ReferenceID 2252

Connexin-43 is a promising target for lycopene preventing phthalate-induced spermatogenic disorders

J Adv Res

Introduction: Male infertility is a multifactorial pathological condition and may be a harbinger of future health. Phthalates are ubiquitous environmental contaminants that have been implicated in the global decline in m

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Reference Id
2252
Evidence Id
18842
Core Evidence Id
18842
Source Reference Id
4541
Herb2 Reference Id
HBREF005338
Subject Paper Key
HBIN033972_36087924
Pubmed Id
36087924
Doi
10.1016/j.jare.2022.09.001
Paper Title
Connexin-43 is a promising target for lycopene preventing phthalate-induced spermatogenic disorders
Paper Abstract
Introduction: Male infertility is a multifactorial pathological condition and may be a harbinger of future health. Phthalates are ubiquitous environmental contaminants that have been implicated in the global decline in male fertility. Among them, di-(2-ethylhexyl) phthalate (DEHP) is the most prevalently used. Lycopene (LYC) is a possible preventive and therapeutic agent for male infertility owing to its antioxidant properties. The blood-testis barrier (BTB) is formed between Sertoli cells where it creates a unique microenvironment for spermatogenesis. Objectives: We hypothesize that phthalate caused male infertility and LYC plays an important role in phthalate-induced male fertility disorders. Methods: Hematoxylin-eosin (H&E) staining, ultrastructure observation, and fluorescence microscopy were used to examine the morphological changes. RNA-Seq, and western blotting were conducted to detect gene and protein levels. Routine testing for sperm morphology and sperm-egg binding assay were conducted to examine the morphological structure and function of sperm. Cell scratch assay and transepithelial electrical resistance (TER) were used to detect cell migration capacity and barrier integrity. Results: In vivo experiments, we showed that LYC prevented DEHP-induced impairment of BTB integrity, which provided a guarantee for the smooth progress of spermatogenesis. LYC improved DEHP-induced change in sperm parameters and fertilization ability. Subsequent in vitro experiments, LYC alleviated MEHP-induced disruption of intercellular junctions in mouse Spermatogonia cells (GC-1 cells) and mouse Sertoli cells (TM4 cells). In MEHP-induced BTB impairment models of Sertoli cells, treatment with LYC or overexpressing connexin-43 (Cx43) promoted cell migration capacity and normalized BTB integrity. Cx43 knockdown inhibited cell migration capacity and perturbed BTB reassembly in LYC preventing DEHP-induced BTB impairment. Conclusion: Our study provides evidence for the role of LYC in phthalates-induced spermatogenic disorders and points to Cx43 as a potential target for male fertility.
Journal
J Adv Res
Publish Year
2022
Experiment Subject
mouse; gc-1 cells; mouse spermatogonia cells; tm4 cells
Experiment Type
Cell Experiment
Phenotype Related
Btb Impairment; Male Fertility Disorders; Male Infertility; Spermatogenic Disorders
Paper Title Cn
Paper Title En
Connexin-43 is a promising target for lycopene preventing phthalate-induced spermatogenic disorders
Bilingual Status
semi_complete