S 2H2O displaystyle mathsf 2H 2 S O 2 rightarrow 2S 2H 2 O na etoj reakcii osnovan promyshlennyj sposob polucheniya sery dd Serovodorod reagiruet takzhe so mnogimi drugimi okislitelyami pri ego okislenii v rastvorah obrazuetsya svobodnaya sera ili ion SO42 naprimer 3H2S 4HClO3 3H2SO4 4HCl displaystyle mathsf 3H 2 S 4HClO 3 rightarrow 3H 2 SO 4 4HCl uparrow 2H2S SO2 2H2O 3S displaystyle mathsf 2H 2 S SO 2 rightarrow 2H 2 O 3S H2S H2O2 2H2O S displaystyle mathsf H 2 S H 2 O 2 rightarrow 2H 2 O S dd Kachestvennoj reakciej na serovodorodnuyu kislotu i eyo soli yavlyaetsya ih vzaimodejstvie s solyami svinca pri kotorom obrazuetsya chyornyj osadok sulfida svinca naprimer H2S Pb NO3 2 PbS 2HNO3 displaystyle mathsf H 2 S Pb NO 3 2 rightarrow PbS downarrow 2HNO 3 dd Pri propuskanii serovodoroda cherez chelovecheskuyu krov ona cherneet poskolku gemoglobin razrushaetsya i zhelezo vhodyashee v ego sostav i pridayushee krovi krasnyj cvet vstupaet v reakciyu s serovodorodom i obrazuet chyornyj sulfid zheleza Sulfidy Soli serovodorodnoj kisloty nazyvayut sulfidami V vode horosho rastvorimy tolko sulfidy shelochnyh metallov ammoniya Sulfidy ostalnyh metallov prakticheski ne rastvorimy v vode oni vypadayut v osadok pri vvedenii v rastvory solej metallov i rastvorimoj soli serovodorodnoj kisloty naprimer sulfida ammoniya NH4 2S Mnogie sulfidy yarko okrasheny Dlya vseh shelochnyh i shelochnozemelnyh metallov izvestny takzhe M HS i M2 HS 2 Gidrosulfidy Sa2 i Sr2 ochen nestojki Yavlyayas solyami slaboj kisloty v vodnom rastvore rastvorimye sulfidy podvergayutsya gidrolizu Gidroliz sulfidov soderzhashih metally v vysokih stepenyah okisleniya libo gidroksidy kotoryh yavlyayutsya ochen slabymi osnovaniyami naprimer Al2S3 Cr2S3 i dr chasto prohodit neobratimo s vypadeniem v osadok nerastvorimogo gidroksida Sulfidy primenyayutsya v tehnike naprimer poluprovodniki i lyuminofory sulfid kadmiya sulfid cinka smazochnye materialy disulfid molibdena i dr Mnogie prirodnye sulfidy v vide mineralov yavlyayutsya cennymi rudami pirit halkopirit kinovar molibdenit Primer okisleniya sulfida perekisyu vodoroda PbS 4H2O2 PbSO4 4H2O displaystyle mathsf PbS 4H 2 O 2 PbSO 4 4H 2 O dd PoluchenieSootvetstvuyushuyu kislotu poluchayut rastvoreniem serovodoroda v vode Vzaimodejstviem razbavlennyh kislot s sulfidami FeS 2 HCl FeCl2 H2S displaystyle mathsf FeS 2 HCl longrightarrow FeCl 2 H 2 S uparrow Vzaimodejstvie sulfida alyuminiya s vodoj eta reakciya otlichaetsya chistotoj poluchennogo serovodoroda Al2S3 6 H2O 2 Al OH 3 3 H2S displaystyle mathsf Al 2 S 3 6 H 2 O longrightarrow 2 Al OH 3 downarrow 3 H 2 S uparrow Splavleniem parafina s seroj Soedineniya geneticheski svyazannye s serovodorodomYavlyaetsya pervym chlenom v ryade poliserovodorodov sulfanov H2Sn vydeleny poliserovodorody s n 1 8 PrimenenieSerovodorod iz za svoej toksichnosti nahodit ogranichennoe primenenie V analiticheskoj himii serovodorod i serovodorodnaya voda ispolzuyutsya kak reagenty dlya osazhdeniya tyazhyolyh metallov sulfidy kotoryh ochen slabo rastvorimy V medicine v sostave prirodnyh i iskusstvennyh serovodorodnyh vann a takzhe v sostave nekotoryh mineralnyh vod Serovodorod primenyayut dlya polucheniya sernoj kisloty elementnoj sery neorganicheskih sulfidov Ispolzuyut v organicheskom sinteze dlya polucheniya tiofena i merkaptanov V poslednie gody rassmatrivaetsya vozmozhnost ispolzovaniya serovodoroda nakoplennogo v glubinah Chyornogo morya v kachestve energeticheskogo i himicheskogo syrya Biologicheskaya rolV norme Endogennyj serovodorod proizvoditsya v nebolshih kolichestvah kletkami mlekopitayushih i vypolnyaet ryad vazhnyh biologicheskih funkcij v tom chisle signalnuyu Eto tretij iz otkrytyh gazotransmitterov posle okisi azota i ugarnogo gaza Endogennyj serovodorod obrazuetsya v organizme iz cisteina pri pomoshi fermentov cistationin b sintetazy i cistationin g liazy On yavlyaetsya spazmolitikom rasslablyaet gladkie myshcy i vazodilatatorom podobno okisi azota i ugarnomu gazu On takzhe proyavlyaet aktivnost v CNS gde on povyshaet NMDA oposredovannuyu nejrotransmissiyu i sposobstvuet dolgovremennomu zapominaniyu informacii V dalnejshem serovodorod okislyaetsya do sulfit iona v mitohondriyah pri pomoshi fermenta tiosulfat reduktazy Sulfit ion v dalnejshem okislyaetsya do tiosulfat iona i zatem v sulfat ion fermentom sulfit oksidazoj Sulfaty kak konechnyj produkt metabolizma ekskretiruyutsya s mochoj Blagodarya svojstvam shodnym so svojstvami okisi azota no bez eyo sposobnosti obrazovyvat peroksidy reagiruya s superoksidom endogennyj serovodorod schitaetsya sejchas odnim iz vazhnyh faktorov zashishayushih organizm ot serdechno sosudistyh zabolevanij Izvestnye kardioprotektivnye svojstva chesnoka svyazany s katabolizmom polisulfidnyh grupp allicina v serovodorod prichyom eta reakciya kataliziruetsya vosstanovitelnymi svojstvami glyutationa Hotya i oksid azota II NO i serovodorod sposobny rasslablyat myshcy i vyzyvat vazodilataciyu ih mehanizmy dejstviya sudya po vsemu razlichny V to vremya kak oksid azota aktiviruet ferment guanilatciklazu serovodorod aktiviruet ATF chuvstvitelnye kalievye kanaly v gladkomyshechnyh kletkah Issledovatelyam do nastoyashego vremeni neyasno kak raspredelyayutsya fiziologicheskie roli v regulirovanii tonusa sosudov mezhdu okisyu azota ugarnym gazom i serovodorodom Odnako sushestvuyut nekotorye dannye pozvolyayushie predpolozhit chto okis azota v fiziologicheskih usloviyah v osnovnom rasshiryaet krupnye sosudy v to vremya kak serovodorod otvetstven za analogichnoe rasshirenie melkih krovenosnyh sosudov Poslednie issledovaniya zastavlyayut predpolagat znachitelnoe vnutrikletochnoe kross obshenie mezhdu signalnymi putyami oksida azota II i signalnymi putyami serovodoroda demonstriruyushie chto vazodilatiruyushie spazmoliticheskie protivovospalitelnye i citoprotektivnye svojstva etih gazov vzaimozavisimy i vzaimodopolnyayushi Krome togo pokazano chto serovodorod sposoben reagirovat s vnutrikletochnymi S nitrozotiolami v rezultate chego obrazuetsya naimenshij vozmozhnyj S nitrozotiol HSNO Eto zastavlyaet predpolagat chto serovodorod igraet rol v kontrole za urovnem vnutrikletochnogo soderzhaniya S nitrozotiolov Podobno okisi azota serovodorod igraet rol v rasshirenii sosudov polovogo chlena neobhodimom dlya osushestvleniya erekcii chto sozdayot novye vozmozhnosti dlya terapii erektilnoj disfunkcii pri pomoshi teh ili inyh sredstv povyshayushih produkciyu endogennogo serovodoroda Pri patologicheskih sostoyaniyah Pri infarkte miokarda obnaruzhivaetsya vyrazhennyj deficit endogennogo serovodoroda chto mozhet imet neblagopriyatnye posledstviya dlya sosudov Infarkt miokarda privodit k nekrozu serdechnoj myshcy v zone infarkta cherez dva razlichnyh mehanizma odin eto povyshennyj oksidativnyj stress i povyshennoe obrazovanie svobodnyh radikalov i drugoj eto snizhennaya biodostupnost endogennyh vazodilatatorov i zashitnikov tkanej ot svobodnoradikalnogo povrezhdeniya okisi azota i serovodoroda Povyshennoe obrazovanie svobodnyh radikalov proishodit vsledstvie povyshennogo nesvyazannogo elektronnogo transporta v aktivnom sajte fermenta endotelialnoj sintazy oksida azota fermenta otvetstvennogo za prevrashenie L arginina v okis azota Vo vremya infarkta okislitelnaya degradaciya tetragidrobiopterina kofaktora v processe proizvodstva okisi azota ogranichivaet dostupnost tetragidrobiopterina i sootvetstvenno ogranichivaet sposobnost sintazy oksida azota k proizvodstvu NO V rezultate sintaza oksida azota reagiruet s kislorodom drugim kosubstratom neobhodimym dlya proizvodstva okisi azota Rezultatom etogo yavlyaetsya obrazovanie superoksidov povyshennoe obrazovanie svobodnyh radikalov i vnutrikletochnyj oksidativnyj stress Deficit serovodoroda eshyo bolee uhudshaet etu situaciyu narushaya aktivnost sintazy oksida azota za schyot ogranicheniya aktivnosti Akt i ugneteniya fosforilirovaniya Akt sintazy oksida azota v sajte eNOSS1177 neobhodimom dlya eyo aktivacii Vmesto etogo pri deficite serovodoroda aktivnost Akt izmenyaetsya takim obrazom chto Akt fosforiliruet ingibiruyushij sajt sintazy oksida azota eNOST495 chto privodit k eshyo bolshemu ugneteniyu biosinteza okisi azota Serovodorodnaya terapiya ispolzuet donor ili prekursor serovodoroda takoj kak diallil trisulfid dlya togo chtoby povysit soderzhanie serovodoroda v krovi i tkanyah pacienta s infarktom miokarda Donory ili prekursory serovodoroda umenshayut povrezhdenie miokarda posle ishemii i reperfuzii i risk oslozhnenij infarkta miokarda Povyshennye urovni serovodoroda v tkanyah i krovi reagiruyut s kislorodom soderzhashimsya v krovi i tkanyah v rezultate chego obrazuetsya sulfan sera promezhutochnyj produkt v sostave kotorogo serovodorod zapasaetsya hranitsya i transportiruetsya v kletki Puly serovodoroda v tkanyah reagiruyut s kislorodom povyshenie soderzhaniya serovodoroda v tkanyah aktiviruet sintazu oksida azota i tem samym povyshaet produkciyu okisi azota Vsledstvie povysheniya ispolzovaniya kisloroda dlya proizvodstva okisi azota menshe kisloroda ostayotsya dlya reagirovaniya s endotelialnoj sintazoj oksida azota i proizvodstva superoksidov povyshennogo pri infarkte chto v itoge privodit k umensheniyu obrazovaniya svobodnyh radikalov Krome togo menshee obrazovanie svobodnyh radikalov ponizhaet oksidativnyj stress v gladkomyshechnyh kletkah sosudov ponizhaya tem samym okislitelnuyu degradaciyu tetragidrobiopterina Povyshenie dostupnosti kofaktora sintazy oksida azota tetragidrobiopterina takzhe sposobstvuet uvelicheniyu produkcii okisi azota v organizme Krome togo bolee vysokie koncentracii serovodoroda neposredstvenno povyshayut aktivnost sintazy oksida azota cherez aktivaciyu Akt chto privodit k povysheniyu fosforilirovaniya aktiviruyushego sajta eNOSS1177 i snizheniyu fosforilirovaniya ingibiruyushego sajta eNOST495 Eto fosforilirovanie privodit k povysheniyu kataliticheskoj aktivnosti sintazy oksida azota chto privodit k bolee effektivnomu i bolee bystromu prevrasheniyu L arginina v okis azota i povysheniyu koncentracii okisi azota Povyshenie koncentracii okisi azota povyshaet aktivnost rastvorimoj guanilatciklazy chto v svoyu ochered privodit k povysheniyu obrazovaniya ciklicheskogo guanozinmonofosfata cGMF iz GTF Povyshenie urovnya ciklicheskogo GMF privodit k povysheniyu aktivnosti proteinkinazy G PKG A proteinkinaza G privodit k snizheniyu urovnya vnutrikletochnogo kalciya v gladkih myshcah stenok sosudov chto privodit k ih rasslableniyu i usileniyu krovotoka v sosudah Krome togo proteinkinaza G takzhe ogranichivaet proliferaciyu gladkomyshechnyh kletok stenok sosudov umenshaya tem samym utolshenie intimy sosudov V konechnom itoge serovodorodnaya terapiya privodit k umensheniyu razmerov zony infarkta Pri bolezni Alcgejmera uroven serovodoroda v mozgu rezko ponizhen V modeli na krysah bolezni Parkinsona koncentraciya serovodoroda v mozgu krys takzhe okazalas ponizhennoj prichyom vvedenie krysam donorov ili prekursorov serovodoroda uluchshalo sostoyanie zhivotnyh vplot do polnogo ischeznoveniya simptomov Pri trisomii 21 sindrome Dauna organizm naprotiv vyrabatyvaet izbytochnoe kolichestvo serovodoroda Endogennyj serovodorod takzhe vovlechyon v patogenez saharnogo diabeta 1 go tipa Beta kletki podzheludochnoj zhelezy bolnyh saharnym diabetom 1 go tipa vyrabatyvayut chrezmerno povyshennye kolichestva serovodoroda chto privodit k gibeli etih kletok i k ponizheniyu sekrecii insulina sosednimi poka eshyo zhivymi kletkami Ispolzovanie dlya gibernacii i anabioza V 2005 godu bylo pokazano chto mysh mozhno pogruzit v sostoyanie pochti anabioza iskusstvennoj gipotermii podvergnuv eyo vozdejstviyu nizkih koncentracij serovodoroda 81 ppm vo vdyhaemom vozduhe Dyhanie zhivotnyh zamedlilos so 120 do 10 dyhatelnyh dvizhenij v minutu a ih temperatura tela upala s 37 gradusov Celsiya do urovnya vsego na 2 gradusa Celsiya prevyshayushego temperaturu okruzhayushej sredy to est effekt byl takov kak budto teplokrovnoe zhivotnoe vnezapno stalo holodnokrovnym Myshi perezhili etu proceduru v techenie 6 chasov prichyom posle etogo u nih ne nablyudalos nikakih negativnyh posledstvij dlya zdorovya narushenij povedeniya ili kakih libo povrezhdenij vnutrennih organov V 2006 godu bylo pokazano chto arterialnoe davlenie u myshi podvergnutoj podobnym obrazom vozdejstviyu serovodoroda sushestvenno ne snizhaetsya Shodnyj process izvestnyj kak gibernaciya ili zimnyaya spyachka nablyudaetsya v prirode u mnogih vidov mlekopitayushih a takzhe u zhab no ne u myshi hotya mysh mozhet vpadat v stupor pri dolgom otsutstvii edy Bylo pokazano chto vo vremya zimnej spyachki produkciya endogennogo serovodoroda u teh zhivotnyh kotorye vpadayut v zimnyuyu spyachku znachitelno povyshaetsya Teoreticheski esli by udalos zastavit vyzyvaemuyu serovodorodom gibernaciyu stol zhe effektivno rabotat u lyudej eto moglo by byt ochen poleznym v klinicheskoj praktike dlya spaseniya zhizni tyazhelo travmirovannyh ili perenyosshih tyazhyoluyu gipoksiyu infarkty insulty bolnyh a takzhe dlya konservacii donorskih organov V 2008 godu bylo pokazano chto gipotermiya vyzvannaya serovodorodom v techenie 48 chasov u krys sposobna umenshat stepen povrezhdeniya golovnogo mozga vyzyvaemogo eksperimentalnym insultom ili travmoj mozga Serovodorod svyazyvaetsya s citohromoksidazoj C i tem samym predotvrashaet svyazyvanie s neyu kisloroda chto privodit k rezkomu zamedleniyu metabolizma no v bolshih kolichestvah paralizuet kletochnoe dyhanie i privodit k udushyu na urovne kletki k kletochnoj gipoksii I u cheloveka i u zhivotnyh vse kletki organizma v norme proizvodyat nekotoroe kolichestvo serovodoroda Ryad issledovatelej predpolozhili chto pomimo drugih fiziologicheskih rolej serovodorod takzhe ispolzuetsya organizmom dlya estestvennoj samoregulyacii skorosti metabolizma metabolicheskoj aktivnosti temperatury tela i potrebleniya kisloroda chto mozhet obyasnit vysheopisannoe nastuplenie gibernacii u myshej i krys pri povyshennyh koncentraciyah serovodoroda a takzhe povyshenie ego koncentracii pri fiziologicheskoj spyachke u zhivotnyh Odnako dva poslednih issledovaniya vyzyvayut somneniya v tom chto etogo effekta gibernacii i indukcii gipometabolizma pri pomoshi serovodoroda vozmozhno dostich u bolee krupnyh zhivotnyh Tak issledovanie 2008 goda ne smoglo vosproizvesti etot zhe effekt na svinyah chto privelo issledovatelej k zaklyucheniyu chto effekt nablyudaemyj u myshej ne nablyudaetsya u bolee krupnyh zhivotnyh Analogichno drugaya statya otmechaet chto effekta indukcii gipometabolizma i gibernacii pri pomoshi serovodoroda legko dostizhimogo u myshej i krys ne udayotsya dostich u ovec V fevrale 2010 goda uchyonyj Mark Rot zayavil na konferencii chto vyzvannaya serovodorodom gipotermiya u cheloveka proshla I fazu klinicheskih ispytanij Odnako reshenie o provedenii dalnejshih klinicheskih ispytanij na bolnyh s infarktom bylo otozvano osnovannoj im kompaniej Ikaria v avguste 2011 goda eshyo do nachala nabora uchastnikov ispytanij bez obyasneniya prichin so ssylkoj na reshenie kompanii 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