Intravesical nerve growth factor antisense therapy for bladder hypersensitivity induced by psychological stress.
Tetsuichi SaitoPradeep TyagiTomonori MinagawaTeruyuki OgawaOsamu IshizukaNaoki YoshimuraPublished in: Gene therapy (2024)
This study assessed the relationship between NGF expression in the bladder and bladder hypersensitivity caused by psychological stress using water avoidance stress (WAS) in rats by modulating the NGF expression using intravesical liposome-complexed NGF antisense oligonucleotide (OND) therapy on WAS-induced bladder dysfunction. Female Wistar rats were divided into control and WAS groups, the latter of which received WAS sessions for 10 days with or without the OND pretreatment. Rats underwent cystometry with or without intravesical application of low-dose protamine sulfate (LD-PS), or pain behavior measurements after LD-PS application. After functional evaluations, the bladder was harvested for histology and molecular studies. WAS rats with or without LD-PS showed shortened intercontraction intervals and increased pain behaviors compared to control rats, which was improved by OND-treatment. Histological studies revealed that LD-PS provoked urothelial exfoliation in WAS rats. Compared to controls, protein assay showed increased NGF levels, and RT-PCR showed increases of TRPV1 and TRPA1 and a decrease in Cx43 in WAS rat bladders, which were improved by OND-treatment. WAS caused bladder hypersensitivity, which was improved by NGF antisense OND treatment. NGF upregulation in the bladder may be a therapeutic target for the treatment of psychological stress-induced bladder dysfunction.
Keyphrases
- growth factor
- urinary tract
- spinal cord injury
- stress induced
- low dose
- poor prognosis
- oxidative stress
- chronic pain
- drug induced
- high throughput
- stem cells
- binding protein
- bone marrow
- single cell
- physical activity
- high grade
- high dose
- spinal cord
- pain management
- combination therapy
- long non coding rna
- cell therapy
- peripheral nerve
- muscle invasive bladder cancer