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Biomedical subjects

Y Kuboki

Publications and source records attributed to Y Kuboki.

At least 55 records · Page 3Linked to original sources

Rat maf related genes: specific expression in chondrocytes, lens and spinal cord.

maf is a family of oncogenes originally identified from avian oncogenic retrovirus, AS42, encoding a nuclear bZip transcription factor. We have isolated two maf related cDNA clones, maf-1 and maf-2, from a rat liver cDNA library. Comparison of the sequence homologies of the proteins encoded by maf-1 and maf-2 with those of c-maf and chicken mafB indicated that maf-1 and maf-2 are the rat homologues of mafB and c-maf, respectively. Both genes are expressed at low levels in a wide variety of rat tissues, including spleen, kidney, muscle and liver. Immunohistochemical studies and in situ hybridization analyses show that maf-1 and maf-2 are strongly expressed in the late stages of chondrocyte development in the femur epiphysis and the rib and limb cartilage of 15 day old (E15) embryo in rat. Cartilage cells, induced by subcutaneous implantation of bone morphogenic protein, also expressed maf-1 and maf-2. In situ hybridization analyses of E15 embryos show that both genes are expressed in the eye lens and the spinal cord as well as the cartilage. However, the expression patterns of maf-1 and maf-2 in lens and spinal cord are different.

Animals↗

BMPs induce endochondral ossification in rats when implanted ectopically within a carrier made of fibrous glass membrane.

BACKGROUND: Bone morphogenetic proteins (BMPs) replicate the process of embryonic bone formation when implanted in ectopic sites. Our previous studies have indicated that BMPs can induce intramembranous ossification, i.e., direct bone formation without preexisting cartilage when implanted in rats subcutaneously by using the fibrous collagen membrane (FCM) as a carrier for implanting BMPs (Sasano et al. 1993. Anat. Rec., 236:373-380). The present study was designed to investigate how the physicochemical property of the carrier material influences the process of bone formation induced by BMPs, using a carrier made of fibrous glass membrane (FGM). METHODS: BMPs, partially purified from bovine metatarsal bones, were added to an FGM carrier and implanted subcutaneously in rats. The implants were analyzed at weekly intervals, and the osteogenic process induced by BMPs was examined by histology and immunohistochemistry for cartilage and bone formation. RESULTS: Neither cartilage nor bone were observed after week 1. Cartilage formation occurred within the carrier after week 2, although no bone formation was seen. The cartilage matrix showed immunoreactivity for types II, X, and I collagen. Bone was induced on the previously formed cartilage after week 3. The bone matrix stained with anti-osteocalcin antibody and with anti-type I collagen antibody. The cartilage was replaced by bone and bone marrow after week 10. CONCLUSIONS: BMPs cause endochondral ossification when administered with an FGM carrier. The physicochemical property of the carrier may be involved in the BMP-induced phenotype expression of bone and cartilage.

Animals↗

Localization of types I, II and X collagen and osteocalcin in intramembranous, endochondral and chondroid bone of rats.

Chondroid bone is a unique calcified tissue intermediate between bone and cartilage. To clarify its characteristics, we examined the distributions of the ECMs associated with chondrogenic differentiation and matrix calcification in the chondroid bone of the rat glenoid fossa, and compared them to those in two typical bone tissues, alveolar bone of the maxilla (intramembranous bone) and the growth plate of long bone (endochrondral bone), using immunofluorescence techniques. Morphologically, the glenoid fossa consisted of the fibrous, progenitor and cartilaginous cell layers and the cartilaginous cell layer was further divided into the superficial non-hypertrophic layers (secondary cartilage) and the deep hypertrophic cell layers (chondroid bone). The co-distribution of type I and type II collagens was observed in secondary cartilage and chondroid bone, whereas type X collagen was restricted to the pericellular matrix of hypertrophied cells (chondroid bone). Osteocalcin, which was absent from the calcified cartilage of endochondral bone formation, was also present in the ECM of the chondroid bone, but not in cells. These results demonstrate that chondroid bone of rats, which is adjacent to secondary-type cartilage in the glenoid fossa, has phenotypic expressions associated with both hypertrophied chondrocytes and osteocytes.

Animals↗

Suppression for the proliferation of fibroblasts by external DNA.

Phase-contrast and fluorescence microscopic observation showed that DNA added in the cell-culture medium for fibroblasts localized just on the surface of fibroblasts. The DNA bound to fibroblasts was found to be eluted by treating with collagenase. The suppression for the proliferation of fibroblasts by external DNA was confirmed with microscopic observation for the cells cultured in the presence and absence of DNA. Proliferation of the cells decreased from 412 to 155% by the addition of DNA. These results indicate that DNA has an affinity for collagen, the most major extracellular-matrix produced by fibroblasts, and suppresses the growth of fibroblasts.

Cell Division↗

Attachment of osteoblastic cells to hydroxyapatite crystals by a synthetic peptide (Glu7-Pro-Arg-Gly-Asp-Thr) containing two functional sequences of bone sialoprotein.

We investigated activity of bone sialoprotein (BSP) to mediate attachment of cells to hydroxyapatite using a model peptide, Glu7-Pro-Arg-Gly-Asp-Thr, which contains a putative hydroxyapatite-binding site (poly-Glu) and a cell-attachment site. The peptide has affinity to hydroxyapatite with a dissociation constant of 13.5 microM. The peptide affected in vitro mineralization in a gel system, indicating interaction between this peptide and calcium phosphate. The osteoblastic cell line MC3T3-E1 was incubated with hydroxyapatite powder coated with the peptide or proteins. Attachment of the cells was observed on the powder coated with BSP, but not on the powder coated with serum albumin. The cells were attached to the powder coated with the peptide. The cells were flattened on the powder, and pseudopods developed. The attachment of the cells was inhibited by an excessive amount of Gly-Arg-Gly-Asp-Ser peptide. In conclusion, BSP mediated attachment of osteoblastic cells to hydroxyapatite, and this activity could be accomplished only by the poly-Glu sequence and the Arg-Gly-Asp sequence.

Amino Acid Sequence↗

Osteogenesis by bone marrow stromal cells maintained on type I collagen matrix gels in vivo.

In this study, we demonstrated that bone marrow stromal cells maintained on type I collagen matrix induced bone in vivo. The formed bone contained bone marrow, and the process of bone formation occurred without cartilage formation. Bone marrow stromal cells differentiated into osteoblasts on type I collagen matrix in vitro, but types II, III, and V collagens did not possess this activity. These findings imply that type I collagen matrix offers a suitable environment for the induction of osteoblastic differentiation in vitro and osteogenesis in vivo.

Alkaline Phosphatase↗

Mineral induction by immobilized phosphoproteins.

Dentin phosphoproteins are thought to have a primary role in the deposition of mineral on the collagen of dentin. In this study we determined the type of binding between collagen and phosphoproteins necessary for mineral formation onto collagen fibrils and whether the phosphate esters are required. Bovine dentin phosphophoryn or phosvitin from egg yolk were immobilized on reconstituted skin type I collagen fibrils by adsorption or by covalent cross-linking. In some samples the ester phosphate was removed from the covalently cross-linked phosphoproteins by treatment with acid phosphatase. All samples were incubated at 37 degrees C in metastable solutions that do not spontaneously precipitate. Reconstituted collagen fibrils alone did not induce mineral formation. The phosphoproteins adsorbed to the collagen fibrils desorbed when the mineralization medium was added, and mineral was not induced. The mineral induced by the cross-linked phosphoproteins was apatite, and the crystals were confined to the surface of the collagen fibrils. With decreasing medium saturation the time required for mineral induction increased. The interfacial tensions calculated for apatite formation by either phosphoprotein cross-linked to collagen were about the same as that for phosphatidic acid liposomes and hydroxyapatite. This similarity in values indicates that the nucleation potential of these highly phosphorylated surfaces is about the same. It is concluded that phosphoproteins must be irreversibly bound to collagen fibrils for the mineralization of the collagen network in solutions that do not spontaneously precipitate. The phosphate esters of phosphoproteins are required for mineral induction, and the carboxylate groups are not sufficient.

Acid Phosphatase↗

Pore size of porous hydroxyapatite as the cell-substratum controls BMP-induced osteogenesis.

To elucidate the biochemical mechanism of osteogenesis, the effect of matrix geometry upon the osteogenesis induced by bone morphogenetic protein (BMP) was studied. A series of five porous hydroxyapatites with different pore sizes, 106-212, 212-300, 300-400, 400-500, and 500-600 microns, was prepared. A block (approximately 5 x 5 x 1 mm, 40.0 mg) of each hydroxyapatite ceramics was combined with 4 micrograms of recombinant human BMP-2 and implanted subcutaneously into the back skin of rat. Osteoinductive ability of each implant was estimated by quantifying osteocalcin content and alkaline phosphatase activity in the implant up to 4 wk after implantation. In the ceramics of 106-212 microns, the highest alkaline phosphatase activity was found 2 wk after implantation, and the highest osteocalcin content 4 wk after implantation, consistent with the results observed with particulate porous hydroxyapatite [Kuboki, Y. et al. (1995) Connect. Tissue Res. 32: 219-226]. Comparison of the alkaline phosphatase activities at 2 wk and the osteocalcin contents at 4 wk after implantation revealed that the highest amount of bone was produced in the ceramics implants with pore size of 300-400 microns. In the ceramics with smaller or larger pore sizes, the amount of bone formation decreased as the pore size deviated from 300-400 microns. The results indicated that the optimal pore size for attachment, differentiation and growth of osteoblasts and vascularization is approximately 300-400 microns. This study using chemically identical but geometrically different cell substrata is the first demonstration that a matrix with a certain geometrical size is most favorable for cell differentiation.

Alkaline Phosphatase↗

Enhancement by bFGF of osteogenesis induced by rhBMP-2 in rats.

Subcutaneous implantation of bone morphogenetic protein (BMP) combined with a fibrous glass membrane (FGM) induces cartilage formation in the entire inner area of the membrane within 2 wk. It has been hypothesized that a tight FGM network (1 microm exclusion size) provides immature cells with spaces for penetrating into the membrane, but not for vascular formation, at least until 2 wk. To test this hypothesis, basic fibroblast growth factor (bFGF), known to be a potent stimulant of capillary formation, was applied to the implant. BMP was combined with FGM in the presence or absence of bFGF, and then implanted subcutaneously into the backs of rats. The bFGF-supplemented implant caused 1.3 times higher alkaline phosphatase activity and 3 times higher calcium contents at 2 wk, whereas type II collagen contents decreased, thus indicating that bFGF enhances bone formation in BMP/FGM implants. These results suggest that bFGF induces faster and stronger invasion of capillaries into the FGM and destroys its tight network, resulting in acceleration of the ossification process.

Alkaline Phosphatase↗

Perturbation of BMP signaling in somitogenesis resulted in vertebral and rib malformations in the axial skeletal formation.

Axial skeletons such as vertebrae, ribs, and scapulae develop from the embryonic somitic mesoderm through interactions with neural tube/notochord and skin ectoderm. Bone morphogenetic proteins (BMPs) seem to play important roles in these tissue interactions; however, the relationship between BMP signaling and the early development of axial skeletons is poorly understood. In this report, we investigated possible roles of BMP signaling in axial skeletal formation. First, we describe the expression patterns of BMP4 and type I receptors for BMP during somitogenesis in chick embryos based on whole mount in situ hybridization. Next, the effects of BMP on axial skeletal morphogenesis were investigated by implantation of BMP proteins into the dorsal mesoderm at the time of somitogenesis. Transcripts for both BMP4 ligand and its receptors are expressed in the dorsal ectoderm and mesoderm. Implantation of BMP4 and BMP2 into the dorsal regions of embryos result in subsequent anomalies of vertebrae, ribs, and scapulae. The effects of BMP implantation on the skeleton are shown to be dependent upon the somitic stage. Vertebral anomalies are restricted to the dorsolateral elements of the vertebrae and specifically observed after BMP implantation into embryonic day 2 (E2) embryos, but not E3 embryos. These results indicate that implantation of BMP into the dorsal part of embryos where endogenous BMP ligand and BMP receptors are expressed perturbs BMP signaling and causes axial skeletal malformations. The findings presented here suggest that BMP signaling may be involved in the early developmental process of the axial skeleton.

Amino Acid Sequence↗

Expression of osteonectin in articular cartilage of osteoarthritic knees.

The expression of osteonectin (ON) in osteoarthritic articular cartilage was investigated by enzyme immunohistochemistry and colloidal gold immunoelectron microscopy. A total of 96 specimens from 9 knees of 8 patients with osteoarthritis (OA) were examined. In OA cartilage, ON-positive cells varied in distribution and were not seen in all the specimens obtained from the same patient. However, in over half of the specimens (56 of 96), especially in the specimens on Mankin's grades from 4 to 9, which corresponds to relatively early stages of OA, ON was expressed in the cartilage above the calcified layer. On the other hand, ON was detected only in the calcified layer below the tidemark in normal articular cartilage. In addition, colloidal gold immunoelectron microscopy revealed ON in chondrocytes and matrix vesicles (MVs). These findings suggest that ON acts through MVs in the early stages of OA as a significant pathogenetic factor involved in intracartilage calcification, which is known to have a close relationship to the progression of OA.

Aged↗

Oriented and lengthwise growth of octacalcium phosphate on collagenous matrix in vitro.

A correlation among the oriented growth of octacalcium phosphate (OCP), the arrangement of the collagen fibrils in a collagenous matrix and direction of ionic flow was studied in vitro at pH7.0 and at 37 degrees, using two types of collagen disks made from sliced bovine Achilles tendon. Disk A and disk B were made from slices cut perpendicular and parallel to the collagen fibrils, respectively. The products on the collagen fibrils were a mixture of OCP and apatite in the both disks, but the relative amounts of apatite and OCP could not be determined. Short plate-like or flake-like OCP crystals grew parallel to the collagen fibrils and ionic flow on the Ca-side of the disk A. On the contrary, ribbon-like or rectangular OCP crystals grew along the collagen fibrils lying on the disk B. Apatite also grew with the same orientation as OCP in the both cases. The oriented and length-wise growth of OCP crystals on the disk B was ascribed to the arrangement of the collagen fibrils in the disk.

Achilles Tendon↗

Effect of solution pH on the calcium phosphates formation and ionic diffusion on and through the collagenous matrix.

The effect of pH on the calcification and the permselectivity for the Ca2+ and PO4(3-) ions of a collagenous matrix were studied at pH6.5, 7.0 and 7.4 and at 37 degrees C, using slices of Achilles tendon of a cow, which were cut into disks, in an experimental system where Ca2+ and PO4(3-) ions diffused into the collagen disk from the mutually opposite sides of the disk. The products on and inside the disk were a mixture of octacalcium phosphate (OCP) and apatite regardless of the solution pH. At pH6.5, few crystals grew on the PO4-side of the disk, while many crystals grew on the Ca-side. Crystal growth on the PO4-side was enhanced at higher pH, while that on the Ca-side was suppressed. With an increase in pH, the diffusion of Ca2+ ion through the disk increased, while that of PO4(3-) ion decreased. The mode of crystal growth on the collagen disk was consistent with the mode of ionic diffusion through the matrix. Inside the disk, the influence of pH on the crystal growth was not obvious. It was suggested that the electrochemical property of the collagenous matrix regulated the ionic inflow into the matrix and thereby affected its calcification.

Achilles Tendon↗

The osteoblastic MC3T3-E1 cells synthesized C-terminal propeptide of type I collagen, which promoted cell-attachment of osteoblasts.

In this study, we purified C-terminal propeptide of type I collagen (PICP) from the conditioned medium of osteoblastic MC3T3-E1 cells by chromatographic and Agarose gel extraction procedures. PICP was confirmed to be present in bone by Western blotting using a specific antibody, and was proved to be synthesized by osteoblasts with metabolic labeling. PICP promoted cell-attachment of osteoblastic MC3T3-E1 cells. We conclude that PICP is synthesized by osteoblasts and stored in bone, and that it plays a role in the maintenance of bone cells on bone matrix.

Amino Acid Sequence↗

Acidic amino acid-rich sequences as binding sites of osteonectin to hydroxyapatite crystals.

Osteonectin, an acidic noncollagenous protein of bone and dentin, has affinity to hydroxyapatite crystals. Binding sites to hydroxyapatite of this protein were determined by a proteolytic experiment and an in vitro binding experiment using synthetic peptide analogues. Osteonectin was adsorbed on hydroxyapatite crystals and digested with trypsin. A peptide was left adsorbed on the crystal even after the digestion. The peptide was identified as an amino terminal peptide containing glutamic acid-rich sequences, which have been assumed to be possible hydroxyapatite-binding sites. Poly glutamic acid sequences were synthesized as models of the binding sites. Glu6 peptide was bound to the hydroxyapatite with a dissociation constant of 2.4 microM. Peptides containing fewer glutamic acids had lower affinity to the crystal. Effects of these peptides on in vitro mineralization were examined by a gel system in microtiter plates. The Glu6 peptide had a positive effect on the mineralization in this system, whereas Asp6 peptide had a negative effect. These effects indicate the presence of an interaction between these peptides and mineral crystals.

Adsorption↗

Starch debranching enzyme (R-enzyme or pullulanase) from developing rice endosperm: purification, cDNA and chromosomal localization of the gene.

Starch debranching enzyme (R-enzyme or pullulanase) was purified to homogeneity from developing endosperm of rice (Oryza sativa L. cv. Fujihikari) using a variety of high-performance liquid chromatography columns, and characterized. A cDNA clone encoding the full length of the rice endosperm debranching enzyme was isolated and its nucleotide sequence was determined. The cDNA contains an open reading frame of 2958 bp. The mature debranching enzyme of rice appears to be composed of 912 amino acids with a predicted relative molecular mass (Mr) of 102,069 Da, similar in size to its Mr of about 100,000 Da estimated by polyacrylamide gel electrophoresis in sodium dodecyl sulfate. The amino acid sequence of rice debranching enzyme is substantially similar to that of bacterial pullulanase, while it bears little similarity to that of bacterial isoamylase or to glycogen debranching enzymes from human muscle and rabbit muscle. Southern blot analyses strongly suggest that the debranching enzyme gene is present as a single copy in the rice genome. Analysis by restriction fragment length polymorphism with a probe including the 3'-untranslated region of cDNA for rice debranching enzyme confirmed that the debranching enzyme gene is located on chromosome 4.

Amino Acid Sequence↗

Bone chondroadherin promotes attachment of osteoblastic cells to solid-state substrates and shows affinity to collagen.

Chondroadherin, which is reported to be synthesized by chondrocytes and to promote their attachment, was purified from bovine bone. It was a minor component of bone organic matrix, and was present in the 4 M guanidine extract of demineralized bone. Chondroadherin promoted attachment of osteoblastic cells to solid-state substrates, and bound to collagen. Binding of chondroadherin to collagen was significantly higher than that of osteonectin or decorin. These findings imply that chondroadherin may play a role in maintaining bone cells on the collagen matrices of bone.

Amino Acid Sequence↗

Promotion of the osteogenetic activity of recombinant human bone morphogenetic protein by prostaglandin E1.

We investigated the promotive effect of prostaglandin (PG) E1 on the osteogenetic activity of bone morphogenetic protein (BMP) using porous chemically synthesized hydroxyapatite ceramic (HAP) pellets as the carrier. After treating the pellets with recombinant human (rh) BMP-2 with or without PGE1, both of which were used at two different concentrations, they were inserted beneath the cranial periosteum of a rabbit. The degree of osteogenesis and osteoconductivity was then examined histopathologically as well as by means of an image-analyzing procedure. Results showed that there was extensive bone formation around the pellets as early as 3 weeks after insertion in the group, which received pellets treated with a relatively large amount of rhBMP alone as well as in the group receiving pellets treated with a small amount of rhBMP combined with PGE1. In the later group, the extent of bone formation was dose-dependent. Subsequent osteogenesis within the pores of the pellets in these groups slowly progressed over time, and by 9 weeks after the insertion, most of the pellet pores had filled with newly generated bone. In addition, the groups which received pellets treated with PGE1 alone also showed osteogenesis as demonstrated by osteoconduction, which was not observed in the group that received the phosphate buffered saline (PBS) treated pellets. The group that received pellets treated with a small amount of rhBMP plus a high concentration of PGE1 exhibited significantly greater bone induction than the group which received the pellets treated with a small amount rhBMP alone, and there was no statistically significant difference between the former group and the group that received a high rhBMP dose. These results clearly indicated that PGE1 has a strong and dose-dependent promotive effect on the osteogenetic activity of rhBMP and that it also promotes osteoconduction, even when used alone. This suggests that enormous reductions can be made in the amount of rhBMP administered when PGE1 is used in conjunction with porous HAP. This should prove to be very advantageous and practical in the clinical application of these materials.

Alprostadil↗