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Open AccessJournal ArticleDOI

Skin microbiome transplantation and manipulation: Current state of the art.

TLDR
A review of skin microbiome manipulation strategies, ranging from skin microbiome transplantation, over skin bacteriotherapy to the use of prebiotics, probiotics and postbiotics can be found in this article.
Abstract
Many skin conditions are associated with an imbalance in the skin microbiome. In recent years, the skin microbiome has become a hot topic, for both therapeutic and cosmetic purposes. The possibility of manipulating the human skin microbiome to address skin conditions has opened exciting new paths for therapy. Here we review the skin microbiome manipulation strategies, ranging from skin microbiome transplantation, over skin bacteriotherapy to the use of prebiotics, probiotics and postbiotics. We summarize all efforts undertaken to exchange, manipulate, transplant or selectively apply the skin microbiome to date. Multiple microbial groups have been targeted, since they have been proven to be beneficial for skin health. We focus on the most common skin disorders and their associated skin microbiome dysbiosis and we review the existing scientific data and clinical trials undertaken to combat these skin conditions. The skin microbiome represents a novel platform for therapy. Transplantation of a complete microbiome or application of single strains has demonstrated beneficial therapeutic application.

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Atopic dermatitis: an expanding therapeutic pipeline for a complex disease.

TL;DR: The potential for a precision medicine approach to enable prevention and more effective long-term control of atopic dermatitis (AD) has been highlighted in this paper, where a review of various strategies and novel agents currently being investigated for AD is presented.
Journal ArticleDOI

Gut-Skin Axis: Current Knowledge of the Interrelationship between Microbial Dysbiosis and Skin Conditions.

TL;DR: In this paper, an exhaustive list of common skin conditions with associated dysbiosis in the skin microbiome as well as the current body of evidence on gut microbiome dysbiotic, dietary links, and their interplay with skin conditions is described.
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From Dysbiosis to Healthy Skin: Major Contributions of Cutibacterium acnes to Skin Homeostasis

TL;DR: Cutibacterium acnes, the most abundant bacterium living in human, healthy and sebum-rich skin sites, contributes actively to the normal biophysiological skin functions through, for example, lipid modulation, niche competition and oxidative stress mitigation.
Journal ArticleDOI

Biomaterial-based encapsulated probiotics for biomedical applications: Current status and future perspectives

TL;DR: This review summarizes recent advances of biomaterials-based encapsulated probiotics, including encapsulation methods, encapsulation materials, and encapsulation effects, and highlights biomaterial- based encapsulated Probiotics in diversified biomedical applications, including the gastrointestinal tract, oral cavity, vagina, and skin.
References
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Journal ArticleDOI

Ror2 signaling regulates Golgi structure and transport through IFT20 for tumor invasiveness

TL;DR: It is found that intraflagellar transport 20 mediates the ability of Ror2 signaling to induce the invasiveness of tumors that lack primary cilia, and IFT20 regulates the nucleation of Golgi-derived microtubules by affecting the GM130-AKAP450 complex.
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Dietary Modulation of the Human Colonic Microbiota: Introducing the Concept of Prebiotics

TL;DR: By combining the rationale of pro- and prebiotics, the concept of synbiotics is proposed to characterize some colonic foods with interesting nutritional properties that make these compounds candidates for classification as health-enhancing functional food ingredients.
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Duodenal Infusion of Donor Feces for Recurrent Clostridium difficile

TL;DR: The infusion of donor feces was significantly more effective for the treatment of recurrent C. difficile infection than the use of vancomycin and patients showed increased fecal bacterial diversity, similar to that in healthy donors, with an increase in Bacteroidetes species and clostridium clusters IV and XIVa and a decrease in Proteobacteria species.
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Bacterial Community Variation in Human Body Habitats Across Space and Time

TL;DR: The results indicate that the microbiota, although personalized, varies systematically across body habitats and time; such trends may ultimately reveal how microbiome changes cause or prevent disease.
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Topographical and temporal diversity of the human skin microbiome.

TL;DR: This topographical and temporal survey of body sites from 10 healthy human individuals sampled over time provides a baseline for studies that examine the role of bacterial communities in disease states and the microbial interdependencies required to maintain healthy skin.
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