Search PubMed⌕ Search

Biomedical subjects

T Miyatake

Publications and source records attributed to T Miyatake.

At least 55 records · Page 3Linked to original sources

Progressive atrophy of cerebellum and brainstem as a function of age and the size of the expanded CAG repeats in the MJD1 gene in Machado-Joseph disease.

Machado-Joseph disease (MJD) is an autosomal dominant neurodegenerative disease characterized by cerebellar ataxia associated to varying degrees with pyramidal signs, extrapyramidal signs, or peripheral amyotrophy. It is caused by unstable expansion of the CAG repeat in the MJD1 gene on chromosome 14q32.1. To determine how the neurodegenerative process in the central nervous system of patients with MJD correlates with the size of expanded CAG repeats in the MJD1 gene and other factors, we performed detailed quantitative analyses of findings of magnetic resonance imaging of the central nervous system of 21 patients with MJD of various ages and with various sizes of expanded CAG repeats. We found that atrophy of the brainstem and cerebellar vermis in MJD patients is closely correlated not only with the size of expanded CAG repeat in the MJD1 gene but also with patient age, which suggests that the neurodegenerative process in MJD is regulated by the size of expanded CAG repeats as well as by the patient age.

Adult↗

Synthetic zinc tetrapyrroles complexing with pyridine as a single axial ligand.

Zinc chlorins were prepared from chlorophyll-a. Visible spectra in benzene showed that synthetic zinc chlorins complexed with pyridine as an axial ligand to form the monopyridine adducts. The equilibrium constants for the complexation were dependent upon the chlorin structure: substitution of electron-withdrawing groups at the peripheral position enhanced the coordinated ability of the central zinc. 1H NMR spectra in benzene-d6 also indicated that single pyridine coordinated to the central zinc. Comparison of the equilibrium constant in a zinc chlorin with those of the corresponding zinc bacteriochlorin (7,8-dihydrochlorin) and porphyrin (17,18-dedihydrochlorin) led to an increase in the saturation and flexibility of the tetrapyrrole pi-plane ligands making the central zinc more axial-ligated. All the zinc tetrapyrroles in benzene complexed with pyridine to form 5-coordinated (1:1) complexes, not 6-coordinated bisadducts. The observed equilibrium constants were consistent with the energy changes of the complexation calculated from molecular modeling.

Chlorophyll↗

Application of the reversed elephant trunk technique during total thoracoabdominal replacement in patients with Marfan's syndrome.

The reversed elephant trunk operation has been applied in patients with extensive aortic involvement as a scheduled staged operation. We report application of the same technique in two patients with Marfan's syndrome. The two patients underwent total replacement of the thoracoabdominal aorta for a DeBakey IIIb aortic dissection. The proximal end of the prosthetic graft was invaginated to facilitate future proximal operation. No complication related to the trunk had been observed during the follow-up period.

Adult↗

[Long-term results of operation for acute type A aortic dissection].

We report results of surgical treatment in 30 patients with acute type A aortic dissection. The average age of the 25 patients without the Marfan syndrome was 59.2 (range 51-76), and male/female ratio was 11/14. The average age of the five patients with the Marfan syndrome was 36.8 (range 27-48), and male/female ratio was 2/3. As an adjunct, we used deep hypothermic circulatory arrest during ascending aortic replacement, while selective cerebral perfusion was employed during aortic arch replacement. Operative procedures for the non-Marfan patients included 14 ascending aortic replacement and 11 ascending and aortic arch replacement, while the Marfan patients underwent extensive aortic replacement that included three aortic arch replacement combined with the Bentall operation, one extensive replacement from the ascending aorta to the descending thoracic aorta and one ascending and aortic arch replacement. One patient died early after the operation and the early mortality rate was 3.3%. No patient developed new brain complication related to the operation. During the follow-up period, three patients died and two patients required a total of three subsequent distal operations. Cumulative survival rate was 89% at one year, 85% at three years, 85% at five years. Cumulative cardiovascular event-free rate was 89% at one year, 85% at three years, 77% at five years. Early and long-term results of surgical treatment for acute type A aortic dissection was satisfactory. This seems to result from the use of deep hypothermic circulatory arrest and selective cerebral perfusion as an adjunct and application of aortic arch replacement when the aortic arch is dilated or intimal tear is located in the aortic arch or more distally.

Aged↗

Identification and characterization of an anti-glial fibrillary acidic protein antibody with a unique specificity in a demented patient with an autoimmune disorder.

We detected an antibody to a 48 kd antigen of the central nervous system in the serum from a demented patient with an autoimmune disorder. To identify and characterize the antigen, we screened a human cerebral cDNA library and performed immunoblot analysis following two-dimensional gel electrophoresis (2-D blotting). The sequences of the isolated cDNA fragments were homologous to human glial fibrillary acidic protein (GFAP). Two-D blotting using patient serum revealed that the antibody reacted with a restricted subset of GFAP molecules which exhibited relatively high isoelectric points. Furthermore, to elucidate the importance of the anti-GFAP antibody in dementia, we screened for the presence of an anti-GFAP antibody in the sera of 46 demented patients: 26 with Alzheimer's disease and 20 with vascular dementia (VD). We found an anti-GFAP antibody in the serum of only one patient with VD. Two-D blotting revealed that the anti-GFAP antibody in the serum from the VD patient reacted with a more acidic subset of GFAP molecules compared with the anti-GFAP antibody from our patient. In conjunction with the fact that the GFAP molecule with high isoelectric point was insoluble and less degraded, these results suggested that the anti-GFAP antibody in the serum of our patient was not generated due to a secondary response to soluble and degraded GFAP which leaked through the damaged blood-brain barrier as found in the VD patient, but was generated actively on the basis of dysregulation of the immune system. Possible effects of the autoantibody on astrocytic function and the pathogenesis in dementia are discussed.

Alzheimer Disease↗

Effects of leflunomide and deoxyspergualin in the guinea pig-->rat cardiac model of delayed xenograft rejection: suppression of B cell and C-C chemokine responses but not induction of macrophage lectin.

BACKGROUND: If complement (C) activation is prevented or the host is C depleted, discordant vascularized xenografts undergo delayed xenograft rejection (DXR), characterized by graft infiltration by macrophages (MO) and natural killer (NK) cells, endothelial cell activation, and widespread fibrin deposition. Given a lack of effect of T cell-directed therapies on development of DXR, we evaluated two novel agents, 15-deoxyspergualin (DSG) and leflunomide (LEF), with reported anti-B-cell and/or anti-MO actions. METHODS: DSG and LEF were administered to C-depleted, splenectomized rat recipients of guinea pig cardiac xenografts, and their effects on graft survival and production of anti-guinea pig antibodies were determined. Serial intragraft events were studied by immunohistology using monoclonal antibodies to rat leukocytes, cytokines, and novel proteins, including rat MO lectin, which in other systems is important to MO binding, activation, and target cell killing. RESULTS: Median graft survival was 62 hr in cobra venom factor (CVF)-treated controls versus 108 hr (DSG), 129 hr (LEF), and 120 hr (DSG and LEF; all groups P<0.01 vs. CVF alone). LEF and DSG each decreased (immunoglobulin M [IgM]) or abrogated (IgG) posttransplant production of anti-guinea pig antibodies. Immunohistologic studies showed that each agent also inhibited graft infiltration by NK and T cells, and expression of various cytokines, including the chemokine monocyte chemoattractant protein-1 (MCP-1), but did not affect the tempo or extent of MO infiltration. Consistent with this, the rapid induction of MO lectin postxenografting, and induction of MO lectin by rat MO exposed to guinea pig cells in vitro, were unaffected by therapy with DSG and/or LEF. CONCLUSIONS: LEF or DSG along with CVF can result in the longest prolongation of xenograft survival yet reported in this model, in conjunction with a dampening of host mononuclear cell responses, including suppression of B cell activation. However, the persistent influx of MO in this model, despite lack of C-, Fc receptor- or apparent chemokine-dependent mechanisms, suggests the presence of additional mechanisms for cell recruitment and activation. It was of importance that, in this regard, although MO depletion is technically difficult and can lead to undesired effects, the demonstration of rapid MO lectin induction postxenografting indicates opportunities for blockade of MO recruitment and functions during DXR by use of anti-MO lectin monoclonal antibodies or administration of competing sugars.

Animals↗

Correlated responses to selection for developmental period in Bactrocera cucurbitae (Diptera: Tephritidae): time of mating and daily activity rhythms.

Comparisons of "time of mating" (the time copulation begins) between lines selected for short and long developmental periods have been made in the melon fly, Bactrocera cucurbitae. These comparisons showed that longer development periods were associated with later initiation of mating. Crosses were also made between selected lines to ascertain the genetic basis of developmental period and time of mating. Comparisons of daily activity rhythms for four types of behavior (locomotion, preening, feeding, and wing vibration) between the selected lines showed the following; (1) locomotion and preening occurred in daytime for the short developmental period lines, versus mainly at night for the long developmental period lines; (2) feeding behavior occurred in daytime for both the short and the long developmental period lines; and (3) wing vibration, a component of courtship behavior of males, occurred at dusk for the short developmental period lines and at night for the long developmental period lines.

Animals↗

Accommodation of vascularized xenografts: expression of "protective genes" by donor endothelial cells in a host Th2 cytokine environment.

Organ xenografts under certain circumstances survive in the presence of anti-graft antibodies and complement, a situation referred to as "accommodation." We find that the endothelial cells (ECs) in hamster hearts that accommodate themselves in rats express genes, such as A20 and bcl-2, that in vitro protect ECs from apoptosis and prevent upregulation in those cells of proinflammatory genes such as cytokines, procoagulant and adhesion molecules. Hearts that are rejected do not express these genes. In addition, vessels of rejected hearts show florid transplant arteriosclerosis whereas those of accommodated hearts do not. Accommodated xenografts have an ongoing T helper cell type 2 (Th2) cytokine immune response, whereas the rejected grafts have a Th1 response. We propose a model for factors that contribute to the survival of xenografts and the avoidance of transplant arteriosclerosis.

Animals↗

Genetic trade-off between early fecundity and longevity in Bactrocera cucurbitae (Diptera: Tephritidae).

The response to selection on age at reproduction was measured to test for a genetic trade-off between early fecundity and longevity in the melon fly Bactrocera cucurbitae (Coquillett). Three replicate lines were selected for propagation by breeding from young (Y-lines) and old (O-lines) adults, respectively. Selection was continued for 24 and 9 generations for Y- and O-lines, respectively. Females from O-lines lived longer than Y-line females as an indirect response to selection, indicating that longevity is a trait under genetic control. Females from Y-lines had higher fecundity early in the lifespan, a shorter preoviposition period, and a shorter prepeak fecundity period than females from O-lines. However, total fecundity did not differ between lines from the two selection regimes. These results suggest the existence of a genetic trade-off between early fecundity and longevity in the population examined, which may be controlled by pleiotropy. The larval period of the O-lines was longer than that of the Y-lines, whereas there were no significant effects of selection regime on egg hatchability or preadult survival rate. The trade-off relationship between early fecundity and longevity is discussed in relation to mass production of the melon fly for the sterile insect technique programme.

Journal Article↗

Apyrase administration prolongs discordant xenograft survival.

Platelet thrombi and vascular inflammation are prominent features of discordant xenograft rejection. The purinergic nucleotides ATP and ADP, which are secreted from platelets and released by injured endothelial cells (EC), are important mediators of these reactions. Quiescent EC express the ectoenzyme ATP-diphosphohydrolase (ATPDase; an apyrase), which exerts an important thromboregulatory function by hydrolyzing both ATP and ADP. We have shown that ATPDase activity is rapidly lost from the surface of the EC following ischemia-reperfusion injury and during xenograft rejection. The aim of this study was to supplement ATPDase activity within xenografts by infusion of soluble apyrases, and thereby validate the importance of local ATPDase activity in the modulation of xenograft rejection. Lewis rats underwent heterotopic cardiac xenografting from guinea pigs and apyrase was administered intravenously (200 U/kg) as a single dose to evaluate effects on hyperacute rejection (HAR). This initial dose was followed by a continuous apyrase infusion (8.0 U/kg/hr) directly into the graft aorta in combination with systemic cobra venom factor (CVF) administration to deplete complement when delayed xenograft rejection (DXR) was studied. Functional apyrase levels in vivo were assessed by the capacity of blood samples taken at the time of surgery and rejection to inhibit platelet aggregation in vitro. Apyrase administration significantly prolonged graft survival in HAR and DXR. Functional assays showed inhibition of platelet aggregation suggesting effective systemic antiaggregatory effects of the administered apyrases. Histologic studies showed that apyrase administration abrogated local platelet aggregation and activation in HAR and DXR. Our data demonstrate that local administration of apyrase prolonged discordant xenograft survival. These observations emphasize the potential importance of purinergic mediators in platelet activation during xenograft rejection.

Adenosine Diphosphate↗

Immunomodulatory effects of the alkaloid sinomenine in the high responder ACI-to-Lewis cardiac allograft model.

Extracts of the plant Sinomenium acutum have been used safely since ancient times in Chinese medicine for treatment of rheumatic diseases, and the purified alkaloid, sinomenine, was recently shown to have anti-inflammatory and antirheumatic effects. This study describes the effects of sinomenine in the high responder ACI-->Lewis cardiac transplant model in which allograft rejection occurred at 5 days posttransplant. Treatment with sinomenine (15-30 mg/kg/day i.p.) or a subtherapeutic dose of cyclosporine (CsA, 1.5 mg/kg/day, i.m.) prolonged allograft survival only marginally (mean survival of 5.4 and 7.8 days, respectively). In contrast, the combination of sinomenine and CsA had a statistically significant synergistic effect, with a mean survival of 42.2 days (P < 0.001). Allografts harvested at day 5 from recipients treated with either sinomenine or CsA showed dense mononuclear cell infiltrates with widespread subepicardial infarcts, edema, and microvascular platelet and fibrin deposition. Immunohistologic analysis showed that intragraft leukocytes consisted of >75% macrophages with approximately 10-20% T cells and <5% B or NK cells. Mononuclear cell activation was shown by expression of IL-2R (CD25, 10-20%) and labeling for IL-2 (approximately 10%), and IFN-gamma (10-20%), as well as TNF-alpha (>50%) and iNOS (>50%), but only low levels of IL-4 or IL-10 (<5%). Intragraft endothelial cells were activated, as shown by upregulation of MHC class II antigen and ICAM-1 (CD54) compared with only basal levels in normal donors hearts. Combined sinomenine/CsA therapy significantly enhanced graft morphology, resulting in only mild mononuclear cell infiltration, and an absence of infarcts, platelets, or fibrin deposition. Though residual intragraft mononuclear cells at day 5, as in control grafts, consisted primarily of macrophages plus small numbers of IL-2R+ T cells, these cells lacked expression of IL-2, had only low levels of IFN-gamma, but showed dense labeling for IL-4 and IL-10. In addition, TNF-alpha and iNOS were reduced to basal levels and no endothelial cell activation was observed, despite high titers of endothelium-bound IgM, IgG, and C3. Mitogen-induced in vitro proliferation of rat thymocytes was also more effectively decreased by the sinomenine/CsA combination than by either agent alone. These studies demonstrate the therapeutic value of sinomenine in transplantation, and indicate that this agent has novel and interesting antimacrophage, T cell, and endothelial effects that warrant further evaluation.

Adjuvants, Immunologic↗

T cell independence of macrophage and natural killer cell infiltration, cytokine production, and endothelial activation during delayed xenograft rejection.

Rejection of guinea pig cardiac grafts in rats depleted of complement takes place in 3-4 days and involves progressive mononuclear cell infiltration and cytokine expression, fibrin and antibody deposition, and endothelial cell up-regulation of adhesion and procoagulant molecules, a process termed delayed xenograft rejection (DXR). The relative contribution of each effector mechanism and the role of T cells in this complex process are unknown, although small numbers of interleukin (IL) 2 receptor-positive T cells are present at the time of rejection. We investigated the importance of T cells in DXR by comparing discordant xenograft responses of nude rats, which lack T cell receptor (TCR)-alpha/beta+ cells, with those of normal Lewis rats. Nude or Lewis rats receiving guinea pig cardiac grafts were assigned to one of three groups: no therapy, daily administration of cobra venom factor (CVF), or splenectomy plus daily CVF. All untreated rats rejected their xenografts within 10-15 min, whereas grafts in complement-depleted recipients survived a further 3-4 days; splenectomy had no significant additional effect upon graft survival. Immunohistologic analysis in CVF-treated nude recipients with or without splenectomy showed: (1) considerable leukocyte infiltration of xenografts (mean +/- SD, 76+/-14 and 71+/-16 leukocytes/field, respectively, at 72 hr, compared with 68+/-17 in Lewis rats), consisting largely of macrophages (>75% of total leukocytes) plus small numbers of natural killer cells (10-20%) with no detectable B or T cells (TCR-alpha/beta or TCR-gamma/delta); (2) at least 10-fold lower levels of intragraft IgM or IgG deposition than in corresponding Lewis recipients; and (3) considerable cytokine expression by intragraft macrophages (IL-12, tumor necrosis factor-alpha, monocyte chemoattractant protein-1, IL-1beta, IL-6, IL-7, IL-12) and natural killer cells (interferon-gamma), as well as up-regulation of tissue factor expression and dense fibrin deposition. Analysis of recipient sera of both control and nude rats by ELISA, for the binding of IgG or IgM to guinea pig platelets, showed a rapid rise after transplantation in the titers of IgM and IgG antibodies, which was abrogated by prior splenectomy; i.e., data from splenectomized xenograft recipients reflect the presence of only basal levels of IgM and IgG. Thus, our data in nude rats show rejection times and intragraft features of DXR comparable to those in immunocompetent Lewis recipients, despite a lack of detectable host T cells, and, in the case of splenectomized rats, only about one tenth of normal xenoreactive antibody levels. Our data document a new model in which to analyze the immunopathogenesis of DXR.

Animals↗

Phorbol-12,13-dibutyrate and pinacidil cardioplegia. Novel forms of myoprotection.

BACKGROUND: Activation of either protein kinase C or the ATP-sensitive potassium channel has been shown to induce the preconditioning response. METHODS AND RESULTS: To investigate whether preconditioning activation adjuvant to hypothermic blood cardioplegia enhances postischemic contractile recovery, 23 adult (0.5 to 1.0 year old) sheep were randomized to receive cardioplegia based on the hyperpolarizing ATP-sensitive potassium channel opener pinacidil, the protein kinase C activator 4 beta-phorbol-12, 13-dibutyrate (PDBu), or standard potassium-magnesium (K1/Mg2+). All groups underwent 60 minutes of 10 degrees C antegrade intermittent blood cardioplegia and 30 minutes of reperfusion. Mechanics were assessed on modified right heart bypass by the preload recruitable stroke work relation and the end-systolic pressure-volume relation. Diastolic function was modeled by the exponential time constant of isovolumic left ventricular pressure decay (Tau) and the "stiffness" coefficient (beta) of the end-diastolic pressure volume relation. Recovery rhythm was defined by the first electrical activity seen during reperfusion. Cardioplegic arrest and preconditioning induced by pinacidil provided superior recovery of contractile function compared with PDBu (100% versus 57% recovery, P < .05) or K+/Mg+ (100% versus 56% recovery, P < .05). Active (Tau) and passive (beta) diastolic function was preserved by all three arrest modalities. Hearts treated with pinacidil demonstrated a rapid recovery of a coordinated contraction pattern, which was offset by a reperfusion tachycardia, whereas PDBu arrest was associated with ventricular fibrillation on reperfusion. CONCLUSIONS: Preconditioning during cardioplegic arrest is agent specific, feasible at cold temperatures, and may be superior to the use of standard K+/Mg2+ cardioplegia.

Animals↗

Effect of repetitive high-dose treatment with soluble complement receptor type 1 and cobra venom factor on discordant xenograft survival.

Hyperacute xenograft rejection may be modified by the activation and depletion of complement (C) using cobra venom factor (CVF). This method of prolonging xenograft survival is toxic and associated with systemic inflammation, which may potentially contribute to the pathologic features of delayed xenograft rejection. Soluble complement receptor type 1 (sCR1) inhibits both the classical and alternative C pathways and thus limits the production of proinflammatory products such as the anaphylatoxins. Hence, we investigated the effects of various sCR1 and CVF regimens, and combinations thereof, in the discordant guinea pig-to-Lewis rat cardiac xenograft model. Mean graft survival time (MST) was significantly prolonged with repetitive dosing (MST=22 hr) or continuous infusion of sCR1 (MST=32 hr) as compared with unmodified controls (MST=15 min). However, sCR1 did not prevent intragraft deposition of C3 or neutrophil infiltration and resulted in only partial inhibition of C-mediated hemolytic activity in vitro. Grafts in rats treated with a single dose of CVF (MST=67 hr) or repetitive doses of CVF (MST=69 hr) survived significantly longer than those treated with sCR1 alone, and lacked C3 deposition or neutrophil accumulation. Sera from these animals were completely depleted of C-mediated hemolytic activity. Animals treated with a single dose of CVF, or sCRI plus a single dose of CVF (MST=64 hr), had similar xenograft survival times. However, immunohistologic studies showed that addition of sCR1 to a single dose of CVF resulted in decreased macrophage activation and reduced levels of cytokines (tumor necrosis factor-alpha and interleukin-1beta) within xenografts as compared with that in recipients treated with CVF alone. Such decreased macrophage activation may result from the binding of C4b by sCR1, since combination therapy was associated with decreased intragraft C4b as compared with either therapy alone. High doses of sCR1 were well tolerated by rats and significantly prolonged discordant xenograft survival (MST=32 hr), although not to the same extent as CVF. The modification of the intragraft immune responses seen with CVF/sCR1 combination therapy may augment further therapeutic manipulations to achieve discordant xenograft survival without the attendant toxicity associated with repeated CVF administration.

Animals↗

Loss of rat glomerular ATP diphosphohydrolase activity during reperfusion injury is associated with oxidative stress reactions.

Endothelial cell ATP diphosphohydrolases or ATPDases degrade extracellular inflammatory mediators ATP and ADP, thus inhibiting the formation of platelet thrombi, but the modulation of these ecto-enzymes during vascular injury remains largely undetermined. Renal glomerular ATPDase levels were determined in the rat following ischemia-reperfusion or systemic complement activation, by direct biochemical methods and histochemistry. Ischemia followed by reperfusion times over 30 min were associated with loss of glomerular ATPDase activity. Cobra Venom Factor (CVF) inhibited ATPDase activity and potentiated the deleterious effects of reperfusion. Treatment with either soluble complement receptor type 1 (sCR1), an inhibitor of complement activation, or antioxidants prior to the ischemia-reperfusion was largely protective. Expression of rat glomerular ATPDase activity appears susceptible to the inflammatory injury associated with systemic complement activation and ischemia/reperfusion processes. Oxidative stress could, at least in part, result in the loss of ATPDase activity and thus thrombotic consequences of vascular injury.

Adenosine Diphosphate↗

Changes of growth inhibitory factor after stab wounds in rat brain.

The growth inhibitory factor (GIF) is a new metallothionein (MT)-like protein that is downregulated in Alzheimer's disease (AD) brain. The biological function of GIF has not been fully clarified yet. We have raised an antibody to the synthetic polypeptide that is specific for rat GIF. The purified antibody reacted to recombinant GIF and native rat GIF but not to MT or maltose-binding protein. Using the antibody and GIF cDNA probe, we investigated changes of GIF and GIF mRNA by Western and Northern blotting techniques in rat brains after stab wounds. The levels of GIF and GIF mRNA began to increase 4 days postoperation, reached a maximum at 14-21 days and sustained the increased level at least through 28 days. While both glial fibrillary acidic protein (GFAP) and GIF were recognized in astrocytes, the increases of these 2 proteins after stab wounds showed different patterns. The results indicated that GIF could play an important role in the repair after brain damage and also produce new insights into the mechanism of gliosis investigated mainly from the viewpoint of GFAP.

Alzheimer Disease↗

N-linked oligosaccharide of beta-amyloid precursor protein (beta APP) of C6 glioma cells: putative regulatory role in beta APP processing.

To determine the N-linked oligosaccharide structure of beta-amyloid precursor protein (beta APP), soluble derivative of beta APP (APPs) was purified from the conditioned medium of beta APP cDNA-transfected C6 glioma cells. Two types of APPs with different molecular weight (larger APPs, L-APPs; smaller APPs, S-APPs) were obtained. The antibody against the N-terminal half of amyloid beta-protein showed no immunoreactivity with S-APPs, suggesting extensive truncation at the carboxyl terminus. From lectin blot analysis, the main structure of the N-linked oligosaccharide shared by L- and S-APPs was deduced to be of bi- or triantennary complex type with a fucosylated trimannosyl core and a bisecting GlcNAc residue. Additionally L-APPs was deduced to have Gal beta 1-->4GlcNAc, Fuc alpha 1-->2Gal beta and Sia alpha 2-->6Gal beta structures on its outer chains. However, lectins which recognize Fuc alpha 1-->2Gal beta and Sia alpha 2-->6Gal beta structures showed no reactivity with S-APPs. The present results suggest that the processing of beta APP may be regulated via the heterogeneity in the fine structure of its sugar chains.

Amyloid beta-Protein Precursor↗