Case Report: Invasive Sinusitis due to Sporothrix Brasiliensis in a Renal Transplant Recipient

Author(s):  
Maria Júlia Correia Lima Nepomuceno Araújo ◽  
Camila Hitome Nihei ◽  
Anderson Messias Rodrigues ◽  
Hermes Higashino ◽  
Vinicius Ponzio ◽  
...  

Sporotrichosis is usually a subcutaneous infection caused by thermodimorphic fungi of the genus Sporothrix. The disease occurs worldwide, but endemic areas are located in tropical and subtropical regions. The epidemiology of sporotrichosis in Brazil is peculiar because of the cat’s entry in the chain of transmission of this mycosis, associated with Sporothrix brasiliensis, the most virulent species in the genus. Sporothrix species sinusitis is unusual and may be underdiagnosed or confused with other fungal etiologies, like mucormycosis. We report a case of sinusitis due to a Sporothrix species in a 6-year renal transplant recipient. Direct examination of smears of exudate of the sinus specimen (aspirate, biopsy) revealed budding yeasts and cigar-shaped cells. Sporothrix was subsequently recovered from the patient’s exudate culture and identified as S. brasiliensis using species-specific polymerase chain reaction, and she was successfully treated with antifungal therapy. Her parents also developed the disease a week later, both only cutaneous involvement. Sporotrichosis sinusitis is a rare disease, even in immunocompromised patients. Diagnosis is crucial, and benefits from good epidemiological history.

2020 ◽  
Vol 48 (1) ◽  
pp. 62-72
Author(s):  
E. A. Ershova

Сalanoid copepods of the genus Pseudocalanus play an important role in the plankton communities of the Arctic and boreal seas, often dominating in numbers and constituting a significant proportion of the biomass of zooplankton. Despite their high presence and significance in the shelf plankton communities, species-specific studies of the biology of these are significantly hampered by extremely small morphological differences between them, especially at the juvenile stages, at which they are virtually indistinguishable. In this paper, we describe a new, routine and low-cost molecular method for identifying all Pseudocalanus species found in the Atlantic sector of the Arctic: the Arctic P. acuspes, P. minutus and the boreal P. moultoni and P. elongatus, and apply it to describe the relative distribution of these species in four locations of the Arctic and sub-Arctic. With this method, species-specific polymerase chain reaction (ssPCR), mass identification of individuals of any developmental stage, including nauplii, is possible. This method can serve as an excellent tool for studying the species-specific biology of this group, describing their life cycles, as well as monitoring changes in Arctic marine ecosystems under the influence of changing climate.


2003 ◽  
Vol 93 (7) ◽  
pp. 822-831 ◽  
Author(s):  
Ping Kong ◽  
Chuanxue Hong ◽  
Steven N. Jeffers ◽  
Patricia A. Richardson

Phytophthora nicotianae is a common and destructive pathogen of numerous ornamental, agronomic, and horticultural crops such as tobacco, tomato, and citrus. We have developed a species-specific polymerase chain reaction (PCR) assay for rapid and accurate detection of this pathogen in irrigation water, a primary source of inoculum and an efficient means of propagule dissemination. This PCR assay consists of a pair of species-specific primers (PN), customization of a commercial soil DNA extraction kit for purification of DNA from propagules in irrigation water, and efficient PCR protocols for primer tests and sample detection. The PN primers proved adequately specific for P. nicotianae in evaluations with 131 isolates of P. nicotianae, 102 isolates from 15 other species of Phytophthora, and 64 isolates from a variety of other oomycetes, true fungi, and bacteria. These isolates originated from a wide range of host plants, three substrates (plant tissue, soil, and irrigation water), and numerous geographic locations. The detection sensitivity is between 80 and 800 fg DNA/μl. The assay detected the pathogen in naturally infested water samples from Virginia and South Carolina nurseries more rapidly and accurately than standard isolation methods. Use of this PCR assay can assist growers in making timely disease management decisions with confidence.


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