Sleeping sickness - known formally as African trypanosomiasis - is transmitted through the bite of the tsetse fly and threatens tens of millions of people in sub-Saharan African countries. After entering the body, the parasite delivered by the fly causes such symptoms as inverted sleeping cycles, fever, muscle weakness, and itching. The parasite eventually invades the central nervous system and, depending on its type, can kill its host in anywhere from a few months to several years.
An international study shows one of Africa's most lethal diseases is actually a circadian rhythm disorder caused by the acceleration of biological clocks controlling a range of vital functions besides sleep.
By understanding which clock genes are affected by the parasitic disease, scientists hope the research will eventually prove useful in developing new therapeutic alternatives to the current toxic treatments that are occasionally fatal to patients.
"Sleeping sickness is really a misnomer," said the senior author. "Our work shows that the underlying mechanism of altered sleep in this disease is caused by a circadian disorder."
The mouse study published in Nature Communications shows sleeping sickness symptoms can occur soon after infection, even before parasites accumulate in large numbers in the brain. Scientists found that the biological clocks in infected mice ran faster after parasites entered the bloodstream, resulting in inverted sleeping cycles as well as hormone and body temperature abnormalities similar to those seen in patients with sleeping sickness.
However, not all parasitic diseases appear to be circadian rhythm disorders: The biological clocks of mice infected with malaria were unaltered.
"How the clocks are changing remains a mystery. We need to study further whether the host is producing a molecule in response to the infection, or if there is a secretion from the parasite," said the senior researcher. "Finding the causative agent could aid in the development of drugs to treat the disease and find molecules that modulate the clock for treatment other circadian disorders."
The work builds upon research they published last year that showed for the first time that parasites have biological clocks. The study further revealed that this circadian cycle renders the sleeping sickness parasite - known as Trypanosoma brucei - more vulnerable to medications during the afternoon.
Both findings could eventually be beneficial for patients whose bodies can't handle side effects of the arsenic-based treatments now used to eradicate the parasite. In addition to knowing which genes to target when developing new therapies, doctors hope the findings will allow them to reduce the duration and dosage of current treatments by knowing the optimal time to administer them.
Meanwhile, control efforts have significantly reduced the number of cases over the last decade. However, an unknown number of people still die annually from sleeping sickness as scientists continue seeking vaccines and alternative treatments.
"Although many studies on this subject have tried to understand the causes of sleeping sickness, our multidisciplinary effort between a circadian rhythms and a parasitology laboratory led us to the understanding that the circadian clock is at the core of the symptoms observed. It is important to continue this research to better understand both sleeping sickness and other difficult-to-treat parasitic diseases that impact millions across the globe," said the first author of the study.
http://www.utsouthwestern.edu/newsroom/articles/year-2018/sleeping-sickness.html
https://www.nature.com/articles/s41467-017-02484-2
Latest News
Role of fat in rare neurolo…
By newseditor
Posted 23 Apr
How protein synthesis in de…
By newseditor
Posted 22 Apr
Atlas of mRNA variants in d…
By newseditor
Posted 22 Apr
Mapping microbiome in metas…
By newseditor
Posted 22 Apr
Full-length mRNA packaged i…
By newseditor
Posted 22 Apr
Other Top Stories
Evaluation of Human Cell Surface Proteins (Surfaceome)
Read more
Poor language development in autism is associated with widespread g…
Read more
Adrenergic-induced remodeling of the neuro-vascular network in adip…
Read more
New component of death machinery revealed
Read more
Genetic link between alcohol dependence and psychiatric disorders
Read more
Protocols
A programmable targeted pro…
By newseditor
Posted 23 Apr
MemPrep, a new technology f…
By newseditor
Posted 08 Apr
A tangible method to assess…
By newseditor
Posted 08 Apr
Stem cell-derived vessels-o…
By newseditor
Posted 06 Apr
Single-cell biclustering fo…
By newseditor
Posted 01 Apr
Publications
Type-I-interferon-responsiv…
By newseditor
Posted 23 Apr
Selenium, diabetes, and the…
By newseditor
Posted 23 Apr
Long-term neuropsychologica…
By newseditor
Posted 23 Apr
Neuronal activity rapidly r…
By newseditor
Posted 22 Apr
A perspective on muscle phe…
By newseditor
Posted 22 Apr
Presentations
Hydrogels in Drug Delivery
By newseditor
Posted 12 Apr
Lipids
By newseditor
Posted 31 Dec
Cell biology of carbohydrat…
By newseditor
Posted 29 Nov
RNA interference (RNAi)
By newseditor
Posted 23 Oct
RNA structure and functions
By newseditor
Posted 19 Oct
Posters
A chemical biology/modular…
By newseditor
Posted 22 Aug
Single-molecule covalent ma…
By newseditor
Posted 04 Jul
ASCO-2020-HEALTH SERVICES R…
By newseditor
Posted 23 Mar
ASCO-2020-HEAD AND NECK CANCER
By newseditor
Posted 23 Mar
ASCO-2020-GENITOURINARY CAN…
By newseditor
Posted 23 Mar