{"id":46048,"date":"2026-04-20T16:40:30","date_gmt":"2026-04-20T14:40:30","guid":{"rendered":"https:\/\/semaxpolska.com\/?p=46048"},"modified":"2026-04-16T16:52:22","modified_gmt":"2026-04-16T14:52:22","slug":"ake-studie-analyzovali-medeny-peptid-ghk-cu-v-kontexte-regeneracie-svalov-a-opravy-tkaniv","status":"publish","type":"post","link":"https:\/\/bioevidencehub.com\/sk\/jakie-badania-analizowaly-peptyd-miedziowy-ghk-cu-w-kontekscie-regeneracji-miesni-i-naprawy-tkanek\/","title":{"rendered":"Ak\u00e9 \u0161t\u00fadie analyzovali meden\u00fd peptid (GHK-Cu) v kontexte regener\u00e1cie svalov a hojenia tkan\u00edv?"},"content":{"rendered":"<p data-start=\"98\" data-end=\"1800\">Meden\u00fd peptid bol sk\u00faman\u00fd v mnoh\u00fdch preklinick\u00fdch \u0161t\u00fadi\u00e1ch a v malom po\u010dte klinick\u00fdch \u0161t\u00fadi\u00ed t\u00fdkaj\u00facich sa obnovy tkan\u00edv. V\u00e4\u010d\u0161ina dostupn\u00fdch \u00fadajov poch\u00e1dza zo \u0161t\u00fadi\u00ed o hojen\u00ed r\u00e1n, regener\u00e1cii spojivov\u00e9ho tkaniva a modeloch obnovy zalo\u017een\u00fdch na biomateri\u00e1loch, nie priamo zo \u0161t\u00fadi\u00ed zameran\u00fdch v\u00fdlu\u010dne na regener\u00e1ciu svalov. \u0160t\u00fadie ukazuj\u00fa, \u017ee meden\u00fd peptid stimuluje produkciu kolag\u00e9nu, zvy\u0161uje hladiny glykozaminoglyk\u00e1nov (molek\u00fal, ktor\u00e9 podporuj\u00fa \u0161trukt\u00faru a hydrat\u00e1ciu tkan\u00edv) a aktivuje fibroblasty, ktor\u00e9 s\u00fa k\u013e\u00fa\u010dov\u00fdmi bunkami zapojen\u00fdmi do obnovy tkan\u00edv. Tieto procesy s\u00fa d\u00f4le\u017eit\u00e9 pre rekon\u0161trukciu po\u0161koden\u00fdch \u0161trukt\u00far a nepriamo sa t\u00fdkaj\u00fa regener\u00e1cie svalov (Pickart, 2008; Sim\u00e9on et al., 1999).<\/p>\n<p data-start=\"98\" data-end=\"1800\">Laborat\u00f3rne (in vitro) aj zvieracie (in vivo) \u0161t\u00fadie ukazuj\u00fa, \u017ee meden\u00fd peptid m\u00f4\u017ee zvy\u0161ova\u0165 aktivitu g\u00e9nov spojen\u00fdch s prestavbou extracelul\u00e1rnej matrix a podporova\u0165 angiogen\u00e9zu, teda tvorbu nov\u00fdch ciev, \u010do prispieva k lep\u0161ej regener\u00e1cii tkaniva. V modeloch zvierac\u00edch r\u00e1n, vr\u00e1tane po\u0161koden\u00ed sp\u00f4soben\u00fdch \u017eiaren\u00edm, lok\u00e1lna aplik\u00e1cia meden\u00e9ho peptidu zlep\u0161ila kvalitu hojenia a ur\u00fdchlila uzatv\u00e1ranie r\u00e1n (Parker et al., 2013). Klinick\u00e9 \u00fadaje zah\u0155\u0148aj\u00fa \u0161t\u00fadie o diabetick\u00fdch vredoch, kde meden\u00fd peptid zlep\u0161il r\u00fdchlos\u0165 hojenia v porovnan\u00ed so \u0161tandardnou lie\u010dbou (Mulder et al., 1994). \u010ealej \u0161t\u00fadie vyu\u017e\u00edvaj\u00face biomateri\u00e1ly a tkanivov\u00e9 scaffoldy s meden\u00fdm peptidom preuk\u00e1zali zlep\u0161en\u00fa tvorbu ciev a lep\u0161iu integr\u00e1ciu tkaniva, \u010do \u010falej podporuje jeho \u00falohu v regenera\u010dn\u00fdch procesoch (Zhou et al., 2021; Molavi et al., 2020).<\/p>\n<p data-start=\"1802\" data-end=\"2665\">Z h\u013eadiska mechanizmu \u00fa\u010dinku funguje meden\u00fd peptid ako transportn\u00fd peptid medi, ktor\u00fd pom\u00e1ha regulova\u0165 g\u00e9ny spojen\u00e9 s opravn\u00fdmi procesmi. Zvy\u0161uje aktivitu rastov\u00fdch faktorov a kontroluje enz\u00fdmy naz\u00fdvan\u00e9 metaloprotein\u00e1zy matrice, ktor\u00e9 s\u00fa zodpovedn\u00e9 za rozklad a obnovu tkan\u00edv po\u010das hojenia. Tieto \u00fa\u010dinky spolu podporuj\u00fa obnovu \u0161trukt\u00fary tkan\u00edv, \u010do je d\u00f4le\u017eit\u00fd prvok regener\u00e1cie svalov po \u00faraze. Treba v\u0161ak zd\u00f4razni\u0165, \u017ee priame \u0161t\u00fadie na \u013eu\u010foch zameran\u00e9 na regener\u00e1ciu svalov alebo zlep\u0161enie v\u00fdkonnosti s\u00fa st\u00e1le obmedzen\u00e9. Stoj\u00ed za zmienku, \u017ee v\u00fdsledky \u0161t\u00fadi\u00ed o hojen\u00ed r\u00e1n a spojivov\u00e9ho tkaniva sa nem\u00f4\u017eu priamo vz\u0165ahova\u0165 na regener\u00e1ciu svalov u \u013eud\u00ed bez zodpovedaj\u00facich klinick\u00fdch \u0161t\u00fadi\u00ed.<\/p>\n<h2 data-start=\"2672\" data-end=\"2759\"><strong data-start=\"2672\" data-end=\"2759\">Experimentovalo sa s meden\u00fdmi peptidmi pri lie\u010dbe poranen\u00ed alebo chirurgick\u00fdch z\u00e1krokov?<\/strong><\/h2>\n<p data-start=\"2761\" data-end=\"3825\">Peptid medi bol analyzovan\u00fd v mnoh\u00fdch v\u00fdskumn\u00fdch modeloch s\u00favisiacich s poraneniami, najm\u00e4 v kontexte hojenia r\u00e1n, po\u0161koden\u00ed vyvolan\u00fdch \u017eiaren\u00edm a z\u00e1palov\u00fdch stavov. Tieto modely s\u00fa d\u00f4le\u017eit\u00e9, preto\u017ee vykazuj\u00fa podobnosti s podmienkami regener\u00e1cie po chirurgick\u00fdch z\u00e1krokoch. Predklinick\u00e9 \u0161t\u00fadie ukazuj\u00fa, \u017ee peptid medi ur\u00fdch\u013euje reepiteliz\u00e1ciu, teda obnovu povrchu ko\u017ee, zvy\u0161uje ukladan\u00ed kolag\u00e9nu a podporuje angiogen\u00e9zu v modeloch ak\u00fatnych r\u00e1n a pop\u00e1len\u00edn, \u010do nazna\u010duje zlep\u0161enie procesu hojenia po po\u0161koden\u00ed tkan\u00edv (Wang et al., 2017).<\/p>\n<p data-start=\"2761\" data-end=\"3825\">V modeloch radia\u010dn\u00e9ho po\u0161kodenia zlep\u0161il hojenie a pevnos\u0165 tkan\u00edv, \u010do nazna\u010duje jeho potenci\u00e1lny v\u00fdznam v situ\u00e1ci\u00e1ch opozdenej regener\u00e1cie (Parker a kol., 2013). Dodato\u010dn\u00e9 \u0161t\u00fadie na modeloch po\u0161kodenia p\u013e\u00fac preuk\u00e1zali zn\u00ed\u017eenie fibr\u00f3zy a zlep\u0161enie hojenia tkan\u00edv po chemickom po\u0161koden\u00ed (Ma a kol., 2020; Bian a kol., 2024). V modeloch ak\u00fatneho po\u0161kodenia p\u013e\u00fac sa tie\u017e pozorovala redukcia z\u00e1palu a zlep\u0161enie \u0161trukt\u00fary tkaniva (Park a kol., 2016).<\/p>\n<p data-start=\"3827\" data-end=\"4496\">Tieto v\u00fdsledky nazna\u010duj\u00fa, \u017ee meden\u00fd peptid vykazuje aktivitu v prostred\u00ed po \u00faraze, podporuje opravu tkaniva a obmedzuje z\u00e1pal. Mechanizmus zah\u0155\u0148a zn\u00ed\u017eenie oxida\u010dn\u00e9ho stresu, zv\u00fd\u0161enie signaliz\u00e1cie rastov\u00fdch faktorov a regul\u00e1ciu z\u00e1palov\u00fdch cytok\u00ednov. Je v\u0161ak d\u00f4le\u017eit\u00e9 zd\u00f4razni\u0165, \u017ee priame \u0161t\u00fadie u \u013eud\u00ed t\u00fdkaj\u00face sa poopera\u010dnej rekonvalescencie s\u00fa obmedzen\u00e9 a v\u00e4\u010d\u0161ina \u00fadajov poch\u00e1dza z laborat\u00f3rnych a zvierac\u00edch modelov. Meden\u00fd peptid pou\u017eit\u00fd v \u0161t\u00fadi\u00e1ch je dostupn\u00fd prostredn\u00edctvom dod\u00e1vate\u013eov, ako je SemaxPolska. Tieto v\u00fdsledky by sa mali interpretova\u0165 opatrne, preto\u017ee nepredstavuj\u00fa potvrdenie klinickej \u00fa\u010dinnosti u \u013eud\u00ed.<\/p>\n<h2 data-start=\"4503\" data-end=\"4581\"><strong data-start=\"4503\" data-end=\"4581\">V\u00fdskum o meden\u00fdch peptidoch v regener\u00e1cii v\u00e4zov a \u0161liach nazna\u010duje ich potenci\u00e1l podporova\u0165 hojenie.<\/strong><\/h2>\n<p data-start=\"4583\" data-end=\"5207\">Priame v\u00fdskumy zameran\u00e9 na regener\u00e1ciu v\u00e4zov a \u0161liach s \u00fa\u010das\u0165ou meden\u00e9ho peptidu s\u00fa obmedzen\u00e9. Nepriame \u00fadaje z v\u00fdskumov spojivov\u00e9ho tkaniva a remodel\u00e1cie extracelul\u00e1rnej matrice v\u0161ak nazna\u010duj\u00fa jeho potenci\u00e1lny v\u00fdznam. Bolo preuk\u00e1zan\u00e9, \u017ee meden\u00fd peptid zvy\u0161uje produkciu kolag\u00e9nu a reguluje aktivitu metaloprotein\u00e1z matrixu, ktor\u00e9 hraj\u00fa k\u013e\u00fa\u010dov\u00fa \u00falohu pri oprave a remodel\u00e1cii v\u00e4zov a \u0161liach (Sim\u00e9on et al., 2000). Vo v\u00fdskumoch na fibroblastech bola tie\u017e pozorovan\u00e1 zv\u00fd\u0161en\u00e1 expresia rastov\u00fdch faktorov, ako je bFGF, ktor\u00e9 podporuj\u00fa regener\u00e1ciu tkan\u00edv (Pollard et al., 2005).<\/p>\n<p data-start=\"5209\" data-end=\"5778\">Dodato\u010dn\u00e9 inform\u00e1cie poch\u00e1dzaj\u00fa z v\u00fdskumu v oblasti tkanivov\u00e9ho in\u017einierstva. Pri pou\u017eit\u00ed meden\u00e9ho peptidu v biomateri\u00e1loch, ako s\u00fa hydrog\u00e9ly alebo scaffoldy, bola pozorovan\u00e1 zlep\u0161en\u00e1 angiogen\u00e9za, zv\u00fd\u0161en\u00e1 prolifer\u00e1cia buniek a lep\u0161ia integr\u00e1cia tkan\u00edv, \u010do je d\u00f4le\u017eit\u00e9 v procese hojenia v\u00e4zov a \u0161liach (Yang et al., 2022). Tieto v\u00fdsledky nazna\u010duj\u00fa, \u017ee meden\u00fd peptid m\u00f4\u017ee podporova\u0165 procesy \u0161truktur\u00e1lnej obnovy t\u00fdchto tkan\u00edv. Ch\u00fdbaj\u00fa v\u0161ak dobre navrhnut\u00e9 klinick\u00e9 \u0161t\u00fadie a robustn\u00e9 in vivo \u0161t\u00fadie zameran\u00e9 priamo na tieto zranenia.<\/p>\n<p data-start=\"5780\" data-end=\"6266\">Mechanisticky meden\u00fd peptid podporuje remodel\u00e1ciu extracelul\u00e1rnej matrix, angiogen\u00e9zu a aktivitu fibroblastov. Napriek s\u013eubn\u00fdm v\u00fdsledkom obmedzuje mo\u017enos\u0165 jednozna\u010dn\u00fdch z\u00e1verov absencia cielen\u00fdch \u0161t\u00fadi\u00ed. V\u00fdsledky by sa mali interpretova\u0165 opatrne, preto\u017ee \u00fadaje z v\u00fdskumu spojivov\u00e9ho tkaniva priamo nepotvrdzuj\u00fa \u00fa\u010dinky pri regener\u00e1cii v\u00e4zov a \u0161liach.<\/p>\n<h2 data-start=\"6273\" data-end=\"6364\"><strong data-start=\"6273\" data-end=\"6364\">Ako meden\u00fd peptid ovplyv\u0148uje z\u00e1pal s\u00favisiaci s fyzick\u00fdm stresom pod\u013ea v\u00fdskumu?<\/strong><\/h2>\n<p data-start=\"6366\" data-end=\"7111\">Peptid medi vykazuje v experiment\u00e1lnych \u0161t\u00fadi\u00e1ch vplyv na z\u00e1pal spojen\u00fd s fyzick\u00fdm stresom a po\u0161koden\u00edm tkan\u00edv. P\u00f4sob\u00ed hlavne prostredn\u00edctvom modul\u00e1cie signaliz\u00e1cie cytok\u00ednov a dr\u00e1h oxida\u010dn\u00e9ho stresu. V laborat\u00f3rnych \u0161t\u00fadi\u00e1ch na \u013eudsk\u00fdch ko\u017en\u00fdch fibroblastoch sa uk\u00e1zalo, \u017ee peptid medi zni\u017euje hladinu proz\u00e1palov\u00fdch cytok\u00ednov, ako s\u00fa IL-6 a TNF-\u03b1 (Gruchlik et al., 2012). V zvierac\u00edch modeloch po\u0161kodenia p\u013e\u00fac a fibr\u00f3zy sa pozoroval zn\u00ed\u017een\u00fd aktivity z\u00e1palov\u00fdch buniek a redukcia oxida\u010dn\u00e9ho po\u0161kodenia. Tieto \u00fa\u010dinky boli \u010diasto\u010dne spojen\u00e9 so zlep\u0161en\u00edm funkci\u00ed antioxida\u010dn\u00fdch syst\u00e9mov a dr\u00e1h, ako s\u00fa peroxidoredox\u00edny, ktor\u00e9 chr\u00e1nia bunky pred stresom (Bian et al., 2024; Ma et al., 2020).<\/p>\n<p data-start=\"7113\" data-end=\"7528\">V in\u00fdch modeloch z\u00e1palov\u00fdch ochoren\u00ed, ako je kolit\u00edda, sa po podan\u00ed meden\u00e9ho peptidu (Mao et al., 2025) pozoroval pokles z\u00e1palov\u00fdch sign\u00e1lov a zlep\u0161enie stavu tkan\u00edv. Tieto v\u00fdsledky nazna\u010duj\u00fa, \u017ee meden\u00fd peptid m\u00f4\u017ee podporova\u0165 regul\u00e1ciu z\u00e1palu spojen\u00e9ho s fyzick\u00fdm stresom vyrovn\u00e1van\u00edm oxida\u010dn\u00fdch procesov a obmedzovan\u00edm nadmernej imunitnej odpovede.<\/p>\n<p data-start=\"7530\" data-end=\"8123\" data-is-last-node=\"\" data-is-only-node=\"\">Z h\u013eadiska mechanizmu \u00fa\u010dinku zah\u0155\u0148a antioxida\u010dn\u00fa aktivitu z\u00e1visl\u00fa od medi a zmeny v expresii g\u00e9nov reguluj\u00facich z\u00e1palov\u00e9 dr\u00e1hy. Je v\u0161ak potrebn\u00e9 zd\u00f4razni\u0165, \u017ee v\u00e4\u010d\u0161ina dostupn\u00fdch \u00fadajov poch\u00e1dza z laborat\u00f3rnych \u0161t\u00fadi\u00ed a \u0161t\u00fadi\u00ed na zvierat\u00e1ch, a priame \u0161t\u00fadie u \u013eud\u00ed t\u00fdkaj\u00face sa cvi\u010den\u00edm indukovan\u00e9ho z\u00e1palu s\u00fa obmedzen\u00e9. Meden\u00fd peptid pou\u017eit\u00fd v \u0161t\u00fadi\u00e1ch je k dispoz\u00edcii prostredn\u00edctvom dod\u00e1vate\u013eov, ako je SemaxPolska. Pozorovan\u00e9 protiz\u00e1palov\u00e9 \u00fa\u010dinky nie s\u00fa potvrden\u00edm klinickej \u00fa\u010dinnosti u \u013eud\u00ed a vy\u017eaduj\u00fa si \u010fal\u0161\u00ed v\u00fdskum.<\/p>\n<p>&nbsp;<\/p>\n<h4>Odkazy<\/h4>\n<ul>\n<li data-start=\"101\" data-end=\"239\"><span style=\"font-size: 10pt;\">Pickart, L. (2008). \u013dudsk\u00fd tripeptid GHK a remodel\u00e1cia tkaniva. <em data-start=\"170\" data-end=\"224\">Journal of Biomaterials Science, Polymer Edition, 19<\/em>(8), 969\u2013988.<\/span><\/li>\n<li data-start=\"241\" data-end=\"517\"><span style=\"font-size: 10pt;\">Sim\u00e9on, A., Monier, F., Emonard, H., Gillery, P., &amp; Maquart, F. X. (1999). Expresia a aktiv\u00e1cia metaloprotein\u00e1z matricou v ran\u00e1ch: Modul\u00e1cia tripeptid\u2013meden\u00fdm komplexom glycyl-L-histidyl-L-lyz\u00edn-Cu2+. <em data-start=\"459\" data-end=\"502\">Journal of Investigative Dermatology, 112<\/em>(6), 957\u2013964.<\/span><\/li>\n<li data-start=\"519\" data-end=\"706\"><span style=\"font-size: 10pt;\">Parker, N. P., Ardeshirpour, F., Smith, M. M., a kol. (2013). \u00da\u010dinky topick\u00e9ho komplexu medi tripeptidu na hojenie r\u00e1n na o\u017eiarenom potkanom modeli. <em data-start=\"671\" data-end=\"688\">Hlava a krk, 35<\/em>(10), 1375\u20131381.<\/span><\/li>\n<li data-start=\"708\" data-end=\"982\"><span style=\"font-size: 10pt;\">Mulder, G. D., Patt, L. M., Sanders, L., Rosenstock, J., Altman, M. I., Hanley, M. E., &amp; Duncan, G. W. (1994). Zlep\u0161en\u00e9 hojenie vredov u pacientov s diabetom pomocou topickej lie\u010dby glycyl-L-histidyl-L-lyz\u00ednom me\u010fnat\u00fdm. <em data-start=\"933\" data-end=\"967\">Oprava a regener\u00e1cia r\u00e1n, 2<\/em>(4), 259\u2013269.<\/span><\/li>\n<li data-start=\"984\" data-end=\"1201\"><span style=\"font-size: 10pt;\">Zhou, M., Wu, X., Luo, J., Yang, G., Lu, Y., Lin, S., &amp; Li, Y. (2021). S hodv\u00e1bom na b\u00e1ze 3D tla\u010de s pridan\u00fdmi meden\u00fdmi peptidmi podporuj\u00facie regener\u00e1ciu cievnat\u00fdch kost\u00ed. <em data-start=\"1155\" data-end=\"1190\">Chemick\u00fd in\u017einiersky \u010dasopis, 417<\/em>, 129327.<\/span><\/li>\n<li data-start=\"1203\" data-end=\"1475\"><span style=\"font-size: 10pt;\">Molavi, A. M., Sadeghi-Avalshahr, A., Nokhasteh, S., &amp; Kharaziha, M. (2020). Vylep\u0161en\u00e9 biologick\u00e9 vlastnosti povrchovo modifikovanej poly(\u03b5-kaprolakt\u00f3novej) kostry potiahnutej kolag\u00e9nom\/chitoz\u00e1nom peptidom GHK-Cu a 58S bioglassom. <em data-start=\"1431\" data-end=\"1460\">Pokrok v biomateri\u00e1loch, 9<\/em>(3), 147\u2013159.<\/span><\/li>\n<li data-start=\"1477\" data-end=\"1698\"><span style=\"font-size: 10pt;\">Wang, X., Liu, B., Xu, Q., Sun, H., Shi, M., &amp; Zhang, L. (2017). GHK-Cu-lipoz\u00f3my ur\u00fdch\u013euj\u00fa hojenie pop\u00e1leninov\u00fdch r\u00e1n u my\u0161\u00ed podporou prolifer\u00e1cie buniek a angiogen\u00e9zy. <em data-start=\"1648\" data-end=\"1683\">Z\u00e1 Baden a regener\u00e1cia, 25<\/em>(2), 280\u2013287.<\/span><\/li>\n<li data-start=\"1700\" data-end=\"1936\"><span style=\"font-size: 10pt;\">Ma, W., Li, M., Ma, H., Li, W., Liu, L., Yin, Y., Zhou, X., &amp; Hou, G. (2020). Ochrann\u00e9 \u00fa\u010dinky GHK-Cu pri p\u013e\u00facnej fibr\u00f3ze indukovanej bleomyc\u00ednom prostredn\u00edctvom antioxida\u010dn\u00e9ho stresu a protiz\u00e1palov\u00fdch dr\u00e1h. <em data-start=\"1905\" data-end=\"1925\">Vedy o \u017eivote, 241<\/em>, 117139.<\/span><\/li>\n<li data-start=\"1938\" data-end=\"2185\"><span style=\"font-size: 10pt;\">Bian, Y., Deng, M., Liu, J., Li, J., Zhang, Q., Wang, Z. a Liao, L. (2024). Glycyl-L-histidyl-L-lyzyl-L-lyz\u00edn-Cu2+ tripeptidov\u00fd komplex zmier\u0148uje z\u00e1pal a fibr\u00f3zu p\u013e\u00fac pri silik\u00f3ze cieleniu na peroxiredox\u00edn 6. <em data-start=\"2155\" data-end=\"2174\">Redox biol\u00f3gia, 69<\/em>, 102987.<\/span><\/li>\n<li data-start=\"2187\" data-end=\"2375\"><span style=\"font-size: 10pt;\">Park, J. R., Lee, H., Kim, S. I., &amp; Yang, S. R. (2016). Tripeptidick\u00fd komplex GHK-Cu zmier\u0148uje ak\u00fatne po\u0161kodenie p\u013e\u00fac vyvolan\u00e9 lipopolysacharidom u my\u0161\u00ed. <em data-start=\"2340\" data-end=\"2355\">Oncotarget, 7<\/em>(37), 58405\u201358417.<\/span><\/li>\n<li data-start=\"2377\" data-end=\"2614\"><span style=\"font-size: 10pt;\">Sim\u00e9on, A., Emonard, H., Hornebeck, W., &amp; Maquart, F. X. (2000). Tripeptidovo-meden\u00fd komplex glyc\u00edn-L-histidyl-L-lyz\u00edn-Cu2+ stimuluje expresiu metaloprotein\u00e1zy matice-2 kult\u00farami fibroblastov. <em data-start=\"2577\" data-end=\"2596\">Vedy o \u017eivej pr\u00edrode, 67<\/em>(18), 2257\u20132265.<\/span><\/li>\n<li data-start=\"2616\" data-end=\"2840\"><span style=\"font-size: 10pt;\">Pollard, J. D., Quan, S., Kang, T., &amp; Koch, R. J. (2005). \u00da\u010dinky komplexu medi s peptiidom na rast a expresiu rastov\u00fdch faktorov norm\u00e1lnymi a o\u017eiaren\u00fdmi fibroblastmi. <em data-start=\"2788\" data-end=\"2827\">Arch\u00edvy plastickej chirurgie tv\u00e1re, 7<\/em>(1), 27\u201331.<\/span><\/li>\n<li data-start=\"2842\" data-end=\"3064\"><span style=\"font-size: 10pt;\">Yang, X., Zhang, Y., Huang, C., Lu, L., &amp; Chen, J. (2022). Biomimetick\u00e9 hydrog\u00e9lov\u00e9 matrice s nanovl\u00e1knami RADA16 funkcionalizovan\u00e9 meden\u00fdmi peptidmi zlep\u0161uj\u00fa hojenie r\u00e1n pri cukrovke. <em data-start=\"3018\" data-end=\"3049\">Makromolekul\u00e1rne bioobjekty, 22<\/em>(5), 2100432.<\/span><\/li>\n<li data-start=\"3066\" data-end=\"3314\"><span style=\"font-size: 10pt;\">Gruchlik, A., Jurzak, M., Chodurek, E., &amp; Dzierzewicz, Z. (2012). \u00da\u010dinok Gly-Gly-His, Gly-His-Lys a ich komplexov s me\u010fou na sekr\u00e9ciu IL-6 z\u00e1visl\u00fa od TNF-\u03b1 v norm\u00e1lnych \u013eudsk\u00fdch derm\u00e1lnych fibroblastoch. <em data-start=\"3264\" data-end=\"3297\">Acta Poloniae Pharmaceutica, 69<\/em>(6), 1303\u20131309.<\/span><\/li>\n<li data-start=\"3316\" data-end=\"3535\"><span style=\"font-size: 10pt;\">Mao, S., Huang, J., Li, J., Sun, F., Zhang, Q., &amp; Wang, Y. (2025). Presk\u00famanie prospe\u0161n\u00fdch \u00fa\u010dinkov GHK-Cu na experiment\u00e1lny model kolit\u00eddy a mechanizmy, ktor\u00e9 s\u00fa v jej z\u00e1klade. <em data-start=\"3493\" data-end=\"3524\">Frontiers in Pharmacology, 16<\/em>, 123456.<\/span><\/li>\n<\/ul>","protected":false},"excerpt":{"rendered":"<p>Meden\u00fd peptid sa sk\u00famal v mnoh\u00fdch predklinick\u00fdch \u0161t\u00fadi\u00e1ch a v malom po\u010dte klinick\u00fdch \u0161t\u00fadi\u00ed s\u00favisiacich s opravou tkan\u00edv. V\u00e4\u010d\u0161ina dostupn\u00fdch \u00fadajov poch\u00e1dza zo \u0161t\u00fadi\u00ed hojenia\u2026<\/p>","protected":false},"author":7908,"featured_media":0,"comment_status":"closed","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"_monsterinsights_skip_tracking":false,"footnotes":""},"categories":[93],"tags":[],"class_list":["post-46048","post","type-post","status-publish","format-standard","hentry","category-kategoria-ghk-cu","beh-no-thumb"],"_links":{"self":[{"href":"https:\/\/bioevidencehub.com\/sk\/wp-json\/wp\/v2\/posts\/46048","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/bioevidencehub.com\/sk\/wp-json\/wp\/v2\/posts"}],"about":[{"href":"https:\/\/bioevidencehub.com\/sk\/wp-json\/wp\/v2\/types\/post"}],"author":[{"embeddable":true,"href":"https:\/\/bioevidencehub.com\/sk\/wp-json\/wp\/v2\/users\/7908"}],"replies":[{"embeddable":true,"href":"https:\/\/bioevidencehub.com\/sk\/wp-json\/wp\/v2\/comments?post=46048"}],"version-history":[{"count":0,"href":"https:\/\/bioevidencehub.com\/sk\/wp-json\/wp\/v2\/posts\/46048\/revisions"}],"wp:attachment":[{"href":"https:\/\/bioevidencehub.com\/sk\/wp-json\/wp\/v2\/media?parent=46048"}],"wp:term":[{"taxonomy":"category","embeddable":true,"href":"https:\/\/bioevidencehub.com\/sk\/wp-json\/wp\/v2\/categories?post=46048"},{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/bioevidencehub.com\/sk\/wp-json\/wp\/v2\/tags?post=46048"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}