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Biomedical subjects

T T Tang

Publications and source records attributed to T T Tang.

At least 19 recordsLinked to original sources

BMP2 gene therapy on the repair of bone defects of aged rats.

Age-related decline in the number of mesenchymal stem cells (MSCs) and their reduced capability to differentiate osteogenically, along with diminished availability of growth factors, may be major factors accounting for reduced bone formation in the aging mammalian body. In the first part of the study, we compared the number of MSCs in bone marrow (BM) and the content of bone morphogenetic protein 2 (BMP2) in cortical bone tissue in juvenile, adult, and aged (1, 9, and 24 months, respectively) male rats. To assay the influence of aging on osteogenic differentiation ability, MSCs from the three age groups were transduced with the BMP2 gene. Following gene transduction, the production of BMP2 in culture media, expression of osteogenic proteins (e.g., alkaline phosphatase, type Ialpha1 collagen, osteopontin, and bone sialoprotein), as well as ectopic bone formation in athymic mice were compared. Results showed that the number of MSCs in BM as well as the content of BMP2 in cortical bone tissue decreased with age, but no significant differences between the three age groups were found with regard to production of BMP2 or capability of BMP2 gene-modified MSCs to differentiate osteogenically. The second part of the study applied BMP2 gene-modified autologous MSCs/beta-tricalcium phosphate for repair of bone defects in aged rats with positive results. Our data indicate that the osteogenic potential of MSCs of aged rats can be restored following BMP2 gene transduction and that this technique may be a useful approach in the future planning of gene therapy for age-related osteoporotic fractures.

Adenoviridae↗

Repairing of goat tibial bone defects with BMP-2 gene-modified tissue-engineered bone.

Bone defects larger than a critical size are major challenges in orthopedic medicine. We combined tissue-engineered bone and gene therapy to provide osteoprogenitor cells, osteoinductive factors, and osteo-conductive carrier for ideal bone regeneration in critical-sized bone defects. Goat diaphyseal bone defects were repaired with tissue and genetically engineered bone implants, composed of biphasic calcined bone (BCB) and autologous bone marrow derived mesenchymal stem cells (BMSC) transduced with human bone morphogenetic protein-2 (hBMP-2). Twenty six goats with tibial bone defects were divided into groups receiving implants by using a combination of BCB and BMSCs with or without the hBMP-2 gene. In eight goats that were treated with BCB that contained hBMP-2 transduced BMSC, five had complete healing and three showed partial healing. Goats in other experimental groups had only slight or no healing. Furthermore, the area and biochemical strength of the callus in the bone defects were significantly better in animals treated with genetically engineered implants. We concluded that the combination of genetic and tissue engineering provides an innovative way for treating critical-sized bone defects.

Animals↗

[The effect of stress-relaxation plate fixation on the remodeling of the cortex under plate].

OBJECTIVE: To explore the influence of stress-relaxation plate(SRP) fixation on the remodeling of cortex under plate. METHODS: Twenty-eight New Zealand rabbits were used in this study, the bilateral tibia were osteotomized in the middle and fixed with SRP (experimental group) and rigid plate (control group) respectively. The scanning electron microscopy was used to observe the bone remodeling process from 2 to 48 weeks after operation. RESULTS: There was cortex osteoporosis beneath plate in different degree in both experimental and control groups before 8 weeks, it showed as the disorganization of collagen fiber structure and formation of resorption cavities. In comparison, the osteoporosis degree in experimental group showed milder than that of the control group. After 12 weeks, the resorption cavities became smaller, and the structure of collagen fibers became regular with the alignment parallel to the long axis of cortex. In contrast to the experimental group, the bone osteoporosis under plate of control group exacerbated continuously. CONCLUSION: Without removal of the bone plate, SRP fixation not only reduce the degree of plated bone osteoporosis, but also make the osteoporosic bone return to normal.

Animals↗

The mitotic centromeric protein MEI-S332 and its role in sister-chromatid cohesion.

Faithful segregation of sister chromatids during cell division requires properly regulated cohesion between the sister centromeres. The sister chromatids are attached along their lengths, but particularly tightly in the centromeric regions. Therefore specific cohesion proteins may be needed at the centromere. Here we show that Drosophila MEI-S332 protein localizes to mitotic metaphase centromeres. Both overexpression and mutation of MEI-S332 increase the number of apoptotic cells. In mei-S332 mutants the ratio of metaphase to anaphase figures is lower than wild type, but it is higher if MEI-S332 is overexpressed. In chromosomal squashes centromeric attachments appear weaker in mei-S332 mutants than wild type and tighter when MEI-S332 is overexpressed. These results are consistent with MEI-S332 contributing to centromeric sister-chromatid cohesion in a dose-dependent manner. MEI-S332 is the first member identified of a predicted class of centromeric proteins that maintain centromeric cohesion.

Animals↗

[The gene expression of some cytokines and collagen proteins in rat bone tissue is related to estradiol (E2) and age].

30 female SD rats (3 months old) are equally divided into three groups: ovariectomy (OVX) rats, sham-operated (SHO) rats and 17 beta estradiol (E2) treated OVX rats. For each group, mRNA was isolated from long bone at one month and three months after surgery, respectively. mRNA was reverse transcribed into single strand cDNA and then used as a probe hybridizing to the DNA fragments of col I alpha(1), col I alpha(2), col III, col V, fibronectin, IL-1, IL-6, TGF-beta, LIF, TNF-alpha, TNF-beta by reverse northern and dot blot hybrization. The housekeeping gene, gapdh, was used as an internal control. The results show that in bone of rat, the stable expression of col I alpha (1), col I alpha(2) and col III are related to age not ovariectomy, while supplement with E2 can inhibit the expression of col III and col I alpha(2) completely. The expression of col V, IL-1, IL-6 can be inhibited by estrogen and recovered by removal of estrogen by OVX, then addition of E2 decreased it to the normal level. The expression of TGF-beta is also inhibited by estrogen. It increased during one month after overiectomy, and partially decreased in E2 complemented rat. Three months after surgery, the level of increasing and decreasing is less evident as two months ago. It seems that in young SD rat, the expression of TGF-beta is related to both estrogen and age.

Age Factors↗

Maintenance of sister-chromatid cohesion at the centromere by the Drosophila MEI-S332 protein.

Sister-chromatid cohesion is essential for the faithful segregation of chromosomes during cell division. Recently biochemical analysis with Xenopus extracts suggests that cohesion is established during S phase by a cohesion complex but that other proteins must maintain it in mitosis. The Drosophila melanogaster MEI-S332 protein is present on centromeres in mitosis and meiosis and is essential for cohesion at the centromeres in meiosis II. Here, we analyze the timing of MEI-S332 assembly onto centromeres and the functional domains of the MEI-S332 protein. We find that MEI-S332 is first detectable on chromosomes during prometaphase, and this localization is independent of microtubules. MEI-S332 contains two separable functional domains, as mutations within these domains show intragenic complementation. The carboxy-terminal basic region is required for chromosomal localization. The amino-terminal coiled-coil domain may facilitate protein-protein interactions between MEI-S332 and male meiotic proteins. MEI-S332 interacts with itself in the yeast two-hybrid assay and in immunoprecipitates from Drosophila oocyte and embryo extracts. Thus it appears that MEI-S332 assembles into a multimeric protein complex that localizes to centromeric regions during prometaphase and is required for the maintenance of sister-chromatid cohesion until anaphase, rather than its establishment in S phase.

Amino Acid Substitution↗

The cohesion protein MEI-S332 localizes to condensed meiotic and mitotic centromeres until sister chromatids separate.

The Drosophila MEI-S332 protein has been shown to be required for the maintenance of sister-chromatid cohesion in male and female meiosis. The protein localizes to the centromeres during male meiosis when the sister chromatids are attached, and it is no longer detectable after they separate. Drosophila melanogaster male meiosis is atypical in several respects, making it important to define MEI-S332 behavior during female meiosis, which better typifies meiosis in eukaryotes. We find that MEI-S332 localizes to the centromeres of prometaphase I chromosomes in oocytes, remaining there until it is delocalized at anaphase II. By using oocytes we were able to obtain sufficient material to investigate the fate of MEI-S332 after the metaphase II-anaphase II transition. The levels of MEI-S332 protein are unchanged after the completion of meiosis, even when translation is blocked, suggesting that the protein dissociates from the centromeres but is not degraded at the onset of anaphase II. Unexpectedly, MEI-S332 is present during embryogenesis, localizes onto the centromeres of mitotic chromosomes, and is delocalized from anaphase chromosomes. Thus, MEI-S332 associates with the centromeres of both meiotic and mitotic chromosomes and dissociates from them at anaphase.

Anaphase↗

Diversity and evolution of the DRB1*03 family: description of DRB1*03022,*0307,*0308.

Three previously unreported DRB1*03 alleles are described, adding to the diversity of the DRB1 family of alleles. DRB1*03022 contains a silent substitution at codon 77. DRB1*0307 differs from DRB1*03011 by a substitution at codon 26 resulting in a predicted change from tyrosine to phenylalanine. DRB1*0308 is almost identical to DRB1*03011 differing at codon 58 which specifies the glutamic acid residue commonly found in DRB1*11 alleles. The new alleles (DRB1*03022,*0307,*0308) may have arisen by gene conversion-like events and add to the increasing complexity of the HLA system.

Alleles↗

Neonatal hypotonia and cardiomyopathy secondary to type IV glycogenosis.

A neonate with deficiency of branching enzyme (glycogenosis type IV) presented symptoms of severe hypotonia pre- and postnatally, and dilated cardiomyopathy in early infancy. The classical clinical manifestation of liver cirrhosis was not present, although amylopectin-like inclusions were found in the hepatocytes. In contrast to a previous report, the neurons in the brain stem and spinal anterior horns contained PAS-positive, diastase-resistant deposits. The combined involvement of the muscles and motor neurones could account for the severity of hypotonia. The muscle biopsy, electromyogram and biochemical and enzyme assays were helpful in establishing the diagnosis.

Biopsy↗

GM1-gangliosidosis type 1 involving the cutaneous vascular endothelial cells in a black infant with multiple ectopic Mongolian spots.

GM1-gangliosidosis (GM1) is one of the metabolic storage diseases, of which a differential diagnosis requires an array of biochemical assays to determine the enzyme deficiency. This approach is not only time-consuming and costly but also unavailable to most hospital laboratories. However, a presumptive diagnosis of GM1 may be made on the basis of coarse facial feature, foamy endothelial cells in the cutaneous blood vessels and ectopic Mongolian spots, if present. A more definitive diagnosis of GM1 is then made on the demonstration of deficiency of GM1 beta-galactosidase in leukocytes, plasma or cultured skin fibroblasts. Thus, a battery of enzyme tests may be averted.

Black People↗

Epithelioid hemangioendothelioma of the orbital bones.

PURPOSE: The authors report a case of an epithelioid hemangioendothelioma arising in the orbital bones. A review of the literature related to this rare orbital neoplasm identified eight well-documented cases, one of which occurred in a patient younger than that reported here, but none of which originated in bone. METHODS: A 3 1/2-month-old boy had a left inferior orbital mass that had grown rapidly over a 3-day period. An emergency computed tomography scan showed a large neoplasm with significant bone destruction of the zygoma and maxilla. Initial examination suggested a rhabdomyosarcoma, and a transconjunctival biopsy was performed, which was complicated by significant blood loss. The final pathologic diagnosis was an epithelioid hemangioendothelioma, or grade 2 hemangioendothelioma, of bone origin. No other sites of disease were found on metastatic survey. Subsequent treatment consisted of an en bloc tumor resection sparing the orbital soft tissues and globe. RESULTS: The patient is free of disease and has normal visual fixation and ocular motility 20 months after surgery. CONCLUSION: Epithelioid hemangioendothelioma, a vascular malignancy of endothelial cell origin, very rarely involves the orbit. This case is notable for its early development, rapid growth, bony origin, and epithelioid histology.

Biopsy↗

Anesthesia-induced rhabdomyolysis in infants with unsuspected Duchenne dystrophy.

Anesthesia-induced rhabdomyolysis in infancy may represent an unsuspected Duchenne dystrophy. In order to establish the diagnosis of this genetic disease more definitively, a dystrophin test is a requisite following the conventional creatine kinase test and light and electron microscopies of the muscle biopsy.

Anesthesia, General↗

Limb body-wall complex in association with sirenomelia sequence.

Limb body-wall complex and sirenomelia sequence are uncommon birth defects and their association is extremely rare. Their overlapping manifestations and their concurrence in our patient suggest that they share a common cause and belong to a group of pathologically closely related conditions. Embryonic vascular disruption may be a common pathogenesis in both anomalies.

Abnormalities, Multiple↗

Optic chiasm glioma associated with inappropriate secretion of antidiuretic hormone, cerebral ischemia, nonobstructive hydrocephalus and chronic ascites following ventriculoperitoneal shunting.

An optic chiasm glioma may cause loss of vision, endocrine disturbances, hydrocephalus and cerebral ischemia due to its proximity to the pituitary, hypothalamus, III ventricle and internal carotids. A 3-month-old infant with optic chiasm glioma developed hypopituitarism and inappropriate secretion of antidiuretic hormone with plasma hypo-osmolality. The cerebrospinal fluid (CSF) protein concentration was markedly elevated. The impairment of fluid absorption via arachnoid villi and peritoneum by the high protein content, and reversed osmotic gradient between protein-rich CSF and hypo-osmolar plasma may have contributed to both nonobstructive hydrocephalus and recurrent ascites following ventriculoperitoneal shunting. Cerebral ischemia from carotid compression may have led to cerebral atrophy.

Ascites↗

Inflammatory myofibrohistiocytic proliferation simulating sarcoma in children.

The term "inflammatory myofibrohistiocytic proliferation" (IMP) has been proposed to replace the conventional designations of plasma cell granuloma and inflammatory pseudotumor. Three cases of extrapulmonary IMP in children are reported, including an intracerebral lesion which has been formerly undescribed. In children, IMP may be associated with microcytic hypochromic anemia, hypergammaglobulinemia, and high erythrocyte sedimentation rate. In this clinical setting, differentiation of a rapidly growing but benign IMP from a bona fide sarcoma is of paramount importance.

Abdominal Neoplasms↗

Cor pulmonale as a complication of methylmalonic acidemia and homocystinuria (Cbl-C type).

We report an infant with a bronchiolitis-like illness and rapid deterioration who developed a cor pulmonale-like picture with a dilated right ventricle. Urinary organic acid assays established a probable diagnosis of Cbl-C-type methylmalonic aciduria, later confirmed by complementation studies. Despite medical intervention and cyanocobalamin treatment the patient died on his tenth hospital day. Postmortem examination showed the presence of thromboemboli in the pulmonary circulation. We hypothesize that acute cor pulmonale developed in this infant secondary to thromboembolism of his pulmonary circulation. A review of the literature shows that thromboembolism may be a part of this disease process.

Heart Ventricles↗

Fatal rhabdomyolysis following influenza infection in a girl with familial carnitine palmityl transferase deficiency.

Severe rhabdomyolysis following an influenza B infection developed in a previously well 13-year-old girl. There was no history of trauma. Her course was complicated by episodes of severe hyperkalemia, hypocalcemia, hyperphosphatemia, and myoglobinuria. Renal failure, hypertension, and life-threatening arrhythmias developed; she died. Muscle biopsy revealed that this girl had carnitine palmityl transferase deficiency. An asymptomatic sister was demonstrated to have the same disorder. Although carnitine palmityl transferase deficiency is usually associated with mild bouts of rhabdomyolysis that become apparent only in adulthood, severe forms of this disorder may be seen in children. Life-threatening rhabdomyolysis and myoglobinuria may follow any infection associated with decreased intake. If carnitine palmityl transferase deficiency is diagnosed in a proband, other siblings should be evaluated so that proper preventative measures can be undertaken to help prevent the development of symptoms in susceptible individuals who have not been recognized to have the disease.

Acute Kidney Injury↗