Redalyc.Epidemiological, Clinical and Diagnostic Aspects of Sheep Conidiobolomycosis in Brazil
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NEWSLETTER 2017•Issue 2
NEWSLETTER 2017•Issue 2 page 2 Deep dermatophytosis page 4 Deep dermatophytosis: A case report page 5 Fereydounia khargensis: A new and uncommon opportunistic yeast from Malaysia page 6 Itraconazole: A quick guide for clinicians Visit us at AFWGonline.com and sign up for updates Editors’ welcome Dr Mitzi M Chua Dr Ariya Chindamporn Adult Infectious Disease Specialist Associate Professor Associate Professor Department of Microbiology Department of Microbiology & Parasitology Faculty of Medicine Cebu Institute of Medicine Chulalongkorn University Cebu City, Philippines Bangkok, Thailand This year we celebrate the 8th year of AFWG: 8 years of pursuing excellence in medical mycology throughout the region; 8 years of sharing expertise and encouraging like-minded professionals to join us in our mission. We are happy to once again share some educational articles from our experts and keep you updated on our activities through this issue. Deep dermatophytosis may be a rare skin infection, but late diagnosis or ineffective treatment may lead to mortality in some cases. This issue of the AFWG newsletter focuses on this fungal infection that usually occurs in immunosuppressed individuals. Dr Pei-Lun Sun takes us through the basics of deep dermatophytosis, presenting data from published studies, and emphasizes the importance of treating superficial tinea infections before starting immunosuppressive treatment. Dr Ruojun Wang and Professor Ruoyu Li share a case of deep dermatophytosis caused by Trichophyton rubrum. In this issue, we also feature a new fungus, Fereydounia khargensis, first discovered in 2014. Ms Ratna Mohd Tap and Dr Fairuz Amran present 2 cases of F. khargensis and show how PCR sequencing is crucial to correct identification of this uncommon yeast. -
Ricardo-La-Hoz-Cv.Pdf
Ricardo M. La Hoz, MD, FACP, FAST Curriculum vitae Date Prepared: November 20th 2017 Name: Ricardo M. La Hoz Office Address: 5323 Harry Hines Blvd Dallas TX, 75390-9113 Work Phone: (214) 648-2163 Work E-Mail: [email protected] Work Fax: (214) 648-9478 Place of Birth: Lima, Peru Education Year Degree Field of Study Institution (Honors) (Thesis advisor for PhDs) 1998 B.Sc. Biology Universidad Peruana Cayetano Heredia 2005 M.D. Medical Doctor Universidad Peruana Cayetano Heredia Postdoctoral Training Year(s) Titles Specialty/Discipline Institution (Lab PI for postdoc research) 2012 - 2013 Chief Fellow, Infectious University of Alabama at Diseases Birmingham 2012 - 2013 Transplant Infectious Diseases University of Alabama at Birmingham 2010 - 2012 Infectious Diseases University of Alabama at Birmingham 2007 - 2010 Internal Medicine University of Alabama at Birmingham Current Licensure and Certification Licensure • State of Texas Medical License, 2014 - Present. • State of North Carolina Medical License, 2013-2014. Inactive. • State of Alabama Medical License, 2009-2013. Inactive. 1 Board and Other Certification • Texas DPA, 2014 - Present. • Diplomate American Board of Internal Medicine, Subspecialty Infectious Diseases. 2012 - Present • Diplomate American Board of Internal Medicine. 2010- Present • Drug Enforcement Administration Certification, 2010 - Present. • State of Alabama Controlled Substance Certification, 2009-2013. • BLS/ACLS Certification, 2008 - Present • Educational Commission for Foreign Medical Graduates Certification. 2006 Honors and Awards Year Name of Honor/Award Awarding Organization 2017 2017 LEAD Capstone Project Finalist - Office of Faculty Diversity & Development, UT Leadership Emerging in Academic Southwestern Medical Center, Dallas, TX. Departments (LEAD) Program for Junior Faculty Physicians and Scientists 2017 2017 Participant - Leadership Emerging in Office of Faculty Diversity & Development, UT Academic Departments (LEAD) Program for Southwestern Medical Center, Dallas, TX. -
Epidemiological, Clinical and Diagnostic Aspects of Sheep Conidiobolomycosis in Brazil
Ciência Rural, Santa Maria,Epidemiological, v.46, n.5, p.839-846, clinical mai, and 2016 diagnostic aspects of sheep conidiobolomycosis http://dx.doi.org/10.1590/0103-8478cr20150935 in Brazil. 839 ISSN 1678-4596 MICROBIOLOGY Epidemiological, clinical and diagnostic aspects of sheep conidiobolomycosis in Brazil Aspectos epidemiológicos, clínicos e de diagnóstico da conidiobolomicose ovina no Brasil Carla WeiblenI Daniela Isabel Brayer PereiraII Valéria DutraIII Isabela de GodoyIII Luciano NakazatoIII Luís Antonio SangioniI Janio Morais SanturioIV Sônia de Avila BottonI* — REVIEW — ABSTRACT As lesões da conidiobolomicose normalmente são de caráter granulomatoso e necrótico, apresentando-se sob duas formas Conidiobolomycosis is an emerging disease caused clínicas: rinofacial e nasofaríngea. O presente artigo tem como by fungi of the cosmopolitan genus Conidiobolus. Particular objetivo revisar as principais características da doença em ovinos, strains of Conidiobolus coronatus, Conidiobolus incongruus and particularizando a epidemiologia, assim como os aspectos clínicos Conidiobolus lamprauges, mainly from tropical or sub-tropical e o diagnóstico das infecções causadas por Conidiobolus spp. no origin, cause the mycosis in humans and animals, domestic or Brasil. Neste País, a enfermidade é endêmica nas regiões nordeste wild. Lesions are usually granulomatous and necrotic in character, e centro-oeste, afetando ovinos predominantemente de raças presenting two clinical forms: rhinofacial and nasopharyngeal. deslanadas, ocasionando a morte na grande maioria dos casos This review includes the main features of the disease in sheep, with estudados. As espécies do fungo responsáveis pelas infecções an emphasis on the epidemiology, clinical aspects, and diagnosis em ovinos são C. coronatus e C. lamprauges e a forma clínica of infections caused by Conidiobolus spp. -
A New Species of <I>Conidiobolus</I> (<I>Ancylistaceae</I>) from Anhui, China
ISSN (print) 0093-4666 © 2012. Mycotaxon, Ltd. ISSN (online) 2154-8889 MYCOTAXON http://dx.doi.org/10.5248/120.427 Volume 120, pp. 427–435 April–June 2012 A new species of Conidiobolus (Ancylistaceae) from Anhui, China Yong Nie1, Cui-Zhu Yu1, Xiao-Yong Liu2* & Bo Huang1* 1Anhui Provincial Key Laboratory of Microbial Control, Anhui Agricultural University, West Changjiang Road 130, Hefei, Anhui 230036, China 2State Key Laboratory of Mycology, Institute of Microbiology, Chinese Academy of Sciences, Beijing 100101, China * Correspondence to: [email protected], [email protected] Abstract —Conidiobolus sinensis was isolated from plant detritus in Huoshan, Anhui Province, eastern China. It produces primary conidiophores from cushion mycelium, which is distinct from all other species in the genus except C. stromoideus and C. lichenicola. Morphologically C. sinensis differs from C. stromoideus in the shape of the mycelia at the colony edge and conidiophore length and from C. lichenicola by colony color and mycelial form. A phylogram based on partial 28S rDNA and EF-1α sequences from 14 Conidiobolus species shows C. sinensis most closely related to C. stromoideus, forming a clade of sister taxa with a 100% bootstrap. DNA similarity levels between these two species were 94% (28S rDNA) and 96% (EF-1α). Based on the morphological and molecular evidence, C. sinensis is considered a new species. Key words —Entomophthorales, hyphal knots, taxonomy Introduction Species belonging to Conidiobolus can be easily isolated from soil, decaying leaf litter, rotten vegetables and some dead insects, although the type of the genus, C. utriculosus Bref., was first isolated from the decaying fleshy fruitbodies of Exidia and Hirneola. -
1 Naming Names: the Etymology of Fungal Entomopathogens
Research Signpost 37/661 (2), Fort P.O., Trivandrum-695 023, Kerala, India Use of Entomopathogenic Fungi in Biological Pest Management, 2007: 1-11 ISBN: 978-81-308-0192-6 Editors: Sunday Ekesi and Nguya K. Maniania Naming names: The etymology 1 of fungal entomopathogens Fernando E. Vega Sustainable Perennial Crops Laboratory, USDA, ARS, Bldg. 011A, BARC-W Beltsville Maryland 20705, USA Abstract This chapter introduces the reader to the etymology of the generic names given to 26 fungal entomopathogens. Possessing some knowledge on how a name originates sometimes provides us with information on a fungal characteristic that might help us identify the organism, e.g., Conidiobolus, Cordyceps, Pandora, Regiocrella, Orthomyces, etc. In other cases, the name won’t tell us what the fungus looks like, but serves to honor those for whom the fungus was named, e.g., Aschersonia, Batkoa, Beauveria, Nomuraea, Strongwellsea, etc. Correspondence/Reprint request: Dr. Fernando E. Vega, Sustainable Perennial Crops Laboratory, USDA ARS, Bldg. 011A, BARC-W, Beltsville, Maryland 20705, USA. E-mail: [email protected] 2 Fernando E. Vega 1. Introduction One interesting aspect in the business of science is the naming of taxonomic species: the reasons why organisms are baptized with a certain name, which might or might not change as science progresses. Related to this topic, the scientific illustrator Louis C. C. Krieger (1873-1940) [1] self-published an eight- page long article in 1924, entitled “The millennium of systematic mycology: a phantasy” where the main character is a “... systematic mycologist, who, from too much “digging” in the mighty “scrapheap” of synonymy, fell into a deep coma.” As he lies in this state, he dreams about being in Heaven, and unable to leave behind his collecting habits, picks up an amanita and upon examining it finds a small capsule hidden within it. -
A Morphological and Molecular Survey of Neoconidiobolus Reveals a New Species and Two New Combinations
A morphological and molecular survey of Neoconidiobolus reveals a new species and two new combinations Yong Nie Anhui University of Technology Zi-Min Wang Anhui University of Technology Xiao-Yong Liu Chinese Academy of Sciences Bo Huang ( [email protected] ) Anhui Agricultural University Research Article Keywords: Ancylistaceae, Morphology, Taxonomy, Molecular Phylogeny Posted Date: June 1st, 2021 DOI: https://doi.org/10.21203/rs.3.rs-186207/v1 License: This work is licensed under a Creative Commons Attribution 4.0 International License. Read Full License Page 1/16 Abstract The genus Neoconidiobolus was recently established to accommodate all members of the Conidiobolus subgenus Conidiobolus. Based on mitochondrial small subunit (mtSSU), nuclear large subunit (nucLSU) of rDNA and translation elongation factor 1-alpha (TEF1), this study further resolved the genus Neoconidiobolus into three clades, with three new taxa being added. They are N. kunyushanensis B. Huang & Y. Nie, sp. nov., N. lamprauges (Drechsler) B. Huang & Y. Nie, comb. nov., and N. nanodes (Drechsler) B. Huang & Y. Nie, comb. nov. Meanwhile, a morphologial comparison among species in the three clades and a key to the species of the genus Neoconidiobolus are provided herein. Introduction Conidiobolus Brefeld (Ancylistaceae, Entomophthorales) was erected by Brefeld (1884). It is a large and worldwide distributed group containing 80 records in the Index Fungorum database (http://www.indexfungorum.org/). Most members of Conidiobolus occur saprophytically in soil and on decaying leaves, and few have been noted as pathogens of insects, animals and humans (Vilela et al. 2010; Gryganskyi et al. 2012; Mendoza et al. 2014). During 1950s–1960s, almost all the 40 Conidiobolus species have been reported in the North America and South Asia (Drechsler 1952; Srinivasan and Thirumalachar 1961; Nie et al. -
Fungal Infections
FUNGAL INFECTIONS SUPERFICIAL MYCOSES DEEP MYCOSES MIXED MYCOSES • Subcutaneous mycoses : important infections • Mycologists and clinicians • Common tropical subcutaneous mycoses • Signs, symptoms, diagnostic methods, therapy • Identify the causative agent • Adequate treatment Clinical classification of Mycoses CUTANEOUS SUBCUTANEOUS OPPORTUNISTIC SYSTEMIC Superficial Chromoblastomycosis Aspergillosis Aspergillosis mycoses Sporotrichosis Candidosis Blastomycosis Tinea Mycetoma Cryptococcosis Candidosis Piedra (eumycotic) Geotrichosis Coccidioidomycosis Candidosis Phaeohyphomycosis Dermatophytosis Zygomycosis Histoplasmosis Fusariosis Cryptococcosis Trichosporonosis Geotrichosis Paracoccidioidomyc osis Zygomycosis Fusariosis Trichosporonosis Sporotrichosis • Deep / subcutaneous mycosis • Sporothrix schenckii • Saprophytic , I.P. : 8-30 days • Geographical distribution Clinical varieties (Sporotrichosis) Cutaneous • Lymphangitic or Pulmonary lymphocutaneous Renal Systemic • Fixed or endemic Bone • Mycetoma like Joint • Cellulitic Meninges Lymphangitic form (Sporotrichosis) • Commonest • Exposed sites • Dermal nodule pustule ulcer sporotrichotic chancre) (Sporotrichosis) (Sporotrichosis) • Draining lymphatic inflamed & swollen • Multiple nodules along lymphatics • New nodules - every few (Sporotrichosis) days • Thin purulent discharge • Chronic - regional lymph nodes swollen - break down • Primary lesion may heal spontaneously • General health - may not be affected (Sporotrichosis) (Sporotrichosis) Fixed/Endemic variety (Sporotrichosis) • -
Mediastinal Mass in a Healthy Adolescent at the Children's
Chest clinic CASE BASED DISCUSSIONS Thorax: first published as 10.1136/thoraxjnl-2014-205764 on 10 October 2014. Downloaded from Mediastinal mass in a healthy adolescent at The Children’s Hospital at Westmead, Australia Ameneh Khatami,1 Alex C Outhred,1 Philip N Britton,1,2 Emilie Huguon,3 David J E Lord,4 Melanie Wong,5 Amanda Charlton,6 Alison M Kesson,1,2 David Isaacs1 For numbered affiliations see Ameneh Khatami and Emilie Huguon gamma release assay (IGRA) on whole blood was end of article. A previously well adolescent from the tropical positive. Percutaneous core biopsies of the medias- fi fi Correspondence to South Paci c island of Futuna was transferred due tinal mass demonstrated fungal hyphae in a broin- Dr Ameneh Khatami, to a 3-month to 4-month history of intermittent flammatory background and Splendore–Hoeppli Department of Infectious fevers, anorexia, weight loss, lethargy and haemop- phenomena (SHP) (figure 2A). Diseases and Microbiology, tysis. A Mantoux test was negative. CT scan ’ The Children s Hospital at demonstrated a large mediastinal mass and lymph- Westmead, Locked Bag 4001, Alison M Kesson and David Isaacs Westmead 2145, Australia; adenopathy with broncho-vascular compression, A positive IGRA in an adolescent from a [email protected]. and bilateral pleural and pericardial effusions, TB-endemic region is not unexpected. The histo- gov.au, ameneh.khatami@ (figure 1A). At admission, he was persistently gmail.com pathology suggests an invasive fungal infection, and febrile with non-tender cervical lymphadenopathy the patient’s raised eosinophil count would be con- Received 19 May 2014 and hepatomegaly, and had moderate respiratory sistent with this. -
Human Fungal Pathogens
This is a free sample of content from Human Fungal Pathogens. Click here for more information on how to buy the book. The Spectrum of Fungi That Infects Humans Julia R. Ko¨hler1, Arturo Casadevall2, and John Perfect3 1Division of Infectious Diseases, Children’s Hospital, Harvard Medical School, Boston, Massachusetts 02115 2Departments of Microbiology and Immunology and Medicine, Division of Infectious Diseases, Albert Einstein College of Medicine, New York, New York 10461 3Division of Infectious Diseases, Duke Medical Center, Durham, North Carolina 27710 Correspondence: [email protected] Few among the millions of fungal species fulfill four basic conditions necessary to infect humans: high temperature tolerance, ability to invade the human host, lysis and absorption of human tissue, and resistance to the human immune system. In previously healthy individu- als, invasive fungal disease is rare because animals’sophisticated immune systems evolved in constant response to fungal challenges. In contrast, fungal diseases occur frequently in immunocompromised patients. Paradoxically, successes of modern medicine have put in- creasing numbers of patients at risk for invasive fungal infections. Uncontrolled HIV infection additionally makes millions vulnerable to lethal fungal diseases. A concerted scientific and social effort is needed to meet these challenges. ungal infections today are among the most by which living humans became substrates for Fdifficult diseases to manage in humans. fungi. Given the tremendous wealth of recent Some fungi cause disease in healthy people, but findings on fungal evolution, phylogenetics, ge- most fungal infections occur in individuals al- nomics, development, and pathogenesis, this ready experiencing serious illness, and frequent- overview will necessarily omit much work criti- ly jeopardize the success of the newest medical cal to our understanding of fungi, which the advances in cancer care, solid organ and hema- other articles in this collection will focus on in topoietic stem cell transplantation, neonatal detail. -
Ep 3323422 A1
(19) TZZ¥¥ ¥ _T (11) EP 3 323 422 A1 (12) EUROPEAN PATENT APPLICATION (43) Date of publication: (51) Int Cl.: 23.05.2018 Bulletin 2018/21 A61K 38/00 (2006.01) C07K 7/08 (2006.01) (21) Application number: 16306539.4 (22) Date of filing: 22.11.2016 (84) Designated Contracting States: (72) Inventors: AL AT BE BG CH CY CZ DE DK EE ES FI FR GB • MARBAN, Céline GR HR HU IE IS IT LI LT LU LV MC MK MT NL NO 68000 COLMAR (FR) PL PT RO RS SE SI SK SM TR • METZ-BOUTIGUE, Marie-Hélène Designated Extension States: 67000 STRASBOURG (FR) BA ME • LAVALLE, Philippe Designated Validation States: 67370 WINTZENHEIM KOCHERSBERG (FR) MA MD • SCHAAF, Pierre 67120 MOLSHEIM (FR) (71) Applicants: • HAIKEL, Youssef • Université de Strasbourg 67000 STRASBOURG (FR) 67000 Strasbourg (FR) • Institut National de la Santé et de la Recherche (74) Representative: Cabinet Becker et Associés Médicale 25, rue Louis le Grand 75013 Paris (FR) 75002 Paris (FR) (54) NEW D-CONFIGURED CATESLYTIN PEPTIDE (57) The present invention relates to a cateslytin pep- no acids residues of said cateslytin are D-configured. The tide having an amino acid sequence consisting or con- invention also relates to the use of said cateslytin peptide sisting essentially in the sequence of SEQ ID NO: 1, as a drug, especially in the treatment of an infection in a wherein at least 80%, preferably at least 90%, of the ami- patient in needs thereof. EP 3 323 422 A1 Printed by Jouve, 75001 PARIS (FR) EP 3 323 422 A1 Description Field of the Invention 5 [0001] The present invention relates to the field of medicine, in particular of infections. -
Dodecanol, Metabolite of Entomopathogenic Fungus
www.nature.com/scientificreports OPEN Dodecanol, metabolite of entomopathogenic fungus Conidiobolus coronatus, afects fatty acid composition and cellular immunity of Galleria mellonella and Calliphora vicina Michalina Kazek1*, Agata Kaczmarek1, Anna Katarzyna Wrońska1 & Mieczysława Irena Boguś1,2 One group of promising pest control agents are the entomopathogenic fungi; one such example is Conidiobolus coronatus, which produces a range of metabolites. Our present fndings reveal for the frst time that C. coronatus also produces dodecanol, a compound widely used to make surfactants and pharmaceuticals, and enhance favors in food. The main aim of the study was to determine the infuence of dodecanol on insect defense systems, i.e. cuticular lipid composition and the condition of insect immunocompetent cells; hence, its efect was examined in detail on two species difering in susceptibility to fungal infection: Galleria mellonella and Calliphora vicina. Dodecanol treatment elicited signifcant quantitative and qualitative diferences in cuticular free fatty acid (FFA) profles between the species, based on gas chromatography analysis with mass spectrometry (GC/MS), and had a negative efect on G. mellonella and C. vicina hemocytes and a Sf9 cell line in vitro: after 48 h, almost all the cells were completely disintegrated. The metabolite had a negative efect on the insect defense system, suggesting that it could play an important role during C. coronatus infection. Its high insecticidal activity and lack of toxicity towards vertebrates suggest it could be an efective insecticide. In their natural environment, insects have to cope with a variety of microorganisms, and as such, have developed a complex and efcient defense system. Te frst line of defense is a cuticle formed of several layers, with an epi- cuticle on the outside, a procuticle underneath it and an epidermis beneath that. -
Entomopathogenic Fungal Identification
Entomopathogenic Fungal Identification updated November 2005 RICHARD A. HUMBER USDA-ARS Plant Protection Research Unit US Plant, Soil & Nutrition Laboratory Tower Road Ithaca, NY 14853-2901 Phone: 607-255-1276 / Fax: 607-255-1132 Email: Richard [email protected] or [email protected] http://arsef.fpsnl.cornell.edu Originally prepared for a workshop jointly sponsored by the American Phytopathological Society and Entomological Society of America Las Vegas, Nevada – 7 November 1998 - 2 - CONTENTS Foreword ......................................................................................................... 4 Important Techniques for Working with Entomopathogenic Fungi Compound micrscopes and Köhler illumination ................................... 5 Slide mounts ........................................................................................ 5 Key to Major Genera of Fungal Entomopathogens ........................................... 7 Brief Glossary of Mycological Terms ................................................................. 12 Fungal Genera Zygomycota: Entomophthorales Batkoa (Entomophthoraceae) ............................................................... 13 Conidiobolus (Ancylistaceae) .............................................................. 14 Entomophaga (Entomophthoraceae) .................................................. 15 Entomophthora (Entomophthoraceae) ............................................... 16 Neozygites (Neozygitaceae) ................................................................. 17 Pandora