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Bacterial and Fungal Dysbiosis in Hidradenitis Suppurativa and the Impacts of Antimicrobial Treatments

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Bacterial and Fungal Dysbiosis in Hidradenitis Suppurativa and the Impacts of Antimicrobial Treatments

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  • Research Article
  • Cite Count Icon 47
  • 10.3389/fimmu.2020.00468
Fungal Dysbiosis and Intestinal Inflammation in Children With Beta-Cell Autoimmunity
  • Mar 19, 2020
  • Frontiers in Immunology
  • Jarno Honkanen + 14 more

Although gut bacterial dysbiosis is recognized as a regulator of beta-cell autoimmunity, no data is available on fungal dysbiosis in the children at the risk of type 1 diabetes (T1D). We hypothesized that the co-occurrence of fungal and bacterial dysbiosis contributes to the intestinal inflammation and autoimmune destruction of insulin-producing beta-cells in T1D. Fecal and blood samples were collected from 26 children tested positive for at least one diabetes-associated autoantibody (IAA, GADA, IA-2A or ICA) and matched autoantibody-negative children with HLA-conferred susceptibility to T1D (matched for HLA-DQB1 haplotype, age, gender and early childhood nutrition). Bacterial 16S and fungal ITS2 sequencing, and analyses of the markers of intestinal inflammation, namely fecal human beta-defensin-2 (HBD2), calprotectin and secretory total IgA, were performed. Anti-Saccharomyces cerevisiae antibodies (ASCA) and circulating cytokines, IFNG, IL-17 and IL-22, were studied. After these analyses, the children were followed for development of clinical T1D (median 8 years and 8 months). Nine autoantibody positive children were diagnosed with T1D, whereas none of the autoantibody negative children developed T1D during the follow-up. Fungal dysbiosis, characterized by high abundance of fecal Saccharomyces and Candida, was found in the progressors, i.e., children with beta-cell autoimmunity who during the follow-up progressed to clinical T1D. These children showed also bacterial dysbiosis, i.e., increased Bacteroidales and Clostridiales ratio, which was, however, found also in the non-progressors, and is thus a common nominator in the children with beta-cell autoimmunity. Furthermore, the progressors showed markers of intestinal inflammation detected as increased levels of fecal HBD2 and ASCA IgG to fungal antigens. We conclude that the fungal and bacterial dysbiosis, and intestinal inflammation are associated with the development of T1D in children with beta-cell autoimmunity.

  • Research Article
  • Cite Count Icon 25
  • 10.1097/mcg.0000000000001669
Bacterial and Fungal Gut Dysbiosis and Clostridium difficile in COVID-19: A Review.
  • Feb 3, 2022
  • Journal of clinical gastroenterology
  • Laura Linares-García + 6 more

Background:Gastrointestinal symptoms are common in Coronavirus Disease 2019 (COVID-19), related to infection of severe acute respiratory syndrome-coronavirus-2 (SARS-CoV-2) of intestinal cells through the angiotensin converting enzyme 2 (ACE2) receptor in the brush border. Also, patients are treated with multiple antibiotics. Therefore, an increase in gut dysbiosis and in the prevalence of Clostridium difficile infection (CDI) is expected in patients with COVID-19.Methods:A PubMed search was conducted using the terms “gut microbiota,” “gut mycobiota,” “dysbiosis” AND “COVID-19”; “Clostridium difficile,” “Clostridioides difficile” AND “COVID-19”; “probiotics,” “bacteriotherapy AND COVID-19.” Only case series, observational and experimental studies were included.Results:A total of 384 papers were retrieved and 21 fulfilled selection criteria. Later, a new paper was identified, thus 22 papers were reviewed. Main findings: (1) gut bacterial dysbiosis has been found in fecal samples of COVID-19 patients, with enrichment of opportunistic organisms and decrease of beneficial commensals such as Faecalibacterium prausnitizii. Dysbiosis is related to inflammatory markers and illness severity. (2) There is evidence for abnormal gut barrier and bacterial translocation with a negative impact in the lungs. (3) Fungal dysbiosis correlating with pulmonary mycobiota, has also been found. (4) There is controversy in the CDI rates among COVID-19 patients versus controls and pandemic versus prepandemic era. (5) There is no available evidence yet to support bacteriotherapy in COVID-19. (6) Fecal microbiota transplantation (FMT) has been proposed for COVID-19, although there is no evidence to support it. Also, FMT can be safely used during the pandemic for CDI if strict screening protocols for donors and fecal product are implemented.Conclusions:In COVID-19 there is bacterial and fungal dysbiosis that correlates with systemic and pulmonary inflammation, and illness severity. Further investigations are warranted to determine the efficacy of bacteriotherapy and FMT for modulating gut dysbiosis in COVID-19.

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  • Cite Count Icon 8
  • 10.1111/exd.12830
Deciphering the microbiology of hidradenitis suppurativa: a step forward towards understanding an enigmatic inflammatory skin disease.
  • Sep 25, 2015
  • Experimental dermatology
  • Maïa Delage + 6 more

Keywords: anaerobes; hidradenitis suppurativa; inflammatory disease; microbiology; soft tissue and skin infections

  • Research Article
  • Cite Count Icon 163
  • 10.1136/gutjnl-2016-313170
Fungal dysbiosis in cirrhosis
  • Jun 3, 2017
  • Gut
  • Jasmohan S Bajaj + 9 more

ObjectiveCirrhotics have a high rate of infections, which are increasingly fungal or culture-negative in nature. While infected cirrhotics have bacterial dysbiosis, the role of fungi is unclear. We aimed to...

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  • Cite Count Icon 46
  • 10.1016/j.jid.2020.05.102
Initial Evidence of Distinguishable Bacterial and Fungal Dysbiosis in the Skin of Patients with Atopic Dermatitis or Netherton Syndrome
  • Jun 14, 2020
  • The Journal of investigative dermatology
  • Verena Moosbrugger-Martinz + 6 more

Atopic dermatitis (AD) is an inflammatory skin disease in which epidermal barrier impairment, often owing to FLG null mutations, precedes immune hyperresponsiveness. Ichthyosis vulgaris is characterized by FLG null mutations and noninflamed dry skin. Netherton syndrome (NS), caused by SPINK5 null mutations, is characterized by generalized erythroderma with scaling and atopic manifestations. The goal of this work was to evaluate associations between specific skin disease features, such as ichthyotic and/or atopic manifestations, and the skin bacterial and fungal microbiota. Taxon diversity showed greater variation in the bacterial microbiota than in the fungal microbiota in the skin diseases. The relative abundances of Firmicutes (Staphylococcus) and Actinobacteria (Corynebacterium) were augmented in ichthyosis vulgaris, AD, and NS, whereas those of Proteobacteria/Enhydrobacter and Bacteroidetes were reduced, regardless of body site. Furthermore, proportions of Staphylococcus were correlated with transepidermal water loss and serum IgE levels. Nevertheless, the skin of patients with low to mild AD was overcolonized with Staphylococcus epidermidis and not with Staphylococcus aureus. Ascomycota were increased in both AD and NS, but from expansion of different fungal species. Finally, the expansion of pathologic bacteria in AD and NS might be supported by surrounding fungi. Thus, distinguishable bacterial and fungal skin dysbiosis in AD, NS, and ichthyosis vulgaris emphasizes disease-specific pathomechanisms.

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  • Cite Count Icon 10
  • 10.1186/s12879-021-06270-w
Therapeutic potential of an intestinotrophic hormone, glucagon-like peptide 2, for treatment of type 2 short bowel syndrome rats with intestinal bacterial and fungal dysbiosis
  • Jun 16, 2021
  • BMC Infectious Diseases
  • Xiuting Hu + 6 more

BackgroundPrevious studies showed that type 2 short bowel syndrome (SBS) rats were accompanied by severe intestinal bacterial dysbiosis. Limited data are available for intestinal fungal dysbiosis. Moreover, no effective therapeutic drugs are available for these microbiota dysbiosis. The aims of our study were to investigate the therapeutic potential of glucagon-like peptide 2 (GLP-2) for these microbiota dysbiosis in type 2 SBS rats.Methods8-week-old male SD rats which underwent 80% small bowel resection, ileocecum resection, partial colon resection and jejunocolostomy, were treated with saline (SBS group, n = 5) or GLP-2 (GLP2.SBS group, n = 5). The Sham group rats which underwent transection and re-anastomosis were given a saline placebo (Sham group, n = 5). 16S rRNA and ITS sequencing were applied to evaluate the colonic bacterial and fungal composition at 22 days after surgery, respectively.ResultsThe relative abundance of Actinobacteria, Firmicutes and proinflammatory Proteobacteria increased significantly in SBS group rats, while the relative abundance of Bacteroidetes, Verrucomicrobia and Tenericutes decreased remarkably. GLP-2 treatment significantly decreased Proteus and increased Clostridium relative to the saline treated SBS rats. The diversity of intestinal fungi was significantly increased in SBS rats, accompanied with some fungi abnormally increased and some resident fungi (e.g., Penicillium) significantly decreased. GLP-2 treatment significantly decreased Debaryomyces and Meyerozyma, and increased Penicillium. Moreover, GLP-2 partially restored the bacteria-fungi interkingdom interaction network of SBS rats.ConclusionOur study confirms the bacterial and fungal dysbiosis in type 2 SBS rats, and GLP-2 partially ameliorated these microbiota dysbiosis.

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  • Research Article
  • Cite Count Icon 20
  • 10.1186/s12866-024-03275-8
Gut bacterial and fungal dysbiosis in tuberculosis patients
  • Apr 25, 2024
  • BMC Microbiology
  • Meiqing Han + 8 more

BackgroundRecent studies have more focused on gut microbial alteration in tuberculosis (TB) patients. However, no detailed study on gut fungi modification has been reported till now. So, current research explores the characteristics of gut microbiota (bacteria)- and mycobiota (fungi)-dysbiosis in TB patients and also assesses the correlation between the gut microbiome and serum cytokines. It may help to screen the potential diagnostic biomarker for TB.ResultsThe results show that the alpha diversity of the gut microbiome (including bacteria and fungi) decreased and altered the gut microbiome composition of TB patients. The bacterial genera Bacteroides and Prevotella were significantly increased, and Blautia and Bifidobacterium decreased in the TB patients group. The fungi genus Saccharomyces was increased while decreased levels of Aspergillus in TB patients. It indicates that gut microbial equilibrium between bacteria and fungi has been altered in TB patients. The fungal-to-bacterial species ratio was significantly decreased, and the bacterial-fungal trans-kingdom interactions have been reduced in TB patients. A set model including Bacteroides, Blautia, Eubacterium_hallii_group, Apiotrichum, Penicillium, and Saccharomyces may provide a better TB diagnostics option than using single bacterial or fungi sets. Also, gut microbial dysbiosis has a strong correlation with the alteration of IL-17 and IFN-γ.ConclusionsOur results demonstrate that TB patients exhibit the gut bacterial and fungal dysbiosis. In the clinics, some gut microbes may be considered as potential biomarkers for auxiliary TB diagnosis.

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  • Cite Count Icon 20
  • 10.3389/fcimb.2022.1035366
Immune activation of characteristic gut mycobiota Kazachstania pintolopesii on IL-23/IL-17R signaling in ankylosing spondylitis.
  • Dec 20, 2022
  • Frontiers in Cellular and Infection Microbiology
  • Haiting Zhang + 7 more

It is very important to understand the communication and interaction mechanisms between the host and its resident microorganisms on host physiology and for precise diagnosis and treatment. Although intestinal fungi and bacteria dysbiosis is increasingly linked to ankylosing spondylitis (AS), their mechanisms of action have been rarely illustrated. In this paper, fecal samples from 10 AS monkeys and 10 healthy controls were collected to systematically characterize the gut mycobiota and microbiota in AS monkeys by 16S rRNA and ITS2 DNA sequencing. Our results showed the gut fungi of Kazachstania pintolopesii, Saccharomycetaceae, Kazachstania, and Saccharomyceteles. Saccharomycetes were specially enriched in AS, and the microbiota of AS monkeys was characterized by an increased abundance of Clostridia, Clostridiales, Ruminococcaceae, and Prevotella 2, using Line Discriminant Analysis Effect Size. Compared to healthy controls, decreased ITS2/16S biodiversity ratios and altered bacterial-fungal interkingdom networks were observed in AS monkeys. Oral administration of K. pintolopesii activates IL-17RA pathway and induce inflammatory reaction in the colonic tissue of C57BL/6 mice, as well as multiple AS phenotypes, including fungal and bacterial dysbiosis, immune responses of NK cells, platelets, T cells, leukocytes, B-cell activation, rheumatoid arthritis, and inflammatory bowel disease. We also found the secreted products of K. pintolopesii could activate the IL-17RA pathway, which induces PANoptosis in macrophage RAW264.7 cells. Much worse, the PANoptosis products could promote the proliferation and morphological changes of K. pintolopesii, which resulted in much more K. pintolopesii and a severe inflammatory reaction. Interestingly, the inflammatory factor TNF-α can promote the morphological transformation of Candida albicans and K. pintolopesii, which is worthy of further study. The characteristic fungi in all these findings implied that fungal and bacterial dysbiosis have a close link to AS and that their communication and interaction indeed play an important role in autoimmune responses, and K. pintolopesii could be a potential marker microorganism in AS, although its specific mechanism is not fully elucidated.

  • Research Article
  • Cite Count Icon 9
  • 10.1016/j.jdcr.2023.04.025
Trimethoprim/sulfamethoxazole and cephalexin combination therapy in hidradenitis suppurativa patients: A series of 16 cases
  • May 5, 2023
  • JAAD Case Reports
  • Rahul Masson + 6 more

Trimethoprim/sulfamethoxazole and cephalexin combination therapy in hidradenitis suppurativa patients: A series of 16 cases

  • Abstract
  • Cite Count Icon 1
  • 10.1016/j.jid.2019.07.385
383 Distinguishable bacterial and fungal dysbiosis in skin of patients with Atopic Dermatitis or Netherton Syndrome
  • Sep 1, 2019
  • Journal of Investigative Dermatology
  • V Moosbrugger-Martinz + 4 more

383 Distinguishable bacterial and fungal dysbiosis in skin of patients with Atopic Dermatitis or Netherton Syndrome

  • Research Article
  • Cite Count Icon 1
  • 10.7759/cureus.74172
Effectiveness of Anti-tumor Necrosis Factor Drugs on Hidradenitis Suppurativa: A Systematic Review.
  • Nov 21, 2024
  • Cureus
  • Rojina Samifanni + 6 more

Hidradenitis suppurativa (HS) is a painful and chronic inflammatory skin disease with no consistently effective treatment, affecting a significant portion of the Western population. HS is characterized by painful nodules, abscesses, tunnels, and scarring in body folds. The immunobiology is poorly understood, therefore resulting in a lack of effective therapies. Despite indications of microbial involvement, antimicrobial treatments have shown inconsistent and temporary results. Recent studies have identified dysregulated immune responses as a key factor in HS. This has led to the use of biologic agents, most notably adalimumab, which is currently the only FDA-approved therapy for HS. Due to the limited understanding of immune dysregulation in HS, ongoing clinical trials are adapting treatments from other skin conditions, such as psoriasis. As a result, researchers look to other skin conditions with better-understood pathophysiologies, such as psoriasis, as a starting point for developing treatments for HS. While adaptation can offer some benefits, such as immediate treatment options, the lack of specificity can lead to side effects that are not well tolerated, and long-term efficacy may be uncertain. Therefore, there is a pressing need for a foundational understanding of HS's immune dysregulation. Current ongoing research is exploring other options, such as therapies targeting IL-17, in addition to anti-TNF therapies, which have shown the potential to be more effective. With new options emerging, it is essential to evaluate the current performance of anti-TNF drugs in treating HS. This review was conducted to thoroughly assess the effectiveness of these therapies, offering a detailed analysis to inform future research and clinical practice. The objective is to determine whether anti-TNF drugs continue to be a strong treatment option or if newer therapies might lead to better outcomes for patients.

  • Research Article
  • Cite Count Icon 158
  • 10.1111/1471-0528.15870
Lactobacilli-containing vaginal probiotics to cure or prevent bacterial or fungal vaginal dysbiosis: a systematic review and recommendations for future trial designs.
  • Aug 8, 2019
  • BJOG: An International Journal of Obstetrics & Gynaecology
  • Jhhm Van De Wijgert + 1 more

Vaginal probiotics claiming to cure and/or prevent bacterial and/or fungal vaginal dysbiosis are available on the market but, until recently, did not have to be approved as drugs for human use. We evaluated the impact of vaginal probiotics on bacterial vaginosis (BV) and vulvovaginal candidiasis (VVC) cure and/or recurrence, as well as vaginal microbiota (VMB) composition and vaginal detection of probiotic strains. We performed a systematic literature search in MEDLINE and Embase up to 15 January 2019. There were no restrictions in probiotic strains/formulations, study populations, and designs. BV had to be diagnosed by Nugent or Ison-Hay Gram stain scoring, VVC by culture, wet mount or PCR, and VMB composition/detection by molecular techniques. The authors independently extracted data. All 22 vaginal probiotics evaluated in the 34 eligible studies contained Lactobacillus strains, and some contained additional active ingredients. The probiotics hold promise for BV cure and prevention, but much less so for VVC cure and prevention. No major safety concerns were reported in any of the studies. Vaginal detection of probiotic strains never lasted long beyond the dosing period, suggesting that they did not colonise the vagina. However, findings are not definitive because heterogeneity was high and the quality of most studies suboptimal. Availability of vaginal probiotics for vaginal health indications will likely decline in 2020 because of regulatory changes. We urge the field to invest in clinical evidence-based product development and to conduct future trials more rigorously. Lactobacilli-containing vaginal probiotics hold promise for bacterial vaginosis cure and prevention, but not for vulvovaginal candidiasis.

  • Discussion
  • Cite Count Icon 2
  • 10.1111/1471-0528.15962
Authors' reply re: Lactobacilli-containing vaginal probiotics to cure or prevent bacterial or fungal vaginal dysbiosis: a systematic review and recommendations for future trial designs.
  • Oct 20, 2019
  • BJOG: An International Journal of Obstetrics & Gynaecology
  • Janneke Hhm Van De Wijgert + 1 more

BACKGROUND:Vaginal probiotics claiming to cure and/or prevent bacterial and/or fungal vaginal dysbiosis are available on the market but did, until recently, not have to be approved as drugs for human use. OBJECTIVES:We evaluated the impact of vaginal probiotics on bacterial vaginosis (BV) and vulvovaginal candidiasis (VVC) cure and/or recurrence, as well as vaginal microbiota (VMB) composition and vaginal detection of probiotic strains. SEARCH STRATEGY:We performed a systematic literature search in MEDLINE and Embase up to 15 January 2019. SELECTION CRITERIA:There were no restrictions in probiotic strains/formulations, study populations, and designs. BV had to be diagnosed by Nugent or Ison-Hay Gram stain scoring, VVC by culture, wet mount, or PCR, and VMB composition/detection by molecular techniques. DATA COLLECTION AND ANALYSIS:The authors independently extracted data. MAIN RESULTS:All 22 vaginal probiotics evaluated in the 34 eligible studies contained Lactobacillus strains, and some contained additional active ingredients. The probiotics hold promise for BV cure and prevention, but much less so for VVC cure and prevention. No major safety concerns were reported in any of the studies. Vaginal detection of probiotic strains never lasted long beyond the dosing period, suggesting that they did not colonise the vagina. However, findings are not definitive because heterogeneity was high and the quality of most studies suboptimal. CONCLUSIONS:Availability of vaginal probiotics for vaginal health indications will likely decline in 2020 because of regulatory changes. We urge the field to invest in clinical evidence-based product development, and to conduct future trials more rigorously. This article is protected by copyright. All rights reserved.

  • Research Article
  • Cite Count Icon 1242
  • 10.1136/gutjnl-2015-310746
Fungal microbiota dysbiosis in IBD
  • Feb 3, 2016
  • Gut
  • Harry Sokol + 15 more

ObjectiveThe bacterial intestinal microbiota plays major roles in human physiology and IBDs. Although some data suggest a role of the fungal microbiota in IBD pathogenesis, the available data are scarce....

  • Research Article
  • Cite Count Icon 145
  • 10.1093/cid/cix285
The Microbiological Landscape of Anaerobic Infections in Hidradenitis Suppurativa: A Prospective Metagenomic Study.
  • Apr 1, 2017
  • Clinical Infectious Diseases
  • Hélène Guet-Revillet + 11 more

Hidradenitis suppurativa (HS) is a frequent and severe disease of the skin, characterized by recurrent or chronic skinfold suppurative lesions with a high impact on quality of life. Although considered inflammatory, antimicrobial treatments can improve or lead to clinical remission of HS, suggesting triggering microbial factors. Indeed, mixed anaerobic microbiota are associated with a majority of HS lesions. Our aim in this study was to characterize the landscape of anaerobic infections in HS using high-throughput sequencing. We sampled and cultured 149 lesions and 175 unaffected control skinfold areas from 65 adult HS patients. The microbiome of 80 anaerobic lesions was compared to that of 88 control samples by 454 high-throughput sequencing after construction of 16S ribosomal RNA gene libraries. Bacterial cultures detected anaerobes in 83% of lesions vs 53% of control samples, combined with milleri group streptococci and actinomycetes in 33% and 26% of cases, respectively. High-throughput sequencing identified 43 taxa associated with HS lesions. Two gram-negative anaerobic rod taxa, Prevotella and Porphyromonas, predominated, contrasting with a reduced abundance of aerobic commensals. These rare taxa of normal skinfold microbiota were associated with lesions independently of gender, duration and familial history of HS, body mass index, and location. Two main additional taxa, Fusobacterium and Parvimonas, correlated with the clinical severity of HS. In this study we reveal the high prevalence and particular landscape of mixed anaerobic infection in HS, paving the way for rationale targeted antimicrobial treatments.

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