Labskinuk
The only commercially available lab-grown, full thickness human skin model that creates new collagen
06/12/2021
Labskin's December Newsletter is out now. Full of information on the Labskin tour of the United States and the promotion of during the Autumn Schedule.
Download the link below and sign up to the monthly updates.
https://dzvf.campaign-view.eu/ua/SharedView?od=3z6bf413d7f99af7af2360cf3672cdb306&cno=11a2b0b20ce4973&cd=12a781983e3a824&m=0
01/11/2021
The objective of this study was to develop methods to reproduce wounding of Labskin and to measure mass spectra directly from the tissue during the wound healing process using MALDI-MSI.
&D
https://zcu.io/FWmW
Utilizing a Living Skin Equivalent to Examine Wound Healing Using a living skin equivalent, methods were developed for reproducible wounding using Matrix Assisted Laser Desorption Ionization Mass Spectrometry Imaging.
25/10/2021
The aim of this article is to establish the rate at which the stratum corneum (SC) forms in Labskin, with up to 30 days in air-liquid interface (ALI).
&D
https://zcu.io/BjOp
Using Labskin to Show Formation Rate of the Stratum Corneum The objective of this study was to explore the formation rate of the stratum corneum in Labskin, with up to 30 days in an air-liquid interface.
18/10/2021
To compare sensitizing and non-sensitizing materials using an IL-18 / MTT based in vitro sensitization assay to determine Labskin’s response as an in vitro skin model.
&D
https://zcu.io/YMYm
Using Lab-Grown Skin as an In Vitro Model Using an IL-18 sensitization assay, the response to lab-grown skin as an in vitro skin model wasexamined, comparing sensitizing and non-sensitizing materials.
11/10/2021
This article aims to establish whether a wound dressing impregnated with silver or iodine will prevent S. aureus bacteria from penetrating the dermal layer in wounded and infected Labskin.
&D
https://zcu.io/fuQv
Using Different Wound Dressings on a Living Skin Equivalent This study was used to examine whether an iodine- or a silver-impregnated wound dressing will work better on an infected and wounded living skin equivalent.
04/10/2021
The aim of this article is to quantify the Interleukins IL-1α and IL-23 released by Labskin.
&D
https://zcu.io/TEf6
The Release of Pro-Inflammatory Cytokines by Labskin In this study, the aim was to quantify the release of pro-inflammatory cytokines (IL-1a, LK-23) from colonized and uncolonized Labskin.
27/09/2021
This paper examines if there is evidence to support the theory that topical probiotics can help create a balanced skin microbiome.
https://zcu.io/nTxy
Is There Evidence for Topical Prebiotics for a Balanced Skin Microbiome? The question is: could oligosaccharides be used as topical prebiotics? They do not seem to have a prebiotic effect in the best-known beneficial commensal on human skin.
20/09/2021
Using MALDI-MSI, the objective was to examine whether adding a pe*******on enhancer to a terbinafine product formulation can increase terbinafine pe*******on into Labskin.
https://zcu.io/pKsd
Investigating Drug Pe*******on in Labskin The objective of the study was to assess the addition of a pe*******on enhancer to a product formulation containing terbinafine.
13/09/2021
This article aims to evaluate anti-dermatophyte treatments through the development of methods for the reproducible invasion of Labskin with Trichophyton rubrum.
https://zcu.io/5TQK
Investigating Dermatophyte Colonization with Lab Grown Skin This study sought to develop methods to evaluate anti-dermatophyte treatments by using reproducibleinvasion in lab grown skin.
06/09/2021
Labskin exhibits the immunohistochemistry markers quite similar to human skin, is compatible with traditional cryo-sectioning preparation and paraffin wax embedding methods, as well as an extensive range of immunohistochemistry and staining protocols.
https://zcu.io/pDrt
Immunohistochemistry Analysis of a Living Skin Equivalent The living skin equivalent, known as labskin, demonstrated the same immunohistochemistry markers under immunohistochemistry analysis.
30/08/2021
To evaluate the effect on the growth of normal vaginal commensal Lactobacillus acidophilus and the growth and TSST-1 production by pathogenic Staphylococcus aureus through an in vitro safety assessment of tampon material.
https://zcu.io/jFZq
Exploring the Safety of Hygienic Tampons In this study, an in vitro safety assessment of tampon material was carried out, exploring the effects on the growth of Lactobacillus acidophilus.
24/08/2021
The Labskin team will host a this September to explore different microbiome on the human body.
Guest presentations & and expert speakers from the microbiome world.
Registration details to follow
https://zcu.io/no6w
An Introduction To The Vaginal Microbiome – A Whitepaper by Labskin AN INTRODUCTION TO THE VAGINAL MICROBIOME Research into the vaginal microbiome and how it affects the overall health of women has accelerated over the last decade. Our whitepaper “An Introduction To The Vaginal Microbiome” aims to explain what the vaginal microbiome is, the characteristics of mi...
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