1.Comparative study of the effects of intramedullary nail fixation and minimally invasive percutaneous plate internal fixation technique on platelet activation and serum transforming growth factor-β1(TGF-β) 1 and bone morphogenetic protein-2 (BMP-2) in patients with tibial and fibular fracture.
Cheng WEN ; Xi-Jie WANG ; Jun-Cheng HAN ; Han-Wei WANG
China Journal of Orthopaedics and Traumatology 2023;36(11):1100-1106
OBJECTIVE:
To investigate the effect of intramedullary nail fixation (IMN) and minimally invasive percutaneous plate internal fixation (MIPPO) techniques on tibiofibular fractures and their effect on platelet activation and serum transforming growth factor-β1 (TGF-β1) and bone morphogenetic protein-2 (BMP-2).
METHODS:
Total of 105 patients with tibiofibular fractures from February 2019 to February 2020 were selected and divided into 53 cases in the MIPPO group and 52 cases in the IMN group. There were 29 males and 24 females with an average age of (41.74±6.05) years old in MIPPO group;in IMN group, 31 males and 21 females with an average age of (40.59±5.26) years old. The perioperative surgical indexes, postoperative complications, ankle function recovery at 12 months postoperatively, platelet activation indexes at 3 and 7 days preoperatively and postoperatively, and serum TGF-β1 and BMP-2 levels at 4 and 8 weeks preoperatively and postoperatively were compared between the two groups.
RESULTS:
The operating time and fracture healing time in the MIPPO group were shorter than those in the IMN group(P<0.05); Compared with the preoperative period, the levels of GMP-140, PAC-1, CD63, and CD61 increased in both groups at 3 and 7 days after surgery, but were lower in the MIPPO group than in the IMN group(P<0.05);the levels of serum TGF-β1 and BMP-2 increased in both groups at 4 and 8 weeks after surgery compared with the preoperative period, and the postoperative complication rate in the MIPPO group was lower than that in the IMN group(P<0.05);the difference was not statistically significant in the excellent rate of ankle function recovery at 12 months follow-up after surgery between two groups(P>0.05).
CONCLUSION
Both intramedullary nail fixation and MIPO technique for treatment of tibia and fibula fractures can improve ankle joint function, but the latter has the advantages of short operation time, fast fracture healing, fewer complications, and light platelet activation. Serum TGF-β1, BMP-2 level improves quickly.
Male
;
Female
;
Humans
;
Adult
;
Middle Aged
;
Tibia/injuries*
;
Transforming Growth Factor beta1
;
Fracture Fixation, Intramedullary/methods*
;
Tibial Fractures/surgery*
;
Fracture Fixation, Internal/methods*
;
Bone Plates
;
Fracture Healing
;
Postoperative Complications
;
Fractures, Multiple
;
Treatment Outcome
;
Bone Morphogenetic Proteins
;
Minimally Invasive Surgical Procedures/methods*
;
Retrospective Studies
2.Effect of the Orally Active Growth Hormone Secretagogue MK-677 on Somatic Growth in Rats.
Junghun LEE ; Ahreum KWON ; Hyun Wook CHAE ; Woo Jung LEE ; Tae Hyuk KIM ; Ho Seong KIM
Yonsei Medical Journal 2018;59(10):1174-1180
PURPOSE: Growth hormone secretagogues (GHSs) possess the ability to release growth hormone (GH) in the body. This study aimed to investigate the effects of MK-677, an orally active GHS, on somatic growth in rats. MATERIALS AND METHODS: The serum levels of GH were measured after oral administration of MK-677 to confirm GH stimulatory effects. Body weight, body length, tibia length, epiphyseal plate width, and serum levels of insulin-like growth factor (IGF)-I were measured after oral administration of 4 mg/kg of MK-677 for 6 weeks to investigate growth-promoting effects. RESULTS: Oral administration of MK-677 at 4 mg/kg increased peak GH concentrations by 1.8-fold, compared to baseline. However, oral administration of MK-677 for 6 weeks did not increase body growth or serum levels of IGF-I. At 6 weeks after treatment, the GH response to MK-677 was abolished. Pituitary GH mRNA and hypothalamic GH-releasing hormone mRNA, and GH secretagogue receptor (GHSR) mRNA expression in the pituitary and hypothalamus did not differ between the control and treatment group. Somatostatin (SST) mRNA expression in the hypothalamus was markedly increased in the treatment group, whereas SST receptor (SSTR)-2 mRNA expression in the pituitary gland was decreased. Protein expression of hypothalamic GHSR, SST, and pituitary SSTR-2 showed patterns similar to those for mRNA expression. CONCLUSION: Our results suggest that prolonged administration of MK-677 in rats does not promote growth despite the GH stimulatory effect of MK-677, which may be related to increased expression of SST in the hypothalamus. Further studies are needed to overcome the observed desensitization to GHS.
Administration, Oral
;
Animals
;
Body Weight
;
Growth Hormone*
;
Growth Plate
;
Hypothalamus
;
Insulin-Like Growth Factor I
;
Pituitary Gland
;
Rats*
;
RNA, Messenger
;
Somatostatin
;
Tibia
3.Orthopedic Manifestations of Type I Camurati-Engelmann Disease.
Alisher J YULDASHEV ; Chang Ho SHIN ; Yong Sung KIM ; Woo Young JANG ; Moon Seok PARK ; Jong Hee CHAE ; Won Joon YOO ; In Ho CHOI ; Ok Hwa KIM ; Tae Joon CHO
Clinics in Orthopedic Surgery 2017;9(1):109-115
BACKGROUND: Camurati-Engelmann disease (CED) is a rare genetic skeletal disorder characterized by limb pain, muscle emaciation and weakness, and cortical thickening of the diaphysis of long bones. It is caused by mutations in the transforming growth factor beta 1 (TGFB1) (type I) or other unknown gene(s) (type II). We present 8 consecutive patients with type I CED. METHODS: We retrospectively reviewed medical records and radiographs of type I CED patients with special reference to the mode of presentation, process of diagnostic work-up, and disease course. They were 4 sporadic patients, and two pairs of mother and son. RESULTS: We categorized the mode of presentation into three groups. Group I had 4 patients who mainly presented with motor disturbances in young age. They drew medical attention for waddling gait, awkward ambulation or running, difficulty in going upstairs, or a positive Gower's sign at age 4 to 6 years. Subsequent development of limb pain and radiographic abnormality led to the diagnosis of CED at age 6 to 29 years. Group II had 3 patients who mainly presented with limb pain at age 15, 20, and 54 years, respectively. Radiographic evaluation and molecular genetic test led to the diagnosis of CED. The remaining 1 patient (group III) was asymptomatic until age 9 years when bony lesions at the tibiae were found incidentally. For the last 10 years, he intermittently complained of leg pain in the morning or after sports activities, which did not interfere with daily life. All the patients in group I showed a body mass index in the underweight range (< 18.4 kg/m²). At the latest follow-up, 4 patients in groups I and II required medication for the limb pain. CONCLUSIONS: CED presents with a wide range of severity. Awareness of this rare disease entity may be the key to timely correct diagnosis. This disease entity should be considered in the differential diagnosis of limb pain or motor disturbance in children to avoid unnecessary diagnostic work-up.
Body Mass Index
;
Camurati-Engelmann Syndrome*
;
Child
;
Diagnosis
;
Diagnosis, Differential
;
Diaphyses
;
Emaciation
;
Extremities
;
Follow-Up Studies
;
Gait
;
Humans
;
Leg
;
Medical Records
;
Molecular Biology
;
Mothers
;
Myalgia
;
Orthopedics*
;
Phenotype
;
Rare Diseases
;
Retrospective Studies
;
Running
;
Sports
;
Thinness
;
Tibia
;
Transforming Growth Factor beta
;
Walking
4.Protective effect of Rhus verniciflua Stokes extract in an experimental model of post-menopausal osteoporosis.
Ji Heun JEONG ; Jong Hoon AN ; Hui YANG ; Do Kyung KIM ; Nam Seob LEE ; Young Gil JEONG ; Chun Soo NA ; Dae Seung NA ; Mi Sook DONG ; Seung Yun HAN
Anatomy & Cell Biology 2017;50(3):219-229
Post-menopausal osteoporosis (PMO) is a major global human health concern. Owing to the need for therapeutic drugs without side effects, natural extracts containing various polyphenolic compounds that may exert estrogenic effects have been studied in depth. Rhus verniciflua Stokes (RVS), which has been used as a traditional herbal medicine for centuries in Korea, was recently revealed to exert estrogenic effects attributable to its bioactive ingredients sulfuretin and butein, which have strong estrogen receptor–binding affinities. In this study, the protective potential of RVS in PMO was evaluated by using an experimental animal model of PMO, which was established by ovariectomy (OVX) of female Sprague Dawley rats. The oral administration of RVS at 20 mg/kg or 100 mg/kg for 8 weeks markedly protected against OVX-induced atrophy of the uterine tube and reversed the elevation in the ratio of serum receptor activator of nuclear factor-κB ligand to osteoprotegerin, which is a marker of disease severity. In addition, RVS inhibited OVX-induced tibia bone loss, activated osteogenic activity, and suppressed osteoclastic activity in the tibial epiphyseal plate, a region of bone remodeling. Collectively, these factors indicated that the oral intake of RVS might be beneficial for the prevention of PMO.
Administration, Oral
;
Atrophy
;
Bone Remodeling
;
Estrogens
;
Fallopian Tubes
;
Female
;
Growth Plate
;
Herbal Medicine
;
Humans
;
Korea
;
Models, Animal
;
Models, Theoretical*
;
Osteoclasts
;
Osteoporosis, Postmenopausal*
;
Osteoprotegerin
;
Ovariectomy
;
Rats, Sprague-Dawley
;
Rhus*
;
Tibia
5.Transplantation of a Scaffold-Free Cartilage Tissue Analogue for the Treatment of Physeal Cartilage Injury of the Proximal Tibia in Rabbits.
Sang Uk LEE ; Jae Young LEE ; Sun Young JOO ; Yong Suk LEE ; Changhoon JEONG
Yonsei Medical Journal 2016;57(2):441-448
PURPOSE: The purpose of this study was to investigate the effects of transplantation of an in vitro-generated, scaffold-free, tissue-engineered cartilage tissue analogue (CTA) using a suspension chondrocyte culture in a rabbit growth-arrest model. MATERIALS AND METHODS: We harvested cartilage cells from the articular cartilage of the joints of white rabbits and made a CTA using a suspension culture of 2x107 cells/mL. An animal growth plate defect model was made on the medial side of the proximal tibial growth plate of both tibias of 6-week-old New Zealand white rabbits (n=10). The allogenic CTA was then transplanted onto the right proximal tibial defect. As a control, no implantation was performed on the left-side defect. Plain radiographs and the medial proximal tibial angle were obtained at 1-week intervals for evaluation of bone bridge formation and the degree of angular deformity until postoperative week 6. We performed a histological evaluation using hematoxylin-eosin and Alcian blue staining at postoperative weeks 4 and 6. RESULTS: Radiologic study revealed a median medial proximal tibial angle of 59.0degrees in the control group and 80.0degrees in the CTA group at 6 weeks. In the control group, statistically significant angular deformities were seen 3 weeks after transplantation (p<0.05). On histological examination, the transplanted CTA was maintained in the CTA group at 4 and 6 weeks postoperative. Bone bridge formation was observed in the control group. CONCLUSION: In this study, CTA transplantation minimized deformity in the rabbit growth plate injury model, probably via the attenuation of bone bridge formation.
Animals
;
*Bone Transplantation
;
Cartilage/anatomy & histology
;
Cell Culture Techniques
;
Cells, Cultured
;
Chondrocytes/*cytology/transplantation
;
Growth Plate/anatomy & histology/*surgery
;
*Mesenchymal Stem Cell Transplantation
;
Rabbits
;
Tibia/*surgery
;
Tissue Engineering
;
Transplantation, Autologous/methods
;
Transplantation, Homologous
6.Effects of 1.8 mT sinusoidal alternating electromagnetic fields of different frequencies on bone biomechanics of young rats.
Yanfeng ZHOU ; Yuhai GAO ; Ping ZHEN ; Keming CHEN
Journal of Zhejiang University. Medical sciences 2016;45(6):561-567
To study the effects of 1.8 mT sinusoidal electromagnetic fields of different frequencies on bone mineral density (BMD) and biomechanical properties in young rats.A total of 32 female SD rats (6-week-old) were randomly divided into 4 groups (8 in each):control group, 10 Hz group, 25 Hz group and 40 Hz group. The experimental groups were given 1.8 mT sinusoidal electromagnetic field intervention 90 min per day. The whole body BMD of rats was detected with dual-energy X-ray absorptiometry after 4 and 8 weeks of intervention. After 8 weeks of intervention, all rats were sacrificed, and the BMD of femur and lumbar vertebra, the length and diameter of femur, the width between medial and lateral malleolus were measured. Electronic universal material testing machine was used to obtain biomechanical properties of femur and lumbar vertebra, and micro CT scan was performed to observe micro structures of tibial cancellous bone.Compared with the control group, rats in 10 Hz and 40 Hz groups had higher whole body BMD, BMD of femur, maximum load and yield strength of femur, as well as maximum load and elastic modulus of lumbar vertebra (all<0.05). But no significant differences in the length and diameter of femur, and the width between medial and lateral malleolus were observed between control group and experimental groups (all>0.05). Micro CT scan showed that the trabecular number and separation degree, bone volume percentage were significantly increased in 10 Hz and 40 Hz groups (all<0.01). Rats in 25 Hz group also had higher BMD and better in biomechanical properties than control group, but the differences were not statistically significant (all>0.05).10 and 40 Hz of 1.8 mT sinusoidal electromagnetic field can significantly improve the bone density, microstructure and biomechanical properties in young rats.
Absorptiometry, Photon
;
Animals
;
Biomechanical Phenomena
;
radiation effects
;
Bone Density
;
radiation effects
;
Cancellous Bone
;
growth & development
;
radiation effects
;
Electromagnetic Fields
;
Female
;
Femur
;
growth & development
;
radiation effects
;
Lumbar Vertebrae
;
growth & development
;
radiation effects
;
Magnetic Field Therapy
;
methods
;
Osteogenesis
;
radiation effects
;
Rats
;
Rats, Sprague-Dawley
;
Tibia
;
growth & development
;
radiation effects
7.Effects of icariin total flavonoids capsule on bone mineral density and bone histomorphometry in growing rats.
Yuhai GAO ; Fangfang YANG ; Huirong XI ; Wenyuan LI ; Ping ZHEN ; Keming CHEN
Journal of Zhejiang University. Medical sciences 2016;45(6):581-586
To investigate the effect of icariin total flavonoids capsules (ITFC) on bone mineral density (BMD) and bone histomorphometry in growing rats and its anti-osteoporosis mechanism.Thirty female SD rats were randomly divided into 3 groups:normal control group, ITFC-1 group and ITFC-2 group. Rats in ITFC-1 group and ITFC-2 group were fed with 50 mg·kg·dor 100 mg·kg·dITFC, respectively, and those in normal control group were fed with equal volume of distilled water. The whole body BMD was measured after 4, 8 and 12 weeks, and BMDs of the right femur and lumbar vertebrae were measured after 12 weeks. The serum levels of tartaric acid phosphatase 5b (TRACP 5b) and bone alkaline phosphatase (BALP) were measured by ELISA. Bone morphometry was performed on the right tibia.There were no significant differences in the body weight increase between normal control group and two ITFC groups (all>0.05). There were also no significant differences in whole body BMDs after 4 and 8 weeks between normal control group and ITFC groups (all>0.05). After 12 weeks, the whole body BMD, BMD of bone, serum BALP level and trabecular area in ITFC-1 group and ITFC-2 group were significantly higher, trabecular separation was significantly lower than that in normal control group (all<0.05); and the trabecular width and the number in ITFC-2 group were also significantly higher, and serum TRACP 5b level was significantly lower than that in normal control group (all<0.05). The BMD of bone, serum BALP level, trabecular number and area in ITFC-2 group were significantly higher, and serum TRACP 5b level was significantly lower than that in ITFC-1 group (all<0.05).ITFC can prevent osteoporosis by increasing bone density and bone formation, decreasing bone resorption and improving microstructure of bone.
Alkaline Phosphatase
;
blood
;
drug effects
;
Animals
;
Bone Density
;
drug effects
;
Bone Resorption
;
drug therapy
;
Cancellous Bone
;
anatomy & histology
;
Dose-Response Relationship, Drug
;
Female
;
Femur
;
anatomy & histology
;
Flavonoids
;
pharmacology
;
Lumbar Vertebrae
;
anatomy & histology
;
Osteogenesis
;
drug effects
;
Osteoporosis
;
prevention & control
;
Rats
;
Rats, Sprague-Dawley
;
growth & development
;
Tartrate-Resistant Acid Phosphatase
;
blood
;
drug effects
;
Tibia
;
anatomy & histology
8.A Novel Cell Therapy Method for Recovering after Brain Stroke in Rats.
Seyed Mojtaba HOSSEINI ; Mohammad FARAHMANDNIA ; Sepehr KAZEMI ; Benafshe SHAKIBAJAHROMI ; Fatemeh Sabet SARVESTANI ; Zahra KHODABANDE
International Journal of Stem Cells 2015;8(2):191-199
BACKGROUND: Nowadays, stroke leads to a significant part of the adult mortality and morbidity and also it could result in some neurological deficits in the patients' lives. Cell therapy has opened a new approach to treat the brain ischemia and reduce its terrible effects on the patients' lives. There are several articles which show that the cell therapy could be beneficial for treating brain stroke. In this study, we have planned to present a new cell therapy method for stroke by administration of Mesenchymal stem cells and differentiated neural stem cells without astrocytes. METHOD AND MATERIALS: The Mesenchymal stem cells were isolated from tibia and femur of a 250~300 g rat and they were cultured in DMEM/F12, 10% fetal bovine serum, 1% Pen/Strep. Neural stem cells were isolated from 14 days rat embryo ganglion eminence and were cultured in NSA media containing Neurobasal, 2% B27, bFGF 10 ng/ml and EGF 20 ng/ml after 5 days they formed some neurospheres. The isolated neural stem cells were differentiated to neural lineages by adding 5% fetal bovine serum to their culture media. After 48 hours the astrocytes were depleted by using MACS kit. RESULTS: The group that received Mesenchymal stem cells systemically and differentiated neural stem cells without astrocytes had the best neurological outcomes and the least infarct volume and apoptosis. It could be understood that this cell therapy method might cause almost full recovery after brain stoke. CONCLUSION: Using combination cell therapy with Mesenchymal stem cells and differentiated neural stem cells with removed astrocyte could provide a novel method for curing brain stroke.
Adult
;
Animals
;
Apoptosis
;
Astrocytes
;
Brain Ischemia
;
Brain*
;
Cell- and Tissue-Based Therapy*
;
Culture Media
;
Embryonic Structures
;
Epidermal Growth Factor
;
Femur
;
Ganglion Cysts
;
Humans
;
Mesenchymal Stromal Cells
;
Mortality
;
Neural Stem Cells
;
Rats*
;
Stroke*
;
Tibia
9.Optimization of growth inducing factors for colony forming and attachment of bone marrow-derived mesenchymal stem cells regarding bioengineering application.
Hongxuan QUAN ; Seong Kyun KIM ; Seong Joo HEO ; Jai Young KOAK ; Joo Hee LEE
The Journal of Advanced Prosthodontics 2014;6(5):379-386
PURPOSE: These days, mesenchymal stem cells (MSCs) have received worldwide attention because of their potentiality in tissue engineering for implant dentistry. The purpose of this study was to evaluate various growth inducing factors in media for improvement of acquisition of bone marrow mesenchymal stem cells (BMMSCs) and colony forming unit-fibroblast (CFU-F). MATERIALS AND METHODS: The mouse BMMSCs were freshly obtained from female C3H mouse femur and tibia. The cells seeded at the density of 106/dish in media supplemented with different density of fetal bovine serum (FBS), 1alpha, 25-dihydroxyvitamin (VD3) and recombinant human epidermal growth factor (rhEGF). After 14 days, CFU-F assay was conducted to analyze the cell attachment and proliferation, and moreover for VD3, the 3-(4,5-dimethylthiazol-2-yl)-5-(3-carboxymethoxyphenyl)-2-(4-sulfophenyl)-2H-tetrazolium (MTS) assay was additionally conducted. RESULTS: The cell proliferation was increased with the increase of FBS concentration (P<.05). The cell proliferation was highest at the density of 20 ng/mL rhEGF compared with 0 ng/mL and 200 ng/mL rhEGF (P<.05). For VD3, although the colony number was increased with the increase of its concentration, the difference was not statistically significant (P>.05). CONCLUSION: FBS played the main role in cell attachment and growth, and the growth factor like rhEGF played the additional effect. However, VD3 did not have much efficacy compare with the other two factors. Improvement of the conditions could be adopted to acquire more functional MSCs to apply into bony defect around implants easily.
Animals
;
Bioengineering*
;
Bone Marrow
;
Cell Proliferation
;
Dentistry
;
Epidermal Growth Factor
;
Female
;
Femur
;
Humans
;
Mesenchymal Stromal Cells*
;
Mice
;
Mice, Inbred C3H
;
Tibia
;
Tissue Engineering
10.Osseointegration of the titanium implant coated with rhTGF-beta2/PLGA particles by electrospray: a preliminary microCT analyzing rabbit study.
Woo Sung LEE ; Seong Kyun KIM ; Seong Joo HEO ; Jai Young KOAK ; Joo Hee LEE ; Ji Man PARK ; Yoon Kyung PARK
The Journal of Korean Academy of Prosthodontics 2014;52(4):298-304
PURPOSE: This preliminary rabbit study was conducted to evaluate the effect of recombinant human transforming growth factor-beta2 (rhTGF-beta2)/poly lactic-co-glycolic acid (PLGA) coating on osseointegration of the titanium (Ti) implant. MATERIALS AND METHODS: Eight Ti implants were anodized with 300 voltages for three minutes. Four of those were coated with rhTGF-beta2/PLGA by an electrospray method as the experimental group. The implants were placed into tibiae of four New Zealand rabbits, two implants per a tibia, one implant per each group. After 3 and 6 weeks, every two rabbits were sacrificed and micro-computed tomography (microCT) was taken for histomorphometric analysis. RESULTS: In scanning electron microscope (SEM) image, the surface of rhTGF-beta2/PLGA coated Ti implant showed well distributed particles. Although statistically insignificant, microCT analysis showed that experimental group has higher bone volume / total volume (BV/TV) and trabecular thickness (Tb.Th) values relatively. Cross sectional view also showed more newly formed bone in the experimental group. CONCLUSION: In the limitation of this study, rhTGF-beta2/PLGA particles coating on the Ti implant show the possibility of more favorable quantity of newly formed bone after implant installation.
Humans
;
Osseointegration*
;
Rabbits
;
Tibia
;
Titanium*
;
Transforming Growth Factor beta2
;
X-Ray Microtomography*

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