Development and validation of a minimally invasive and image-guided tape stripping method to sample atopic skin in children

Author:

Yélamos O12ORCID,Andersen D3,Pont M4,Iglesias P1,Potrony M56ORCID,Domínguez M1,Herrero A1,Alejo B1,Mateu J1,Røpke M7,Danneskiold-Samsøe N B8,Malvehy J16,Guy R H9,Brix S3,Puig S16ORCID

Affiliation:

1. Department of Dermatology, Hospital Clinic de Barcelona, Universitat de Barcelona , Barcelona , Spain

2. Department of Dermatology, Hospital de la Santa Creu i Sant Pau, IIB SANT PAU, Universitat Autònoma de Barcelona , Barcelona , Spain

3. Department of Biotechnology and Biomedicine, Technical University of Denmark , Kongens Lyngby , Denmark

4. Almirall R&D , Barcelona , Spain

5. Biochemistry and Molecular Genetics Department, Hospital Clínic de Barcelona, IDIBAPS , Barcelona , Spain

6. Centro de Investigación Biomédica en Red de Enfermedades Raras (CIBERER), Instituto de Salud Carlos III , Madrid , Spain

7. LeoPharma A/S , Ballerup , Denmark

8. Department of Biology, University of Copenhagen , Copenhagen , Denmark

9. Department of Life Sciences, University of Bath , Bath, Somerset , UK

Abstract

Abstract Background Molecular skin profiling techniques, typically performed on skin samples taken by punch biopsy, have enhanced the understanding of the pathophysiology of atopic dermatitis (AD), thereby enabling the development of novel targeted therapeutics. However, punch biopsies are not always feasible or desirable, and novel minimally invasive methods such as skin tape stripping have been developed. Aim To develop, optimize and validate a novel tape stripping method guided by noninvasive in vivo skin imaging to sample atopic skin in children. Methods Skin tape stripping-based procedures were compared and optimized using data from 30 healthy controls (HCs: 5 adults, 25 children) and 39 atopic children. Evaluations were guided by high-resolution photography, reflectance confocal microscopy, optical coherence tomography and transepidermal water loss measurements. We assessed and compared adverse events (AEs), the time needed to perform the sampling and the cDNA levels obtained from the tapes. Results Tape stripping methods based on previously described protocols resulted in erosions in all participants and required a median time of 65 min to perform (range 60–70 min), but provided good cDNA yield. Shorter durations appeared less invasive but provided lower cDNA yield. The final optimized tape stripping protocol, using 11 tapes of 22 mm in diameter, each applied twice for 5 s with 90° rotation, did not produce significant AEs, was completed within a median time of 7 min (range 5–15 min) and provided good cDNA yield both in HCs and atopic children. Conclusion Our minimally invasive method is safe and reliable, and provides reproducible acquisition of cDNA in atopic children. In addition, it enables rapid sample collection, a crucial factor in clinical practice.

Funder

Almirall S. A.

Leo Pharma A/S

Publisher

Oxford University Press (OUP)

Subject

Dermatology

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