Hoppa till innehåll

En RHAMM-mimetisk peptid blockerar hyaluronan-signalering och minskar inflammation och fibrogenes i excisionella hudssår

Cornelia Tolg, Sara R Hamilton, Ewa Zalinska, Lori McCulloch, Ripal Amin, Natalia Akentieva, Francoise Winnik, Rashmin Savani, Darius J Bagli, Len G Luyt, Mary K Cowman, Jim B McCarthy, Eva A Turley
Nyckelinsikter
  1. 01En peptid designades för att blockera hyaluronansignalering
  2. 02Den minskade inflammation och fibros i djurförsök med hudsår
  3. 03Detta kan främja en form av läkning med mindre ärr
  4. 04Peptiden är specifikt riktad mot receptorn RHAMM

En specialdesignad peptid, applicerad på hudsår hos råttor, minskade inflammation och markörer för ärrbildning genom att blockera hyaluronansignalering.

Abstract

Hyaluronan is activated by fragmentation and controls inflammation and fibroplasia during wound repair and diseases (eg, cancer). Hyaluronan-binding peptides were identified that modify fibrogenesis during skin wound repair. Peptides were selected from 7- to 15mer phage display libraries by panning with hyaluronan-Sepharose beads and assayed for their ability to block fibroblast migration in response to hyaluronan oligosaccharides (10 kDa). A 15mer peptide (P15-1), with homology to receptor for hyaluronan mediated motility (RHAMM) hyaluronan binding sequences, was the most effective inhibitor. P15-1 bound to 10-kDa hyaluronan with an affinity of K(d) = 10(-7) and appeared to specifically mimic RHAMM since it significantly reduced binding of hyaluronan oligosaccharides to recombinant RHAMM but not to recombinant CD44 or TLR2,4, and altered wound repair in wild-type but not RHAMM(-/-) mice. One topical application of P15-1 to full-thickness excisional rat wounds significantly reduced wound macrophage number, fibroblast number, and blood vessel density compared to scrambled, negative control peptides. Wound collagen 1, transforming growth factor β-1, and α-smooth muscle actin were reduced, whereas tenascin C was increased, suggesting that P15-1 promoted a form of scarless healing. Signaling/microarray analyses showed that P15-1 blocks RHAMM-regulated focal adhesion kinase pathways in fibroblasts. These results identify a new class of reagents that attenuate proinflammatory, fibrotic repair by blocking hyaluronan oligosaccharide signaling.

Citera denna studie
APA
Cornelia Tolg, Sara R Hamilton, Ewa Zalinska, Lori McCulloch, Ripal Amin, Natalia Akentieva, Francoise Winnik, Rashmin Savani, Darius J Bagli, Len G Luyt, Mary K Cowman, Jim B McCarthy, & Eva A Turley (2012). En RHAMM-mimetisk peptid blockerar hyaluronan-signalering och minskar inflammation och fibrogenes i excisionella hudssår. https://fasciaresearchdatabase.com/a-rhamm-mimetic-peptide-blocks-hyaluronan-signaling-and-reduces-inflammation-and-fibrogenesis-in-excisional-skin-wounds/
MLA
Cornelia Tolg, et al. "En RHAMM-mimetisk peptid blockerar hyaluronan-signalering och minskar inflammation och fibrogenes i excisionella hudssår." 2012, https://fasciaresearchdatabase.com/a-rhamm-mimetic-peptide-blocks-hyaluronan-signaling-and-reduces-inflammation-and-fibrogenesis-in-excisional-skin-wounds/.
Chicago
Cornelia Tolg et al. 2012. "En RHAMM-mimetisk peptid blockerar hyaluronan-signalering och minskar inflammation och fibrogenes i excisionella hudssår.". https://fasciaresearchdatabase.com/a-rhamm-mimetic-peptide-blocks-hyaluronan-signaling-and-reduces-inflammation-and-fibrogenesis-in-excisional-skin-wounds/