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Biomedical subjects

Chong S Lee

Publications and source records attributed to Chong S Lee.

7 recordsLinked to original sources

Brain transplantation of human neural stem cells transduced with tyrosine hydroxylase and GTP cyclohydrolase 1 provides functional improvement in animal models of Parkinson disease.

Parkinson disease is a neurodegenerative disease characterized by loss of midbrain dopaminergic neurons resulting in movement disorder. Neural stem cells (NSC) of the CNS have recently aroused a great deal of interest, not only because of their importance in basic research of neural development, but also for their therapeutic potential in neurological disorders. We have recently generated an immortalized human NSC cell line, HB1.F3, via retrovirus-mediated v-myc transfer. This line is capable of self-renewal, is multipotent, and expresses cell specific markers for NSC, ATP-binding cassettes transporter (ABCG2) and nestin. Next, we co-transduced the F3 NSC line with genes encoding tyrosine hydroxylase (TH) and GTP cyclohydrolase 1 (GTPCH1) in order to generate dopamine-producing NSC. The F3.TH.GTPCH human NSC line expresses TH and GTPCH phenotypes as determined by RT-PCR, western blotting and immunocytochemistry, and shows a 800 to 2000-fold increase in production of L-dihydroxyphenyl alanine in HPLC analysis. A marked improvement in amphetamine-induced turning behavior was observed in parkinsonian rats implanted with F3.TH.GTPCH cells, but not in control rats receiving F3 NSC. In the animals showing functional improvement, a large number of TH-positive F3.TH.GTPCH NSC were found at injection sites. These results indicate that human NSC, genetically transduced with TH and GTPCH1 genes, have great potential in clinical utility for cell replacement therapy in patients suffering from Parkinson disease.

Animals↗

PET in LRRK2 mutations: comparison to sporadic Parkinson's disease and evidence for presymptomatic compensation.

Parkinson's disease may arise from multiple aetiologies, including genetic mutations that are for the most part uncommon. We describe here the positron emission tomography (PET) findings in clinically affected and asymptomatic, high-risk members of two autosomal dominantly inherited Parkinson's disease kindreds with recently described mutations at the PARK8 locus, in a novel gene encoding a leucine-rich repeat kinase (LRRK2). Affected family members have L-dopa-responsive parkinsonism with loss of dopaminergic nigral neurons and pleomorphic subcellular pathology. Fifteen family members underwent PET using: 18F-6-fluoro-L-dopa (18F-dopa) to assess dopamine (DA) synthesis and storage, 11C-(+/-)-dihydrotetrabenazine (11C-DTBZ) for the vesicular monoamine transporter, and 11C-d-threo-methylphenidate (11C-MP) for the membrane dopamine transporter (DAT). Measurements were compared with normal (n = 33) and sporadic Parkinson's disease (sPD) (n = 67) control groups. Four clinically affected members had findings similar to sPD, with impaired presynaptic DA function affecting the putamen more than the caudate. In two affected members, D2 dopamine receptor binding was intact. Two asymptomatic mutation carriers had abnormal DAT binding with another two developing such abnormalities over 4 years of follow-up. In these individuals, 18F-dopa uptake remained normal, although two of them also displayed abnormal 11C-DTBZ binding. Our study demonstrates that the in vivo neurochemical phenotype of LRRK2 mutations is indistinguishable from that of sPD, despite the pathological heterogeneity of the condition. Furthermore, we suggest that compensatory changes including downregulation of the DAT and upregulation of decarboxylase activity may delay the onset of parkinsonian symptoms.

Adult↗

Lack of regional selectivity during the progression of Parkinson disease: implications for pathogenesis.

BACKGROUND: Dopamine terminal loss in the putamen of patients with Parkinson disease (PD) shows a regional heterogeneity, reflecting selective vulnerability of degenerating neurons to mechanisms of cell death. HYPOTHESIS: If the same pathogenic mechanisms are responsible for the onset and progression of PD, the regional selectivity of dopamine cell loss will be the same throughout the course of the disorder. OBJECTIVE: To investigate the regional selectivity of dopamine terminal loss during the progression of PD. PARTICIPANTS: We studied 67 patients with PD and 20 healthy subjects using positron emission tomography with [(11)C](+/-)dihydrotetrabenazine (DTBZ). RESULTS: Regional values of DTBZ binding potential (calculated as maximum specific binding [B(max)] divided by the equilibrium dissociation constant K(d)) against disease duration in the putamen of PD patients were best described by a multivariate exponential model with distinct parallel asymptotic values that were significantly (P<.001) different across 4 regions of the putamen. The extent of loss of DTBZ binding potential with disease progression during the clinical stage of PD (early vs late PD) was similar between the anterior (-33%, using early PD as the baseline) and posterior (-29%) putamen. In contrast, the extent of loss of DTBZ binding potential in early PD, which reflects the cumulated loss of DTBZ binding potential from the onset of the disorder (in healthy subjects vs those with early PD), was significantly (P<.001) lower in the posterior (-58%, using healthy subjects as the baseline) than the anterior (-42%) putamen. CONCLUSION: To the extent that DTBZ positron emission tomography provides an accurate estimate of loss of dopamine neurons, our findings suggest that the mechanisms responsible for the progression of PD may not be the same as those responsible for its onset.

Aged↗

[11C]DTBZ-PET correlates of levodopa responses in asymmetric Parkinson's disease.

Levodopa effectively improves motor symptoms of Parkinson's disease. However, the beneficial effects of levodopa often erode over time with the emergence of response fluctuations. Although these response changes have been recognized from the early levodopa era, their mechanisms remain poorly understood. We investigated the role of dopamine (DA) terminal loss in the development of motor fluctuations by employing PET with [11C](+/-)dihydrotetrabenazine ([11C]DTBZ) as an in vivo marker for DA nerve terminals. Levodopa response was characterized by analysing the time-response curve to a single dose of levodopa with a finger-tapping test. PET scans were performed in 11 patients with asymmetric Parkinson's disease (age: 61.12 +/- 7.97 years; duration of Parkinson's disease: 10.55 +/- 4.53 years; mean +/- SD). Each patient performed finger-tapping tests for up to 5 h after taking a therapeutic dose of levodopa. Results showed significantly lower [11C]DTBZ binding potential (BP; Bmax/Kd) and baseline tapping rates on the more affected putamen and corresponding body side, respectively, than on the other (P = 0.003 for the former, P = 0.013 for the latter). Among the variables describing the time-response curve, the duration and early decay time were significantly shorter on the more affected side (P = 0.051 and P = 0.021, respectively). Latency to the onset and latency to 50% Emax (the magnitude of the levodopa response) were significantly longer on the more-affected side (P = 0.013 and P = 0.004, respectively). Emax was not significantly different between the two sides. The asymmetry (difference from the more affected to less affected side) of [11C]DTBZ BP in the putamen showed a highly significant correlation with the corresponding asymmetry of the estimated EC50 (levodopa concentration producing 50% of the maximal response; P = 0.022; r = -0.727), a marginally significant correlation with that of latency to the onset (P = 0.065; r = -0.583) and no significant correlation with that of the magnitude, duration or early decay time. This pattern of changes in levodopa response from the less affected to more affected side was similar to that from stable to fluctuating responders except for the latency to onset. These findings suggest a pathogenetic role for DA terminal loss in the development of motor fluctuations. However, the absence of a significant correlation between the early decay of levodopa response and DA terminal density suggests that DA terminal loss alone cannot account for the development of motor fluctuations. Therefore, our study suggests that both levodopa treatment and DA terminal loss contribute to the pathogenesis of motor fluctuations.

Aged↗

Age and severity of nigrostriatal damage at onset of Parkinson's disease.

The clinical evolution of Parkinson's disease (PD) is known to be partly dependent on the age of onset. For example, motor complications associated with chronic dopaminomimetic treatment occur more often in younger patients. However, few attempts have been made to characterize the functional pathological differences underlying this age effect. We investigated the relationship between age and severity of nigrostriatal damage at onset of PD. Twenty patients with early PD (symptom duration <or=5 years) with onset before age 50 (n = 10) and with onset after age 50 (n = 10) were studied. The two groups were compared with respect to severity of nigrostriatal damage as evaluated by positron emission tomography (PET) scanning with 6-[(18)F]fluoro-L-dopa ([(18)F]-dopa), (+/-)-alpha-[(11)C]dihydrotetrabenazine ([(11)C]DTBZ), and d-threo-[(11)C]methylphenidate ([(11)C]MP). We found no significant differences between younger- and older-onset PD patients with regard to any of the three presynaptic markers. For putamen, the P-values corresponding to the different PET measurements ranged from P = 0.34 ([(18)F]-dopa) to P = 0.79 ([(11)C]DTBZ). However, after adjusting for treatment and PD duration, regression analysis showed that [(18)F]-dopa uptake correlated positively with age of onset (r = 0.59; P = 0.010). No correlation was found between [(11)C]DTBZ and [(11)C]MP binding potentials and age of onset (P = 0.26 and P = 0.90, respectively). These data suggest that age-of-onset-dependent differences in clinical evolution are not likely to reflect early differences in nigrostriatal pathology in PD. Age-related differences in [(18)F]-dopa uptake may be related to changes in dopamine turnover.

Age of Onset↗

VMAT2 binding is elevated in dopa-responsive dystonia: visualizing empty vesicles by PET.

Dopa-responsive dystonia (DRD) is a lifelong disorder in which dopamine deficiency is not associated with neuronal loss and therefore it is an ideal human model for investigating the compensatory changes that occur in response to this biochemical abnormality. Using positron emission tomography (PET), we examined the (+/-)-alpha-[(11)C]dihydrotetrabenazine ([(11)C]DTBZ) binding potential of untreated DRD patients and normal controls. Two other PET markers of presynaptic nigrostriatal function, d-threo-[(11)C]methylphenidate ([(11)C]MP) and 6-[(18)F]fluoro-L-dopa ([(18)F]-dopa), and [(11)C]raclopride were also used in the study. We found increased [(11)C]DTBZ binding potential in the striatum of DRD patients. By contrast, no significant changes were detected in either [(11)C]MP binding potential or [(18)F]-dopa uptake rate constant. In addition, we found evidence for increased dopamine turnover in one DRD patient by examining changes in [(11)C]raclopride binding potential in relation to levodopa treatment. We propose that the increase in [(11)C]DTBZ binding likely reflects the dramatic decrease in the intravesicular concentration of dopamine that occurs in DRD; upregulation of vesicular monoamine transporter type 2 (VMAT2) expression may also contribute. Our findings suggest that the striatal expression of VMAT2 (as estimated by [(11)C]DTBZ binding) is not coregulated with dopamine synthesis. This is in keeping with a role for VMAT2 in other cellular processes (i.e., sequestration and release from the cell of potential toxic products), in addition to its importance for the quantal release of monoamines.

Adolescent↗

The role of endoscopic colon surveillance in the transplant population.

PURPOSE: Long-term immunosuppression increases the risks of developing certain malignancies. This study examines the effects of long-term immunosuppression on the development of metachronous adenomatous polyps and attempts to formulate a sound surveillance plan for these individuals. METHOD: A retrospective analysis was performed of all solid organ transplant patients at Henry Ford Hospital from 1989 to 1999, with a specific focus on endoscopic evaluation and outcomes after three years of surveillance. Comparison was made to an age-matched and gender-matched control group from the same endoscopic database. Variables were compared using the chi-squared test, Fisher's exact probability test, and Hochberg's test. RESULTS: A total of 992 solid organ transplants were performed. Two hundred twenty-nine (23 percent) of the transplant recipients underwent pretransplant colonoscopy, of which 178 patients (78 percent) were age 50 years or older. Seventy-four (32 percent) of the prescreened population had polyps, of which 45 patients (61 percent) had adenomas. Twenty-seven patients (36 percent) had synchronous polyps, of which 12 patients (16 percent) had synchronous adenomas. At 3-year follow-up 59 patients (80 percent) had metachronous polyps. Twenty-eight patients (38 percent) had metachronous adenomas. Eleven patients (15 percent) with hyperplastic polyps on initial colonoscopy developed adenomas. The control group consisted of 25 females and 50 males with a mean age of 65.5 +/- 1.1 years. Fifty-one patients (68 percent) had adenomas on endoscopy. Twenty-four patients (32 percent) had synchronous lesions, of which 13 patients (17 percent) had synchronous adenomas. Sixty-one patients (84 percent) developed metachronous lesions, of which 33 patients (43 percent) had metachronous adenomas at 3 years. There was no difference in the polyp size or histology between the two groups. There was no statistically significant difference between the transplant patients and the control group in all analyses. CONCLUSION: Because of an equivalent incidence of adenomatous polyps compared with the general population, current screening criteria should be used in patients posttransplant. Transplant patients are not more likely to develop metachronous polyps than the general population. Therefore, posttransplant polyp surveillance should not be more frequent than currently recommended for nontransplant patients with adenomatous polyps.

Adenomatous Polyps↗