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The surgical treatment of symptomatic nonunions of the proximal (metaphyseal) fifth metatarsal in athletes.

Eight athletes developed symptomatic nonunions of the base of the proximal fifth metatarsal in the metaphyseal region. All of the athletes were initially treated conservatively without success. We reviewed their case histories and outlined a simple, effective, low morbidity surgical management of these lesions. Two nonunions successfully healed with internal fixation with an intramedullary compression screw. Five additional nonunions were shelled out through a lateral incision of the peroneus brevis without disturbing its insertion. An eighth nonunion fragment was large and articulated the cuboid; it was fixed successfully with an intramedullary compression screw to preserve lateral foot mechanics. There were no complications. All patients returned to full activities 2 to 4 months after surgery.

Adolescent↗

A form of Jansen's metaphyseal chondrodysplasia with limited metabolic and skeletal abnormalities is caused by a novel activating parathyroid hormone (PTH)/PTH-related peptide receptor mutation.

A novel heterozygous PTH/PTHrP receptor missense mutation (T410R) was identified in a male and his two sons who are all affected by a less severe form of Jansen's metaphyseal chondrodysplasia (JMC). JMC is a rare disorder that is typically characterized by severe growth plate abnormalities that lead to short-limbed dwarfism. Furthermore, affected individuals usually show significant hypercalcemia, despite normal or undetectable levels of PTH and PTHrP. In contrast, the three affected members of this new family showed only mild skeletal dysplasia, comparatively normal stature, and blood calcium concentrations either within or at the upper end of the normal range. However, PTH levels were suppressed, and urinary calcium excretion was elevated, which led to nephrolithiasis in both children. When expressed in COS-7 cells, the PTH/PTHrP receptor with the T410R mutation led to agonist-independent cAMP formation, which was less pronounced than that observed with the previously identified T410P mutant. Our findings indicate that a mild form of JMC has been identified that is characterized by less pronounced skeletal and laboratory abnormalities.

Adult↗

A novel parathyroid hormone (PTH)/PTH-related peptide receptor mutation in Jansen's metaphyseal chondrodysplasia.

Two heterozygous PTH/PTH-related peptide (PTHrP) receptor missense mutations were previously identified in patients with Jansen's metaphyseal chondrodysplasia (JMC), a rare form of short limb dwarfism associated with hypercalcemia and normal or undetectable levels of PTH and PTHrP. Both mutations, H223R and T410P, resulted in constitutive activation of the cAMP signaling pathway and provided a plausible explanation for the abnormalities in skeletal development and mineral ion homeostasis. In the present study we analyzed genomic DNA from four additional sporadic cases with JMC to search for novel activating mutations in the PTH/PTHrP receptor, to determine the frequency of the two previously identified missense mutations, H223R and T410P, and to determine whether different mutations present with different severity of the disease. The H223R mutation was identified in three novel JMC patients and is, therefore, to date the most frequent cause of JMC. In the fourth patient, a novel heterozygous missense mutation was found that changes isoleucine 458 in the receptor's seventh membrane-spanning region to arginine (I458R). In COS-7 cells expressing the human PTH/PTHrP receptor with the I458R mutation, basal cAMP accumulation was approximately 8 times higher than that in cells expressing the wild-type receptor despite impaired surface expression of the mutant receptor. Furthermore, the I458R mutant showed higher responsiveness to PTH than the wild-type receptor in its ability to activate both downstream effectors, adenylyl cyclase and phospholipase C. Like the H223R and the T410P mutants, the I458R mutant had no detectable effect on basal inositol phosphate accumulation. Overall, the patient with the I458R mutation exhibited clinical and biochemical abnormalities similar to those in patients with the previously identified H223R and T410P mutations.

Animals↗

The cyclin D1 and cyclin A genes are targets of activated PTH/PTHrP receptors in Jansen's metaphyseal chondrodysplasia.

Jansen's metaphyseal chondrodysplasia (JMC) is an autosomal dominant disorder characterized by short-limbed dwarfism, delayed ossification, and hypercalcemia. Activating mutations in the PTH/PTHrP receptor have been identified as the molecular cause of this disorder. Although these mutations have been shown to increase cAMP accumulation, little is known about possible target genes of the downstream signaling pathways that may contribute to the pathogenesis of the disease. Here we demonstrate that JMC mutations of the PTH/PTHrP receptor induce activation of the cyclin D1 and cyclin A promoters in primary mouse chondrocytes and rat chondrosarcoma cells. Induction of cyclin D1 expression is required for stimulation of E2F-dependent transcription by mutant receptors. Activation of the cyclin D1 and cyclin A promoters requires a functional cAMP response element in both genes. Inhibition of protein kinase A or the transcription factor cAMP response element binding protein blocks the stimulation of both promoters by mutant receptors, whereas inhibition of activating transcription factor 2, c-Fos, or c-Jun has only minor effects. In summary, our data suggest that stimulation of cell cycle gene expression and cell cycle progression by mutant PTH/PTHrP receptors contribute to the pathogenesis of JMC.

Animals↗

Constitutive activation of the cyclic adenosine 3',5'-monophosphate signaling pathway by parathyroid hormone (PTH)/PTH-related peptide receptors mutated at the two loci for Jansen's metaphyseal chondrodysplasia.

Two different activating PTH/PTH-related peptide (PTHrP) receptor mutations, H223R and T410P, were recently identified as the most likely cause of Jansen's metaphyseal chondrodysplasia. To assess the functional importance of either amino acid position in the human PTH/PTHrP receptor, H223 and T410 were individually replaced by all other amino acids. At position 223, only arginine and lysine led to agonist-independent cAMP accumulation; all other amino acid substitutions resulted in receptor mutants that lacked constitutive activity or were uninformative due to poor cell surface expression. In contrast, most amino acid substitutions at position 410 conferred constitutive cAMP accumulation and affected PTH/PTHrP receptor expression not at all or only mildly. Mutations corresponding to the H223R or T410P exchange in the human PTH/PTHrP receptor also led to constitutive activity when introduced into the opossum receptor homolog, but showed little or no change in basal cAMP accumulation when introduced into the rat PTH/PTHrP receptor. The PTH/PTHrP receptor residues mutated in Jansen's disease are conserved in all mammalian members of this family of G protein-coupled receptors. However, when the equivalent of either the H223R or the T410P mutation was introduced into several other related receptors, including the PTH2 receptor and the receptors for calcitonin, secretin, GH-releasing hormone, glucagon-like peptide I, and CRH, the resulting mutants failed to induce constitutive activity. These studies suggest that two residues in the human PTH/PTHrP receptor, 223 and 410, have critical roles in signal transduction, but with different sequence constrains.

Amino Acid Sequence↗

The radiological manifestations of metaphyseal dysplasia (Pyle disease).

Pyle disease is a rare genetic skeletal disorder which is conventionally classified with craniotubular dysplasias. The radiographic manifestations in three affected adults included widening of the metaphyseal portions of the long bones which extended through a major portion of the diaphyses, with cortical thinning and mild cranial sclerosis. The femora presented the characteristic Erlenmeyer flask configuration. Pyle disease is clinically, radiographically and genetically distinct from craniometaphyseal dysplasia, a relatively common condition with which it has been confused.

Adult↗

Metaphyseal fractures in osteogenesis imperfecta.

Forty-one children with osteogenesis imperfecta have been reviewed. A minority (7/41) showed small metaphyseal fractures, resembling those seen in non-accidental injury, but in all of these there was obvious generalized bone disease so that confusion with non-accidental injury did not occur.

Battered Child Syndrome↗

In vitro studies on collagen metabolism in metaphyseal rat bone. B. The early effects of oestradiol-17 beta.

In vitro collagen metabolism in metaphyseal bone has been studied during the first few hours and days after the start of in vivo treatment of castrated female rats with various doses of oestradiol-17 beta. Already during the first 2 h after the start of treatment with oestradiol-17 beta 2 mug/day and within the first 24 h in the rats receiving 20 mug/day, a reduction of the collagen incorporation rate was demonstreated. The incorporation rates remained at approximately the same reduced level during the following 3 weeks. In rats receiving oestradiol-17 beta 1 mug/day no such reduced incorporation rate could be demonstrated during the first 36 h after the start of treatment. The bone collagen resorption rate was significantly elevated during the first 3 days of treatment in the animals receiving oestradiol-17 beta both 1 and 20 mug/day. After this time the resorption rates gradually fell to levels significantly below controls at 3 weeks after start of treatment.

Animals↗

The in vitro effect of oestradiol on collagen metabolism in metaphyseal rat bone.

Surviving bone pieces from the femoral and tibial metaphyses of young castrated female rats have been incubated for 6 hours with concentrations of oestradiol-17-beta ranging from 10(-9) M to 3 x 10(-5) M, and the in vitro collagen metabolism studied. The addition of oestradiol did not produce any change in the resorption patterns of bone collagen, expressed as release of hydroxyproline to the medium. Parathyroid hormone in the incubation medium increased the resorption and decreased the incorporation rate insignificantly. Addition of both parathyroid hormone and oestradiol to the incubation medium produced a significant increase in resorption and a decrease in incorporation rate as compared with the control incubations. The bone pieces incubated with oestradiol-17-beta 3 x 10(-5) synthesized and incorporated significantly less hydroxyproline than the control bone pieces. This is, however, a very high concentration of the hormone and the physiological significance of the observation is doubtful.

Animals↗

Effects of dietary vitamin D and calcium on lysyl oxidase activity in chick bone metaphyses.

Activity of lysyl oxidase, an enzyme responsible for production of aldehydic precursors for lysine-derived collagen crosslinks, was measured in tibial metaphyses from chicks receiving different dietary levels of vitamin D and Ca for 2 weeks after hatching. Enzyme activities were increased twofold in D-deficient chicks compared to activities from chicks receiving control levels of vitamin D. Addition of Ca to the D-deficient diet had no effect on lysyl oxidase activity. It is suggested that vitamin D may play a role in the age-related decrease in lysyl oxidase activity that normally occurs in chick bone.

Age Factors↗

The treatment of displaced metaphyseal fractures with screws and wiring systems.

Within the context of modern fracture fixation, buttress plates have traditionally played an important role in stabilizing both intraarticular and extraarticular displaced metaphyseal fractures. While plating has substantially improved the assurance of union and functional recovery in these fractures, there is some interference with physiologic blood supply to the regions of the fracture and, consequently, to the biological elements of healing. This article outlines alternative methods of treatment for these fractures using screws and wiring systems with little, if any, loss of stability. Patients must be selected carefully and must have large fracture fragments and normal or near normal mineralization of their bones. When screw and wiring methods can be used, there is less tissue dissection and, consequently, less interference with the physiologic fracture healing process.

Adult↗

Revision total knee arthroplasty using large distal femoral augments for severe metaphyseal bone deficiency: a preliminary study.

Managing severe structural femoral metaphyseal bone loss in revision total knee arthroplasty is a challenging problem facing the revision knee surgeon. This study assesses the use of large (30 mm) metal distal femoral augments to compensate for severe bone deficiencies. Hospital for Special Surgery scores, Knee Society scores, and range of motion improved after implantation of femoral components with 30-mm distal femoral augments. There was no radiographic evidence of loosening, and no implants had been revised at mean 37-month follow-up. This appears to be an acceptable technique based on the intermediate-term results.

Aged↗

Multiple metaphyseal involvement of a thymic lymphoma associated with hypercalcemia in a puppy.

A six-month-old, female German shepherd dog was presented because of depression, anorexia, vomiting, polyuria, and polydipsia of approximately 10 days' duration. The puppy was depressed, and pain could be elicited on palpation of both shoulders and hips. The most significant results of serum chemistries and hematology were hypercalcemia; increased blood urea nitrogen, creatinine, and alkaline phosphatase; and leukocytosis with neutrophilia. Thoracic radiographs revealed a large thymic mass, diagnosed on histological examination as a thymic lymphoma. Radiographs of the shoulders revealed destructive bone lesions involving the proximal metaphyses of the humeri, causing slipped epiphyses. Bone lesions were found at necropsy on the proximal and distal aspects of both humeri and femurs. Bone resorption was due to local neoplastic infiltration and presumed humoral factors secreted locally and systemically by neoplastic thymic lymphocytes.

Animals↗

The long plantar wing distal metaphyseal osteotomy.

The authors introduce the long plantar wing distal metaphyseal osteotomy of the first metatarsal through a medial plantar approach. This procedure for mild-to-moderate hallux valgus is capable of correcting an increased proximal articular set angle and first intermetatarsal angle concomitantly. The biomechanical, surgical, and clinical rationale for this procedure are discussed.

Biomechanical Phenomena↗

[Postero-medial elastic stable intramedullary nailing for anteriorly displaced distal diaphyso-metaphyseal fractures of the radius in children].

PURPOSE: To suggest a mechanically satisfying method to stabilize the unfrequent distal diaphyso-metaphyseal fractures of the radius, when they are anteriorly displaced, avoiding the classical use of an anterior osteosynthesis by plate and screws. MATERIAL AND METHODS: Ten cases of postero medial Elastic Stable Intramedullary Nailing are presented. Technically, a small postero medial approach with gentle retraction of extensors tendons is used. Then a hole is drilled through the postero medial metaphysis of the distal radius. A present wire is introduced intramedullary, directing its elastic forces in a postero lateral way, fighting against the displacement. DISCUSSION: The instability of this fracture often requires an osteosynthesis. Plating needs a larger incision and a direct control of the fracture (danger of injure of the growth plate, scar). Retrograd nailing through the proximal end of the bone can injure nerves. Then, postero medial Elastic Stable Intramedullary Nailing can be useful for stabilization of the diaphysometaphyseal fractures of the radius.

Adolescent↗

Transphyseal osseous bridges in experimental osteonecrosis of the femoral head of the rat. Histologic study of the bony bridges connecting the epiphyseal with the metaphyseal bony trabeculae through gaps in the physeal cartilage.

In view of the lifelong persistence of the physis, the femoral head of rats may serve to model Perthes disease and slipped capital femoral epiphysis. To produce osteonecrosis, the blood supply of one femoral head of 133, 6-month-old animals was severed by circumferentially incising the periosteum of the neck and cutting the ligamentum teres. The rats were killed 7 days to 90 days postoperatively. Associated with resorption of the necrotic bone and marrow, remodeling of the epiphysis was characterized by an ingrowth of vascularized fibrous tissue, formation of new bone and some cartilage, architectural deformation and flattening of the head. In 22 of 83 rats killed 30 days or more postoperatively, gaps in the continuity of the physeal cartilage were occupied by osseous bridges, connecting newly formed epiphyseal bony trabeculae with either the preexisting or newly formed metaphyseal osseous trabeculae. This healing mode may follow ischemic death of physeal chondrocytes or be owing to another mechanism, e.g., release of mediatory substances of inflammation. These findings raise the possibility that fixation of the healing epiphysis of a child's previously necrotic femoral head to the metaphysis occurs by transphyseal osseous growth in cases in which the physis is involved in the necrotic process.

Age Factors↗