Javascript must be enabled to continue!
Investigation of The Relationship between The Pesticide Fluopyram and Parkinson’s disease
View through CrossRef
Parkinson's disease (PD) is a neurodegenerative disease defined as a shaky stroke. It is clinically characterized by; resting tremor,
cogwheel rigidity, bradykinesia, and postural reflex impairment. It is also pathologically characterized by Lewy bodies (LBs) and formed
by the loss of dopaminergic neurons in the Substantia nigra pars compacta (SNpc) region of the brain and the accumulation of AlphaSynuclein (α-Syn) proteins. Pesticides are the hugest risk factor of PD. They cause the formation of PD by using different mechanisms.
They also permanently disrupt the function of the electron transport complex (ETC) located in the mitochondria. Researches show that
the pesticide Rotenone (ROT) causes PD in vivo and in vitro conditions by inhibiting mitochondrial complex I and causing oxidative
stress. Fluopyram (Flu) is a frequently used pesticide that causes mitochondrial toxicity like ROT. When literature is searched, it makes
one think about a connection with PD. it seems that there is no available study on Flu and PD. Flu is one of the fungicides utilized in
Isparta city at a high rate for all planting types. The Flu is a mitochondrial complex II inhibitor. The inhibition of mitochondrial
complexes is the main pathway in the PD mechanism, therefore complex II inhibitor pesticide may lead to the same result. In this
context, we created a Parkinson's model in mice with ROT and compare the result of Flu with this ROT to be sure whether that lead to
Parkinson's or not. Swiss albino male and female mice were the testing animals of our study. Positive control (ROT Parkinson model, 1
mg/kg/day), negative control (Solvent only, DMSO), and Flu (0.5,1 and 2 mg/kg/day) were administrated to mice daily doses
subcutaneously (SC). The experiment got completed after 21 days. Motor Function Test, Histochemical and Immunohistochemical
Studies, Comet assay, and quantitative real-time PCR (qRT-PCR) were utilized in the study as well. In our results, no statistically
significant changes were observable in animal weights in all groups. In the motor function test, a significant decrease in the ROT group
was observable, On the other hand, a significant decrease was detected specifically in the Flu value which was applied at high doses.
When the brain tissues that belong to the ROT and Flu tested groups got examined, all-important structural changes such as LBs got
observed in the SN. When brain tissues belonging to ROT and Flu groups were examined in α-Syn immunohistochemical staining, more
positive markings were observable. When the brain tissues belonging to the ROT and Flu groups were examined in Tyrosine hydroxylase
(TH) immunohistochemical staining, fewer positive markings were observed. ROT has been found to cause DNA damage in blood and
brain tissues. It has been determined that groups with Flu applied in the brain do not have DNA damage. ROT was observed to increase
SNCA mRNA expression levels while decreasing TH and DJ-1 mRNA expression levels. Comparing the Flu and ROT results, SNCA mRNA
expression levels increased but were not significant. With the detection of decreased TH and DJ-1 mRNA expression levels, the
difference was shown in our ROT results. In conclusion, The study results have proved that in mice Flu's induce of PD phenotype depends
on Flu doses. It is recommended to do more research with Flu especially in high doses and with different methods
Title: Investigation of The Relationship between The Pesticide Fluopyram and Parkinson’s disease
Description:
Parkinson's disease (PD) is a neurodegenerative disease defined as a shaky stroke.
It is clinically characterized by; resting tremor,
cogwheel rigidity, bradykinesia, and postural reflex impairment.
It is also pathologically characterized by Lewy bodies (LBs) and formed
by the loss of dopaminergic neurons in the Substantia nigra pars compacta (SNpc) region of the brain and the accumulation of AlphaSynuclein (α-Syn) proteins.
Pesticides are the hugest risk factor of PD.
They cause the formation of PD by using different mechanisms.
They also permanently disrupt the function of the electron transport complex (ETC) located in the mitochondria.
Researches show that
the pesticide Rotenone (ROT) causes PD in vivo and in vitro conditions by inhibiting mitochondrial complex I and causing oxidative
stress.
Fluopyram (Flu) is a frequently used pesticide that causes mitochondrial toxicity like ROT.
When literature is searched, it makes
one think about a connection with PD.
it seems that there is no available study on Flu and PD.
Flu is one of the fungicides utilized in
Isparta city at a high rate for all planting types.
The Flu is a mitochondrial complex II inhibitor.
The inhibition of mitochondrial
complexes is the main pathway in the PD mechanism, therefore complex II inhibitor pesticide may lead to the same result.
In this
context, we created a Parkinson's model in mice with ROT and compare the result of Flu with this ROT to be sure whether that lead to
Parkinson's or not.
Swiss albino male and female mice were the testing animals of our study.
Positive control (ROT Parkinson model, 1
mg/kg/day), negative control (Solvent only, DMSO), and Flu (0.
5,1 and 2 mg/kg/day) were administrated to mice daily doses
subcutaneously (SC).
The experiment got completed after 21 days.
Motor Function Test, Histochemical and Immunohistochemical
Studies, Comet assay, and quantitative real-time PCR (qRT-PCR) were utilized in the study as well.
In our results, no statistically
significant changes were observable in animal weights in all groups.
In the motor function test, a significant decrease in the ROT group
was observable, On the other hand, a significant decrease was detected specifically in the Flu value which was applied at high doses.
When the brain tissues that belong to the ROT and Flu tested groups got examined, all-important structural changes such as LBs got
observed in the SN.
When brain tissues belonging to ROT and Flu groups were examined in α-Syn immunohistochemical staining, more
positive markings were observable.
When the brain tissues belonging to the ROT and Flu groups were examined in Tyrosine hydroxylase
(TH) immunohistochemical staining, fewer positive markings were observed.
ROT has been found to cause DNA damage in blood and
brain tissues.
It has been determined that groups with Flu applied in the brain do not have DNA damage.
ROT was observed to increase
SNCA mRNA expression levels while decreasing TH and DJ-1 mRNA expression levels.
Comparing the Flu and ROT results, SNCA mRNA
expression levels increased but were not significant.
With the detection of decreased TH and DJ-1 mRNA expression levels, the
difference was shown in our ROT results.
In conclusion, The study results have proved that in mice Flu's induce of PD phenotype depends
on Flu doses.
It is recommended to do more research with Flu especially in high doses and with different methods.
Related Results
HUBUNGAN KADAR ASAM URAT DENGAN KEPARAHAN PENYAKIT PARKINSON
HUBUNGAN KADAR ASAM URAT DENGAN KEPARAHAN PENYAKIT PARKINSON
Abstract
In recent centuries, there has been an increase in life expectancy, whereas, in developed countries, the average life span is longer than in previous generations. This...
Health Literacy and Associated Factors Influencing Pesticide Protective Behaviors Among Cassava Farmers in an Eastern Thailand Province: A Cross-Sectional Study
Health Literacy and Associated Factors Influencing Pesticide Protective Behaviors Among Cassava Farmers in an Eastern Thailand Province: A Cross-Sectional Study
Pesticide exposure is a significant occupational hazard among cassava farmers, raising various health and environmental concerns. Health literacy plays a crucial role in enabling f...
Consumer risk perception towards pesticide-stained tomatoes in Uganda
Consumer risk perception towards pesticide-stained tomatoes in Uganda
Abstract
Background
Tomatoes are consumed daily. Unfortunately, abuse of pesticide application by vegetable growers in Uganda i...
Can we resolve the pesticide quandary with eco-efficiency metrics?
Can we resolve the pesticide quandary with eco-efficiency metrics?
More than fifty years after the publication of
Silent Spring
, the United States continues to struggle with balancing the benefits of pestic...
Association Between Serum Uric Acid Level and the Severity of Parkinsons Disease: A cross sectional study
Association Between Serum Uric Acid Level and the Severity of Parkinsons Disease: A cross sectional study
Background: Parkinson’s disease is a chronic, progressive, neurodegenerative disease. Various factors have been attributed to the development and progression of the diseaseover the...
Pesticide Toxicity Prevention in Farmer’s Community Movement
Pesticide Toxicity Prevention in Farmer’s Community Movement
BACKGROUND: Pesticide toxicity is a serious problem in poor and developing countries agricultural communities, including Indonesia.
AIM: This study aims to design an effort of pes...
Risk-based Mapping of Pesticide Usage and Social Vulnerability in the Contiguous United States
Risk-based Mapping of Pesticide Usage and Social Vulnerability in the Contiguous United States
Abstract
Background
In the contiguous United States, environmental justice burdens and disparities in pesticide exposure are pr...
Pesticide Drift and the Pursuit of Environmental Justice
Pesticide Drift and the Pursuit of Environmental Justice
An examination of political conflicts over pesticide drift and the differing conceptions of justice held by industry, regulators, and activists.
The widespread but v...

