Novel Recombinant Tropoelastin Implants Restore Skin Extracellular Matrix.
[BACKGROUND] Elastin is an essential component of the dermis, providing skin with elasticity and integrity.
APA
Mitzmacher MG, Mithieux SM, et al. (2020). Novel Recombinant Tropoelastin Implants Restore Skin Extracellular Matrix.. Journal of drugs in dermatology : JDD, 19(12), 1166-1172. https://doi.org/10.36849/JDD.2020.5375
MLA
Mitzmacher MG, et al.. "Novel Recombinant Tropoelastin Implants Restore Skin Extracellular Matrix.." Journal of drugs in dermatology : JDD, vol. 19, no. 12, 2020, pp. 1166-1172.
PMID
33346526
Abstract
[BACKGROUND] Elastin is an essential component of the dermis, providing skin with elasticity and integrity. Elastin and other dermal components are gradually lost through aging, sun damage, and following injury, highlighting a need to replace these components to repair the skin. Tropoelastin (TE) in monomeric form was previously shown to be utilized as a substrate by dermal fibroblasts during the production of elastin fibers in vitro.
[OBJECTIVE] To analyze coaccumulation of elastin and collagen and gene expression of biomarkers associated with elastin production, examine the ex vivo effects of recombinant human TE (rhTE) and hyaluronic acid (HA) on epidermal and dermal structures, and evaluate the in vivo response following intradermal injections of rhTE and HA.
[METHODS] Human dermal fibroblasts and 3-D skin patch models were cultured for in vitro analysis. Ex vivo analysis was performed using skin explants. In vivo studies were done in 6-week-old male CD Hairless rats. Different formulations of rhTE, soluble or crosslinked using derivatized HA (dHA), were tested and analyzed.
[RESULTS] rhTE in monomeric form was utilized as a substrate by dermal fibroblasts during the production of branched elastin and fibrous collagen networks in vitro. Formulations of rhTE crosslinked with dHA demonstrated increased expression of hyaluronic acid synthase 1 and ex vivo results revealed increased moisture content and glycosaminoglycan (GAG) deposition versus dermal filler control. Intradermal rhTE‒dHA injection produced colocalized human‒rat elastin fibers in vivo.
[CONCLUSIONS] These results suggest that the novel rhTE‒dHA matrix is an attractive material to support skin tissue repair.J Drugs Dermatol. 2020;19(12): doi:10.36849/JDD.2020.5375.
[OBJECTIVE] To analyze coaccumulation of elastin and collagen and gene expression of biomarkers associated with elastin production, examine the ex vivo effects of recombinant human TE (rhTE) and hyaluronic acid (HA) on epidermal and dermal structures, and evaluate the in vivo response following intradermal injections of rhTE and HA.
[METHODS] Human dermal fibroblasts and 3-D skin patch models were cultured for in vitro analysis. Ex vivo analysis was performed using skin explants. In vivo studies were done in 6-week-old male CD Hairless rats. Different formulations of rhTE, soluble or crosslinked using derivatized HA (dHA), were tested and analyzed.
[RESULTS] rhTE in monomeric form was utilized as a substrate by dermal fibroblasts during the production of branched elastin and fibrous collagen networks in vitro. Formulations of rhTE crosslinked with dHA demonstrated increased expression of hyaluronic acid synthase 1 and ex vivo results revealed increased moisture content and glycosaminoglycan (GAG) deposition versus dermal filler control. Intradermal rhTE‒dHA injection produced colocalized human‒rat elastin fibers in vivo.
[CONCLUSIONS] These results suggest that the novel rhTE‒dHA matrix is an attractive material to support skin tissue repair.J Drugs Dermatol. 2020;19(12): doi:10.36849/JDD.2020.5375.
추출된 의학 개체 (NER)
| 유형 | 영어 표현 | 한국어 / 풀이 | UMLS CUI | 출처 | 등장 |
|---|---|---|---|---|---|
| 재료 | ha
|
히알루론산 | dict | 3 | |
| 재료 | hyaluronic acid
|
히알루론산 | dict | 2 | |
| 시술 | dermal filler
|
필러 주입술 | dict | 1 |
MeSH Terms
Animals; Cell Line; Collagen; Cosmetic Techniques; Dermal Fillers; Drug Implants; Elastin; Extracellular Matrix; Female; Fibroblasts; Glycosaminoglycans; Humans; Hyaluronic Acid; Injections, Intradermal; Male; Middle Aged; Models, Animal; Rats; Recombinant Proteins; Skin; Skin Aging; Tissue Culture Techniques; Tropoelastin
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