Agnes S. Klar

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Switzerland

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Recent Grants

Grant: Open

Role of CD200-CD200 receptor interactions in human diabetic skin wounds

Open Date: 2023-05-01

Close Date: 2027-05-01

Grant: Close

Application of the microfluidic device for the cultivation of three-dimensional blood and lymphatic vessels in vitro

Open Date: 2023-04-01

Close Date: 2026-04-01

Grant: Close

Role of LGR5 and LGR6 in the regulation of human epithelial stem cell niche in the interfollicular epidermis

Open Date: 2022-05-01

Close Date: 2026-05-01

Grant: Close

Development of a human cell-based in vitro platform to assess efficacy and safety of drug candidates for the treatment of metabolic disorders

Open Date: 2022-03-01

Close Date: 2024-03-01

Grant: Close

Role of macrophages on vascularisation and repair/regeneration of bio-engineered human skin

Open Date: 2020-10-01

Close Date: 2024-10-01

Articles (15)

Combining bioengineered human skin with bioprinted cartilage for ear reconstruction

Microtia is a congenital disorder that manifests as a malformation of the external ear leading to psychosocial problems in affected children. Here, we present a tissue-engineered treatment approach based on a bioprinted autologous auricular cartilage construct (EarCartilage) combined with a bioengineered human pigmented and prevascularized dermo-epidermal skin substitute (EarSkin) tested in immunocompromised rats. We confirmed that human-engineered blood capillaries of EarSkin connected to the recipient’s vasculature within 1 week, enabling rapid blood perfusion and epidermal maturation. Bioengineered EarSkin displayed a stratified epidermis containing mature keratinocytes and melanocytes. The latter resided within the basal layer of the epidermis and efficiently restored the skin color. Further, in vivo tests demonstrated favorable mechanical stability of EarCartilage along with enhanced extracellular matrix deposition. In conclusion, EarCartilage combined with EarSkin represents a novel approach for the treatment of microtia with the potential to circumvent existing limitations and improve the aesthetic outcome of microtia reconstruction.

Year:

2023

The expression pattern of cytokeratin 6a in epithelial cells of different origin in dermo‐epidermal skin substitutes in vivo

Keratinocytes are the predominant cell type of skin epidermis. Through the programmed process of differentiation, they form a cornified envelope that provides a physical protective barrier against harmful external environment. Keratins are major structural proteins of keratinocytes that together with actin filaments and microtubules form the cytoskeleton of these cells. In this study, we examined the expression pattern and distribution of cytokeratin 6a (CK6a) in healthy human skin samples of different body locations, in fetal and scar skin samples, as well as in dermo‐epidermal skin substitutes (DESSs). We observed that CK6a expression is significantly upregulated in fetal skin and scar tissue as well as in skin grafts after short‐term transplantation. Importantly, the abundance of CK6a corresponds directly to the expression pattern of wound healing marker CK16. We postulate that CK6a is a useful marker to accurately evaluate the homeostatic state of DESSs.

Year:

2023

Collaborators (5)

Thomas Biedermann

-

SWITZERLAND

Ueli Moehrlen

-

SWITZERLAND

Marcy Zenobi-Wong

ETH-Bereich Hochschulen

SWITZERLAND

Hesham K. Yosef

Chief Scientific Officer

-

GERMANY

MONICA NANNI

Assist. Professional Researcher

UCSF

UNITED STATES
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