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1.
ACS Chem Neurosci ; 15(10): 2058-2069, 2024 05 15.
Article in English | MEDLINE | ID: mdl-38652895

ABSTRACT

Amyloid plaques composed of fibrils of misfolded Aß peptides are pathological hallmarks of Alzheimer's disease (AD). Aß fibrils are polymorphic in their tertiary and quaternary molecular structures. This structural polymorphism may carry different pathologic potencies and can putatively contribute to clinical phenotypes of AD. Therefore, mapping of structural polymorphism of Aß fibrils and structural evolution over time is valuable to understanding disease mechanisms. Here, we investigated how Aß fibril structures in situ differ in Aß plaque of different mouse models expressing familial mutations in the AßPP gene. We imaged frozen brains with a combination of conformation-sensitive luminescent conjugated oligothiophene (LCO) ligands and Aß-specific antibodies. LCO fluorescence mapping revealed that mouse models APP23, APPPS1, and AppNL-F have different fibril structures within Aß-amyloid plaques depending on the AßPP-processing genotype. Co-staining with Aß-specific antibodies showed that individual plaques from APP23 mice expressing AßPP Swedish mutation have two distinct fibril polymorph regions of core and corona. The plaque core is predominantly composed of compact Aß40 fibrils, and the corona region is dominated by diffusely packed Aß40 fibrils. Conversely, the AßPP knock-in mouse AppNL-F, expressing the AßPP Iberian mutation along with Swedish mutation has tiny, cored plaques consisting mainly of compact Aß42 fibrils, vastly different from APP23 even at elevated age up to 21 months. Age-dependent polymorph rearrangement of plaque cores observed for APP23 and APPPS1 mice >12 months, appears strongly promoted by Aß40 and was hence minuscule in AppNL-F. These structural studies of amyloid plaques in situ can map disease-relevant fibril polymorph distributions to guide the design of diagnostic and therapeutic molecules.


Subject(s)
Amyloid beta-Peptides , Amyloid beta-Protein Precursor , Plaque, Amyloid , Animals , Humans , Mice , Aging/metabolism , Aging/pathology , Alzheimer Disease/metabolism , Alzheimer Disease/pathology , Alzheimer Disease/genetics , Amyloid beta-Peptides/metabolism , Amyloid beta-Peptides/genetics , Amyloid beta-Protein Precursor/genetics , Amyloid beta-Protein Precursor/metabolism , Brain/metabolism , Brain/pathology , Disease Models, Animal , Mice, Transgenic , Mutation , Plaque, Amyloid/metabolism , Plaque, Amyloid/pathology , Protein Conformation
2.
J Youth Adolesc ; 53(6): 1355-1369, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38580891

ABSTRACT

Anxiety symptoms and sleep problems typically emerge during adolescence and are frequently intertwined. However, there is a dearth of knowledge concerning their reciprocal influence and whether physical activity might play a protective role in this relationship. The present study aims at filling this gap exploring also the moderating role of sex. 915 13-year-old Swedish adolescents (56% girls) answered a survey conducted four times: at ages 13 (T1), 16 (T2), 19 (T3), and 22 (T4). A random intercept cross-lagged panel model was used. At within-levels, sleep problems and anxiety symptoms had a bidirectional positive association in middle adolescence. Vigorous physical activity and anxiety symptoms showed a reciprocal negative association from middle adolescence. Vigorous physical activity and sleep problems were reciprocally associated only in late adolescence. Associations were the same for girls and boys. This study demonstrated that the relations between anxiety symptoms, sleep problems, and vigorous physical activity cannot be understood without adopting a developmental perspective and that middle adolescence is a crucial period to plan interventions to reduce anxiety symptoms and sleep problems.


Subject(s)
Anxiety , Exercise , Sleep Wake Disorders , Humans , Adolescent , Female , Male , Sweden , Exercise/psychology , Sleep Wake Disorders/psychology , Anxiety/psychology , Young Adult , Sex Factors , Longitudinal Studies , Surveys and Questionnaires , Adolescent Behavior/psychology
3.
ACS Chem Neurosci ; 15(7): 1581-1595, 2024 04 03.
Article in English | MEDLINE | ID: mdl-38523263

ABSTRACT

Aggregated species of amyloid-ß (Aß) are one of the pathological hallmarks in Alzheimer's disease (AD), and ligands that selectively target different Aß deposits are of great interest. In this study, fluorescent thiophene-based ligands have been used to illustrate the features of different types of Aß deposits found in AD brain tissue. A dual-staining protocol based on two ligands, HS-276 and LL-1, with different photophysical and binding properties, was developed and applied on brain tissue sections from patients affected by sporadic AD or familial AD associated with the PSEN1 A431E mutation. When binding to Aß deposits, the ligands could easily be distinguished for their different fluorescence, and distinct staining patterns were revealed for these two types of AD. In sporadic AD, HS-276 consistently labeled all immunopositive Aß plaques, whereas LL-1 mainly stained cored and neuritic Aß deposits. In the PSEN1 A431E cases, each ligand was binding to specific types of Aß plaques. The ligand-labeled Aß deposits were localized in distinct cortical layers, and a laminar staining pattern could be seen. Biochemical characterization of the Aß aggregates in the individual layers also showed that the variation of ligand binding properties was associated with certain Aß peptide signatures. For the PSEN1 A431E cases, it was concluded that LL-1 was binding to cotton wool plaques, whereas HS-276 mainly stained diffuse Aß deposits. Overall, our findings showed that a combination of ligands was essential to identify distinct aggregated Aß species associated with different forms of AD.


Subject(s)
Alzheimer Disease , Humans , Alzheimer Disease/metabolism , Thiophenes/chemistry , Ligands , Amyloid beta-Peptides/metabolism , Brain/metabolism , Plaque, Amyloid/metabolism
4.
Int J Mol Sci ; 25(4)2024 Feb 09.
Article in English | MEDLINE | ID: mdl-38396782

ABSTRACT

Amyloid-ß (Aß) proteotoxicity is associated with Alzheimer's disease (AD) and is caused by protein aggregation, resulting in neuronal damage in the brain. In the search for novel treatments, Drosophila melanogaster has been extensively used to screen for anti-Aß proteotoxic agents in studies where toxic Aß peptides are expressed in the fly brain. Since drug molecules often are administered orally there is a risk that they fail to reach the brain, due to their inability to cross the brain barrier. To circumvent this problem, we have designed a novel Drosophila model that expresses the Aß peptides in the digestive tract. In addition, a built-in apoptotic sensor provides a fluorescent signal from the green fluorescent protein as a response to caspase activity. We found that expressing different variants of Aß1-42 resulted in proteotoxic phenotypes such as reduced longevity, aggregate deposition, and the presence of apoptotic cells. Taken together, this gut-based Aß-expressing fly model can be used to study the mechanisms behind Aß proteotoxicity and to identify different substances that can modify Aß proteotoxicity.


Subject(s)
Alzheimer Disease , Animals , Alzheimer Disease/genetics , Alzheimer Disease/metabolism , Drosophila/metabolism , Drosophila melanogaster/metabolism , Amyloid beta-Peptides/genetics , Gastrointestinal Tract/metabolism , Disease Models, Animal
5.
Alzheimers Res Ther ; 16(1): 4, 2024 01 02.
Article in English | MEDLINE | ID: mdl-38167557

ABSTRACT

BACKGROUND: Amyloid beta (Aß) deposits and hyperphosphorylated tau (p-tau) accumulation have been identified in the retina of Alzheimer's disease (AD) patients and transgenic AD mice. Previous studies have shown that retinal microglia engulf Aß, but this property decreases in AD patients. Whether retinal microglia also take up p-tau and if this event is affected in AD is yet not described. In the current study, we use the p-tau-specific thiophene-based ligand bTVBT2 to investigate the relationship between disease progression and p-tau uptake by microglia in the retina of AD patients and AppNL-F/NL-F knock-in mice, an AD mouse model known to demonstrate extracellular Aß plaques and dystrophic neurites in the brain from 6 months of age. METHODS: Evaluation of bTVBT2 specificity and its presence within microglia was assessed by immunofluorescent staining of hippocampal sections and flat-mount retina samples from non-demented controls, AD patients, 3-, 9-, and 12-month-old AppNL-F/NL-F knock-in mice and 12- and 18-month-old wild type (WT) mice. We used ImageJ to analyze the amount of bTVBT2 inside Iba1-positive microglia. Co-localization between the ligand and p-tau variant Ser396/Ser404 (PHF-1), Aß, phosphorylated TAR DNA binding protein 43 (pTDP-43), and islet amyloid polypeptide (IAPP) in the brain and retina was analyzed using confocal imaging. RESULTS: Confocal imaging analysis showed that bTVBT2 binds to PHF-1- and AT8-positive aggregates inside retinal microglia, and not to Aß, pTDP-43, or IAPP. The density of bTVBT2-positive microglia was higher in cases with a high Aß load compared to those with a low Aß load. This density correlated with the neurofibrillary tangle load in the brain, but not with retinal levels of high molecular weight (aggregated) Aß40 or Aß42. Analysis of AppNL-F/NL-F knock-in mouse retina further showed that 50% of microglia in 3-month-old AppNL-F/NL-F knock-in mice contained bTVBT2. The percentage significantly increased in 9- and 12-month-old mice. CONCLUSION: Our study suggests that the microglial capability to uptake p-tau in the retina persists and intensifies with AD progression. These results also highlight bTVBT2 as a ligand of interest in future monitoring of retinal AD pathology.


Subject(s)
Alzheimer Disease , Mobile Applications , Humans , Mice , Animals , Infant , Alzheimer Disease/pathology , Amyloid beta-Peptides/metabolism , Microglia/metabolism , Ligands , Mice, Transgenic , Plaque, Amyloid/pathology , Disease Models, Animal , Amyloid beta-Protein Precursor/genetics , tau Proteins/genetics , tau Proteins/metabolism
6.
Mol Neurodegener ; 19(1): 6, 2024 Jan 18.
Article in English | MEDLINE | ID: mdl-38238819

ABSTRACT

BACKGROUND: Reactive oxidative stress is a critical player in the amyloid beta (Aß) toxicity that contributes to neurodegeneration in Alzheimer's disease (AD). Damaged mitochondria are one of the main sources of reactive oxygen species and accumulate in Aß plaque-associated dystrophic neurites in the AD brain. Although Aß causes neuronal mitochondria reactive oxidative stress in vitro, this has never been directly observed in vivo in the living mouse brain. Here, we tested for the first time whether Aß plaques and soluble Aß oligomers induce mitochondrial oxidative stress in surrounding neurons in vivo, and whether this neurotoxic effect can be abrogated using mitochondrial-targeted antioxidants. METHODS: We expressed a genetically encoded fluorescent ratiometric mitochondria-targeted reporter of oxidative stress in mouse models of the disease and performed intravital multiphoton microscopy of neuronal mitochondria and Aß plaques. RESULTS: For the first time, we demonstrated by direct observation in the living mouse brain exacerbated mitochondrial oxidative stress in neurons after both Aß plaque deposition and direct application of soluble oligomeric Aß onto the brain, and determined the most likely pathological sequence of events leading to oxidative stress in vivo. Oxidative stress could be inhibited by both blocking calcium influx into mitochondria and treating with the mitochondria-targeted antioxidant SS31. Remarkably, the latter ameliorated plaque-associated dystrophic neurites without impacting Aß plaque burden. CONCLUSIONS: Considering these results, combination of mitochondria-targeted compounds with other anti-amyloid beta or anti-tau therapies hold promise as neuroprotective drugs for the prevention and/or treatment of AD.


Subject(s)
Alzheimer Disease , Amyloid beta-Peptides , Mice , Animals , Amyloid beta-Peptides/metabolism , Alzheimer Disease/metabolism , Oxidative Stress/physiology , Antioxidants/pharmacology , Antioxidants/metabolism , Oxidation-Reduction , Mitochondria/metabolism , Disease Models, Animal
7.
Occup Med (Lond) ; 74(1): 63-70, 2024 02 19.
Article in English | MEDLINE | ID: mdl-37133767

ABSTRACT

BACKGROUND: Foreign-born workers in high-income countries experience higher rates of COVID-19 but the causes are only partially known. AIMS: To examine if the occupational risk of COVID-19 in foreign-born workers deviates from the risk in native-born employees in Denmark. METHODS: Within a registry-based cohort of all residents employed in Denmark (n = 2 451 542), we identified four-digit DISCO-08 occupations associated with an increased incidence of COVID-19-related hospital admission during 2020-21 (at-risk occupations). The sex-specific prevalence of at-risk employment in foreign born was compared with the prevalence in native born. Moreover, we examined if the country of birth modified the risk of a positive SARS-CoV-2 polymerase chain reaction (PCR) test and COVID-19-related hospital admission in at-risk occupations. RESULTS: Workers born in low-income countries and male workers from Eastern Europe more often worked in at-risk occupations (relative risks between 1.16 [95% confidence interval {CI} 1.14-1.17] and 1.87 [95% CI 1.82-1.90]). Being foreign-born modified the adjusted risk of PCR test positivity (test for interaction P < 0.0001), primarily because of higher risk in at-risk occupations among men born in Eastern European countries (incidence rate ratio [IRR] 2.39 [95% CI 2.09-2.72] versus IRR 1.19 [95% CI 1.14-1.23] in native-born men). For COVID-19-related hospital admission, no overall interaction was seen, and in women, country of birth did not consistently modify the occupational risk. CONCLUSIONS: Workplace viral transmission may contribute to an excess risk of COVID-19 in male workers born in Eastern Europe, but most foreign-born employees in at-risk occupations seem not to be at higher occupational risk than native born.


Subject(s)
COVID-19 , Humans , Male , Female , COVID-19/epidemiology , SARS-CoV-2 , Occupations , Workplace , Denmark/epidemiology
8.
Ann Oncol ; 34(11): 1015-1024, 2023 11.
Article in English | MEDLINE | ID: mdl-37657554

ABSTRACT

BACKGROUND: The optimal time to surgery (TTS) after neoadjuvant chemoradiotherapy (nCRT) for oesophageal cancer is unknown and has traditionally been 4-6 weeks in clinical practice. Observational studies have suggested better outcomes, especially in terms of histological response, after prolonged delay of up to 3 months after nCRT. The NeoRes II trial is the first randomised trial to compare standard to prolonged TTS after nCRT for oesophageal cancer. PATIENTS AND METHODS: Patients with resectable, locally advanced oesophageal cancer were randomly assigned to standard delay of surgery of 4-6 weeks or prolonged delay of 10-12 weeks after nCRT. The primary endpoint was complete histological response of the primary tumour in patients with adenocarcinoma (AC). Secondary endpoints included histological tumour response, resection margins, overall and progression-free survival in all patients and stratified by histologic type. RESULTS: Between February 2015 and March 2019, 249 patients from 10 participating centres in Sweden, Norway and Germany were randomised: 125 to standard and 124 to prolonged TTS. There was no significant difference in complete histological response between AC patients allocated to standard (21%) compared to prolonged (26%) TTS (P = 0.429). Tumour regression, resection margins and number of resected lymph nodes, total and metastatic, did not differ between the allocated interventions. The first quartile overall survival in patients allocated to standard TTS was 26.5 months compared to 14.2 months after prolonged TTS (P = 0.003) and the overall risk of death during follow-up was 35% higher after prolonged delay (hazard ratio 1.35, 95% confidence interval 0.94-1.95, P = 0.107). CONCLUSION: Prolonged TTS did not improve histological complete response or other pathological endpoints, while there was a strong trend towards worse survival, suggesting caution in routinely delaying surgery for >6 weeks after nCRT.


Subject(s)
Adenocarcinoma , Esophageal Neoplasms , Humans , Adenocarcinoma/drug therapy , Adenocarcinoma/surgery , Chemoradiotherapy , Esophageal Neoplasms/drug therapy , Esophageal Neoplasms/surgery , Margins of Excision , Neoadjuvant Therapy , Progression-Free Survival , Time-to-Treatment
9.
PLoS Pathog ; 19(9): e1011487, 2023 09.
Article in English | MEDLINE | ID: mdl-37747931

ABSTRACT

Select prion diseases are characterized by widespread cerebral plaque-like deposits of amyloid fibrils enriched in heparan sulfate (HS), a abundant extracellular matrix component. HS facilitates fibril formation in vitro, yet how HS impacts fibrillar plaque growth within the brain is unclear. Here we found that prion-bound HS chains are highly sulfated, and that the sulfation is essential for accelerating prion conversion in vitro. Using conditional knockout mice to deplete the HS sulfation enzyme, Ndst1 (N-deacetylase / N-sulfotransferase) from neurons or astrocytes, we investigated how reducing HS sulfation impacts survival and prion aggregate distribution during a prion infection. Neuronal Ndst1-depleted mice survived longer and showed fewer and smaller parenchymal plaques, shorter fibrils, and increased vascular amyloid, consistent with enhanced aggregate transit toward perivascular drainage channels. The prolonged survival was strain-dependent, affecting mice infected with extracellular, plaque-forming, but not membrane bound, prions. Live PET imaging revealed rapid clearance of recombinant prion protein monomers into the CSF of neuronal Ndst1- deficient mice, neuronal, further suggesting that HS sulfate groups hinder transit of extracellular prion protein monomers. Our results directly show how a host cofactor slows the spread of prion protein through the extracellular space and identify an enzyme to target to facilitate aggregate clearance.


Subject(s)
Neurons , Prion Diseases , Prions , Sulfotransferases , Animals , Mice , Heparitin Sulfate/metabolism , Mice, Knockout , Neurons/enzymology , Prion Diseases/metabolism , Prion Proteins/genetics , Prions/metabolism , Sulfotransferases/genetics , Sulfotransferases/metabolism
10.
ACS Appl Bio Mater ; 6(9): 3790-3797, 2023 09 18.
Article in English | MEDLINE | ID: mdl-37647213

ABSTRACT

There is an urgent need for simple and non-invasive identification of live neural stem/progenitor cells (NSPCs) in the developing and adult brain as well as in disease, such as in brain tumors, due to the potential clinical importance in prognosis, diagnosis, and treatment of diseases of the nervous system. Here, we report a luminescent conjugated oligothiophene (LCO), named p-HTMI, for non-invasive and non-amplified real-time detection of live human patient-derived glioblastoma (GBM) stem cell-like cells and NSPCs. While p-HTMI stained only a small fraction of other cell types investigated, the mere addition of p-HTMI to the cell culture resulted in efficient detection of NSPCs or GBM cells from rodents and humans within minutes. p-HTMI is functionalized with a methylated imidazole moiety resembling the side chain of histidine/histamine, and non-methylated analogues were not functional. Cell sorting experiments of human GBM cells demonstrated that p-HTMI labeled the same cell population as CD271, a proposed marker for stem cell-like cells and rapidly migrating cells in glioblastoma. Our results suggest that the LCO p-HTMI is a versatile tool for immediate and selective detection of neural and glioma stem and progenitor cells.


Subject(s)
Brain Neoplasms , Glioblastoma , Neural Stem Cells , Adult , Humans , Glioblastoma/diagnosis , Brain , Brain Neoplasms/diagnosis , Adapalene
11.
EMBO Rep ; 24(8): e57003, 2023 08 03.
Article in English | MEDLINE | ID: mdl-37424505

ABSTRACT

Misfolded Aß is involved in the progression of Alzheimer's disease (AD). However, the role of its polymorphic variants or conformational strains in AD pathogenesis is not fully understood. Here, we study the seeding properties of two structurally defined synthetic misfolded Aß strains (termed 2F and 3F) using in vitro and in vivo assays. We show that 2F and 3F strains differ in their biochemical properties, including resistance to proteolysis, binding to strain-specific dyes, and in vitro seeding. Injection of these strains into a transgenic mouse model produces different pathological features, namely different rates of aggregation, formation of different plaque types, tropism to specific brain regions, differential recruitment of Aß40 /Aß42 peptides, and induction of microglial and astroglial responses. Importantly, the aggregates induced by 2F and 3F are structurally different as determined by ssNMR. Our study analyzes the biological properties of purified Aß polymorphs that have been characterized at the atomic resolution level and provides relevant information on the pathological significance of misfolded Aß strains.


Subject(s)
Alzheimer Disease , Amyloid beta-Peptides , Mice , Animals , Amyloid beta-Peptides/metabolism , Alzheimer Disease/genetics , Alzheimer Disease/metabolism , Mice, Transgenic , Plaque, Amyloid/metabolism , Plaque, Amyloid/pathology , Proteolysis
12.
Acta Neuropathol ; 146(2): 211-226, 2023 08.
Article in English | MEDLINE | ID: mdl-37351604

ABSTRACT

Two siblings with deletion mutation ∆K281 in MAPT developed frontotemporal dementia. At autopsy, numerous inclusions of hyperphosphorylated 3R Tau were present in neurons and glial cells of neocortex and some subcortical regions, including hippocampus, caudate/putamen and globus pallidus. The inclusions were argyrophilic with Bodian silver, but not with Gallyas-Braak silver. They were not labelled by an antibody specific for tau phosphorylated at S262 and/or S356. The inclusions were stained by luminescent conjugated oligothiophene HS-84, but not by bTVBT4. Electron cryo-microscopy revealed that the core of tau filaments was made of residues K254-F378 of 3R Tau and was indistinguishable from that of Pick's disease. We conclude that MAPT mutation ∆K281 causes Pick's disease.


Subject(s)
Frontotemporal Dementia , Pick Disease of the Brain , Humans , Pick Disease of the Brain/genetics , Silver , tau Proteins/genetics , tau Proteins/chemistry , Frontotemporal Dementia/genetics , Neurons , Mutation/genetics
13.
Science ; 380(6645): 656-658, 2023 May 12.
Article in English | MEDLINE | ID: mdl-37167392

ABSTRACT

A tidal disruption event (TDE) occurs when a supermassive black hole rips apart a passing star. Part of the stellar material falls toward the black hole, forming an accretion disk that in some cases launches a relativistic jet. We performed optical polarimetry observations of a TDE, AT 2020mot. We find a peak linear polarization degree of 25 ± 4%, consistent with highly polarized synchrotron radiation, as is typically observed from relativistic jets. However, our radio observations, taken up to 8 months after the optical peak, do not detect the corresponding radio emission expected from a relativistic jet. We suggest that the linearly polarized optical emission instead arises from shocks that occur during accretion disk formation, as the stream of stellar material collides with itself.

14.
J Alzheimers Dis ; 93(2): 411-419, 2023.
Article in English | MEDLINE | ID: mdl-37038807

ABSTRACT

BACKGROUND: Early detection of amyloid-ß (Aß) aggregates is a critical step to improve the treatment of Alzheimer's disease (AD) because neuronal damage by the Aß aggregates occurs before clinical symptoms are apparent. We have previously shown that luminescent conjugated oligothiophenes (LCOs), which are highly specific towards protein aggregates of Aß, can be used to fluorescently label amyloid plaque in living rodents. OBJECTIVE: We hypothesize that the LCO can be used to target gadolinium to the amyloid plaque and hence make the plaque detectable by T1-weighted magnetic resonance imaging (MRI). METHODS: A novel LCO-gadolinium construct was synthesized to selectively bind to Aß plaques and give contrast in conventional T1-weighted MR images after intravenous injection in Tg-APPSwe mice. RESULTS: We found that mice with high plaque-burden could be identified using the LCO-Gd constructs by conventional MRI. CONCLUSION: Our study shows that MR imaging of amyloid plaques is challenging but feasible, and hence contrast-mediated MR imaging could be a valuable tool for early AD detection.


Subject(s)
Alzheimer Disease , Mice , Animals , Alzheimer Disease/metabolism , Plaque, Amyloid/pathology , Gadolinium/metabolism , Mice, Transgenic , Amyloid beta-Peptides/metabolism , Magnetic Resonance Imaging/methods , Disease Models, Animal , Brain/pathology
15.
Chembiochem ; 24(11): e202300044, 2023 06 01.
Article in English | MEDLINE | ID: mdl-36891883

ABSTRACT

The development of ligands for detecting protein aggregates is of great interest, as these aggregated proteinaceous species are the pathological hallmarks of several devastating diseases, including Alzheimer's disease. In this regard, thiophene-based ligands have emerged as powerful tools for fluorescent assessment of these pathological entities. The intrinsic conformationally sensitive photophysical properties of poly- and oligothiophenes have allowed optical assignment of disease-associated protein aggregates in tissue sections, as well as real-time in vivo imaging of protein deposits. Herein, we recount the chemical evolution of different generations of thiophene-based ligands, and exemplify their use for the optical distinction of polymorphic protein aggregates. Furthermore, the chemical determinants for achieving a superior fluorescent thiophene-based ligand, as well as the next generation of thiophene-based ligands targeting distinct aggregated species are described. Finally, the directions for future research into the chemical design of thiophene-based ligands that can aid in resolving the scientific challenges around protein aggregation diseases are discussed.


Subject(s)
Alzheimer Disease , Protein Aggregates , Humans , Ligands , Thiophenes , Alzheimer Disease/metabolism , Proteins , Fluorescent Dyes , Amyloid beta-Peptides/metabolism
16.
Res Sq ; 2023 Feb 08.
Article in English | MEDLINE | ID: mdl-36798327

ABSTRACT

Background: The apolipoprotein E (APOE, gene; apoE, protein) ε4 allele is the most common identified genetic risk factor for typical late-onset sporadic Alzheimer's disease (AD). Each APOE ε4 allele roughly triples the relative risk for AD compared to that of the reference allele, APOE ε3. Methods: We have employed hyperspectral fluorescence imaging with an amyloidspecific, conformation-sensing probe, p-FTAA, to elucidate protein aggregate structure and morphology in fresh frozen prefrontal cortex samples from human postmortem AD brain tissue samples from patients homozygous for either APOE ε3 or APOE ε4. Results: As expected APOE ε4/ε4 tissues had significantly larger load of CAA than APOE ε3/ε3. APOE isoform-dependent morphological differences in amyloid plaques were also observed. Amyloid plaques in APOE ε3/ε3 tissue had small spherical cores and large corona while amyloid plaques in APOE ε4/ε4 tissues had large irregular and multilobulated plaques with relatively smaller corona. Despite the different morphologies of their cores, the p-FTAA stained APOE ε3/ε3 amyloid plaque cores had spectral properties identical to those of APOE ε4/ε4 plaque cores. Conclusions: These data support the hypothesis that one mechanism by which the APOE ε4 allele affects AD is by modulating the macrostructure of pathological protein deposits in brain. APOE ε4 is associated with a higher density of amyloid plaques (as compared to APOE ε3). We speculate that multilobulated APOE ε4-associated plaques arise from multiple initiation foci that coalesce as the plaques grow.

17.
Chemistry ; 29(21): e202203568, 2023 Apr 13.
Article in English | MEDLINE | ID: mdl-36645413

ABSTRACT

The aggregation and accumulation of proteins in the brain is the defining feature of many devastating neurodegenerative diseases. The development of fluorescent ligands that bind to these accumulations, or deposits, is essential for the characterization of these neuropathological lesions. We report the synthesis of donor-acceptor-donor (D-A-D) thiophene-based ligands with different emission properties. The D-A-D ligands displayed selectivity towards distinct disease-associated protein deposits in histological sections from postmortem brain tissue of individuals affected by Alzheimer's disease (AD). The ability of the ligands to selectively identify AD-associated pathological alterations, such as deposits composed of aggregates of the amyloid-ß (Aß) peptide or tau, was reduced when the chemical composition of the ligands was altered. When combining the D-A-D ligands with conventional thiophene-based ligands, superior spectral separation of distinct protein aggregates in AD tissue sections was obtained. Our findings provide the structural and functional basis for the development of new fluorescent ligands that can distinguish between aggregated proteinaceous species, as well as offer novel strategies for developing multiplex fluorescence detection of protein aggregates in tissue sections.


Subject(s)
Alzheimer Disease , Humans , Alzheimer Disease/metabolism , Protein Aggregates , Thiophenes/chemistry , Ligands , Amyloid beta-Peptides/chemistry , Brain/metabolism , tau Proteins/metabolism
18.
EMBO Mol Med ; 15(1): e16789, 2023 01 11.
Article in English | MEDLINE | ID: mdl-36382364

ABSTRACT

Many efforts targeting amyloid-ß (Aß) plaques for the treatment of Alzheimer's Disease thus far have resulted in failures during clinical trials. Regional and temporal heterogeneity of efficacy and dependence on plaque maturity may have contributed to these disappointing outcomes. In this study, we mapped the regional and temporal specificity of various anti-Aß treatments through high-resolution light-sheet imaging of electrophoretically cleared brains. We assessed the effect on amyloid plaque formation and growth in Thy1-APP/PS1 mice subjected to ß-secretase inhibitors, polythiophenes, or anti-Aß antibodies. Each treatment showed unique spatiotemporal Aß clearance, with polythiophenes emerging as a potent anti-Aß compound. Furthermore, aligning with a spatial-transcriptomic atlas revealed transcripts that correlate with the efficacy of each Aß therapy. As observed in this study, there is a striking dependence of specific treatments on the location and maturity of Aß plaques. This may also contribute to the clinical trial failures of Aß-therapies, suggesting that combinatorial regimens may be significantly more effective in clearing amyloid deposition.


Subject(s)
Alzheimer Disease , Microscopy , Mice , Animals , Mice, Transgenic , Amyloid beta-Peptides/metabolism , Alzheimer Disease/drug therapy , Brain/metabolism , Plaque, Amyloid/drug therapy , Disease Models, Animal , Amyloid beta-Protein Precursor , Presenilin-1/pharmacology
19.
Chempluschem ; 88(1): e202200262, 2023 01.
Article in English | MEDLINE | ID: mdl-36173143

ABSTRACT

Biomimetic chiral optoelectronic materials can be utilized in electronic devices, biosensors and artificial enzymes. Herein, this work reports the chiro-optical properties and architectural arrangement of optoelectronic materials generated from self-assembly of initially nonchiral oligothiophene-porphyrin derivatives and random coil synthetic peptides. The photo-physical- and structural properties of the materials were assessed by absorption-, fluorescence- and circular dichroism spectroscopy, as well as dynamic light scattering, scanning electron microscopy and theoretical calculations. The materials display a three-dimensional ordered helical structure and optical activity that are observed due to an induced chirality of the optoelectronic element upon interaction with the peptide. Both these properties are influenced by the chemical composition of the oligothiophene-porphyrin derivative, as well as the peptide sequence. We foresee that our findings will aid in developing self-assembled optoelectronic materials with dynamic architectonical accuracies, as well as offer the possibility to generate the next generation of materials for a variety of bioelectronic applications.


Subject(s)
Biomimetic Materials , Porphyrins , Porphyrins/chemistry , Peptides/chemistry , Amino Acid Sequence , Microscopy, Electron, Scanning
20.
European J Org Chem ; 26(41)2023 Nov 02.
Article in English | MEDLINE | ID: mdl-38585413

ABSTRACT

Distinct aggregated proteins are correlated with numerous neurodegenerative diseases and the development of ligands that selectively detect these pathological hallmarks is vital. Recently, the synthesis of thiophene-based optical ligands, denoted bi-thiophene-vinyl-benzothiazoles (bTVBTs), that could be utilized for selective assignment of tau pathology in brain tissue with Alzheime's disease (AD) pathology, was reported. Herein, we investigate the ability of these ligands to selectively distinguish tau deposits from aggregated amyloid-ß (Aß), the second AD associated pathological hallmark, when replacing the terminal thiophene moiety with other heterocyclic motifs. The selectivity for tau pathology was reduced when introducing specific heterocyclic motifs, verifying that specific molecular interactions between the ligands and the aggregates are necessary for selective detection of tau deposits. In addition, ligands having certain heterocyclic moieties attached to the central thiophene-vinylene building block displayed selectivity to aggregated Aß pathology. Our findings provide chemical insights for the development of ligands that can distinguish between aggregated proteinaceous species consisting of different proteins and might also aid in creating novel agents for clinical imaging of tau pathology in AD.

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