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Tkani nna inzheneriya angl tissue engineering ce biomedichna inzhenerna disciplina yaka vikoristovuye kombinaciyu klitin inzheneriyi materialoznavstva i vidpovidnih biohimichnih i fiziko himichnih faktoriv dlya vidnovlennya pidtrimki pokrashennya abo zamini riznih tipiv biologichnih tkanin 1 2 3 4 Tkaninna inzheneriyaTkaninna inzheneriya chasto peredbachaye vikoristannya klitin rozmishenih na tkaninnih karkasah dlya formuvannya novoyi zhittyezdatnoyi tkanini z medichnoyu metoyu ale ne obmezhuyetsya zastosuvannyam iz zastosuvannyam klitin i tkaninnih karkasiv Zvichajni implantati z inertnih materialiv mozhut usunuti tilki fizichni i mehanichni nedoliki poshkodzhenih tkanin Metoyu tkaninnoyi inzheneriyi ye vidnovlennya biologichnih metabolichnih funkcij tobto regeneraciyu tkanini a ne proste zamishennya yiyi sintetichnim materialom source source source source source source source source source source source source source source track track Sho take tkaninna inzheneriya english Zmist 1 Opis tehnologiyi 1 1 Terminologiya 1 2 Perspektivi 1 3 Problemi 2 Praktichne zastosuvannya 2 1 Kistkova tkanina 2 2 Nervova tkanina 2 2 1 Organoyidi 2 3 Oftalmologiya 3 Zastosuvannya v Ukrayini ta sviti 3 1 Rinok 4 Literatura 4 1 Knigi 4 2 Zhurnali 4 3 Statti 5 Posilannya 6 Div takozh 7 PrimitkiOpis tehnologiyi RedaguvatiTerminologiya RedaguvatiTkaninna inzheneriya ye mizhdisciplinarnoyu galuzzyu yaka zastosovuye principi inzheneriyi ta nauk pro zhittya dlya rozrobki biologichnih zaminnikiv yaki vidnovlyuyut pidtrimuyut abo pokrashuyut biologichni tkanini funkciyi abo cilogo organu 1 Tkaninnu inzheneriyu takozh viznachayut yak rozuminnya principiv rostu tkanini ta zastosuvannya cogo dlya virobnictva funkcionalnoyi zaminnoyi tkanini dlya klinichnogo vikoristannya U podalshomu opisi jdetsya pro te sho osnovne pripushennya tkaninnoyi inzheneriyi polyagaye v tomu sho vikoristannya prirodnoyi biologiyi sistemi dozvolit dosyagti bilshogo uspihu v rozrobci terapevtichnih strategij spryamovanih na zaminu vidnovlennya pidtrimku abo posilennya funkciyi tkanin 5 Stvorenij sercevij klapanPerspektivi Redaguvati Naukovi dosyagnennya v biomaterialah stovburovih klitinah faktorah rostu ta diferenciaciyi ta biomimetichnih seredovishah stvorili unikalni mozhlivosti dlya vigotovlennya abo vdoskonalennya isnuyuchih tkanin u laboratoriyi z kombinacij skonstrujovanih pozaklitinnih matric karkasiv klitin i biologichno aktivnih molekul Nanotehnologiyi ta nanobiotehnologiyi vidigrayut vazhlivu rol u tkaninnij inzheneriyi j druci organiv nadayuchi karkasi 6 ta nanomateriali 7 yaki pidtrimuyut rist klitin i regeneraciyu tkanin Nanovolokna 8 nanochastinki 9 10 ta nanokompoziti 11 12 13 14 imituyut pozaklitinnij matriks spriyayuchi klitinnij adgeziyi ta diferenciaciyi sho prizvodit do stvorennya funkcionalnih tkanin i organiv 15 Problemi Redaguvati Sered osnovnih problem z yakimi zaraz stikayetsya tkaninna inzheneriya ye potreba v bilsh skladnij funkcionalnosti biomehanichnij stabilnosti ta vaskulyarizaciyi viroshenih u laboratoriyi tkanin priznachenih dlya transplantaciyi Praktichne zastosuvannya Redaguvati Pidhid do inzheneriyi hryashovoyi tkanini z nosa v kolino Tkaninna inzheneriya bazuyetsya na 4 komponentah Klitini Biorozkladni peptidni karkasi dlya inzheneriyi nervovoyi tkaniniKarkas dlya klitin chasto na osnovi biopolimeriv 16 17 18 19 20 21 Biomolekuli faktori rostu ta diferenciaciyi klitin Fizichnij ta mehanichnij vpliv dlya utvorennya potribnoyi strukturi Stvorennya implantatu tkaninnoyi nanoinzheneriyi grafta vklyuchaye kilka etapiv vidbir i kultivuvannya vlasnogo abo donorskogo klitinnogo materialu rozrobka specialnogo nosiya dlya klitin matrici na osnovi biosumisnih materialiv nanesennya kulturi klitin na matricyu i rozmnozhennya klitin u bioreaktori zi specialnimi umovami kultivuvannya bezposerednye vprovadzhennya grafta v oblast urazhenogo organu abo poperednye rozmishennya v oblasti sho dobre zabezpechuyetsya krov yu dlya dozrivannya i formuvannya mikrocirkulyaciyi vseredini grafta napivfabrikatu Kistkova tkanina Redaguvati Osnovna stattya Kistkova plastika Biomedichnij inzhener testuye karkas fragmentu kistki na osove mehanichne navantazhennyaVeliki kistkovi defekti negativno vplivayut na zdorov ya lyudini ta zalishayutsya svitovoyu problemoyu ohoroni zdorov ya yaku neobhidno negajno virishuvati Tehnologiya 3D druku privernula znachnu uvagu dlya pidgotovki pronikayuchih bagatofunkcionalnih karkasiv dlya spriyannya vidnovlennyu ta regeneraciyi kistok 22 Doslidzhennya 2023 roku opublikovane v Regenerative Biomaterials Oxford University Press opisalo novi poristi biorozkladni karkasi sho buli nadrukovani za dopomogoyu polimerizaciyi laktidu ta kaprolaktonu PLCL i bioaktivnogo skla 45S5 BG a polidofamin PDA vikoristovuvavsya dlya dekoruvannya karkasiv PLCL BG Bulo vimiryano fiziko himichni vlastivosti karkasiv PLCL BG i PLCL BG PDA a yihni osteogenni ta angiogenni efekti oharakterizovano za dopomogoyu seriyi eksperimentiv yak in vitro tak i in vivo Rezultati pokazuyut sho karkas PLCL BG2 PDA mav horoshij modul stisku ta bliskuchu gidrofilnist Proliferaciya adgeziya ta osteogenez hBMSCs buli pokrasheni v grupah pokrittiv PDA yaki pokazali najkrashi rezultati Rezultati modeli defektu cherepa shuriv SD vkazuyut na te sho PLCL BG2 PDA yavno spriyav osteointegraciyi sho bulo dodatkovo pidtverdzheno imunogistohimichnim farbuvannyam Takim chinom dekoruvannya PDA ta trivale vivilnennya bioaktivnih ioniv Ca Si P iz BG u nadrukovanomu na 3D printeri karkasi PLCL BG2 PDA mozhut pokrashiti bioaktivnist poverhni ta spriyati krashomu osteogenezu ta angiogenezu sho mozhe stati cinnoyu osnovoyu dlya individualnih implantativ dlya vidnovlennya kistkovih defektiv 22 Rezultati biologichnih eksperimentiv pokazuyut sho kompozit TDM a CSH demonstruye chudovu biosumisnist a ekspresiya osteogennih geniv i bilkiv ALP RUNX2 OPN znachno pidvishena Eksperimenti in vivo pokazuyut sho dodavannya TDM dlya kozhnoyi grupi 10 30 50 efektivno spriyaye proliferaciyi klitin i osteomalyaciyi Krim togo 50 kombinaciyi TDM a CSH demonstruye optimalnu osteoprovidnist 23 Taki nanochastinki yak grafen vuglecevi nanotrubki disulfid molibdenu ta disulfid volframu vikoristovuyutsya yak zmicnyuyuchi agenti dlya vigotovlennya mehanichno micnih polimernih nanokompozitiv sho piddayutsya biologichnomu rozkladannyu dlya inzheneriyi kistkovoyi tkanini Dodavannya cih nanochastinok u polimernu matricyu v nizkih koncentraciyah 0 2 vagovih prizvodit do znachnogo pokrashennya mehanichnih vlastivostej polimernih nanokompozitiv pri stisku ta zgini Potencijno ci nanokompoziti mozhut buti vikoristani yak novij mehanichno micnij legkij kompozit yak kistkovi implantati Nervova tkanina Redaguvati source source source source source source source source source source source source source source Animacijna 3D rekonstrukciya transplantata klitin lt NES gipokampa mRFP1 chervonij sho pokazuye vhidni nejroni EGFP gospodarya zelenij u medialnomu septalnomu kompleksi entorinalnij kori sektori CA1 a takozh u shidnomu shari gipokampa 24 Osnovna stattya Inzheneriya nervovoyi tkanini Cya galuz tkaninnoyi inzheneriyi zoseredzhena na rozrobci funkcionalnih zaminnikiv nervovoyi tkanini dlya zamini abo vidnovlennya poshkodzhenoyi abo hvoroyi tkanini centralnoyi nervovoyi sistemi CNS abo periferichnoyi nervovoyi sistemi PNS Metoyu inzheneriyi nervovoyi tkanini ye vidnovlennya vtrachenoyi funkciyi nervovoyi sistemi za dopomogoyu materialiv klitin i faktoriv rostu 25 Cya oblast doslidzhennya vklyuchaye v sebe principi materialoznavstva biologiyi ta inzheneriyi dlya proektuvannya ta rozrobki pristroyiv karkasiv i 3D kultur yaki spriyayut rostu vizhivannyu ta funkcionalnij integraciyi nejroniv i glialnih klitin Deyaki iz zastosuvan nejrotkaninnoyi inzheneriyi vklyuchayut likuvannya travm spinnogo mozku cherepno mozkovih travm insultu hvorobi Parkinsona ta inshih staniv yaki prizvodyat do poshkodzhennya nervovoyi sistemi Organoyidi Redaguvati Doslidzhennya 2023 roku opublikovane v Cell Stem Cell pokazalo sho organoyidi lyudskogo mozku uspishno integruyutsya iz zorovoyu sistemoyu doroslogo shura pislya transplantaciyi u veliki poshkodzheni porozhnini zorovoyi kori 26 Transsinaptichne vidstezhennya na osnovi virusiv viyavilo polisinaptichnij shlyah mizh transplantovanimi lyudskimi organoyidnimi nejronami ta sitkivkoyu shura gospodarya ta vzayemnij zv yazok mizh transplantatom ta inshimi regionami zorovoyi sistemi Vizualna stimulyaciya tvarin gospodariv viklikaye vidpovidi v organoyidnih nejronah vklyuchayuchi vibirkovist oriyentaciyi Ci rezultati demonstruyut zdatnist organoyidiv lyudskogo mozku prijmati skladni funkciyi pislya vvedennya u veliki porozhnini travmi proponuyuchi translyacijnu strategiyu dlya vidnovlennya funkciyi pislya poshkodzhennya kori 26 27 She odne doslidzhennya na mishah opublikovane v travni 2023 roku v npj Regenerative Medicine sho doslidzhuvalo vikoristannya mozkovih organoyidiv dlya vidnovlennya funkcionalnoyi nervovoyi tkanini v misci urazhennya pislya ishemichnogo insultu pokazalo 28 Cherez kilka misyaciv mi viyavili sho transplantovani organoyidi dobre vizhili v urazhenomu infarktom yadri diferenciyuvalisya v cilovi nejroni vidnovlyuvali infarktnu tkaninu posilali aksoni do viddalenih mishenej mozku ta integruvalisya v nejronnij lancyug gospodarya tim samim usuvayuchi sensomotorni defekti povedinki mishej yaki perenesli insult todi yak transplantaciya disocijovanih okremih klitin z organoyidiv ne privela do vidnovlennya urazhenoyi infarktom tkanini Oftalmologiya Redaguvati Pidhodi tkaninnoyi inzheneriyi v oftalmologiyi rozroblyayutsya dlya likuvannya zahvoryuvan ochej takih yak rogivkova slipota ta degeneraciya sitkivki Napriklad doslidniki rozroblyayut shtuchnu rogivku ta sitkivku yaki mozhna implantuvati v oko dlya vidnovlennya zoru 29 30 31 32 Doslidzhennya 2023 roku opublikovane v Nature Protocols pokazalo mozhlivist stvorennya fotochutlivih organoyidiv perednogo mozku sho utvorili primitivni epitelialni ta linzopodibni klitini rogivki pigmentnij epitelij sitkivki klitini poperedniki sitkivki aksonopodibni proekciyi ta elektrichno aktivni nejronni merezhi 33 Zastosuvannya v Ukrayini ta sviti RedaguvatiMetodi tkaninnoyi inzheneriyi vikoristovuyutsya pri reabilitaciyi bijciv ATO 34 vidnovlennya kistok ta shkiri Ukrayino amerikanskij startap A D A M rozrobiv metodiku druku kistok 35 na bio 3D printeri 36 U 2023 roci v zhurnali Biofabrication bula opublikovana stattya v yakij opisuyetsya sho doslidniki rozrobili nedorogij modulnij ruchnij bioprinter zdatnij nanositi riznomanitni biochornila z tochnim kontrolem yihnih fizichnih i himichnih vlastivostej proponuyuchi universalne rishennya dlya vidnovlennya tkanin Bioprinter mozhe stvoryuvati bagatokomponentni volokna z riznimi formami ta kompoziciyami dostavlyati liki kontrolovanim chinom viroblyati biosensori ta perenosnu elektroniku a takozh generuvati klitinni volokna z visokoyu zhittyezdatnistyu klitin navit demonstruyuchi potencial u modelyuvanni invaziyi rakovih klitin u susidni tkanini 37 Rinok Redaguvati U 2021 roci obsyag svitovogo rinku tkaninnoyi inzheneriyi stanoviv 12 76 milyarda dolariv SShA a do 2030 roku ochikuyetsya sho vin syagne priblizno 31 23 milyarda dolariv SShA zbilshuyuchis na 10 46 u serednomu protyagom prognozovanogo periodu z 2022 po 2030 rik 38 Literatura RedaguvatiKnigi Redaguvati Principles of Tissue Engineering 5th Edition 2020 Robert Lanca Robert Lendzher Joseph P Vacanti Anthony Atala Seriya knig Stem Cell Biology and Regenerative Medicine Springer 2009 2023 Berardi Anna C 2018 Extracellular matrix for tissue engineering and biomaterials Cham Switzerland ISBN 978 3 319 77023 9 Wilson Rawls Jeanne Kusumi Kenro 2016 Innovations in molecular mechanisms and tissue engineering Cham Switzerland ISBN 978 3 319 44996 8 Zhurnali Redaguvati Tissue Engineering and Regenerative Medicine Tissue Engineering part A amp part B Reviews amp part C Methods Journal of Tissue Engineering TERM Tissue Engineering amp Regenerative Medicine Annals of 3D Printed Medicine International Journal of Bioprinting Bioprinting Biofabrication The International Journal of Artificial OrgansStatti Redaguvati Quezada Alexandra Ward Claire Bader Edward R ta in 2023 02 An In Vivo Platform for Rebuilding Functional Neocortical Tissue Bioengineering angl 10 2 s 263 doi 10 3390 bioengineering10020263 Bakhtiary Negar Ghalandari Behafarid Ghorbani Farnaz ta in 2023 01 Advances in Peptide Based Hydrogel for Tissue Engineering Polymers angl 15 5 s 1068 doi 10 3390 polym15051068 Jain Pooja Kathuria Himanshu Dubey Nileshkumar 1 serpnya 2022 Advances in 3D bioprinting of tissues organs for regenerative medicine and in vitro models Biomaterials angl 287 doi 10 1016 j biomaterials 2022 121639 Ramadan Qasem Zourob Mohammed 2021 3D Bioprinting at the Frontier of Regenerative Medicine Pharmaceutical and Food Industries Frontiers in Medical Technology 2 doi 10 3389 fmedt 2020 607648 Posilannya RedaguvatiMizhnarodne tovaristvo tkaninnoyi inzheneriyi ta regenerativnoyi medicini TERMIS Could tissue engineering mean personalized medicine Nina Tandon TED talks 2012 Div takozh RedaguvatiDruk organiv Inzheneriya nervovoyi tkanini Klitinna inzheneriya Regenerativna medicina Personalizovana medicina Nanomedicina Genna inzheneriya Stovburovi klitini Omolodzhennya Transgumanizm Sintetichna biologiya Kultivovane m yasoPrimitki Redaguvati a b Langer Robert Vacanti Joseph P 14 travnya 1993 Tissue Engineering Science angl 260 5110 s 920 926 ISSN 0036 8075 doi 10 1126 science 8493529 Procitovano 12 lyutogo 2023 Tissue Engineering and Regenerative Medicine National Institute of Biomedical Imaging and Bioengineering angl Procitovano 12 lyutogo 2023 Caddeo Silvia Boffito Monica Sartori Susanna 2017 Tissue Engineering Approaches in the Design of Healthy and Pathological In Vitro Tissue Models Frontiers in Bioengineering and Biotechnology 5 ISSN 2296 4185 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Procitovano 7 serpnya 2023 Liu Shuai Lin Rurong Pu Chunyi Huang Jianxing Zhang Jie Hou Honghao 2 listopada 2022 U Sharma Ashutosh Nanocomposite Biomaterials for Tissue Engineering and Regenerative Medicine Applications Nanocomposite Materials for Biomedical and Energy Storage Applications angl IntechOpen ISBN 978 1 80355 618 5 doi 10 5772 intechopen 102417 Shokrani Hanieh Shokrani Amirhossein Jouyandeh Maryam Seidi Farzad Gholami Fatemeh Kar Saptarshi Munir Muhammad Tajammal Kowalkowska Zedler Daria ta in 16 travnya 2022 Green Polymer Nanocomposites for Skin Tissue Engineering ACS Applied Bio Materials angl 5 5 s 2107 2121 ISSN 2576 6422 doi 10 1021 acsabm 2c00313 Procitovano 7 serpnya 2023 rekomenduyetsya displayauthors dovidka Idumah Christopher Igwe 2021 06 Progress in polymer nanocomposites for bone regeneration and engineering Polymers and Polymer Composites angl 29 5 s 509 527 ISSN 0967 3911 doi 10 1177 0967391120913658 Procitovano 7 serpnya 2023 Special Issue Polymeric 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rekomenduyetsya displayauthors dovidka Bioteh reabilitaciya poranenih People s Project com People s Project com uk UA Procitovano 21 lyutogo 2016 Bliley Jacqueline M Shiwarski Daniel J Feinberg Adam W 12 zhovtnya 2022 3D bioprinted human tissue and the path toward clinical translation Science Translational Medicine angl 14 666 s eabo7047 ISSN 1946 6234 doi 10 1126 scitranslmed abo7047 Procitovano 11 listopada 2022 A D A M adambioprinting com Procitovano 11 listopada 2022 Pagan Erik Stefanek Evan Seyfoori Amir Razzaghi Mahmood Chehri Behnad Mousavi Ali Arnaldi Pietro Ajji Zineb ta in 1 lipnya 2023 A handheld bioprinter for multi material printing of complex constructs Biofabrication 15 3 s 035012 ISSN 1758 5082 doi 10 1088 1758 5090 acc42c Procitovano 13 chervnya 2023 rekomenduyetsya displayauthors dovidka Tissue Engineering Market Size Growth Report 2022 To 2030 www precedenceresearch com Procitovano 11 listopada 2022 Otrimano z https uk wikipedia org w index php title Tkaninna inzheneriya amp oldid 40114116