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1.
bFGF的生物学作用极其广泛,特别在促进创伤愈合与组织修复、组织再生起着十分重要的作用,它作为重要的有丝分裂促进因子,可传递发育的信号促进软骨细胞分裂,同时也是软骨细胞形态发生和分化的诱导因子,参与软骨的生长发育和组织损伤修复过程,特别是在软骨细胞的增殖分化起到重要作用,在解决软骨工程中面临的问题以及治疗骨关节炎等研究中具有的参考意义。本文对bFGF对软骨的分化、增殖、凋亡等不同生物学阶段的影响作用做一个综述。  相似文献   

2.
目的:探讨碱性成纤维细胞生长因子(bFGF)对生长板软骨细胞增殖和分化的作用。方法:分离并在低血清条件下培养兔生长板软骨细胞。采用改良MTT法检测细胞增殖倍数;羟脯氨酸法测定软骨细胞胶原产量;酶动力学方法测定碱性磷酸酶(ALP)活性。结果:bFGF浓度在5-100ng/ml范围内可以促进软骨细胞增殖,并以25ng/ml刺激时效果最为显著。当bFGF浓度高于25ng/ml时,抑制软骨细胞的胶原合成;当高于1ng/ml时,抑制碱性磷酸酶活性。结论:bFGF刺激生长板软骨细胞增殖,并在较高浓度时抑制生长板软骨细胞的分化。  相似文献   

3.
目的:探讨miR-130a-3p对骨关节炎(osteoarthritis, OA)软骨细胞增殖、分化和炎症因子释放的影响及作用机制。方法:收集我院住院的40例半月板损伤患者和40例OA患者,采用RT-PCR检测半月板损伤患者和OA患者膝关节软骨组织中miR-130a-3p的表达。在OA软骨细胞中分别转染miR-NC、miR-130a-3p mimics、miR-130a-3p inhibitors、si RNA-SOX4(si-SOX4)或过表达SOX4的慢病毒载体(LV-SOX4),采用CCK8法检测细胞增殖情况;RT-PCR和western blot检测细胞分化相关分子BMP2和BMP4;RT-PCR检测炎症因子IFN-γ和TNF-α的表达。结果:半月板损伤患者软骨组织和软骨细胞中miR-130a-3p的表达明显高于OA患者(P均0.05),而SOX4的表达水平明显低于OA患者(P0.05)。OA患者膝关节软骨组织中miR-130a-3p和SOX4的表达呈显著负相关(P0.05)。miR-130a-3p mimics能够明显促进OA软骨细胞增殖(P0.05)、增加分化相关分子BMP2和BMP4的表达(P均0.05)以及抑制炎症因子IFN-γ和TNF-α的表达(P均0.05)。miR-130a-3p inhibitors能够明显抑制OA软骨细胞增殖(P0.05)、分化相关分子BMP2和BMP4的表达(P均0.05)以及促进炎症因子IFN-γ和TNF-α的表达(P均0.05)。OA软骨细胞在转染miR-130a-3p mimics后,SOX4 mRNA和蛋白的表达水平明显降低(P均0.05),在转染miR-130a-3p inhibitors后,SOX4 mRNA和蛋白的表达水平明显升高(P均0.05)。双荧光素酶结果显示miR-130a-3p能够靶向结合SOX4。在OA软骨细胞中,采用si RNA低表达SOX4后,明显促进细胞增殖和分化以及抑制炎症因子的释放。共转染miR-130a-3p mimics和LV-SOX4能够逆转过表达miR-130a-3p对OA软骨细胞增殖、分化和炎症因子释放的影响(P均0.05),而共转染miR-130a-3p inhibitors和LV-SOX4能够进一步加强低表达miR-130a-3p对OA软骨细胞增殖、分化和炎症因子的影响(P均0.05)。结论:miR-130a-3p在OA中明显低表达,并能够通过靶向抑制SOX4促进OA软骨细胞增殖、分化和炎症因子释放。  相似文献   

4.
TGF-β超家族在软骨发生、发育和维持中的作用   总被引:1,自引:0,他引:1  
杨冠  杨晓 《遗传》2008,30(8):953-959
转化生长因子b(Transforming growth factor b, TGF-b)超家族包括TGF-b和骨形态发生蛋白(Bone morphogenetic protein,BMP)两个亚家族。TGF-b超家族信号通路的配体、配体拮抗分子、受体、信号转导分子均在软骨内成骨过程中发挥各自独特的作用, 参与调控软骨细胞的谱系分化、增殖、成熟、凋亡和矿化。BMP信号能起始间充质细胞向软骨细胞分化并维持软骨细胞的特性, 在软骨发生过程中起主导作用; 在生长板发育的过程中, BMP信号促进软骨细胞的成熟, 促进成骨, 而TGF-b信号抑制软骨细胞的肥大分化, 维持生长板中适量的软骨细胞; TGF-b信号和BMP信号对于关节软骨的维持和修复都是不可或缺的。因此, TGF-b超家族的重要作用贯穿骨骼发育过程的始终。  相似文献   

5.
目的:以三维成团培养为培养系统,探讨bFGF与胶原对组织工程软骨体外构建的影响。方法:成团培养兔生长板软骨细胞,设bFGF、胶原及联合作用组。HE染色观察新生组织形态;免疫组化检测Ⅰ、Ⅱ型胶原表达以观察细胞表型;Hoechst 33258法检测细胞DNA含量;羟脯氨酸法与阿新蓝法测定基质中胶原与蛋白多糖的合成。结果:新生软骨的组织学形态近似自然软骨;各实验组软骨细胞DNA含量明显上升;胶原可以显著促进基质的合成;各实验组Ⅰ型胶原的表达少于对照组,Ⅱ型胶原的表达则高于对照组;联合作用组效果更加明显。结论:三维的成团培养可以促进基质合成,有效维持软骨细胞表型;bFGF与胶原有利于工程化软骨构建,其效果具有协同效应,两者联合应用可进一步促进软骨再生。  相似文献   

6.
杨冠  杨晓 《遗传》2008,30(8)
转化生长因子β(Transforming growth factor β,TGF-β)超家族包括TGF-β和骨形态发生蛋白(Bone morphogenetic protein,BMP)两个亚家族.TGF-β超家族信号通路的配体、配体拮抗分子,受体、信号转导分子均在软骨内成骨过程中发挥各自独特的作用,参与调控软骨细胞的谱系分化、增殖、成熟、凋亡和矿化.BMP信号能起始间充质细胞向软骨细胞分化并维持软骨细胞的特性,在软骨发生过程中起主导作用;在生长板发育的过程中,BMP信号促进软骨细胞的成熟,促进成骨,而TGF-β信号抑制软骨细胞的肥大分化,维持生长板中适量的软骨细胞;TGF-β信号和BMP信号对于关节软骨的维持和修复都是不可或缺的.因此,TGF-β超家族的重要作用贯穿骨骼发育过程的始终.  相似文献   

7.
老年退行性骨关节炎(OA)是由关节损伤、肥胖和衰老等因素引起的一种退行性疾病,最终引起关节软骨损伤,导致运动功能障碍。软骨细胞及细胞外基质是软骨组织的主要成分,它们的损伤是引起OA的根本原因。目前OA的治疗仅限于缓解症状,而随着干细胞的发现及对软骨细胞的深入认识,开发增强软骨内源性修复的药物是OA治疗的重要方向。目前研究发现,kartogenin等化合物可以促进间充质干细胞选择性的分化为软骨细胞而起到修复作用,此外,一些化合物还可以调控软骨细胞的信号通路,起到促进软骨细胞增殖、抑制软骨细胞凋亡、抑制基质金属蛋白酶活性、增加细胞外基质合成等作用,从而维持软骨细胞的数量、促进软骨基质的合成而抑制其降解。这些方法比常规通过微创刺激内源性干细胞或移植自体细胞更加安全、有效。本文就化合物对促进老年退行性骨炎软骨内源性修复的研究进行综述,为发现更多的有效化合物提供基础。  相似文献   

8.
通过胰酶消化法分离培养人胎盘来源干细胞(human placenta-derived stem cells,hPDSCs),对其生物学性状进行检测,在一定条件下使其向软骨细胞诱导分化;将hPDSCs和制备的胶原海绵支架材料复合体外构建组织工程软骨组织,移植到裸鼠体内后观察其形成软骨组织的能力,为以hPDSCs作为种子细胞进行组织工程软骨组织的构建提供理论基础.研究发现hPDSCs具有间充质干细胞性状和良好的增殖能力,能连续培养30代以上保持未分化状态;将hPDSCs培养于软骨细胞诱导培养基中,可以分化形成具有生物学功能的软骨细胞.将hPDSCs与胶原海绵支架材料在诱导培养基中复合,7天后可以观察到有软骨样结构形成,Ⅱ型胶原表达阳性;裸鼠体内移植实验证实,hPDSCs与胶原海绵复合后可以在体内形成软骨组织,组织学观察软骨陷窝形成,并且Ⅱ型胶原阳性表达.研究结果表明hPDSCs具有向软骨细胞分化的潜能,与胶原海绵支架材料复合后可以构建形成具有生物学功能的软骨组织,为临床工作中软骨缺损的修复治疗提供了新的治疗策略,具有广阔的临床应用前景。  相似文献   

9.
骨髓间充质干细胞是一类具有自我复制和多向分化潜能的成体干细胞,可以通过定向诱导分化为成骨细胞、软骨细胞、脂肪细胞等,是目前骨再生医学和细胞治疗研究最多的理想种子细胞。在骨缺损的修复过程中,骨髓间充质干细胞内成软骨相关基因表达升高进而分化为软骨细胞,后期随着成骨细胞和破骨细胞的形成及血管长入,软骨基质逐步降解并被骨基质所替换。软骨细胞参与了骨缺损前期的修复过程,调控软骨形成的信号通路及相关因子不仅调控骨髓间充质干细胞成软骨细胞分化,同时在成骨细胞分化过程中也发挥着重要的作用。对调控软骨形成的信号通路及相关因子在骨髓间充质干细胞骨向分化中的调控作用和研究现状进行了总结,以期为临床寻找更好的治疗骨缺损的方法提供理论依据和研究方向。  相似文献   

10.
关节软骨因受重复和长时负荷,易发生损伤,常表现为骨关节炎(osteoarthritis, OA)或软骨缺损。无论保守治疗或手术治疗,均不能使受损软骨完全恢复其原来的表型。近年来,有研究发现无创性的脉冲电磁场(pulsed electromagnetic field, PEMF)疗法可促进软骨细胞增殖、分化,抑制软骨细胞凋亡,并具有一定抗炎作用,对骨关节炎的治疗和促进软骨再生有积极作用,这为磁场单独或联合治疗软骨疾病提供了一条新思路。本文在基础研究和临床应用方面就磁场对软骨组织的影响进行综述,为磁场的临床应用提供参考价值。  相似文献   

11.
Ellman MB  An HS  Muddasani P  Im HJ 《Gene》2008,420(1):82-89
Two members of the fibroblast growth factor (FGF) family, basic FGF (bFGF) and FGF-18, have been implicated in the regulation of articular and intervertebral disc (IVD) cartilage homeostasis. Studies on bFGF from a variety of species have yielded contradictory results with regards to its precise role in cartilage matrix synthesis and degradation. In contrast, FGF-18 is a well-known anabolic growth factor involved in chondrogenesis and articular cartilage repair. In this review, we examined the biological actions of bFGF and FGF-18 in articular and IVD cartilage, the specific cell surface receptors bound by each factor, and the unique signaling cascades and molecular pathways utilized to exert their biological effects. Evidence suggests that bFGF selectively activates FGF receptor 1 (FGFR1) to exert degradative effects in both human articular chondrocytes and IVD tissue via upregulation of matrix-degrading enzyme activity, inhibition of matrix production, and increased cell proliferation resulting in clustering of cells seen in arthritic states. FGF-18, on the other hand, most likely exerts anabolic effects in human articular chondrocytes by activating FGFR3, increasing matrix formation and cell differentiation while inhibiting cell proliferation, leading to dispersed cells surrounded by abundant matrix. The results from in vitro and in vivo studies suggest the potential usefulness of bFGF and FGFR1 antagonists, as well as FGF-18 and FGFR3 agonists, as potential therapies to prevent cartilage degeneration and/or promote cartilage regeneration and repair in the future.  相似文献   

12.
To date, studies on mesenchymal tissue stem cells (MSCs) in the perichondrium have focused on in vitro analysis, and the dynamics of cartilage regeneration from the perichondrium in vivo remain largely unknown. We have attempted to apply cell and tissue engineering methodology for ear reconstruction using cultured chondrocytes. We hypothesized that by inducing angiogenesis with basic fibroblast growth factor (bFGF), MSCs or cartilage precursor cells would proliferate and differentiate into cartilage in vivo and that the regenerated cartilage would maintain its morphology over an extended period. As a result of a single administration of bFGF to the perichondrium, cartilage tissue formed and proliferated while maintaining its morphology for at least 3 months. By day 3 post bFGF treatment, inflammatory cells, primarily comprising mononuclear cells, migrated to the perichondrial region, and the proliferation of matrix metalloproteinase 1 positive cells peaked. During week 1, the perichondrium thickened and proliferation of vascular endothelial cells was noted, along with an increase in the number of CD44-positive and CD90-positive cartilage MSCs/progenitor cells. Neocartilage was formed after 2 weeks, and hypertrophied mature cartilage was formed and maintained after 3 months. Proliferation of the perichondrium and cartilage was bFGF concentration-dependent and was inhibited by neutralizing antibodies. Angiogenesis induction by bFGF was blocked by the administration of an angiogenesis inhibitor, preventing perichondrium proliferation and neocartilage formation. These results suggested that angiogenesis may be important for the induction and differentiation of MSCs/cartilage precursor cells in vivo, and that morphological changes, once occurring, are maintained.  相似文献   

13.
Hepatocellular carcinoma (HCC) is one of the most common cancers worldwide. Basic fibroblast growth factor (bFGF), which is highly expressed in developing tissues and malignant cells, regulates cell growth, differentiation, and migration. Its expression is essential for the progression and metastasis of HCC. This study aims to investigate the effects of bFGF on the expression of angiogenin, another growth factor, which plays an important role in tumor angiogenesis, and on cell proliferation in H7402 human hepatoma cells. The bFGF sense cDNA or antisense cDNA was stably transfected into H7402 cells. Genomic DNA PCR analysis demonstrated that human bFGF sense cDNA or antisense cDNA was inserted into the genome. Furthermore, the expression of bFGF and angiogenin was examined by RT-PCR and Western blot assays. MTT and colony formation assays were employed to determine cell proliferation. Stable bFGF over-expressing and under-expressing transfectants were successfully established. Expression of angiogenin was decreased in the over-expressing bFGF cells (sense transfectants) and was increased in the under-expressing bFGF cells (antisense transfectants). Cell proliferation increased in the bFGF sense transfectants and decreased in the bFGF antisense transfectants. These results demonstrated that the endogenous bFGF may not only negatively regulate the angiogenin expression but also contribute to the overall cell proliferation in H7402 human hepatoma cells. This study may be helpful in finding a potential therapeutic approach to HCC.  相似文献   

14.
Human epidermal growth factor (hEGF) and basic fibroblast growth factor (bFGF) influence critical characteristics of chondrocytes. The effects on metabolism and differentiation were evaluated following transfection using specific plasmids coding for both cytokines.Chondrocytes were isolated from femoral head cartilage of patients undergoing a hip arthroplasty for femoral neck fracture. Following collagenase-digestion, cells were cultured in monolayers, and cell proliferation, glucosaminoglycan-production and collagen type II expression were monitored 10 days after isolation.Addition of recombinant hEGF and bFGF resulted in a significant increase in cell proliferation and glucosaminoglycan production. Chondrocytes were transfected with vectors coding for either hEGF or bFGF and the production of these proteins was measured in supernatants by ELISA. Expression kinetics showed different patterns: hEGF was detectable 2.5 days following transfection and peaked at day 5.5, whereas bFGF-production reached its maximum 1.5 days after transfection, declining thereafter. Chondrocytes endogenously produced significant amounts of bFGF within 5 days following isolation. Proliferation of hEGF-transfected cells increased up to 81%; bFGF-transfection caused an increase up to 76%. Similarly, glucosaminoglycan-production was enhanced up to 120% by hEGF-transfection and 37% by bFGF transfection, respectively. Collagen type II production decreased following transfection with both plasmids.Temporary in vitro gene transfer of the growth factors hEGF and bFGF provides a method to stimulate chondrocyte proliferation and induces signs of dedifferentiation, which would limit a reasonable clinical application.  相似文献   

15.
A new skeletal muscle cell line, rat myoblast omega or RMo, has been characterized with regard to the effects of three growth factors: basic fibroblast growth factor (bFGF), insulin-like growth factor I (IGF-I), and transforming growth factor beta (TGF-beta). Results indicate a differential response of these factors on both cell proliferation and differentiation. Exposure to bFGF and IGF-I stimulate proliferation, while TGF-beta has no effect on cell number. RMo cell differentiation, as indicated by skeletal myosin synthesis, is enhanced by IGF-I, whereas both bFGF and TGF-beta suppress differentiation. These responses are in agreement with the effects of bFGF, IGF-I, and TGF-beta on myogenic cells cultured from fetal and postnatal muscle, thereby suggesting that RMo cells can serve as a model system for the study of growth factor effects on skeletal muscle cells.  相似文献   

16.
There is increasing evidence that basic fibroblast growth factor (bFGF) plays an important role in cell proliferation, differentiation, and survival in various systems. In the eye, although a truncated, dominant negative bFGF receptor in transgenic mice induced defective lens development and caused lens fiber cells to display characteristics of apoptosis, there is little direct evidence of the effect of bFGF on lens epithelial cell apoptosis. Our study examines the effects of bFGF on programmed cell death induced by serum deprivation using a human lens epithelial cell line. Cells supplemented with 20% fetal bovine serum were used as normal controls. Over a period of 7 days, the addition of 100 ng/ml bFGF effectively suppressed serum-deprived apoptosis. The expression of gamma-crystallin and major intrinsic protein, which are markers of lens cell differentiation, was not detected. Also there was no significant difference in cell proliferation between serum-deprived cells with or without bFGF. ICE (caspase-1) was expressed under both the conditions, but the level of expression between the two groups was not substantially different. bcl-2 and c-myc were upregulated only in bFGF-treated cells. Thus we speculate that the inhibitory effect of bFGF on apoptosis is through the upregulation of the inhibitor of apoptosis, instead of downregulation of the initiator. This effect appears to be independent of lens cell differentiation and proliferation.  相似文献   

17.
Differential growth of the three major facial primordia, the frontonasal mass, maxilla and mandible, results in a characteristic face shape. Abnormal growth of any of the primordia can lead to facial defects. In order to dissect out the factors that control growth, we developed a functional assay for cell proliferation using micromass culture and defined medium. Cell number was determined over a 4 day period and BrdU incorporation was used to determine the percentage of cells in S-phase. In defined medium, cell number progressively decreases and proliferation is very reduced in cultures of cells from all three primordia. When foetal calf serum was added, frontonasal mass cell number triples, mandible doubles and maxilla increases by half. The number of cells in S-phase increased in every case but the final cell number reflects a balance between proliferation and cell loss from the culture. The addition of basic fibroblast growth factor (bFGF) to defined medium leads to an increase in cell number in the frontonasal mass, while the cell number of mandibular and maxillary cultures is relatively unaffected. The percentage of cells in S-phase is highest in frontonasal mass cultures. Serum and bFGF both increase chondrogenesis in frontonasal mass cultures when compared to defined medium. In contrast in mandibular cultures, serum does not change the amount of cartilage and with bFGF chondrogenesis is reduced. The coordination of the changes in proliferation and differentiation in frontonasal mass cultures suggest that either these two processes are independently stimulated to the same extent or a single subpopulation of cells is stimulated to divide and differentiate into chondrocytes.(ABSTRACT TRUNCATED AT 250 WORDS)  相似文献   

18.
Vascular endothelial cells (ECs) seeded sparsely on extracellular matrix (ECM) will proliferate in the absence of exogenous basic fibroblast growth factor (bFGF). This ECM will also stimulate neurite outgrowth in PC12 cells in the absence of exogenous growth factors. We have previously shown that bFGF is found in subendothelial ECM (Vlodavsky, I., J. Folkman, R. Sullivan, R. Fridman, R. Ishai-Michaeli, J. Sasse, and M. Klagsburn. 1987. Proc. Natl. Acad. Sci. USA. 84:2292-2296) and in basement membranes (Folkman, J., M. Klagsburn, J. Sasse, M. Wadzinski, D. Ingber, and I. Vlodavsky. 1988. Am. J. Pathol. 130:393-400). The actual requirement of ECM-associated bFGF for the growth of ECs and differentiation of PC12 cells was shown in two ways. First, polyclonal anti-bFGF antibodies added to subendothelial ECM inhibited both EC proliferation and PC12 neurite outgrowth. Secondly, PF-HR-9 cells, which do not synthesize bFGF and which produce an ECM not permissive for EC proliferation and PC12 neurite outgrowth, were transfected with bFGF cDNA. PF-HR-9 cells transfected with bFGF, but not with the dominant selectable marker SV2-neomycin, were found to express bFGF and to produce an ECM which did support both EC proliferation and PC12 differentiation. The ECM-mediated stimulatory effects were inhibited by anti-bFGF antibodies but not by anti-nerve growth factor antibodies or nonimmune rabbit IgG. These results indicate that bFGF associated with ECM is a required ECM component for ECM-mediated cell proliferation and differentiation.  相似文献   

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