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17 February 2025 | Story Andre Damons | Photo Supplied
Prof Carolina Pohl-Albertyn
Prof Carlien Pohl-Albertyn is the NRF SARChI Research Chair in Pathogenic Yeasts at the UFS.

A new study by researchers from the University of the Free State (UFS), the National Health Laboratory Service, and the University of Venda has confirmed for the first time that common brown locusts are carriers of pathogenic yeasts that can cause severe infections in humans – especially in people with compromised immune systems or who are seriously ill.

The study, ‘South African brown locusts, Locustana pardalina, hosts fluconazole resistant, Candidozyma (Candida) auris (Clade III)’, highlights for the first time the presence of the pathogenic (disease-producing) fungal yeast C. auris in the digestive tract of the locusts, and shows their potential in disseminating this emerging pathogen. The research started in April 2022, when 20 gregarious (swarming) adult locusts were collected during a large locust outbreak which occurred from September 2021 to May 2022 in the semi-arid Eastern Karoo region in the Eastern Cape. The study is still under peer review.

According to Prof Carlien Pohl-Albertyn, National Research Foundation (NRF) SARChI Research Chair in Pathogenic Yeasts, three C. auris strains were isolated from three different adult locusts, two of which also harboured strains of another potentially pathogenic yeast, Candida orthopsilosis. “The fact that we were able to isolate C. auris from 15% of the sampled locusts, using non-selective media and a non-restrictive temperature of 30°C, may indicate that C. auris is abundant in the locusts and that specific selective isolation is not mandatory,” Prof Pohl-Albertyn said.

“Interestingly, C. auris was isolated from the fore- and hindgut of the locusts. Isolation from the foregut, which is dedicated to food intake and storage, filtering and partial digestion, indicates that C. auris was probably obtained by the locusts via feeding activities. Isolation from the hindgut confirms that C. auris can survive the digestive processes in the midgut and is likely to be released back into the environment via faeces.”

Healthy humans are not at great risk

One of the C. auris strains was studied in more detail. This strain was not resistant to disinfectants but showed decreased susceptibility to the common antifungal drug fluconazole. This is a characteristic of this yeast species and thus not surprising. Most of the emerging pathogenic yeasts show this intrinsic resistance. This highlights the urgent need to discover and develop new antifungal drugs.

Prof Pohl-Albertyn, also a Professor of Microbiology in the UFS Department of Microbiology and Biochemistry, says, “Healthy humans are not at great risk for infection by this yeast and there is currently no proof that ingestion may be harmful to them. This is unfortunately not the case for people with compromised immune systems or who are seriously ill. However, few susceptible people come into direct contact with the locusts in South Africa.”

She added that there are treatment options available, using other antifungal drugs, but C. auris can become resistant to all the currently available antifungal drugs.

Importance of the study

“The fact that locusts are a food source for other animals, such as birds, could lead to eventual distribution of the yeast to people. In other countries, wild locusts are a food source for humans and there more direct transmission may be possible,” Prof Pohl-Albertyn said.

She explained that this study tries to answer questions regarding the natural hosts of this emerging pathogen and how it may facilitate the spread of the pathogen to the rest of the environment. The study is one part of the puzzle regarding how new pathogens may emerge from the environment and spread to people.

“One of the questions in the field of pathogenic yeasts is how C. auris was able to emerge as a pathogen in several different countries in a relatively short period. It is well known as a hospital-acquired pathogen, but it is not known where in the environment it occurs naturally, and which environmental factors may have shaped its evolution and ability to cause human infections. This has implications for the prevention of the spread of this specific yeast species, as well as our preparedness for new pathogenic yeasts that may be emerging from the environment.”

News Archive

Researcher in Otorhinolaryngology advocates education in deafness and hearing loss
2015-12-17

Description: Dr Magteld Smith  Tags: Dr Magteld Smith

Dr Magteld Smith

The annual International Day of Persons with Disabilities falls on 3 December. Statistics reveal that 7.5% of the South African population suffer from some form of physical disability.

More than 17 million people in South Africa are dealing with depression, substance abuse, anxiety, bipolar disorder, and schizophrenia - illnesses that round out the top five mental health diagnoses, according to the Mental Health Federation of South Africa. The South African Federation for Mental Health is the umbrella body for 17 mental health societies and numerous member organisations throughout the country.

On disability, world-renowned author Helen Keller, who was both deaf and blind, once said that the problems that come with being deaf are deeper and more complex than those of blindness, and is a much worse misfortune. For it means the loss of the most vital stimulus - the sound of the voice that brings language, sets thoughts astir, and keeps us in the intellectual company of man.

According to Dr Magteld Smith, lecturer and researcher in the Department of Otorhinolaryngology at the University of the Free State (UFS), hearing loss of any degree at any age can have far-reaching psychological and sociological implications which affect an individual’s day-to-day functioning, and might prevent him or her from reaching their full potential. She says that even though advancements have been made in aiding deaf persons, there’s still considerable room for improvement. She’s making it her mission to bring about changing the stigmatisation around deafness, and the different choices of rehabilitation.

Dr Smith was born with bilateral (both ears) severe hearing loss, and became profoundly deaf, receiving a cochlear implant in 2008. Not letting this hinder her quality of life, she matriculated in 1985 at a School for the Deaf in Worcester. Today she is the only deaf medical-social researcher in South Africa.

Her research focuses on all aspects of deafness and hearing loss. Through first-hand experience, she knows that a loss of hearing can be traumatic as it requires adjustments in many areas of life which affect a person’s entire development. However, she has not let her deafness become a stumbling block. She has become the first deaf South African to obtain two Master’s degrees and a PhD, together with various other achievements.

Her work is aimed at informing and educating people in the medical profession, parents with children, and persons with various degrees and types of hearing loss about the complexities of deafness and hearing loss. She believes that, with the technological advancements that have been made in the world, deaf people can become self-sufficient and independent world changers with much to contribute to humanity.

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