Literature DB >> 30797867

Core-multishell nanocarriers enhance drug penetration and reach keratinocytes and antigen-presenting cells in intact human skin.

Janna Frombach1, Michael Unbehauen2, Indah N Kurniasih2, Fabian Schumacher3, Pierre Volz4, Sabrina Hadam1, Fiorenza Rancan1, Ulrike Blume-Peytavi1, Burkhard Kleuser5, Rainer Haag2, Ulrike Alexiev4, Annika Vogt6.   

Abstract

In reconstructed skin and diffusion cell studies, core-multishell nanocarriers (CMS-NC) showed great potential for drug delivery across the skin barrier. Herein, we investigated penetration, release of dexamethasone (DXM), in excised full-thickness human skin with special focus on hair follicles (HF). Four hours and 16 h after topical application of clinically relevant dosages of 10 μg DXM/cm2 skin encapsulated in CMS-NC (12 nm diameter, 5.8% loading), presence of DXM in the tissue as assessed by fluorescence microscopy of anti-DXM-stained tissue sections as well as ELISA and HPLC-MS/MS in tissue extracts was enhanced compared to standard LAW-creme but lower compared to DXM aqueous/alcoholic solution. Such enhanced penetration compared to conventional cremes offers high potential for topical therapies, as recurrent applications of corticosteroid solutions face limitations with regard to tolerability and fast drainage. The findings encourage more detailed investigations on where and how the nanocarrier and drug dissociate within the skin and what other factors, e.g. thermodynamic activity, influence the penetration of this formulations. Microscopic studies on the spatial distribution within the skin revealed accumulation in HF and furrows accompanied by limited cellular uptake assessed by flow cytometry (up to 9% of total epidermal cells). FLIM clearly visualized the presence of CMS-NC in the viable epidermis and dermis. When exposed in situ a fraction of up to 25% CD1a+ cells were found within the epidermal CMS-NC+ population compared to approximately 3% CD1a+/CMS-NC+ cells after in vitro exposure in short-term cultures of epidermal cell suspensions. The latter reflects the natural percentage of Langerhans cells (LC) in epidermis suspensions and indicated that CMS-NC were not preferentially internalized by one cell type. The increased CMS-NC+ LC proportion after exposure within the tissue is in accordance with the strategic suprabasal LC-localization. More specifically we postulate that the extensive dendrite meshwork, their position around HF orifices and their capacity to modulate tight junctions facilitated a preferential uptake of CMS-NC by LC within the skin. This newly identified aspect of CMS-NC penetration underlines the potential of CMS-NC for dermatotherapy and encourages further investigations of CMS-NC for the delivery of other molecule classes for which intracellular delivery is even more crucial.
Copyright © 2019 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Cellular uptake; Dendritic cells; Drug delivery; High resolution microscopy; Nanoparticles; Skin penetration

Mesh:

Substances:

Year:  2019        PMID: 30797867     DOI: 10.1016/j.jconrel.2019.02.028

Source DB:  PubMed          Journal:  J Control Release        ISSN: 0168-3659            Impact factor:   9.776


  6 in total

Review 1.  Imaging and quantifying drug delivery in skin - Part 2: Fluorescence andvibrational spectroscopic imaging methods.

Authors:  Ana-Maria Pena; Xueqin Chen; Isaac J Pence; Thomas Bornschlögl; Sinyoung Jeong; Sébastien Grégoire; Gustavo S Luengo; Philippe Hallegot; Peyman Obeidy; Amin Feizpour; Kin F Chan; Conor L Evans
Journal:  Adv Drug Deliv Rev       Date:  2020-03-23       Impact factor: 15.470

2.  A Dual Fluorescence-Spin Label Probe for Visualization and Quantification of Target Molecules in Tissue by Multiplexed FLIM-EPR Spectroscopy.

Authors:  Pin Dong; Johannes Stellmacher; Lydia M Bouchet; Marius Nieke; Amit Kumar; Ernesto R Osorio-Blanco; Gregor Nagel; Silke B Lohan; Christian Teutloff; Alexa Patzelt; Monika Schäfer-Korting; Marcelo Calderón; Martina C Meinke; Ulrike Alexiev
Journal:  Angew Chem Int Ed Engl       Date:  2021-05-26       Impact factor: 15.336

3.  Recent Patents Concerning the use of Nanotechnology-based Delivery Systems as Skin Penetration Enhancers.

Authors:  Bruna Medeiros-Neves; Marina Cardoso Nemitz; Flávia Nathiely Silveira Fachel; Helder Ferreira Teixeira
Journal:  Recent Pat Drug Deliv Formul       Date:  2019

4.  Monovalent antibody-conjugated lipid-polymer nanohybrids for active targeting to desmoglein 3 of keratinocytes to attenuate psoriasiform inflammation.

Authors:  Zih-Chan Lin; Tsong-Long Hwang; Tse-Hung Huang; Kohei Tahara; Jiří Trousil; Jia-You Fang
Journal:  Theranostics       Date:  2021-03-04       Impact factor: 11.556

5.  Topical Delivery of Rapamycin by Means of Microenvironment-Sensitive Core-Multi-Shell Nanocarriers: Assessment of Anti-Inflammatory Activity in an ex vivo Skin/T Cell Co-Culture Model.

Authors:  Fiorenza Rancan; Xiao Guo; Keerthana Rajes; Polytimi Sidiropoulou; Fatemeh Zabihi; Luisa Hoffmann; Sabrina Hadam; Ulrike Blume-Peytavi; Eckart Rühl; Rainer Haag; Annika Vogt
Journal:  Int J Nanomedicine       Date:  2021-10-22

6.  Serine Protease-Mediated Cutaneous Inflammation: Characterization of an Ex Vivo Skin Model for the Assessment of Dexamethasone-Loaded Core Multishell-Nanocarriers.

Authors:  Janna Frombach; Fiorenza Rancan; Katharina Kübrich; Fabian Schumacher; Michael Unbehauen; Ulrike Blume-Peytavi; Rainer Haag; Burkhard Kleuser; Robert Sabat; Kerstin Wolk; Annika Vogt
Journal:  Pharmaceutics       Date:  2020-09-10       Impact factor: 6.321

  6 in total

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