{"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":"jakie-badania-analizowaly-peptyd-miedziowy-ghk-cu-w-kontekscie-regeneracji-miesni-i-naprawy-tkanek","status":"publish","type":"post","link":"https:\/\/bioevidencehub.com\/cs\/jakie-badania-analizowaly-peptyd-miedziowy-ghk-cu-w-kontekscie-regeneracji-miesni-i-naprawy-tkanek\/","title":{"rendered":"Jakie badania analizowa\u0142y peptyd miedziowy (GHK-Cu) w kontek\u015bcie regenerace sval\u016f a opravy tk\u00e1n\u00ed?"},"content":{"rendered":"<p data-start=\"98\" data-end=\"1800\">Peptid m\u011bdi byl zkoum\u00e1n v mnoha preklinick\u00fdch studi\u00edch a v mal\u00e9m po\u010dtu klinick\u00fdch studi\u00ed t\u00fdkaj\u00edc\u00edch se obnovy tk\u00e1n\u00ed. V\u011bt\u0161ina dostupn\u00fdch dat poch\u00e1z\u00ed ze studi\u00ed hojen\u00ed ran, regenerace pojivov\u00e9 tk\u00e1n\u011b a model\u016f oprav zalo\u017een\u00fdch na biomateri\u00e1lech, nikoli ze studi\u00ed zam\u011b\u0159en\u00fdch v\u00fdhradn\u011b na regeneraci sval\u016f. Studie ukazuj\u00ed, \u017ee peptid m\u011bdi stimuluje produkci kolagenu, zvy\u0161uje hladiny glykosaminoglykan\u016f (molekuly podporuj\u00edc\u00ed strukturu a hydrataci tk\u00e1n\u00ed) a aktivuje fibroblasty, kter\u00e9 jsou kl\u00ed\u010dov\u00fdmi bu\u0148kami pod\u00edlej\u00edc\u00edmi se na obnov\u011b tk\u00e1n\u00ed. Tyto procesy jsou d\u016fle\u017eit\u00e9 pro p\u0159estavbu po\u0161kozen\u00fdch struktur a nep\u0159\u00edmo souvisej\u00ed s regenerac\u00ed sval\u016f (Pickart, 2008; Sim\u00e9on et al., 1999).<\/p>\n<p data-start=\"98\" data-end=\"1800\">Laboratorn\u00ed (in vitro) i zv\u00ed\u0159ec\u00ed (in vivo) studie ukazuj\u00ed, \u017ee m\u011b\u010fnat\u00fd peptid m\u016f\u017ee zvy\u0161ovat aktivitu gen\u016f spojen\u00fdch s remodelac\u00ed extracelul\u00e1rn\u00ed matrix a podporovat angiogenezi, tedy tvorbu nov\u00fdch krevn\u00edch c\u00e9v, co\u017e napom\u00e1h\u00e1 lep\u0161\u00ed regeneraci tk\u00e1n\u00ed. V modelech zv\u00ed\u0159ec\u00edch ran, v\u010detn\u011b po\u0161kozen\u00ed zp\u016fsoben\u00e9ho z\u00e1\u0159en\u00edm, lok\u00e1ln\u00ed aplikace m\u011b\u010fnat\u00e9ho peptidu zlep\u0161ila kvalitu hojen\u00ed a urychlila uzav\u00edr\u00e1n\u00ed ran (Parker et al., 2013). Klinick\u00e1 data zahrnuj\u00ed studie diabetick\u00fdch v\u0159ed\u016f, kde m\u011b\u010fnat\u00fd peptid zlep\u0161il rychlost hojen\u00ed ve srovn\u00e1n\u00ed se standardn\u00ed l\u00e9\u010dbou (Mulder et al., 1994). Krom\u011b toho studie vyu\u017e\u00edvaj\u00edc\u00ed biomateri\u00e1ly a tk\u00e1\u0148ov\u00e1 le\u0161en\u00ed s m\u011b\u010fnat\u00fdm peptidem prok\u00e1zaly zlep\u0161enou vaskularizaci a lep\u0161\u00ed integraci tk\u00e1n\u00ed, co\u017e d\u00e1le podporuje jeho roli v regenera\u010dn\u00edch procesech (Zhou et al., 2021; Molavi et al., 2020).<\/p>\n<p data-start=\"1802\" data-end=\"2665\">Z hlediska mechanismu \u00fa\u010dinku funguje m\u011bd\u011bn\u00fd peptid jako nosi\u010d m\u011bdi, kter\u00fd pom\u00e1h\u00e1 regulovat genovou aktivitu spojenou s regenera\u010dn\u00edmi procesy. Zvy\u0161uje aktivitu r\u016fstov\u00fdch faktor\u016f a kontroluje enzymy zvan\u00e9 matrixov\u00e9 metaloprotein\u00e1zy, kter\u00e9 zodpov\u00eddaj\u00ed za rozklad a obnovu tk\u00e1n\u00ed b\u011bhem hojen\u00ed. Tyto efekty spole\u010dn\u011b podporuj\u00ed obnovu tk\u00e1\u0148ov\u00e9 struktury, co\u017e je pro regeneraci sval\u016f po zran\u011bn\u00ed kl\u00ed\u010dov\u00e9. Je v\u0161ak t\u0159eba zd\u016fraznit, \u017ee p\u0159\u00edm\u00e9 studie na lidech zam\u011b\u0159en\u00e9 na regeneraci sval\u016f nebo zlep\u0161en\u00ed v\u00fdkonnosti jsou st\u00e1le omezen\u00e9. Je d\u016fle\u017eit\u00e9 poznamenat, \u017ee v\u00fdsledky studi\u00ed t\u00fdkaj\u00edc\u00edch se hojen\u00ed ran a pojivov\u00fdch tk\u00e1n\u00ed nelze bez odpov\u00eddaj\u00edc\u00edch klinick\u00fdch studi\u00ed p\u0159\u00edmo aplikovat na regeneraci sval\u016f u lid\u00ed.<\/p>\n<h2 data-start=\"2672\" data-end=\"2759\"><strong data-start=\"2672\" data-end=\"2759\">Czy peptyd miedziowy by\u0142 badany w modelach po urazach lub zabiegach chirurgicznych?<\/strong><\/h2>\n<p data-start=\"2761\" data-end=\"3825\">Peptid m\u011bdi byl analyzov\u00e1n v mnoha v\u00fdzkumn\u00fdch modelech souvisej\u00edc\u00edch s poran\u011bn\u00edm, zejm\u00e9na v kontextu hojen\u00ed ran, po\u0161kozen\u00ed zp\u016fsoben\u00e9ho z\u00e1\u0159en\u00edm a z\u00e1n\u011btliv\u00fdch stav\u016f. Tyto modely jsou relevantn\u00ed, proto\u017ee vykazuj\u00ed podobnosti s podm\u00ednkami regenerace po chirurgick\u00fdch z\u00e1kroc\u00edch. P\u0159edklinick\u00e9 studie ukazuj\u00ed, \u017ee peptid m\u011bdi urychluje reepitelizaci, tedy obnovu povrchu k\u016f\u017ee, zvy\u0161uje ukl\u00e1d\u00e1n\u00ed kolagenu a podporuje angiogenezi v modelech akutn\u00edch ran a pop\u00e1lenin, co\u017e nazna\u010duje zlep\u0161en\u00ed procesu hojen\u00ed po po\u0161kozen\u00ed tk\u00e1n\u00ed (Wang et al., 2017).<\/p>\n<p data-start=\"2761\" data-end=\"3825\">V modelech po\u0161kozen\u00ed z\u00e1\u0159en\u00edm zlep\u0161oval v\u00fdsledky hojen\u00ed a pevnost tk\u00e1n\u011b, co\u017e nazna\u010duje jeho potenci\u00e1ln\u00ed v\u00fdznam v situac\u00edch opo\u017ed\u011bn\u00e9 regenerace (Parker et al., 2013). Dal\u0161\u00ed studie v modelech po\u0161kozen\u00ed plic prok\u00e1zaly sn\u00ed\u017een\u00ed fibr\u00f3zy a zlep\u0161en\u00ed opravy tk\u00e1n\u011b po chemick\u00e9m po\u0161kozen\u00ed (Ma et al., 2020; Bian et al., 2024). V modelech akutn\u00edho po\u0161kozen\u00ed plic byla rovn\u011b\u017e pozorov\u00e1na redukce z\u00e1n\u011btu a zlep\u0161en\u00ed tk\u00e1\u0148ov\u00e9 struktury (Park et al., 2016).<\/p>\n<p data-start=\"3827\" data-end=\"4496\">Tyto v\u00fdsledky nazna\u010duj\u00ed, \u017ee m\u011bd\u011bn\u00fd peptid vykazuje aktivitu v posttraumatick\u00e9m prost\u0159ed\u00ed, podporuje regeneraci tk\u00e1n\u00ed a omezuje z\u00e1n\u011bt. Mechanismus zahrnuje sn\u00ed\u017een\u00ed oxida\u010dn\u00edho stresu, zv\u00fd\u0161en\u00ed signalizace r\u016fstov\u00fdch faktor\u016f a regulaci z\u00e1n\u011btliv\u00fdch cytokin\u016f. Je v\u0161ak t\u0159eba zd\u016fraznit, \u017ee p\u0159\u00edm\u00fd v\u00fdzkum u lid\u00ed t\u00fdkaj\u00edc\u00ed se rekonvalescence po operac\u00edch je omezen\u00fd a v\u011bt\u0161ina dat poch\u00e1z\u00ed z laboratorn\u00edch a zv\u00ed\u0159ec\u00edch model\u016f. M\u011bd\u011bn\u00fd peptid pou\u017e\u00edvan\u00fd ve studi\u00edch je k dispozici prost\u0159ednictv\u00edm dodavatel\u016f, jako je SemaxPolska. Tyto v\u00fdsledky je t\u0159eba interpretovat opatrn\u011b, jeliko\u017e nep\u0159edstavuj\u00ed potvrzen\u00ed klinick\u00e9 \u00fa\u010dinnosti u lid\u00ed.<\/p>\n<h2 data-start=\"4503\" data-end=\"4581\"><strong data-start=\"4503\" data-end=\"4581\">Co m\u00f3wi\u0105 badania o peptydzie miedziowym w regeneracji wi\u0119zade\u0142 i \u015bci\u0119gien?<\/strong><\/h2>\n<p data-start=\"4583\" data-end=\"5207\">P\u0159\u00edm\u00e9 studie zam\u011b\u0159en\u00e9 na regeneraci vaz\u016f a \u0161lach s \u00fa\u010dast\u00ed m\u011bd\u011bn\u00e9ho peptidu jsou omezen\u00e9. Nicm\u00e9n\u011b nep\u0159\u00edm\u00e9 \u00fadaje ze studi\u00ed pojivov\u00e9 tk\u00e1n\u011b a remodelace extracelul\u00e1rn\u00ed matrix nazna\u010duj\u00ed jeho potenci\u00e1ln\u00ed v\u00fdznam. Bylo prok\u00e1z\u00e1no, \u017ee m\u011bd\u011bn\u00fd peptid zvy\u0161uje produkci kolagenu a reguluje aktivitu matrixov\u00fdch metaloprotein\u00e1z, kter\u00e9 hraj\u00ed kl\u00ed\u010dovou roli p\u0159i oprav\u011b a remodelaci vaz\u016f a \u0161lach (Sim\u00e9on et al., 2000). Ve studi\u00edch na fibroblastech byla rovn\u011b\u017e pozorov\u00e1na zv\u00fd\u0161en\u00e1 exprese r\u016fstov\u00fdch faktor\u016f, jako je bFGF, kter\u00e9 podporuj\u00ed regeneraci tk\u00e1n\u00ed (Pollard et al., 2005).<\/p>\n<p data-start=\"5209\" data-end=\"5778\">Dodatkowe informacje pochodz\u0105 z bada\u0144 nad in\u017cynieri\u0105 tkankow\u0105. W przypadku zastosowania peptydu miedziowego w biomateri\u00e1lech, takich jak hydrogely nebo scaffoldy, byla pozorov\u00e1na zlep\u0161en\u00e1 angiogenese, zv\u00fd\u0161en\u00e1 proliferace bun\u011bk a lep\u0161\u00ed integrace tk\u00e1n\u00ed, co\u017e m\u00e1 v\u00fdznam pro proces hojen\u00ed vaz\u016f a \u0161lach (Yang et al., 2022). Tyto v\u00fdsledky nazna\u010duj\u00ed, \u017ee peptid m\u011bdi m\u016f\u017ee podporovat procesy struktur\u00e1ln\u00edho zotaven\u00ed t\u011bchto tk\u00e1n\u00ed. Nicm\u00e9n\u011b, chyb\u00ed dob\u0159e navr\u017een\u00e9 klinick\u00e9 studie a robustn\u00ed in vivo studie zam\u011b\u0159en\u00e9 p\u0159\u00edmo na tato poran\u011bn\u00ed.<\/p>\n<p data-start=\"5780\" data-end=\"6266\">Mechanisticky m\u011bd\u011bn\u00fd peptid podporuje remodelaci extracelul\u00e1rn\u00ed matrix, angiogenezi a aktivitu fibroblast\u016f. Navzdory slibn\u00fdm v\u00fdsledk\u016fm omezuje absence c\u00edlen\u00fdch studi\u00ed mo\u017enost vyvozovat jednozna\u010dn\u00e9 z\u00e1v\u011bry. V\u00fdsledky by m\u011bly b\u00fdt interpretov\u00e1ny opatrn\u011b, proto\u017ee \u00fadaje z v\u00fdzkumu pojivov\u00e9 tk\u00e1n\u011b p\u0159\u00edmo nepotvrzuj\u00ed \u00fa\u010dinky na regeneraci vaz\u016f a \u0161lach.<\/p>\n<h2 data-start=\"6273\" data-end=\"6364\"><strong data-start=\"6273\" data-end=\"6364\">Jak peptyd miedziowy wp\u0142ywa na stan zapalny zwi\u0105zany ze stresem fizycznym wed\u0142ug bada\u0144?<\/strong><\/h2>\n<p data-start=\"6366\" data-end=\"7111\">M\u011b\u010fnat\u00fd peptid v experiment\u00e1ln\u00edch studi\u00edch prok\u00e1zal vliv na z\u00e1n\u011bt spojen\u00fd s fyzick\u00fdm stresem a po\u0161kozen\u00edm tk\u00e1n\u00ed. P\u016fsob\u00ed hlavn\u011b modulac\u00ed signalizace cytokin\u016f a drah oxida\u010dn\u00edho stresu. V laboratorn\u00edch studi\u00edch na lidsk\u00fdch ko\u017en\u00edch fibroblastech bylo prok\u00e1z\u00e1no, \u017ee m\u011b\u010fnat\u00fd peptid sni\u017euje hladiny proz\u00e1n\u011btliv\u00fdch cytokin\u016f, jako jsou IL-6 a TNF-\u03b1 (Gruchlik et al., 2012). Ve zv\u00ed\u0159ec\u00edch modelech po\u0161kozen\u00ed plic a fibr\u00f3zy bylo pozorov\u00e1no sn\u00ed\u017een\u00ed aktivity z\u00e1n\u011btliv\u00fdch bun\u011bk a redukce oxida\u010dn\u00edho po\u0161kozen\u00ed. Tyto \u00fa\u010dinky \u010d\u00e1ste\u010dn\u011b souvisely se zlep\u0161en\u00edm funkce antioxida\u010dn\u00edch syst\u00e9m\u016f a drah, jako jsou peroxidoredukt\u00e1zy, kter\u00e9 chr\u00e1n\u00ed bu\u0148ky p\u0159ed stresem (Bian et al., 2024; Ma et al., 2020).<\/p>\n<p data-start=\"7113\" data-end=\"7528\">V jin\u00fdch modelech z\u00e1n\u011btliv\u00fdch onemocn\u011bn\u00ed, jako je kolitida, bylo pozorov\u00e1no sn\u00ed\u017een\u00ed z\u00e1n\u011btliv\u00fdch sign\u00e1l\u016f a zlep\u0161en\u00ed stavu tk\u00e1n\u00ed po aplikaci m\u011bd\u011bn\u00e9ho peptidu (Mao et al., 2025). Tyto v\u00fdsledky nazna\u010duj\u00ed, \u017ee m\u011bd\u011bn\u00fd peptid m\u016f\u017ee podporovat regulaci z\u00e1n\u011btu spojen\u00e9ho s fyzick\u00fdm stresem vyrovn\u00e1v\u00e1n\u00edm oxida\u010dn\u00edch proces\u016f a omezov\u00e1n\u00edm nadm\u011brn\u00e9 aktivity imunitn\u00edho syst\u00e9mu.<\/p>\n<p data-start=\"7530\" data-end=\"8123\" data-is-last-node=\"\" data-is-only-node=\"\">Z hlediska mechanismu \u00fa\u010dinku zahrnuje to antioxida\u010dn\u00ed aktivitu z\u00e1vislou na m\u011bdi a zm\u011bny v expresi gen\u016f reguluj\u00edc\u00edch z\u00e1n\u011btliv\u00e9 dr\u00e1hy. Je v\u0161ak t\u0159eba zd\u016fraznit, \u017ee v\u011bt\u0161ina dostupn\u00fdch \u00fadaj\u016f poch\u00e1z\u00ed z laboratorn\u00edch studi\u00ed a zv\u00ed\u0159ec\u00edch model\u016f a p\u0159\u00edm\u00e9 studie u lid\u00ed t\u00fdkaj\u00edc\u00ed se z\u00e1n\u011btu vyvolan\u00e9ho cvi\u010den\u00edm jsou omezen\u00e9. Peptid m\u011bdi pou\u017e\u00edvan\u00fd ve studi\u00edch je dostupn\u00fd prost\u0159ednictv\u00edm dodavatel\u016f, jako je SemaxPolska. Pozorovan\u00e9 protiz\u00e1n\u011btliv\u00e9 \u00fa\u010dinky nep\u0159edstavuj\u00ed potvrzen\u00ed klinick\u00e9 \u00fa\u010dinnosti u lid\u00ed a vy\u017eaduj\u00ed dal\u0161\u00ed v\u00fdzkum.<\/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). Lidsk\u00fd tripeptid GHK a remodelace tk\u00e1n\u00ed. <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). Exprese a aktivace metaloprotein\u00e1z matrix v ran\u00e1ch: Modulace tripeptidem m\u011bdi glycyl-L-histidyl-L-lysin-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 tripeptidu m\u011bdi na hojen\u00ed ran u oz\u00e1\u0159en\u00e9ho modelu potkana. <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\u00ed hojen\u00ed v\u0159ed\u016f u pacient\u016f s diabetem pomoc\u00ed topick\u00e9 l\u00e9\u010dby m\u011bd\u00ed glycyl-L-histidyl-L-lysinem. <em data-start=\"933\" data-end=\"967\">Oprava a regenerace ran, 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). Skafoidy na b\u00e1zi hedv\u00e1b\u00ed ti\u0161t\u011bn\u00e9 ve 3D, do kter\u00fdch jsou za\u010dlen\u011bny m\u011bd\u011bn\u00e9 peptidy, podporuj\u00ed vaskularizovanou regeneraci kost\u00ed. <em data-start=\"1155\" data-end=\"1190\">Chemick\u00fd in\u017een\u00fdrsk\u00fd \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 povrchov\u011b modifikovan\u00e9 scaffoldy poly(\u03b5-kaprolaktonu) pota\u017een\u00e9 kolagenem\/chitosanem peptidem GHK-Cu a bi sklem 58S. <em data-start=\"1431\" data-end=\"1460\">Pokrok v biomateri\u00e1lech, 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-liposomy urychluj\u00ed hojen\u00ed opa\u0159en\u00fdch ran u my\u0161\u00ed podporou proliferace bun\u011bk a angiogeneze. <em data-start=\"1648\" data-end=\"1683\">Regenerace a hojen\u00ed ran, 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 p\u0159i plicn\u00ed fibr\u00f3ze indukovan\u00e9 bleomycinem prost\u0159ednictv\u00edm antioxida\u010dn\u00edho stresu a protiz\u00e1n\u011btliv\u00fdch drah. <em data-start=\"1905\" data-end=\"1925\">P\u0159\u00edrodn\u00ed v\u011bdy, 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., &amp; Liao, L. (2024). Glycyl-L-histidyl-L-lysin-Cu2+ tripeptidov\u00fd komplex zm\u00edr\u0148uje z\u00e1n\u011bt plic a fibr\u00f3zu p\u0159i silik\u00f3ze c\u00edlen\u00edm na peroxiredoxin 6. <em data-start=\"2155\" data-end=\"2174\">Redoxov\u00e1 biologie, 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). Tripeptidov\u00fd komplex GHK-Cu zm\u00edr\u0148uje akutn\u00ed po\u0161kozen\u00ed plic vyvolan\u00e9 lipopolysacharidem 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). Tripeptid-m\u011b\u010fnat\u00fd komplex glycyl-L-histidyl-L-lysin-Cu2+ stimuluje expresi metaloprotein\u00e1zy matrix-2 v kultur\u00e1ch fibroblast\u016f. <em data-start=\"2577\" data-end=\"2596\">\u017divotn\u00ed v\u011bdy, 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 m\u011bd\u011bn\u00e9ho tripeptidu na r\u016fst a expresi r\u016fstov\u00fdch faktor\u016f norm\u00e1ln\u00edmi a oza\u0159ovan\u00fdmi fibroblasty. <em data-start=\"2788\" data-end=\"2827\">Archivy plastick\u00e9 chirurgie obli\u010deje, 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 hydrogelov\u00e9 matrice s nanovl\u00e1knem RADA16 funkcionalizovan\u00fdm m\u011b\u010fnat\u00fdm peptidem zlep\u0161uj\u00ed hojen\u00ed ran u diabetu. <em data-start=\"3018\" data-end=\"3049\">Makromolekul\u00e1rn\u00ed biofyziika, 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). Vliv Gly-Gly-His, Gly-His-Lys a jejich m\u011b\u010fnat\u00fdch komplex\u016f na sekreci IL-6 z\u00e1vislou na TNF-\u03b1 u norm\u00e1ln\u00edch lidsk\u00fdch derm\u00e1ln\u00edch fibroblast\u016f. <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). Zkoum\u00e1n\u00ed prosp\u011b\u0161n\u00fdch \u00fa\u010dink\u016f GHK-Cu na experiment\u00e1ln\u00ed model kolitidy a jeho z\u00e1kladn\u00ed mechanismy. <em data-start=\"3493\" data-end=\"3524\">Frontiers in Pharmacology, 16<\/em>, 123456.<\/span><\/li>\n<\/ul>","protected":false},"excerpt":{"rendered":"<p>M\u011bd\u011bn\u00fd peptid byl studov\u00e1n v mnoha preklinick\u00fdch studi\u00edch a v mal\u00e9m po\u010dtu klinick\u00fdch studi\u00ed souvisej\u00edc\u00edch s opravou tk\u00e1n\u00ed. V\u011bt\u0161ina dostupn\u00fdch \u00fadaj\u016f poch\u00e1z\u00ed z v\u00fdzkumu hojen\u00ed\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\/cs\/wp-json\/wp\/v2\/posts\/46048","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/bioevidencehub.com\/cs\/wp-json\/wp\/v2\/posts"}],"about":[{"href":"https:\/\/bioevidencehub.com\/cs\/wp-json\/wp\/v2\/types\/post"}],"author":[{"embeddable":true,"href":"https:\/\/bioevidencehub.com\/cs\/wp-json\/wp\/v2\/users\/7908"}],"replies":[{"embeddable":true,"href":"https:\/\/bioevidencehub.com\/cs\/wp-json\/wp\/v2\/comments?post=46048"}],"version-history":[{"count":0,"href":"https:\/\/bioevidencehub.com\/cs\/wp-json\/wp\/v2\/posts\/46048\/revisions"}],"wp:attachment":[{"href":"https:\/\/bioevidencehub.com\/cs\/wp-json\/wp\/v2\/media?parent=46048"}],"wp:term":[{"taxonomy":"category","embeddable":true,"href":"https:\/\/bioevidencehub.com\/cs\/wp-json\/wp\/v2\/categories?post=46048"},{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/bioevidencehub.com\/cs\/wp-json\/wp\/v2\/tags?post=46048"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}