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Yukio Ando

Publications and source records attributed to Yukio Ando.

64 records · Page 4Linked to original sources

Advanced glycation end products (AGE) and the receptor for AGE are present in gastrointestinal tract of familial amyloidotic polyneuropathy patients but do not induce NF-kappaB activation.

Familial amyloidotic polyneuropathy (FAP), Portuguese type, is a hereditary amyloidosis caused by mutated transthyretin (ATTR) in which an exchange of valine for methionine at position 30 has taken place (ATTR Val30Met). Gastrointestinal complications, such as nausea, diarrhoea and malabsorption, have a significant impact on survival since the cause of death in the majority of cases is a consequence of extreme malnutrition due to dysmotility of the gastrointestinal tract. Recently, a role of the receptor for advanced glycation end products (RAGE) has been implicated in amyloid toxicity. Transthyretin (TTR) amyloid fibrils have been shown to have affinity for RAGE and subsequently induce NF-kappaB activation and apoptosis. Since gastrointestinal dysfunction plays an important role in FAP, we wanted to investigate if amyloid toxicity in the gastrointestinal tract is related to RAGE, NF-kappaB activation and apoptosis. Gastrointestinal tract autopsy samples were studied for the distribution of amyloid, RAGE, advanced glycation end products (AGE) and NF-kappaB. Furthermore, we examined the immunoreactivity of an apoptotic marker to investigate if an apoptotic pathway contributes to amyloid toxicity. The distribution of RAGE and AGE strongly correlated to that of amyloid deposits. Sequential immunofluorescence staining revealed a clear relationship between TTR, AGE and RAGE. No correlation between NF-kappaB, apoptotic marker and amyloid deposits was found. We conclude that RAGE-AGE or RAGE-TTR interaction might play important roles for gastrointestinal dysfunction and amyloid toxicity, although not through NF-kappaB activation and apoptosis.

Adult↗

Decreased thermodynamic stability as a crucial factor for familial amyloidotic polyneuropathy.

A single mutation in the wild-type transthyretin (WT TTR) such as V30M causes a familial amyloidotic polyneuropathy disease. Comparison of the three-dimensional crystal structures of WT and V30M does not tell much about the reason. High-pressure NMR revealed that at neutral pH both WT and V30M exist as equilibrium between the native tetramer and the dissociated/unfolded monomer. The native tetramer is highly stable in WT (deltaG(0)=104 kJ/mol at 37 degrees C, pH 7.1), but the stability is significantly reduced in V30M (deltadeltaG(0)=-18 kJ/mol), increasing the fraction of the unfolded monomer by a 1000-fold. Significant reduction of thermodynamic stability of WT TTR by mutation could be a crucial factor for familial amyloidotic polyneuropathy.

Amyloid Neuropathies, Familial↗

Familial transthyretin-type amyloid polyneuropathy in Japan: clinical and genetic heterogeneity.

Familial amyloid polyneuropathy (FAP) was once considered a disease peculiar to endemic areas, but it is now recognized not to be a rare disease among hereditary neuropathic disorders in Japan. FAP in Japan, the majority of which is caused by transthyretin (TTR)-related amyloid deposition, shows a wide spectrum of clinical pictures. This variability can be explained on the basis of the many causative gene mutations of TTR, but even in the same TTR type of FAP, the clinical phenotypes seem to vary in different kindreds or individuals. Especially in the case of the Val30Met TTR type, the sex ratio and the age at onset are considerably different between patients in endemic foci and those in nonendemic areas. It is also noteworthy that serious cardiac amyloidosis is commonly seen in patients with FAP of the non-Val30Met TTR type. In addition to TTR gene mutation, unknown factors may play an important role in the development of FAP. At present, liver transplantation is the only life-saving treatment, but this therapy is always associated with great stress for the patient and the donor, particularly in living-related transplantation. Less invasive treatments for this disease are required.

Amyloid↗

Presence of autoantibody against ATTR Val30Met after sequential liver transplantation.

BACKGROUND: Recently, sequential liver transplantation has been performed with an explanted liver from a patient with familial amyloidotic polyneuropathy (FAP) because of the shortage of donors. However, metabolism of amyloidogenic transthyretin (ATTR), the pathogenic protein of FAP, has not been well studied in patients who have undergone sequential liver transplantation. The purpose of this study was to examine the changes in serum ATTR levels and to investigate the presence of an autoantibody in patients who underwent sequential liver transplantation with an explanted organ from a patient with heterozygotic FAP (FAP ATTR Val30Met). METHODS: This was a case study performed at the Kumamoto University School of Medicine, Kumamoto, Japan, and Kyoto University School of Medicine, Kyoto, Japan. Intervention occurred by sequential liver transplantation with an explanted FAP patient's liver. Levels of normal TTR and ATTR in the two patients who received the transplanted liver were analyzed by means of an enzyme-linked immunosorbent assay (ELISA) and a matrix-assisted laser desorption/time-of-flight mass spectrometry. In addition, the presence of an autoantibody against ATTR Val30Met was evaluated via ELISA using purified ATTR Val30Met from homozygotic FAP patients' sera. RESULTS: After the operation, the variant TTR levels were unexpectedly lower than levels of normal TTR in serum samples from patients with a transplanted liver from the FAP patient. An autoantibody against the variant TTR was detected on day 3 after the operation in the serum of those patients and continued to be present for at least 2 months after the operation. CONCLUSIONS: An autoantibody against the variant TTR may reduce the serum levels of variant TTR. Although the antibody may play a beneficial role in reducing the pathogenic protein, the long-term effect of the antibody must be investigated further.

Adolescent↗

Type I (transthyretin Met30) familial amyloid polyneuropathy in Japan: early- vs late-onset form.

BACKGROUND: Type I (transthyretin Met30) familial amyloid polyneuropathy (FAP TTR Met30) occurs in 2 endemic foci in Japan. We have also reported late-onset Japanese cases unrelated to an endemic focus and showing distinctive clinicopathologic features. OBJECTIVE: To compare clinical and geographic features of FAP TTR Met30 between patients with onset before and after 50 years of age. DESIGN AND SETTING: Clinical information was obtained through a nationwide survey by the Study Group for Hereditary Neuropathy in Japan. RESULTS: Families with early-onset disease in this study numbered 82, and those with late onset, 59. In families with late onset, neuropathy showed male preponderance, low penetrance, little relationship to endemic foci, sensorimotor symptoms beginning distally in the lower extremities with disturbance of both superficial and deep sensation, and relatively mild autonomic symptoms. Families with early onset showed higher penetrance, concentration in endemic foci, predominant loss of superficial sensation, severe autonomic dysfunction, and atrioventricular nodal block requiring pacemaker implantation. CONCLUSIONS: This study confirmed differences in clinical and geographic features between early- and late-onset FAP TTR Met30. Late-onset cases may be more prevalent and widespread than previously believed.

Adult↗

Amyloid formation in rat transthyretin: effect of oxidative stress.

BACKGROUND: Transgenic mice carrying a human mutant transthyretin (TTR) gene are too small for in vivo experiments. It is necessary to have rat TTR protein and its antibody to overcome this problem. METHODS: Posttranslational modification of purified TTR was analyzed by means of matrix-assisted laser desorption ionization/time-of-flight mass spectrometry (MALDI/TOF-MS). Production of amyloid fibrils in vitro was confirmed by thioflavin T test and electron microscopy. Amyloidogenicity of rat TTR from rats with or without challenging paraquat was compared in vitro by thioflavin T test. RESULTS: MALDI/TOF-MS for rat TTR revealed three major modified forms-sulfate-conjugated, Cys-conjugated and glutathione-conjugated-in addition to the unconjugated (free) form of TTR. Although rat TTR in buffer of pH 7.0 could not make amyloid fibrils, rat TTR at pH 2.0-3.5 significantly formed amyloid fibrils, as confirmed by the thioflavin T test and electron microscopy. TTR purified from rats administered 4 mg/kg of paraquat formed much more amyloid fibrils than that from normal rats at pH 2.0-3.5 and significant amyloid fibrils were confirmed even at pH 7.0. CONCLUSIONS: Rat TTR may be a valuable experimental tool for examination of the amyloidogenicity of senile systemic amyloidosis (SSA) as well as familial amyloidotic polyneuropathy (FAP) both in vitro and in vivo.

Amyloid↗

A novel localized amyloidosis associated with lactoferrin in the cornea.

We report a novel localized amyloidosis associated with lactoferrin. To elucidate the precursor protein of corneal amyloidosis associated with trichiasis, we analyzed amyloid deposits from three patients by histopathology and biochemistry. Amyloid deposits showed immunoreactivity, confirmed by electron microscopy, for only anti-human lactoferrin antibody. Electrophoresis of amyloid fibrils revealed lactoferrin with and without sugar chains; N-terminal sequence analysis revealed full-length lactoferrin and a truncated tripeptide of N-terminal amino acids, Gly-Arg-Arg. Carboxymethylated wild-type lactoferrin formed amyloid fibrils in vitro. Lactoferrin gene analysis in the three patients revealed a Glu561Asp mutation in all of the patients and a compound heterozygote of Ala11Thr and Glu561Asp mutations in one patient. A heterozygotic Glu561Asp mutation appeared in 44.8% of healthy Japanese volunteers, suggesting that the mutation may not be an essential mutation for amyloid formation (p = 0.104). Results thus suggest that lactoferrin is this precursor protein.

Adult↗

Presence of variant transthyretin in aqueous humor of a patient with familial amyloidotic polyneuropathy after liver transplantation.

To determine the origin of transthyretin (TTR) in the aqueous humor of patients with familial amyloidotic polyneuropathy (FAP), we measured TTR levels and analyzed the TTR forms in the aqueous humor of three FAP patients (one patient; liver transplanted, and two patients; non-transplanted). The total TTR levels were almost the same as reported previously in non-transplanted patients and slightly increased in a transplanted patient. Analyses with mass spectrometry in the two non-transplanted FAP ATTR V30M patients revealed that both wild type and variant TTR forms were detected in their aqueous humor samples. Moreover, variant TTR forms could be detected in the aqueous humor of the transplanted patient while the liver produced no variant TTR. These results suggest that variant TTR in aqueous humor may be derived from retina where TTR was produced. In conclusion, TTR metabolism may occur in its own ocular cycle and variant TTR produced by the retina may play an important role in amyloid formation in the ocular tissues of FAP patients.

Adult↗

Amyloid deposition in ocular tissues of patients with familial amyloidotic polyneuropathy (FAP).

It is known that the severity of ocular symptoms does not always correlate with the systemic symptoms in patients with familial amyloidotic polyneuropathy (FAP ATTR V30M). The ocular tissues may have their own TTR metabolic system. The aim of this study is to clarify the distribution of amyloid deposition in the ocular tissues and to investigate the relationship between ocular symptoms and histopathological changes. We analyzed histopathologically 9 autopsied eyes taken from 3 Japanese and 6 Swedish patients with FAP ATTR V30M. Localization of amyloid deposition varied among the different cases, but there were some tendencies in the distribution. The degree of amyloid deposition in the ocular tissues was not always correlated with the duration of the disease. The frequency of amyloid deposition in the conjunctiva, iris, trabecular meshwork and vitreous body were 88.9%, 44.4%, 11.1% and 11.1% respectively in the 9 patients. These frequencies in the histopathological changes correlated with the frequencies in the clinical ocular manifestations as previously reported.

Adult↗

[Genetic tests in the neurological disorders].

Most of the genetic tests for infectious diseases have few ethical problems and directly link to treatments. On the other hand, there are many problems in performing genetic tests for hereditary neurological disorders without essential treatments. Patients who undergo a genetic test usually get few benefits when they have a positive result. Moreover, the results may influence on their family members' daily lives. Therefore, we should be careful in genetic testing of the hereditary neurological disorders, and perform sufficient informed consent, genetic counseling of the patients and their family members, and precise standardization.

Genetic Counseling↗