1.Effect of glycosaminoglycans with different degrees of sulfation on chondrogenesis.
Wen ZHENG ; Ming-Xiang CAI ; Huizhen PENG ; Minyi LIU ; Xiangning LIU
West China Journal of Stomatology 2023;41(4):395-404
OBJECTIVES:
This study aims to investigate the effects and mechanisms of chondroitin sulfate (CS), dermatan sulfate (DS), and heparin (HEP) on chondrogenesis of murine chondrogenic cell line (ATDC5) cells and the maintenance of murine articular cartilage in vitro.
METHODS:
ATDC5 and articular cartilage tissue explant were cultured in the medium containing different sulfated glycosaminoglycans. Cell proliferation, differentiation, cartilage formation, and mechanism were observed using cell proliferation assay, Alcian blue staining, real-time quantitative polymerase chain reaction (RT-qPCR), and Western blot, respectively.
RESULTS:
Results showed that HEP and DS primarily activated the bone morphogenetic protein (BMP) signal pathway, while CS primarily activated the protein kinase B (AKT) signal pathway, further promoted ATDC5 cell proliferation and matrix production, and increased Sox9, Col2a1, and Aggrecan expression.
CONCLUSIONS
This study investigated the differences and mechanisms of different sulfated glycosaminoglycans in chondrogenesis and cartilage homeostasis maintenance. HEP promotes cartilage formation and maintains the normal state of cartilage tissue in vitro, while CS plays a more effective role in the regeneration of damaged cartilage tissue.
Animals
;
Mice
;
Cartilage/metabolism*
;
Cell Differentiation
;
Cells, Cultured
;
Chondrocytes/metabolism*
;
Chondrogenesis/physiology*
;
Glycosaminoglycans/pharmacology*
2.Evaluation of Glycosaminoglycan in the Lumbar Disc Using Chemical Exchange Saturation Transfer MR at 3.0 Tesla: Reproducibility and Correlation with Disc Degeneration.
Min DENG ; Jing YUAN ; Wei Tian CHEN ; Queenie CHAN ; James F GRIFFITH ; Yi Xiang WANG
Biomedical and Environmental Sciences 2016;29(1):47-55
OBJECTIVEThis study aims to explore the clinical applicability and relevance of glycosaminoglycan Chemical Exchange Saturation Transfer (gagCEST) for intervertebral disc.
METHODS25 subjects ranging in age from 24 yrs to 74 yrs were enrolled. gagCEST was acquired using a single-slice TSE sequence on a 3T. Saturation used a continuous rectangular RF pulse with B1=0.8 µT and a fixed duration time=1100 ms. Sagittal image was obtained firstly without saturation pulse, and then saturated images were acquired at 52 offsets ranging from ±0.125 to ±7 parts per million (ppm). MR T2 relaxivity map was acquired at the identical location. Six subjects were scanned twice to assess scan-rescan reproducibility.
RESULTSGagCEST intraclass correlation coefficient (ICC) of six subjects was 0.759 for nucleus pulposus (NP) and 0.508 for annulus fibrosus (AF). Bland-Altman plots showed NP had a mean difference of 0.10% (95% limits of agreement: -3.02% to 3.22%); while that of AF was 0.34% (95% limits of agreement: -2.28% to 2.95%). For the 25 subjects, gag CEST in NP decreased as disc degeneration increased, with a similar trend to T2 relaxivity. Gag CEST of AF showed a better correlation with disc degeneration than T2 relaxivity.
CONCLUSIONGagCEST in NP and AF decreased as disc degeneration increased, while gagCEST in AF showed a better correlation than T2 relaxivity.
Adult ; Aged ; Biomarkers ; analysis ; Case-Control Studies ; Female ; Glycosaminoglycans ; chemistry ; metabolism ; Humans ; Intervertebral Disc ; chemistry ; metabolism ; Intervertebral Disc Degeneration ; diagnosis ; metabolism ; Lumbar Vertebrae ; Magnetic Resonance Imaging ; methods ; Male ; Middle Aged
3.Analysis of clinical features and arylsulfatase B gene mutation in thirteen Chinese children with mucopolysaccharidosis type VI.
Jipeng ZHENG ; Yonglan HUANG ; Xiaoyuan ZHAO ; Huiying SHENG ; Jing CHENG ; Zhihong ZHOU ; Xiuzhen LI ; Xiaojian MAO ; Li LIU
Chinese Journal of Pediatrics 2014;52(6):403-408
OBJECTIVEMucopolysaccharidosis type VI (MPS VI) or Maroteaux-Lamy syndrome is an autosomal recessive lysosomal storage disease caused by a deficiency of arylsulfatase B(ARSB), which is required in the degradation of dermatan sulfate and chondroitin sulfate. The deficiency of ARSB leads to an accumulation of dermatan sulfate and chondroitin sulfate in lysosomes and gross excretion in the urine.Few articles about clinical study and ARSB gene mutation analysis of Chinese MPS VI patients were published. This study aimed to explore the clinical features and characteristics of ARSB gene in Chinese children with MPS VI.
METHODThirteen children were diagnosed as MPS VI by ARSB enzyme activity determination during the period from 2009 to 2013. Their clinical features, radiological findings and urine glycosaminoglycan (GAG) levels were retrospectively reviewed. Direct sequencing was used to identify any mutation in the ARSB gene.
RESULTThirteen children were diagnosed at the average age of (3.9 ± 2.2) years with 6 male and 7 female. All of these children presented with severe form and onset at an early age of (1.5 ± 0.8) years.Other clinical features included coarse facies, short stature, skeleton deformity, corneal clouding, hepatosplenomegaly with normal intelligence. The radiological findings in all children were characteristic of dysostosis multiplex, like abnormal development of vertebral bodies of the spine, campylorrhachia and paddle-shaped widened ribs. The MRI in case 2 showed cervical cord compression and multiple cysts degeneration in the corona radiate, cella lateralis and callosum.High urine GAG levels were detected, (307.10 ± 112.14) mg/L (Normally below 70 mg/L) and (722.28 ± 245.68) µg/mg creatinine. The ARSB enzyme activity in leukocytes was low, (13.29 ± 6.22) nmol/(mg×h) [Normal range (47-169) nmol/(mg×h)] by fluorogenic assay and (0.24 ± 0.18) U/g [Normal range (1.01-11.47) U/g] by colorimetric assay. A total of 11 mutations were identified by molecular analysis, including seven previously reported mutations (p.L72R, p.G167R, p.G303E, p.F399L, p. T442M, p.Y255X and p.R327X) and four novel mutations (p.Y175D, p.S403X, p.S464X and large deletion including ex. 2, 3). The c.1197C>G (p.F399L) mutation was the most common mutation in this study (31%).
CONCLUSIONThe severe form of MPS VI is characterized by early onset and rapid illness progression. Both the radiological findings and increased urine GAG are important clues to diagnose MPS VI.Large decrease or absence of ARSB activity is diagnostic for MPS VI.Four novel mutations of ARSB gene were identified. The reported mutation c.1197C>G (p.F399L) was the hot-spot mutation in this study.
Bone and Bones ; diagnostic imaging ; pathology ; Brain ; pathology ; Child ; Child, Preschool ; Exons ; genetics ; Female ; Glycosaminoglycans ; urine ; Humans ; Infant ; Magnetic Resonance Imaging ; Male ; Mucopolysaccharidosis VI ; diagnosis ; enzymology ; genetics ; Mutation ; N-Acetylgalactosamine-4-Sulfatase ; genetics ; metabolism ; Polymerase Chain Reaction ; Radiography ; Retrospective Studies ; Sequence Analysis, DNA
4.Effects of bone marrow-derived mast cells on expressions of type II collagen and glycosaminoglycan in co-cultured chondrocytes.
Qingqing OUYANG ; Jinjun ZHAO ; Min YANG
Journal of Southern Medical University 2014;34(5):669-673
OBJECTIVETo investigate the influence of the bone marrow-derived mast cells (BMMCs) on the expression of type II collagen and glycosaminoglycan (GAG) in chondrocytes co-cultured with BMMCs.
METHODSPrimarily cultured mouse BMMCs at 4 weeks and the second passage of chondrocytes were plated in a Transwell co-cultured system at a ratio of 1:10 in the presence or absence of sodium cromoglycate (DSCG) or compound 48/80 (C48/80). The chondrocytes were harvested and lysed for detecting type II collagen expression with ELISA and Western blotting and GAG expression using 1,9 dimethylmethylene blue (DBM).
RESULTSAfter a 24-hour culture, the chondrocytes co-cultured with BMMCs showed similar expression levels of type II collagen and GAG to the control group regardless of the presence of DSCG (P>0.05). Compared with chondrocytes cultured alone or with BMMCs, the co-cultured chondrocytes in the presence of C48/80 showed significantly lower expressions of type II collagen and GAG (P<0.01). Such results did not vary significantly as the culture time was extended to 48 h.
CONCLUSIONC48/80-activated BMMCs can reduce the expression of type II collagen and GAG in chondrocytes in the co-culture system.
Animals ; Bone Marrow Cells ; cytology ; Cells, Cultured ; Chondrocytes ; cytology ; Coculture Techniques ; Collagen Type II ; metabolism ; Glycosaminoglycans ; metabolism ; Mast Cells ; cytology ; Mice
5.SKI306X inhibition of glycosaminoglycan degradation in human cartilage involves down-regulation of cytokine-induced catabolic genes.
Choong Hyeok CHOI ; Tae Hwan KIM ; Yoon Kyoung SUNG ; Chan Bum CHOI ; Young In NA ; Hunseung YOO ; Jae Bum JUN
The Korean Journal of Internal Medicine 2014;29(5):647-655
BACKGROUND/AIMS: SKI306X, a mixed extract of three herbs, Clematis mandshurica (CM), Prunella vulgaris (PV), and Trichosanthes kirilowii (TK), is chondroprotective in animal models of osteoarthritis (OA). The objectives of this study were to investigate its effect on interleukin (IL)-1beta-induced degradation of glycosaminoglycan (GAG) and the basis of its action in human OA cartilage, as well as to screen for the presence of inhibitors of matrix metalloproteinase (MMP)-13 and a disintegrin and metalloprotease with thrombospondin motifs (ADAMTS)-4 in SKI306X and its component herbs, as well as in fractions from SKI306X. METHODS: Human OA chondrocytes and cartilage explants were obtained during total knee replacements and incubated with IL-1beta +/- oncostatin M with or without SKI306X or its component herb extracts. GAG degradation was assayed in cartilage explants using a commercial kit. Expression of genes involved in cartilage destruction was measured by real-time polymerase chain reaction using chondrocyte RNA. SKI306X was fractionated by preparative liquid chromatography to test for the presence of inhibitors of MMP-13 and ADAMTS-4. RESULTS: SKI306X and PV inhibited IL-1beta-induced GAG release from cartilage explants, and SKI306X, CM, PV, and TK inhibited IL-1beta-induced MMP gene expression. Unexpectedly, SKI306X greatly stimulated IL-1beta + oncostatin M-induced ADAMTS-4 gene expression, probably due to its TK component. Some fractions of SKI306X also inhibited ADAMTS-4 activity. CONCLUSIONS: SKI306X and its herbal components inhibit GAG degradation and catabolic gene expression in human OA chondrocytes and cartilage explants. SKI306X likely also contains one or more ADAMTS-4 inhibitor.
ADAM Proteins/antagonists & inhibitors
;
Cartilage, Articular/*drug effects/*metabolism
;
Cells, Cultured
;
Chondrocytes/drug effects/metabolism
;
Down-Regulation/drug effects
;
Drugs, Chinese Herbal/*pharmacology
;
Glycosaminoglycans/*metabolism
;
Humans
;
Interleukin-1beta/metabolism
;
Matrix Metalloproteinase 13/metabolism
;
Matrix Metalloproteinase Inhibitors/pharmacology
;
Oncostatin M/metabolism
;
Osteoarthritis, Knee/drug therapy/genetics/metabolism
;
Procollagen N-Endopeptidase/antagonists & inhibitors
6.The First Korean Case of Mucopolysaccharidosis IIIC (Sanfilippo Syndrome Type C) Confirmed by Biochemical and Molecular Investigation.
Hee Jae HUH ; Ja Young SEO ; Sung Yoon CHO ; Chang Seok KI ; Soo Youn LEE ; Jong Won KIM ; Hyung Doo PARK ; Dong Kyu JIN
Annals of Laboratory Medicine 2013;33(1):75-79
Mucopolysaccharidosis (MPS) III has 4 enzymatically distinct forms (A, B, C, and D), and MPS IIIC, also known as Sanfilippo C syndrome, is an autosomal recessive lysosomal storage disease caused by a deficiency of heparan acetyl-CoA:alpha-glucosaminide N-acetyltransferase (HGSNAT). Here, we report a case of MPS IIIC that was confirmed by molecular genetic analysis. The patient was a 2-yr-old girl presenting with skeletal deformity, hepatomegaly, and delayed motor development. Urinary excretion of glycosaminoglycan (GAG) was markedly elevated (984.4 mg GAG/g creatinine) compared with the age-specific reference range (<175 mg GAG/g creatinine), and a strong band of heparan sulfate was recognized on performing thin layer chromatography. HGSNAT enzyme activity in leukocytes was 0.7 nmol/17 hr/mg protein, which was significantly lower than the reference range (8.6-32 nmol/17 hr/mg protein). PCR and direct sequencing of the HGSNAT gene showed 2 mutations: c.234+1G>A (IVS2+1G>A) and c.1150C>T (p.Arg384*). To the best of our knowledge, this is the first case of MPS IIIC to be confirmed by clinical, biochemical, and molecular genetic findings in Korea.
Acetyltransferases/*genetics
;
Asian Continental Ancestry Group/*genetics
;
Base Sequence
;
Child, Preschool
;
Chromatography, Thin Layer
;
Female
;
Glycosaminoglycans/urine
;
Heparitin Sulfate/chemistry/metabolism
;
Humans
;
Leukocytes/immunology/metabolism
;
Mucopolysaccharidosis III/*diagnosis/genetics/radiography
;
Mutation
;
Republic of Korea
;
Sequence Analysis, DNA
7.Construction of self-assembled cartilage tissue from bone marrow mesenchymal stem cells induced by hypoxia combined with GDF-5.
Hong-Tao TIAN ; Bo ZHANG ; Qing TIAN ; Yong LIU ; Shu-Hua YANG ; Zeng-Wu SHAO
Journal of Huazhong University of Science and Technology (Medical Sciences) 2013;33(5):700-706
It is widely known that hypoxia can promote chondrogenesis of human bone marrow derived mesenchymal stem cells (hMSCs) in monolayer cultures. However, the direct impact of oxygen tension on hMSC differentiation in three-dimensional cultures is still unknown. This research was designed to observe the direct impact of oxygen tension on the ability of hMSCs to "self assemble" into tissue-engineered cartilage constructs. hMSCs were cultured in chondrogenic medium (CM) containing 100 ng/mL growth differentiation factor 5 (GDF-5) at 5% (hypoxia) and 21% (normoxia) O2 levels in monolayer cultures for 3 weeks. After differentiation, the cells were digested and employed in a self-assembly process to produce tissue-engineered constructs under hypoxic and normoxic conditions in vitro. The aggrecan and type II collagen expression, and type X collagen in the self-assembled constructs were assessed by using immunofluorescent and immunochemical staining respectively. The methods of dimethylmethylene blue (DMMB), hydroxyproline and PicoGreen were used to measure the total collagen content, glycosaminoglycan (GAG) content and the number of viable cells in each construct, respectively. The expression of type II collagen and aggrecan under hypoxic conditions was increased significantly as compared with that under normoxic conditions. In contrast, type X collagen expression was down-regulated in the hypoxic group. Moreover, the constructs in hypoxic group showed more significantly increased total collagen and GAG than in normoxic group, which were more close to those of the natural cartilage. These findings demonstrated that hypoxia enhanced chondrogenesis of in vitro, scaffold-free, tissue-engineered constructs generated using hMSCs induced by GDF-5. In hypoxic environments, the self-assembled constructs have a Thistological appearance and biochemical parameters similar to those of the natural cartilage.
Aggrecans
;
genetics
;
metabolism
;
Bone Marrow Cells
;
drug effects
;
metabolism
;
Cartilage
;
cytology
;
metabolism
;
Cell Differentiation
;
drug effects
;
genetics
;
Cell Hypoxia
;
Cells, Cultured
;
Chondrogenesis
;
drug effects
;
genetics
;
Collagen Type II
;
genetics
;
metabolism
;
Collagen Type X
;
metabolism
;
Female
;
Gene Expression
;
drug effects
;
Glycosaminoglycans
;
metabolism
;
Growth Differentiation Factor 5
;
pharmacology
;
Humans
;
Immunohistochemistry
;
Male
;
Mesenchymal Stromal Cells
;
drug effects
;
metabolism
;
Reverse Transcriptase Polymerase Chain Reaction
;
Tissue Engineering
;
methods
8.Effects of pilose antler polypeptide on the glycosaminoglycan and type II collagen in experimental knee osteoarthritis.
Chun-Xia ZHANG ; Lei SUN ; Zhong-Biao XIU
China Journal of Orthopaedics and Traumatology 2012;25(2):138-142
OBJECTIVETo observe the influence of Pilose antler polypeptide on the glycosaminoglycan and type II collagen in the articular cartilage in experimental knee osteoarthritis.
METHODSTotally 64 New Zealand white rabbits of 6 months old were randomly divided into 2 groups:normal group (n = 8) and model group (n = 56). Model group was surgically induced into osteoarthritis model by method of Hulth. After successful modeling, the rabbits of model group were further divided into 2 groups: Pilose antler polypeptide-treatment group and control group, 24 rabbits in each group. Pilose antler polypeptide-treatment group received 0.5 ml intra-articular injection of Pilose antler polypeptide dilution liquid once in per 2 days for 30 days, while control group received 0.5 ml intra-articular injection of physiological saline. On days 7, 15 and 30 after intervention, articular cartilage samples were collected respectively. The content of glycosaminoglycan in articular cartilage was observed by toluidine blue staining and the expression of type II collagen in cartilage matrix was detected by immunohistochemical staining.
RESULTSAlong with the prolonging of time, the content of glycosaminoglycan and type II collagen in cartilage matrix of the Pilose antler polypeptide-treatment group and control group decreased gradually. On days 7, 15 and 30 after intervention, integrated optical density of the type II collagen positive area in cartilage matrix of the Pilose antler polypeptide-treatment group were (312.06 +/- 14.12), (273.31 +/- 12.42) and (248.34 +/- 10.41), which had statistically significant differences. Integrated optical density of the type II collagen positive area in cartilage matrix of the control group were (253.47 +/- 15.53), (215.67 +/- 9.72) and (160.01 +/- 13.23), which had statistically significant differences. At the same period, integrated optical density of the type II collagen positive area in cartilage matrix of the Pilose antler polypeptide-treatment group was higher than that of control group, which had statistically significant difference.
CONCLUSIONPilose antler polypeptide can inhibit reduction of the glycosaminoglycan and type II collagen in cartilage matrix and delay the degeneration of articular cartilage.
Animals ; Antlers ; chemistry ; metabolism ; Collagen Type II ; metabolism ; Disease Models, Animal ; Female ; Glycosaminoglycans ; metabolism ; Humans ; Male ; Osteoarthritis, Knee ; drug therapy ; metabolism ; Peptides ; metabolism ; pharmacology ; Rabbits
9.Effects of basic fibroblast growth factor on bone marrow mesenchymal stem cell differentiation into temporomandibular joint disc cells.
Xuelian SU ; Guangjie BAO ; Hong KANG
Journal of Biomedical Engineering 2012;29(4):732-736
The present paper is aimed to observe the effects of basic fibroblast growth factor (bFGF) on bone marrow mesenchymal stem cell (BMSCs) differentiation. The bFGF was used to stimulate BMSCs and histology, immunohistochemistry and enzyme linked immunosorbent assay (ELISA) were used to examine the extracellular matrix produced by induced BMSCs, evaluated the feasibility of BMSCs being the seeding cells of temporomandibular joint (TMJ) disc tissue engineering. The results showed that having been induced with bFGF, the BMSCs could differentiate into fibroblast-like cells, which could synthesize GAG and collagen type I matrix. So it is feasible for BMSCs as seeding cells for engineered TMJ disc.
Animals
;
Bone Marrow Cells
;
cytology
;
Cell Differentiation
;
drug effects
;
Cells, Cultured
;
Collagen Type I
;
biosynthesis
;
Fibroblast Growth Factor 2
;
pharmacology
;
Glycosaminoglycans
;
biosynthesis
;
Goats
;
Mesenchymal Stromal Cells
;
cytology
;
metabolism
;
Temporomandibular Joint Disc
;
cytology
;
Tissue Engineering
10.Characterization of human primary chondrocytes of osteoarthritic cartilage at varying severity.
Jing YIN ; Zheng YANG ; Yong-Ping CAO ; Zi-Gang GE
Chinese Medical Journal 2011;124(24):4245-4253
BACKGROUNDThere is a difficulty in evaluating the in vivo functionality of individual chondrocytes, and there is much heterogeneity among cartilage affected by osteoarthritis (OA). In this study, in vitro cultured chondrocytes harvested from varying stages of degeneration were studied as a projective model to further understand the pathogenesis of osteoarthritis.
METHODSCartilage of varying degeneration of end-stage OA was harvested, while cell yield and matrix glycosaminoglycan (GAG) content were measured. Cell morphology, proliferation, and gene expression of collagen type I, II, and X, aggrecan, matrix metalloproteinase 13 (MMP-13), and ADAMTS5 of the acquired chondrocytes were measured during subsequent in vitro culture.
RESULTSBoth the number of cells and the GAG content increased with increasing severity of OA. Cell spreading area increased and gradually showed spindle-like morphology during in vitro culture. Gene expression of collagen type II, collagen type X as well as GAG decreased with severity of cartilage degeneration, while expression of collagen type I increased. Expression of MMP-13 increased with severity of cartilage degeneration, while expression of ADAMTS-5 remained stable. Expression of collagen type II, X, GAG, and MMP-13 substantially decreased with in vitro culture. Expression of collagen type I increased with in vitro cultures, while expression of ADAMTS 5 remained stable.
CONCLUSIONSExpression of functional genes such as collagen type II and GAG decreased during severe degeneration of OA cartilage and in vitro dedifferentiation. Gene expression of collagen I and MMP-13 increased with severity of cartilage degeneration.
ADAM Proteins ; ADAMTS5 Protein ; Cartilage ; pathology ; Cell Differentiation ; genetics ; physiology ; Cells, Cultured ; Chondrocytes ; metabolism ; Collagen Type II ; genetics ; Collagen Type X ; genetics ; Glycosaminoglycans ; metabolism ; Humans ; Matrix Metalloproteinase 13 ; genetics ; Osteoarthritis ; genetics ; pathology

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