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Biomedical subjects

Thomas C Hart

Publications and source records attributed to Thomas C Hart.

At least 19 recordsLinked to original sources

Clinico-pathologic findings in medullary cystic kidney disease type 2.

Medullary cystic kidney disease type 2 is an uncommon autosomal dominant condition characterized by juvenile onset hyperuricemia, precocious gout and chronic renal failure progressing to end-stage renal disease in the 4th through 7th decades of life. A family suffering from this condition is described. The patient in the index case presented with renal insufficiency as a child. A renal biopsy revealed tubular atrophy, and immunohistochemical staining of the tissue for uromodulin (Tamm Horsfall protein) revealed dense deposits in renal tubular cells. Genetic testing revealed a single nucleotide mutation (c.899G>A) resulting in an exchange of a cysteine residue for tyrosine (C300Y). Medullary cystic kidney disease type 2 (also known as uromodulin-associated kidney disease) likely represents a form of endoplasmic reticulum storage disease, with deposition of the abnormal uromodulin protein in the endoplasmic reticulum, leading to tubular cell atrophy and death.

Adenine↗

Variation in dental and skeletal open bite malocclusion in humans with amelogenesis imperfecta.

The amelogenesis imperfectas (AI) are a diverse group of genetic disorders primarily affecting the quality and or quantity of enamel, however, affected individuals often have an open bite malocclusion. Three main AI types are recognized based on the perceived developmental mechanisms involved and the enamel phenotype. The purpose of this investigation was to evaluate the association of the AI enamel defect with craniofacial features characteristic of an open bite malocclusion. The sample consisted of 54 AI affected and 34 unaffected family members from 18 different kindreds. Lateral cephalograms were digitized and measurements evaluated for vertical plane alterations using Z-scores. Forty two percent of AI affected individuals and 12% of unaffected family members had dental or skeletal open bite malocclusions. Skeletal open bite malocclusion was variably expressed in AI affected individuals. The enamel phenotype severity did not necessarily correspond with the presence or severity of open bite malocclussion. Open bite malocclusion occurred in individuals with AI caused by mutations in the AMELX and ENAM genes even though these genes are considered to be predominantly or exclusively expressed in teeth. Affected AI individuals with cephalometric values meeting our criteria of skeletal open bite malocclusion were observed in all three major AI types. The pathophysiological relationship between AI associated enamel defects and open bite malocclusion remains unknown.

Adolescent↗

Proteolysis of macrophage inflammatory protein-1alpha isoforms LD78beta and LD78alpha by neutrophil-derived serine proteases.

Macrophage inflammatory protein-1alpha (MIP-1alpha) is a chemokine that leads to leukocyte recruitment and activation at sites of infection. Controlling chemokine activity at sites of infection is important, since excess accumulation of leukocytes may contribute to localized tissue damage. Neutrophil-derived serine proteases modulate the bioactivity of chemokine and cytokine networks through proteolytic cleavage. Because MIP-1alpha is temporally expressed with neutrophils at sites of infection, we examined proteolysis of MIP-1alpha in vitro by the neutrophil-derived serine proteases: cathepsin G, elastase, and proteinase 3. Recombinant human MIP-1alpha isoforms LD78beta and LD78alpha were expressed and purified, and the protease cleavage sites were analyzed by mass spectrometry and peptide sequencing. Chemotactic activities of parent and cleavage molecules were also compared. Both LD78beta and LD78alpha were cleaved by neutrophil lysates at Thr16-Ser17, Phe24-Ile25, Tyr28-Phe29, and Thr31-Ser32. This degradation was inhibited by serine protease inhibitors phenylmethylsulfonyl fluoride and 4-(2-aminoethyl)-benzenesulfonyl fluoride. Incubation of the substrates with individual proteases revealed that cathepsin G preferentially cleaved at Phe24-Ile25 and Tyr28-Phe29, whereas elastase and proteinase 3 cleaved at Thr16-Ser17 and Thr31-Ser32. Proteolysis of LD78beta resulted in loss of chemotactic activity. The role of these proteases in LD78beta and LD78alpha degradation was confirmed by incubation with neutrophil lysates from Papillon-Lefevre syndrome patients, demonstrating that the cell lysates containing inactivated serine proteases could not degrade LD78beta and LD78alpha. These findings suggest that severe periodontal tissue destruction in Papillon-Lefevre syndrome may be related to excess accumulation of LD78beta and LD78alpha and dysregulation of the microbial-induced inflammatory response in the periodontium.

Amino Acid Sequence↗

A specific requirement for PDGF-C in palate formation and PDGFR-alpha signaling.

PDGF-C is a member of the platelet-derived growth factor (PDGF) family, which signals through PDGF receptor (PDGFR) alphaalpha and alphabeta dimers. Here we show that Pdgfc(-/-) mice die in the perinatal period owing to feeding and respiratory difficulties associated with a complete cleft of the secondary palate. This phenotype was less severe than that of Pdgfra(-/-) embryos. Pdgfc(-/-) Pdgfa(-/-) embryos developed a cleft face, subepidermal blistering, deficiency of renal cortex mesenchyme, spina bifida and skeletal and vascular defects. Complete loss of function of both ligands, therefore, phenocopied the loss of PDGFR-alpha function, suggesting that both PDGF-A and PDGF-C signal through PDGFR-alpha to regulate the development of craniofacial structures, the neural tube and mesodermal organs. Our results also show that PDGF-C signaling is a new pathway in palatogenesis, different from, and independent of, those previously implicated.

Abnormalities, Multiple↗

Increased bone density associated with DLX3 mutation in the tricho-dento-osseous syndrome.

Tricho-dento-osseous syndrome (TDO) (OMIM #190320) is an autosomal dominant disorder characterized and named for the three most commonly affected tissues hair, teeth, and bones. Common to all individuals with TDO studied to date is a four base-pair deletion in the DLX3 gene on chromosome 17q21. This mutation is associated with a variable bone phenotype that includes alteration in intramembranous bone formation in the skull. The purpose of this study was to characterize and compare endochondral bone phenotypes and variability at central and peripheral locations of the skeleton by evaluating bone density in individuals having the same DLX3, 4 bp DEL,NT3198 mutation (OMIM 600525) and non-affected family members using dual-energy x-ray absorptiometry (DEXA). Thirty-four individuals (20 TDO-affected and 14 non-affected) participated in this prospective study. All participants were evaluated for the DLX3 mutation associated with TDO. All subjects received DEXA scans at common, literature-supported osteoporotic test regions including: (1) non-dominant distal radius/ulna, (2) femoral neck, and (3) lumbar spine L2-4. There was a significant increase (P < 0.05) in bone mineral density in TDO-affected individuals compared with control individuals at each test region. The markedly increased bone density in individuals having the DLX3, 4 bp DEL,NT3198 mutation shows that this alteration affects both endochondral and intramembranous bone formation and suggests that the DLX3 gene is important in bone formation and/or homeostasis of the appendicular skeleton.

Abnormalities, Multiple↗

Phenotypic diversity and revision of the nomenclature for autosomal recessive amelogenesis imperfecta.

PURPOSE: The purpose of this study was to characterize the phenotype in 9 families with autosomal recessive amelogenesis imperfecta (ARAI), and to propose a classification system allowing inclusion and delineation of diverse ARAI phenotypes. STUDY DESIGN: Nine families with ARAI were evaluated clinically and radiographically. Exfoliated and extracted teeth were examined via light and scanning electron microscopy, with the enamel in one case evaluated by amino acid analysis. RESULTS: The 9 families demonstrated diverse ARAI phenotypes including localized hypoplastic, generalized thin hypoplastic, hypocalcified and hypomaturation AI types. CONCLUSIONS: Some ARAI phenotypes observed in this study and reported in the literature cannot be classified using currently accepted ARAI nomenclature. Therefore, we propose a revised nomenclature permitting both classification of all ARAI clinical forms and inclusion of anticipated molecular-based nomenclature, such as now exists for some X-linked and autosomal dominant AI subtypes.

Amelogenesis Imperfecta↗

Mutations in the uromodulin gene decrease urinary excretion of Tamm-Horsfall protein.

BACKGROUND: Mutations in the uromodulin (UMOD) gene that encodes Tamm-Horsfall protein (THP) cause an autosomal-dominant form of chronic renal failure. We have now investigated effects of UMOD gene mutations on protein expression by quantitatively measuring THP excretion. METHODS: THP excretion was determined by enzyme-linked immunosorbent assay (ELISA) of urine collections obtained from 16 related individuals with a 27 bp deletion in the UMOD gene and seven individuals with other UMOD mutations. THP excretion of 22 control subjects (18 genetically related individuals and four spouses in the UMOD deletion family) was also determined. RESULTS: The 16 individuals carrying the deletion mutation excreted 5.8 +/- 6.3 mg THP/g creatinine into their urine. The 18 unaffected relatives from the same family excreted 40.8 +/- 9.7 mg THP/g creatinine (P < 0.0001) and the four spouses excreted 43.9 +/- 25.1 mg THP/g creatinine (P < 0.0001 vs. individuals with the deletion mutation). THP excretion of seven individuals with other UMOD gene mutations was also extremely low (range of 0.14 to 5.9 mg THP/g creatinine). All individuals with UMOD mutations had low THP excretion, irrespective of gender, glomerular filtration rate (GFR), or age. CONCLUSION: These studies quantitatively show that the autosomal-dominant gene mutations responsible for UMOD-associated kidney disease cause a profound reduction of THP excretion. We speculate that this suppression of normal THP excretion reflects deleterious effects of mutated THP within the kidney. Such effects may also play an important role in the pathogenesis of the progressive renal failure observed in patients with UMOD gene mutations.

Adolescent↗

Effect of the interleukin-1 genotype on outcomes of regenerative periodontal therapy with bone replacement grafts.

BACKGROUND: Previous studies have shown an association between a specific genotype for the inflammatory cytokine interleukin (IL)-1 and the severity of periodontal disease. The purpose of this study was to evaluate the effect of the IL-1 genotype on the outcomes of periodontal surgical regenerative treatment with bone replacement grafts. METHODS: Forty-four patients with interproximal intrabony defects were treated with bone replacement grafts. Probing depths (PD) and clinical attachment levels (CAL) were measured before treatment and at least 9 months post-treatment. Whole-mouth plaque index (WMPI) and bleeding index (WMBI) were recorded as well. All patients were tested for the IL-1 genotype. RESULTS: Thirteen (29.55%) of the patients were IL-1 genotype positive. There was no statistically significant difference between the genotype-positive and genotype-negative groups regarding age, smoking status, gender, WMPI, and WMBI. There was no significant difference in PD or CAL between the genotype-positive and genotype-negative groups at baseline. Genotype-positive patients had a smaller reduction in probing depth (1.86 mm versus 2.13 mm) and a greater gain of clinical attachment (1.20 mm versus 0.65 mm). These differences were not statistically significant (P = 0.70, P = 0.40). Multivariate regression analysis showed that presurgical PD significantly influenced post-surgical PD and CAL, and only WMPI significantly influenced CAL. CONCLUSION: In this study, there was no evidence that the IL-1 genotype influences the clinical treatment outcomes of regenerative periodontal therapy with bone replacement grafts.

Adult↗

Hereditary gingival fibromatosis associated with generalized aggressive periodontitis: a case report.

BACKGROUND: Hereditary gingival fibromatosis is a rare, genetically inherited overgrowth condition that is clinically characterized by a benign fibrous enlargement of maxillary and mandibular keratinized gingiva. A syndromic association between gingival fibromatosis and a wide variety of other genetically inherited disorders has been described. However, its coexistence with aggressive periodontitis has not been reported. METHODS: A 24-year-old African-American female, patient (proband X, [Px]) reported with a chief complaint of tooth mobility and gingival enlargement. Clinical examination revealed moderate to severe gingival overgrowth on both mandible and maxilla. Generalized attachment loss and mobility of the teeth were observed. Radiographic evaluation demonstrated severe alveolar bone loss. The patient was diagnosed with gingival fibromatosis and aggressive periodontitis based on the clinical and radiographic findings. Her brother (Bx) and her mother (Mx) were evaluated and diagnosed with gingival fibromatosis suggesting that this is a dominant trait in the family and gingival fibromatosis might be of hereditary origin. In addition, the brother also exhibited localized aggressive periodontitis. Medical history revealed no other systemic or local contributory factors associated with the oral findings in any of the subjects. RESULTS: Surgical therapy included internal bevel gingivectomy combined with open flap debridement procedures for Px and Bx. Only internal bevel gingivectomy was performed for Mx since there was mild bone resorption and no intrabony defects. At the time of surgery, gingival biopsies were obtained and fixed in 4% paraformaldehyde. Multiple serial sections were stained with hematoxylin and eosin. Microscopic evaluation of the gingival specimens revealed large parallel collagen bundles associated with scarce fibroblasts in the connective tissue. The collagen bundles reached into the subepithelial connective tissue where elongated rete-pegs were also observed. Following the completion of the treatment, no signs of recurrence or bone resorption were observed over 2-year follow-up. CONCLUSIONS: This is the first report of hereditary gingival fibromatosis associated with aggressive periodontitis. Combined treatment comprising removal of fibrotic gingival tissue and traditional flap surgery for the elimination of intrabony defects represents a unique treatment approach in periodontal therapy. Two-year follow-up revealed that both the gingival overgrowth and the destructive lesions were successfully treated.

Adult↗

Status of genetics education in U.S. dental schools.

Genomics research is rapidly increasing our understanding of the genetic basis of normal and abnormal growth, development, and disease. Genetic information and technologies are also being applied to develop new diagnostic and treatment strategies. Many diseases with dental, oral, and craniofacial manifestations have a genetic basis. Effective clinical application of genomics to oral medicine will depend on the education of health care professionals, the general public, and policymakers. Dentists must understand genetics to provide accurate information to patients and be able to discuss benefits and limitations of the biological, clinical, and ethical issues related to genomic-based health care. Genetics education in dental schools will significantly impact the integration of genetics into oral medicine. Fifty-three U.S. dental schools completed a survey in 2001 to assess the status of genetics curricula in dental schools in the United States. Ninety-four percent of schools did not require genetics education for entry to dental school, and a formal genetics course was conducted in only eight of the fifty-three schools (15 percent). The genetics education currently offered to undergraduate dental students is not standardized, and the content varies considerably among schools. These findings suggest more emphasis on genetics education is needed in U.S. dental schools.

Curriculum↗

Renal manifestations of a mutation in the uromodulin (Tamm Horsfall protein) gene.

BACKGROUND: Uromodulin (Tamm Horsfall glycoprotein) is the most abundant protein found in normal human urine. Its function has yet to be determined. Identifying mutations in the uromodulin gene may be helpful in understanding the function of uromodulin. There has been 1 report of 4 families suffering from mutations in the uromodulin gene, resulting in the autosomal dominant transmission of hypouricosuric hyperuricemia and chronic renal failure. This case report describes another family with similar clinical manifestations. METHODS: A family was identified with clinical characteristics of hypouricosuric hyperuricemia and renal failure occurring in a mother and daughter. Clinical characteristics were identified, and laboratory studies were obtained in the proband and the proband's daughter. A genetic analysis was performed to evaluate for mutations in the uromodulin gene. RESULTS: The proband suffered from hyperuricemia at an early age and progressive renal failure with end-stage renal disease developing at age 49 years. The proband's daughter suffered from hyperuricemia, a reduced fractional excretion of uric acid, and mild renal insufficiency. A g.2105G > A mutation in exon 4 of the uromodulin gene resulting in a substitution of tyrosine for cysteine was identified in both the proband and the proband's daughter. The clinical characteristics were similar to those of other patients suffering from uromodulin mutations and to those of patients suffering from medullary cystic kidney disease type 2 and familial juvenile hyperuricemic nephropathy. CONCLUSION: Uromodulin associated kidney disease results in hyperuricemia and renal failure. The specific uromodulin mutation found in this family is consistent with the hypothesis that mutations disrupt highly conserved cysteine residues in the uromodulin protein. Potential mechanisms for these pathologic changes are discussed. The authors would appreciate referral of other families for screening for mutations.

Amino Acid Substitution↗

Exclusion of candidate genes in two families with autosomal dominant hypocalcified amelogenesis imperfecta.

The amelogenesis imperfectas (AI) are a group of hereditary enamel defects characterized by clinical and genetic diversity. The most common AI types are inherited as autosomal traits. Three mutations of the enamelin (ENAM) gene have been found in cases of autosomal dominant hypoplastic AI. The gene(s) responsible for hypocalcified forms of AI have not been identified, although a number of autosomal genes have been proposed as candidates for AI based on their expression by ameloblasts, including ameloblastin and enamelin (chromosome 4q13.3), tuftelin (chromosome 1q21), enamelysin (chromosome 11q22.3-q23) and kallikrein 4 (chromosome 19q13.3-q13.4). To localize the gene(s) responsible for autosomal dominant hypocalcified AI, we evaluated support for/against linkage of AI to genetic markers spanning five AI candidate genes in two extended families. Our data excluded all proposed candidate gene regions as causal for autosomal dominant hypocalcified AI in these families. These linkage findings provide further evidence for genetic heterogeneity among families with autosomal dominant AI and indicate that, at least, some forms of autosomal dominant hypocalcified AI are not caused by a gene in the five most commonly reported AI candidate genes.

Amelogenesis Imperfecta↗

Clinical characterization of a family with a mutation in the uromodulin (Tamm-Horsfall glycoprotein) gene.

BACKGROUND: We have recently identified a mutation in the uromodulin gene in a large family affected with hyperuricemia, gout, and renal failure. The purpose of this investigation is to provide a comprehensive characterization of the clinical findings of this syndrome in family members who had a mutation in the uromodulin gene. METHODS: An extended family suffering from hyperuricemia and gout was identified by a local practitioner. After consent was obtained, patients provided a directed clinical history and blood and urine specimens for chemical and genetic testing. All family members were tested for the presence of uromodulin gene mutations by direct DNA sequence analysis. The clinical and biochemical characteristics of family members carrying the affected mutation were then investigated. RESULTS: Thirty-nine family members were found to have an exon 5 uromodulin gene mutation (g.1966 1922 del), and 29 unaffected family members were identified. The cardinal clinical features in individuals with the uromodulin mutation included hyperuricemia, decreased fractional excretion of uric acid, and chronic interstitial renal disease leading to end-stage renal disease (ESRD) in the fifth through seventh decade. Women did not always develop hyperuricemia or gout, but still developed progressive chronic renal failure. CONCLUSION: Mutation of the uromodulin gene resulted in hyperuricemia, reduced fractional excretion of uric acid, and renal failure. Genetic testing will be required to definitively identify individuals suffering from this condition. We are interested in studying other families that may suffer from this condition and would appreciate any such referrals.

Adolescent↗

Topically applied minocycline microspheres: why it works.

This article presents the results of a single-arm, open-label, multicenter clinical trial of the topical use of sustained-release minocycline hydrochloride (HCl) microspheres as an adjunct to scaling and root planing. The objective of this study was to evaluate the long-term safety and efficacy of the subgingival application of resorbable minocycline microspheres as an adjunct to scaling and root planing in the treatment of chronic periodontitis. The primary outcome measures were the reduction in probing pocket depth at 9- and 12-month evaluations, and the percent of bleeding upon probing. A total of 173 patients with moderate-to-severe chronic periodontitis were enrolled in this multicenter clinical trial. All patients received full-mouth scaling and root planing plus minocycline microspheres in all periodontal pockets that probed > or = 5 mm. All sites treated at baseline and any new sites > or = 5 mm again received minocycline microspheres at 3- and 6-month follow-up appointments with no further scaling and root planing. Significant improvements in all clinical parameters measured were found at all time points (1, 3, 6, 9 and 12 months). The product was found to be well-tolerated by patients, safe, and easy to deliver. Scaling and root planing with the topical application of minocycline microspheres appeared to give better results than would have been expected with scaling and root planing alone.

Absorbable Implants↗

Genetics in dental practice: social and ethical issues surrounding genetic testing.

It is evident that human genetic variation is associated with many if not all human diseases including the more prevalent chronic diseases. As a result, genetics is becoming integrated into health care in all medical specialties, including oral medicine and its specialties. At the level of public health, genetic information will become increasingly important in research, policy, and program development. As application of genome technologies moves from the research laboratory to the clinical setting, a complex array of challenges will face dental clinicians in their efforts to use genetic information to improve health care and prevent disease on an individual, family, and community level. The broader social, ethical, and legal implications raised by the clinical use of genomic information have not received the same attention as did recent gene identification aspects of the Human Genome Project. The goal of this review is to foster attention and dialogue within the dental community of the ethical and social issues emerging from the availability of genetic information. Specific areas addressed include genetic testing, confidentiality, discrimination, informed consent, risk communication, and professional education.

Confidentiality↗