TY - JOUR
T1 - Targeting Cx26 Expression by Sustained Release of Cx26 Antisense from Scaffolds Reduces Inflammation and Improves Wound Healing
AU - Phillips, Anthony R.J.
AU - Chin, Jiah Shin
AU - Madden, Leigh
AU - Gilmartin, Daniel J.
AU - Soon, Allyson
AU - Thrasivoulou, Christopher
AU - Jayasinghe, Suwan N.
AU - Miles, Michelle
AU - O'Neill, Shay
AU - Hu, Rebecca
AU - Chew, Sing Yian
AU - Becker, David L.
N1 - Publisher Copyright:
© 2018 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim
PY - 2018/12
Y1 - 2018/12
N2 - The gap junction protein connexin 26 (Cx26) is expressed at high levels in naturally hyperthickened epidermal layers as well as pathological hyperkeratotic disease states, such as warts, psoriatic plaques, and chronic wound edges. The overexpression of Cx26 is also linked with inflammation, breakdown of the skin barrier function, and perturbed wound healing. Here, a collagen scaffold implanted into a rat excisional skin wound is used. This induces a foreign body type reaction characterized by epidermal thickening with elevated levels of Cx43 and Cx26, increased inflammation, and perturbed healing. This is reminiscent of a chronic skin wound. If the same scaffolds are coated with an antisense molecule specifically targeting Cx26 that has a slow sustained release, this prevents the abnormal upregulation of Cx26 protein at the wound edge. Knocking down Cx26 protein levels below those seen in normal wound healing has no adverse effects on the healing process but instead reduces the epidermal thickening and also the inflammatory response, while at the same time promotes the healing response. Treatment with Cx43/26 antisense may promote healing of chronic wounds. The Cx26 antisense may also be helpful in treating other skin conditions where Cx26 is overexpressed.
AB - The gap junction protein connexin 26 (Cx26) is expressed at high levels in naturally hyperthickened epidermal layers as well as pathological hyperkeratotic disease states, such as warts, psoriatic plaques, and chronic wound edges. The overexpression of Cx26 is also linked with inflammation, breakdown of the skin barrier function, and perturbed wound healing. Here, a collagen scaffold implanted into a rat excisional skin wound is used. This induces a foreign body type reaction characterized by epidermal thickening with elevated levels of Cx43 and Cx26, increased inflammation, and perturbed healing. This is reminiscent of a chronic skin wound. If the same scaffolds are coated with an antisense molecule specifically targeting Cx26 that has a slow sustained release, this prevents the abnormal upregulation of Cx26 protein at the wound edge. Knocking down Cx26 protein levels below those seen in normal wound healing has no adverse effects on the healing process but instead reduces the epidermal thickening and also the inflammatory response, while at the same time promotes the healing response. Treatment with Cx43/26 antisense may promote healing of chronic wounds. The Cx26 antisense may also be helpful in treating other skin conditions where Cx26 is overexpressed.
KW - antisense delivery
KW - Cx26
KW - scaffold
KW - tissue repair
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U2 - 10.1002/adbi.201800227
DO - 10.1002/adbi.201800227
M3 - Article
AN - SCOPUS:85065054042
SN - 2701-0198
VL - 2
JO - Advanced Biosystems
JF - Advanced Biosystems
IS - 12
M1 - 1800227
ER -