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1.
Journal of Pharmaceutical Practice ; (6): 395-398, 2021.
Artigo em Chinês | WPRIM | ID: wpr-886871

RESUMO

Prokineticin 2 (PK2) is a newly discovered chemokine, which participates in various physiological functions of the body by binding to receptors PKR1 and PKR2. PK signaling pathway is a newly discovered important regulatory pathway for the occurrence and maintenance of pain after tissue injury and nerve injury in recent years. It plays a key role in regulating injury-related nociceptive events and is a potential therapeutic target for many diseases. The activation of PKRs can induce pain sensation and participate in the sensitivity of pain receptors to different stimuli. The PK system (PKs and PKRs) is an important link involved in inflammation and pain transmission in immune cells. PK2 is involved in the regulation of pain perception by activating PKR1 and PKR2 on primary sensory neurons. In rat primary sensory neurons, PK2 also enhances gated ion channel current through the PKC signaling pathway, inhibits GABA-activated currents, and sensitizes purine nucleotide P2 receptor (P2X). This paper reviews the research progress of PK2 in physical pain. We hope to find new drugs for the treatment of inflammatory pain that target the PKs signaling pathway in future studies.

2.
Asian Journal of Andrology ; (6): 500-506, 2020.
Artigo em Chinês | WPRIM | ID: wpr-842432

RESUMO

Varicocele is one of the most important causes of male infertility, as this condition leads to a decline in sperm quality. It is generally believed that the presence of varicocele induces an increase in reactive oxygen species levels, leading to oxidative stress and sperm apoptosis; however, the specific pathogenic mechanisms affecting spermatogenesis remain elusive. Prokineticin 2 (PK2), a secretory protein, is associated with multiple biological processes, including cell migration, proliferation, and apoptosis. In the testis, PK2 is expressed in spermatocytes under normal physiological conditions. To investigate the role of PK2 in varicocele, a rat varicocele model was established to locate and quantify the expression of PK2 and its receptor, prokineticin receptor 1 (PKR1), by immunohistochemistry and quantitative real-time PCR assays (qPCR). Moreover, H2O2was applied to mimic the oxidative stress state of varicocele through coculturing with a spermatocyte-derived cell line (GC-2) in vitro, and the apoptosis rate was detected by flow cytometry. Here, we illustrated that the expression levels of PK2 and PKR1 were upregulated in the spermatocytes of the rat model. Administration of H2O2stimulated the overexpression of PK2 in GC-2. Transfection of recombinant pCMV-HA-PK2 into GC-2 cells promoted apoptosis by upregulating cleaved-caspase-3, caspase-8, and B cell lymphoma 2-associated X; downregulating B cell lymphoma 2; and promoting the accumulation of intracellular calcium. Overall, we revealed that the varicocele-induced oxidative stress stimulated the overexpression of PK2, leading to apoptosis of spermatocytes. Our study provides new insight into the mechanisms underlying oxidative stress-associated male infertility and suggests a novel therapeutic target for male infertility.

3.
Chinese Pharmacological Bulletin ; (12): 892-894, 2018.
Artigo em Chinês | WPRIM | ID: wpr-705147

RESUMO

Cardiovascular diseases are characterized by cardiac and vascular dysfunction. Prokineticin 2 ( PK2 ) is a newly found secretory peptide which plays a key role in the physiology homeostasis via prokineticin receptor 1 and 2 ( PKR1 and 2). Furthermore, PK2/PKR1 signaling pathway plays an important role in protecting cardiovascular diseases. Here we discuss the effect of PK2/PKR1 signaling in myocardial infarction, conges-tive heart failure and vascular endothelial dysfunction.

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