Neutralizing antibody to proNGF rescues erectile function by regulating the expression of neurotrophic and angiogenic factors in a mouse model of cavernous nerve injury

Doo Yong Chung, Kang-Moon Song, Min-Ji Choi, Anita Limanjaya, Kalyan Ghatak, Jiyeon Ock, Guo Nan Yin, Chang Hee Hong, Soon-Sun Hong, Jun-Kyu Suh, Ji-Kan Ryu

ANDROLOGY(2021)

Cited 6|Views41
No score
Abstract
Background Radical prostatectomy induces some degree of cavernous nerve injury (CNI) and causes denervation-induced pathologic changes in cavernous vasculature, regardless of the advances in surgical techniques and robotic procedures. The precursor for nerve growth factor (proNGF) is known to be involved in neuronal cell apoptosis and microvascular dysfunction through its receptor p75(NTR). Objectives To determine the expression of proNGF/p75(NTR)and the efficacy of proNGF neutralizing antibody (anti-proNGF-Ab) in a mouse model of ED induced by CNI. Materials and Methods Age-matched 12-week-old C57BL/6 mice were distributed into three groups: sham group and bilateral CNI group treated with intracavernous injections of PBS (20 mu L) or of anti-proNGF-Ab (20 mu g in 20 mu L of PBS) on days -3 and 0. Two weeks after treatment, erectile function was measured by electrical stimulation of cavernous nerve. Penis tissues from a separate group of animals were harvested for further analysis. We also determined the efficacy of anti-proNGF-Ab on neural preservation in major pelvic ganglion (MPG) ex vivo. Results We observed increased penile expression of proNGF and p75(NTR)after CNI. Intracavernous administration of anti-proNGF-Ab increased nNOS and neurofilament expression probably by enhancing the production of neurotrophic factors, such as neurotrophin-3, NGF, and brain-derived neurotrophic factor. Anti-proNGF-Ab preserved the integrity of cavernous sinusoids, such as pericytes, endothelial cells, and endothelial cell-to-cell junctions, possibly by controlling angiogenic factors (angiopoietin-1, angiopoietin-2, and vascular endothelial growth factor) and induced endogenous eNOS phosphorylation in CNI mice. And finally, treatment with anti-proNGF-Ab rescued erectile function in CNI mice. Anti-proNGF-Ab also enhanced neurite sprouting from MPG exposed to lipopolysaccharide. Discussion and Conclusion The preservation of damaged cavernous neurovasculature through inhibition of the proNGF/p75(NTR)pathway may be a novel strategy to treat radical prostatectomy-induced erectile dysfunction.
More
Translated text
Key words
cavernous nerve injury,erectile dysfunction,p75(NTR),proNGF,radical prostatectomy
AI Read Science
Must-Reading Tree
Example
Generate MRT to find the research sequence of this paper
Chat Paper
Summary is being generated by the instructions you defined