1.Osteoimmunology research in rheumatoid arthritis: From single-cell omics approach.
Nan HU ; Jing WANG ; Bomiao JU ; Yuanyuan LI ; Ping FAN ; Xinxin JIN ; Xiaomin KANG ; Shufang WU
Chinese Medical Journal 2023;136(14):1642-1652
Cellular immune responses as well as generalized and periarticular bone loss are the key pathogenic features of rheumatoid arthritis (RA). Under the pathological conditions of RA, dysregulated inflammation and immune processes tightly interact with skeletal system, resulting in pathological bone damage via inhibition of bone formation or induction of bone resorption. Single-cell omics technologies are revolutionary tools in the field of modern biological research.They enable the display of the state and function of cells in various environments from a single-cell resolution, thus making it conducive to identify the dysregulated molecular mechanisms of bone destruction in RA as well as the discovery of potential therapeutic targets and biomarkers. Here, we summarize the latest findings of single-cell omics technologies in osteoimmunology research in RA. These results suggest that single-cell omics have made significant contributions to transcriptomics and dynamics of specific cells involved in bone remodeling, providing a new direction for our understanding of cellular heterogeneity in the study of osteoimmunology in RA.
Humans
;
Osteoclasts/physiology*
;
Arthritis, Rheumatoid/pathology*
;
Inflammation/pathology*
;
Bone and Bones/pathology*
;
Bone Resorption/pathology*
2.Research progress of bone graft resorption after Latarjet procedure for treatment of recurrent anterior shoulder dislocation.
Chinese Journal of Reparative and Reconstructive Surgery 2023;37(5):526-532
OBJECTIVE:
To review the research progress of bone graft resorption after Latarjet procedure for the treatment of recurrent anterior shoulder dislocation, and provide a guide for further research on bone graft resorption.
METHODS:
The relevant literature in recent years was extensively reviewed. The pathogenesis, classification, risk factors, clinical function impact, and management of bone graft resorption after Latarjet procedure for the treatment of recurrent anterior shoulder dislocation were summarized.
RESULTS:
Bone graft resorption is the common complication after Latarjet procedure for the treatment of recurrent anterior shoulder dislocation. Stress shielding and poor blood supply may contribute to the occurrence of bone graft resorption. The absence of significant preoperative glenoid bone loss, open procedure, earlier graft healing may to be the risk factors for bone graft resorption. Various assessment methods and classification systems are used to evaluate the region and severity of bone graft resorption. Partial resorption may be considered as a natural glenoid remodeling process after the surgery, but severe and complete resorption is proved to be one of the reasons for failed procedures and there is no effective measure to prevent it, except for accepting revision surgery.
CONCLUSION
The pathogenesis, risk factors, clinical function impact of bone graft resorption after Latarjet procedure for the treatment of recurrent anterior shoulder dislocation has not been fully elucidated and there is a lack of effective management strategies, so further clinical and basic researches are needed.
Humans
;
Shoulder Joint/surgery*
;
Shoulder Dislocation/surgery*
;
Joint Instability/surgery*
;
Bone Resorption/pathology*
;
Bone Transplantation
;
Recurrence
3.Fatigue damage and repair in bone.
Chunqiu ZHANG ; Dankai WU ; Yuxiang GUO ; Tongtong GUO ; Xinghua ZHU
Journal of Biomedical Engineering 2003;20(1):180-186
Bone is a load-bearing organ in human body. Fatigue damage occurs readily at the modest loads to which bone is subjected during its habitual physiological usage. Even bone fracture may occur during vigorous activity. The nature of fatigue damage is that in bone there are very fine microcracks which are smaller than typical microcracks, and may occur at the level of hydroxyapatite crystals. But bone can repair microdamage by bone remodeling. Osteocytes play an important role of signaling during bone remodeling. Some researchers attempted to describe the process of bone fatigue damage and repair by mathematic, mechanical models in order to understand it well and to apply it well in clinical practice.
Animals
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Bone Remodeling
;
physiology
;
Bone Resorption
;
pathology
;
physiopathology
;
Bone and Bones
;
cytology
;
injuries
;
physiology
;
Fractures, Stress
;
pathology
;
physiopathology
;
Humans
;
Models, Biological
;
Stress, Mechanical
4.Androgen and bone mass in men.
Asian Journal of Andrology 2003;5(2):148-154
Androgens have multiple actions on the skeleton throughout life. Androgens promote skeletal growth and accumulation of minerals during puberty and adolescence and stimulate osteoblast but suppress osteoclast function, activity and lifespan through complex mechanisms. Also androgens increase periosteal bone apposition, resulting in larger bone size and thicker cortical bone in men. There is convincing evidence to show that aromatization to estrogens was an important pathway for mediating the action of testosterone on bone physiology. Estrogen is probably the dominant sex steroid regulating bone resorption in men, but both testosterone and estrogen are important in maintaining bone formation.
Aging
;
physiology
;
Androgens
;
metabolism
;
physiology
;
therapeutic use
;
Bone Resorption
;
etiology
;
prevention & control
;
Bone and Bones
;
pathology
;
physiology
;
Estrogens
;
physiology
;
Humans
;
Hypogonadism
;
pathology
;
Male
;
Puberty
;
physiology
;
Testosterone
;
physiology
5.Inhibitory effects of high glucose/insulin environment on osteoclast formation and resorption in vitro.
Fei XU ; Ya-ping YE ; Yong-hui DONG ; Feng-jing GUO ; An-min CHEN ; Shi-long HUANG
Journal of Huazhong University of Science and Technology (Medical Sciences) 2013;33(2):244-249
Patients with type 2 diabetes mellitus (T2DM) exhibit hyperglycemia and hyperinsulinemia and increased risk of fracture at early stage, but they were found to have normal or even enhanced bone mineral density (BMD). This study was aimed to examine the molecular mechanisms governing changes in bone structure and integrity under both hyperglycemic and hyperinsulinemic conditions. Monocytes were isolated from the bone marrow of the C57BL/6 mice, induced to differentiate into osteoclasts by receptor activator of nuclear factor kappa-B ligand (RANKL) and macrophage colony-stimulating factor (M-CSF) and exposed to high glucose (33.6 mmol/L), high insulin (1 μmol/L), or a combination of high glucose/high insulin (33.6 mmol/L glucose and 1 μmol/L insulin). Cells cultured in α-MEM alone served as control. After four days of incubation, the cells were harvested and stained for tartrate resistant acid phosphatase (TRAP). Osteoclast-related genes including RANK, cathepsin K and TRAP were determined by using real-time PCR. The resorptive activity of osteoclasts was measured by using a pit formation assay. Osteoclasts that were derived from monocytes were of multinucleated nature and positive for TRAP, a characteristic marker of osteoclasts. Cell counting showed that the number of osteoclasts was much less in high glucose and high glucose/high insulin groups than in normal glucose and high insulin groups. The expression levels of RANK and cathepsin K were significantly decreased in high glucose, high insulin and high glucose/high insulin groups as compared with normal glucose group, and the TRAP activity was substantially inhibited in high glucose environment. The pit formation assay revealed that the resorptive activity of osteoclasts was obviously decreased in high glucose group and high glucose/high insulin group as compared with normal group. It was concluded that osteoclastogenesis is suppressed under hyperglycemic and hyperinsulinemic conditions, suggesting a disruption of the bone metabolism in diabetic patients.
Animals
;
Bone Resorption
;
metabolism
;
pathology
;
Cells, Cultured
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Cellular Microenvironment
;
Diabetes Mellitus, Type 2
;
metabolism
;
pathology
;
Glucose
;
metabolism
;
Humans
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Insulin
;
metabolism
;
Mice
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Mice, Inbred C57BL
;
Osteoclasts
;
metabolism
;
pathology
6.Effect of low stress environment on bone density and geome-morphology of rat femur.
Yingxi LIU ; Wenzhi ZHAO ; Jun ZHANG ; Shouju LI ; Jingnian LI ; Xiaojiang SUN
Journal of Biomedical Engineering 2005;22(6):1165-1167
6-week old rats were subjected to sciatic nerve resection and the right hindlimbs were then under a low stress environment. Bone mineral density (BMD) of different regions and geome-morphological parameters of femurs were measured. The results showed that the increase in the diameter, subperiosteal area and bone mineral density of femurs were suppressed obviously under low stress environment. But the sensitivity of BMD of different regions of the femur to the low stress environment was different. The suppression of the increase in femoral BMD was composed of an early impairment in the gain of BMD at the femoral metaphysis, which is rich in trabecular bone, and a sustained reduction in the gain of BMD at the femoral diaphysis, which is rich in cortical bone. The results of geome-morphology suggested that the early reduction in the increase of BMD at the metaphysis was due to an enhancement of bone resorption, whereas the suppression of gain in cortical bone mass and size is the result of a sustained reduction of periosteal bone formation.
Animals
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Bone Density
;
physiology
;
Bone Resorption
;
etiology
;
Female
;
Femur
;
pathology
;
Immobilization
;
Rats
;
Rats, Sprague-Dawley
;
Sciatic Nerve
;
physiology
;
surgery
;
Stress, Mechanical
;
Weight-Bearing
;
physiology
7.99mTc-HDP Pinhole SPECT Findings of Foot Reflex Sympathetic Dystrophy: Radiographic and MRI Correlation and a Speculation about Subperiosteal Bone Resorption.
Sung Hoon KIM ; Soo Kyo CHUNG ; Yong Whee BAHK ; Yong An CHUNG ; Kyung Sub SONG
Journal of Korean Medical Science 2003;18(5):707-714
Reflex sympathetic dystrophy (RSD) is a common rheumatic disorder manifesting painful swelling, discoloration, stiffening and atrophy of the skin. Radiographic alterations include small, spotty subperiosteal bone resorption (SBR) and diffuse porosis, and MR imaging shows bone and soft-tissue edema. The purposes of current investigation were to assess 99mTc HDP pinhole SPECT (pSPECT) findings of RSD, to correlate them with those of radiography and MRI and to speculate about causative mechanism of SBR which characterizes RSD. pSPECT was performed in five patients with RSD of the foot. pSPECT showed small, discrete, spotty hot areas in the subperiosteal zones of ankle bones in all five patients. Diffusely increased tracer uptake was seen in the retrocalcaneal surface where the calcaneal tendon inserts in two patients with atrophic RSD. pSPECT and radiographic correlation showed spotty hot areas, that reflect focally activated bone turnover, to closely match with SBR. Further correlation with MRI showed both spotty hot areas and SBR to coincide in location with the insertions of ligaments and tendons, onto which pulling strain is constantly exerted. In contrast, the disuse osteoporosis in unstrained bones did not show any more significantly increased tracer uptake than normal cancellous bones.
Adult
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*Bone Resorption
;
Bone and Bones/pathology
;
Edema
;
Female
;
Foot Bones/pathology
;
Foot Diseases/pathology
;
Human
;
Image Processing, Computer-Assisted
;
Magnetic Resonance Imaging/*methods
;
Male
;
Middle Aged
;
Osteoporosis/pathology
;
Reflex Sympathetic Dystrophy/*pathology
;
Technetium/*pharmacology
;
Tomography, Emission-Computed, Single-Photon/*methods
8.Long-term effectiveness of uncemented allograft-prosthesis composite for reconstruction of bone defects after proximal femur tumor resection.
Yang WANG ; Minxun LU ; Yuqi ZHANG ; Xuanhong HE ; Zhuangzhuang LI ; Taojun GONG ; Yitian WANG ; Yong ZHOU ; Yi LUO ; Fan TANG ; Wenli ZHANG ; Hong DUAN ; Chongqi TU ; Li MIN
Chinese Journal of Reparative and Reconstructive Surgery 2023;37(10):1190-1197
OBJECTIVE:
To investigate the long-term effectiveness of uncemented allograft-prosthesis composite (APC) for reconstruction of bone defects after proximal femur tumor resection.
METHODS:
Between June 2007 and March 2014, 21 patients who underwent uncemented APC reconstruction of proximal femur after tumor resection were retrospectively evaluated. There were 9 males and 12 females with an average age of 33.2 years (range, 19-54 years). There were 9 cases of giant cell tumor of bone, 5 cases of osteosarcoma, 4 cases of osteoblastic osteosarcoma, 2 cases of chondrosarcoma, and 1 case of undifferentiated pleomorphic sarcoma. Thirteen cases of benign bone tumors were all classified as stage 3 by Enneking staging; and 8 cases of malignant bone tumors were classified as grade ⅡB in 7 cases and grade ⅡA in 1 case according to the American Joint Committee on Cancer (AJCC) staging system. Among them, 7 patients underwent reoperation after recurrence, and the rest were primary operations; 8 patients presented with pathological fractures. The preoperative Harris hip score (HHS) and American Musculoskeletal Tumor Society (MSTS) score was 40 (30, 49) and 9.1±3.5, respectively. The length of osteotomy was 80-154 mm, with an average of 110 mm. At 1 year after operation and last follow-up, HHS and MSTS scores were utilized to evaluate the function of hip joint; the gluteus medius strength score was used to evaluation of the hip abduction function. Image examinations were taken at 1, 3, 6, 9, and 12 months after operation and every year thereafter to assess the union of allograft-host bone interfaces. Intra- and post-operative complications were also recorded.
RESULTS:
All patients were followed up 84-163 months (mean, 123.5 months). At 1 year after operation and last follow-up, the HHS and MSTS scores significantly improved when compared with the preoperative scores ( P<0.05). However, there was no significant difference in the HHS score, MSTS score, and gluteus medius strength score between the two time points after operation ( P>0.05). Image examination showed that all allograft-host bone interfaces achieved union after 5-10 months (mean, 7.6 months). At last follow-up, all patients had bone resorption, including 11 severe cases, 4 moderate cases, and 6 mild cases; the bone resorption sites included Gruen 1, 2, and 7 regions. Complications included 10 fractures and 1 prosthetic fracture. Local recurrence occurred in 3 patients and pulmonary metastasis in 3 patients.
CONCLUSION
Uncemented APC is a reliable method for the reconstruction of bone defects after proximal femur tumor resection. It has the good long-term effectiveness and possesses obvious advantages in the union at the bone-bone surface.
Adult
;
Female
;
Humans
;
Male
;
Allografts/pathology*
;
Bone Neoplasms/surgery*
;
Bone Resorption/pathology*
;
Bone Transplantation/methods*
;
Femur/surgery*
;
Osteosarcoma/pathology*
;
Prostheses and Implants
;
Retrospective Studies
;
Treatment Outcome
;
Young Adult
;
Middle Aged
9.Icariin inhibits thioacetamide-induced osteoclast differentiation through RANKL-p38/ERK-NFAT pathway.
Lin-Yan CHENG ; Xiao-Li JIN ; Xuan-Wei CHEN ; Jin CHEN ; Jun REN ; Hui HUANG ; Jian XU
China Journal of Chinese Materia Medica 2022;47(21):5882-5889
This study aims to investigate the therapeutic effect of icariin(ICA) on thioacetamide(TAA)-induced femoral osteolysis in rats. RAW264.7 cells were treated with TAA and ICA. Cell counting kit-8(CCK-8) assay was used to detect cell proliferation, and tartrate-resistant acid phosphatase(TRAP) staining to examine the formation of osteoclasts. The expression of TRAP, cathepsin K, c-FOS, and NFATc1 in RAW264.7 cells was determined by Western blot and immunofluorescence method. Thirty-two SD rats were randomized into the control group, TAA group(intraperitoneal injection of TAA at 300 mg·kg~(-1)), ICA group(gavage of ICA at 600 mg·kg~(-1)) and TAA + ICA group(intraperitoneal injection of TAA at 300 mg·kg~(-1) and gavage of ICA at 600 mg·kg~(-1)). Administration was performed every other day for 6 weeks. Body weight and length of femur were recorded at execution. Pathological injury and osteoclast differentiation of femur were observed based on hematoxylin-eosin(HE) staining and TRAP staining, and the changes of bone metabolism-related indexes alkaline phosphatase(ALP), calcium(Ca), phosphorus(P), magnesium(Mg), and cross-linked N-telopeptide of type Ⅰ collagen(NTX-Ⅰ) in serum were detected. Three-point bending test and micro-CT were applied to evaluate the quality of femur, and Western blot to detect the levels of osteoclast-related proteins TRAP, cathepsin K, RANK, RANKL, p38, p-p38, ERK, p-ERK, JNK, p-JNK, c-Fos, and NFATc1. The results showed ICA could inhibit TAA-induced production of TRAP-positive cells, the expression of osteoclast-related proteins, and nuclear translocation of NFATc1. ICA alleviated the weight loss, reduction of femur length, and growth inhibition induced by TAA in SD rats. ICA ameliorated the decline of femur elastic modulus caused by TAA and significantly restored trabecular bone mineral density(BMD), trabecular pattern factor(Tb.Pf), trabecular number(Tb.N), trabecular thickness(Tb.Th), and structure model index(SMI), thus improving bone structure. Western blot results showed ICA suppressed femoral osteoclast differentiation induced by TAA through RANKL-p38/ERK-NFATc1 signaling pathway. ICA inhibits osteoclast differentiation and prevents TAA-induced osteolysis by down-regulating RANKL-p38/ERK-NFAT signaling pathway.
Rats
;
Animals
;
Osteoclasts
;
Cathepsin K/pharmacology*
;
Thioacetamide/pharmacology*
;
Bone Resorption/pathology*
;
Osteolysis/pathology*
;
Cell Differentiation
;
Rats, Sprague-Dawley
;
NFATC Transcription Factors/metabolism*
10.Morphometry of osteoclasts in experimental fracture healing of rabbits.
Jiaqi WU ; Yuanying WU ; Yiwei JIANG ; Hongzhuan LI ; Xiaogang ZHANG ; Tianfu YANG
Journal of Biomedical Engineering 2007;24(4):889-893
This study was designed to investigate the effects of some Traditional Chinese Medicine (TCM) agents on bone resorption and morphometric features of osteoclasts as well as their relationships. TCM ShengGuZaiZaoSan and XianLingGuBao, were used to treat the experimental fracture. Thirty 6-month-old Chinchilla rabbits were used for the establishment of animal models each with a 3 mm bone defect in the middle of left radius as well as of right radius. These models were divided randomly into 3 groups : ShengGuZaiZaoSan Group (Group A), XianLingGuBao groups (Group B) and control-group (Group C). Every group was further divided into 2 subgroups: a former sacrificed group (14 days after operation) and a latter sacrificed group (31 days after operation). After the rabbits being killed, the samples of their undecalcified calli were subjected to the morphometry study of bone resorption and osteoclasts. Group A had more bone resorption, compared with Group B and C. Both Groups A and B exhibited some changed morphometric features of osteoclasts as compared with Group C (P < 0.05). Simple correlation analysis indicated that bone resorption is mainly correlated with osteoclast numbers, and that in individual group, bone resorption is correlated with osteoclast form factor, area and mean photodensity (P < 0.05). These allow us to conclude that ShengGuZaiZaoSan can increase bone resorption and accelerate bone remodeling by increasing osteoclast numbers at the former stage and can enhance osteoclast function at the latter stage. These changes are beneficial to fracture healing.
Animals
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Bone Remodeling
;
drug effects
;
Bone Resorption
;
physiopathology
;
Drugs, Chinese Herbal
;
pharmacology
;
therapeutic use
;
Female
;
Fracture Healing
;
drug effects
;
physiology
;
Male
;
Osteoclasts
;
drug effects
;
pathology
;
Phytotherapy
;
Rabbits
;
Radius Fractures
;
drug therapy
;
pathology
;
physiopathology
;
Random Allocation