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1.
China Journal of Orthopaedics and Traumatology ; (12): 1148-1156, 2020.
Article in Chinese | WPRIM | ID: wpr-879370

ABSTRACT

OBJECTIVE@#To analyze the role of endoplasmic reticulum stress response in the development of osteoblast apoptosis and osteolysis in osteolytic bone tissue, and to explore the causes of artificial joint loosening, so as to provide new ideas and theoretical basis for the prevention and treatment of artificial joint loosening.@*METHODS@#The animal model of osteolysis induced by wear particles was established by mouse skull, and randomly divided into 4 groups, 7 rats in each group:group 1, blank control group;group 2, wear particles tial6v4 nano alloy powder (TiNPs) group;group 3, endoplasmic reticulum stress response positive control (TiNPs+Tg) group; group 4, endoplasmic reticulum stress response inhibitor (TiNPs+4-PBA) group. The pathological changes of osteolysis were observed by toluidine blue staining, HE staining and ALP staining;the expression of endoplasmic reticulum stress response marker protein was detected by Western Blotting;the apoptosis of osteoblasts in osteolytic skull tissue was detected by TUNEL and Caspase-3 immunohistochemistry.@*RESULTS@#Wear particles TiNPs can induce osteolysis in vitro, aggravate the infiltration of inflammatory cells and inhibit the differentiation and maturation of osteoblasts. At the same time, wear particles can also up regulate the markers of endoplasmic reticulum stress response and promote the apoptosis of osteoblasts in osteolytic bone tissue. After adding 4-PBA, an inhibitor of endoplasmic reticulum stress (4-PBA), on the basis of wear particles TiNPs, the symptoms of osteolysis were significantly relieved, bone erosion and inflammatory infiltration were significantly reduced, the differentiation and maturation of osteoblasts were improved, the number of apoptotic osteoblasts decreased sharply, and the expression of endoplasmic reticulum stress marker protein gradually decreased.@*CONCLUSION@#Endoplasmic reticulum stress is involved in the formation of osteolysis and plays an important role in the occurrence and development of osteolysis. At the same time, endoplasmic reticulum stress can be used as a new therapeutic target to provide new ideas and methods for clinical reversal or treatment of osteolysis and aseptic loosening.


Subject(s)
Animals , Mice , Rats , Apoptosis , Cell Differentiation , Endoplasmic Reticulum Stress , Osteoblasts , Osteolysis/chemically induced
2.
China Journal of Orthopaedics and Traumatology ; (12): 125-131, 2017.
Article in Chinese | WPRIM | ID: wpr-281289

ABSTRACT

Surgery is the preferred method for the treatment of spinal canal disease, surgical method involves laminectomy and laminoplasty. The ideal spinal surgery not only should fully expose the spinal canal, completely resect the occupied position and remove the spinal cord compression, but also should maintain the stability of spinal biomechanics. Because of the different realization of clinician to safeguard and rebuild the spinal stabilization during opertion of spinal canal disease, and choice of surgical method and how to maintain the stability of spine biomechanics has become a hot of research in this field. Many scholars have studied it in order to reduce the influence of laminectomy on the spinal stability. Laminoplasty can directly relieve the nerve roots compression caused by increasing or reconstruction of vertebral canal volume, and allow the migration of spinal cord to dorsum and depart from disc and vertebral body. Laminoplasty not only can fully expose and decompress during operative, but also may prevent the postoperative spinal instability. In addition to these condition of extensive disease, severe bone destruction or combined with osteoporosis, the laminoplasty is the most ideal method for single spinal canal disease in theoretically.

3.
China Journal of Orthopaedics and Traumatology ; (12): 232-236, 2014.
Article in Chinese | WPRIM | ID: wpr-301849

ABSTRACT

MicroRNA(miRNA) is a class of non-coding RNA that plays an important role in gene expression and controlling. In recent years,the role of miRNA in the development of the disease has aroused great interest. Abnormal osteoclastogenesis and persistent inflammatory response induced by wear particles or osteoblast differentiation and maturation is the main cause of aseptic loosening in joint replacements. New researches shows that persistent inflammatory response, osteoclastogenesis and osteoblast differentiation are closely associated with miRNA, suggesting that there are certain relations between miRNA and aseptic loosening of prostheses. Additionally, the alteration of the expression levels of some miRNA may be curative for aseptic loosening. With the findings of the new miRNA targets, the important role of miRNA is further confirmed.


Subject(s)
Animals , Humans , Arthroplasty, Replacement , Cell Differentiation , Joint Diseases , Genetics , Metabolism , General Surgery , MicroRNAs , Genetics , Metabolism , Osteoblasts , Cell Biology , Metabolism , Prostheses and Implants
4.
China Journal of Orthopaedics and Traumatology ; (12): 791-796, 2013.
Article in Chinese | WPRIM | ID: wpr-250761

ABSTRACT

Aseptic looseningis is one of the most frequent long-term complications after joint replacement, which limits the service lire of prosthesis. A lot of studies have been focused on macrophage, osteoblast, osteoclast and fibroblast in interface membranes around prostheses recently. Aseptic loosening of orthopedic implants used in joint replacement results from bone loss that occurs through the resorptive activity of inflammatory cells activated by the presence of wear particles. Apoptosis has been observed in the periprosthetic site and it has been interpreted as a sign of resolution of inflammation suggesting that apoptosis-related events are indeed associated with periprosthetic osteolysis,targeting the Apoptosis pathway may lead to novel therapeutic approaches for the treatment of aseptic prosthesis loosening. In this thesis,the relationship between wear debris-induced apoptosis and aseptic loosening of prostheses are expounded in detail.


Subject(s)
Humans , Apoptosis , Joint Prosthesis , Osteolysis , Prosthesis Failure
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