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1.
Vaccine ; 40(30): 4017-4025, 2022 06 26.
Article in English | MEDLINE | ID: mdl-35654621

ABSTRACT

Since 2019, severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) infection resulting in the coronavirus disease 2019 (COVID-19) has afflicted hundreds of millions of people in a worldwide pandemic. Several safe and effective COVID-19 vaccines are now available. However, the rapid emergence of variants and risk of viral escape from vaccine-induced immunity emphasize the need to develop broadly protective vaccines. A recombinant plant-derived virus-like particle vaccine for the ancestral COVID-19 (CoVLP) recently authorized by Canadian Health Authorities and a modified CoVLP.B1351 targeting the B.1.351 variant (both formulated with the adjuvant AS03) were assessed in homologous and heterologous prime-boost regimen in mice. Both strategies induced strong and broadly cross-reactive neutralizing antibody (NAb) responses against several Variants of Concern (VOCs), including B.1.351/Beta, B.1.1.7/Alpha, P.1/Gamma, B.1.617.2/Delta and B.1.1.529/Omicron strains. The neutralizing antibody (NAb) response was robust with both primary vaccination strategies and tended to be higher for almost all VOCs following the heterologous prime-boost regimen.


Subject(s)
COVID-19 , Vaccines, Virus-Like Particle , Animals , Antibodies, Neutralizing , Antibodies, Viral , COVID-19/prevention & control , COVID-19 Vaccines , Canada , Humans , Mice , SARS-CoV-2/genetics , Spike Glycoprotein, Coronavirus/genetics , Vaccines, Virus-Like Particle/genetics
2.
Reprod Toxicol ; 107: 69-80, 2022 01.
Article in English | MEDLINE | ID: mdl-34838689

ABSTRACT

Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) infection resulting in the coronavirus disease 2019 (COVID-19) has afflicted tens of millions of people in a worldwide pandemic. A recently developed recombinant Plant-Derived Virus-Like Particle Vaccine candidate for COVID-19 (CoVLP) formulated with AS03 has been shown to be well-tolerated and highly immunogenic in healthy adults. Since the target population for the vaccine includes women of childbearing potential, the objective of the study was to evaluate any untoward prenatal and postnatal effects of AS03-adjuvanted CoVLP administered intramuscularly to Sprague-Dawley female rats before cohabitation for mating (22 and 8 days prior) and during gestation (Gestation Days [GD] 6 and 19). The embryo-fetal development (EFD) cohort was subjected to cesarean on GD 21 and the pre/post-natal (PPN) cohort was allowed to naturally deliver. Effects of AS03-adjuvanted CoVLP was evaluated on pregnant rats, embryo-fetal development (EFD), during parturition, lactation and the development of the F1 offspring up to weaning Vaccination with AS03-adjuvanted CoVLP induced an antibody response in F0 females and anti-SARS-CoV-2 spike-specific maternal antibodies were detected in the offspring at the end of the gestation and lactation periods. Overall, there was no evidence of untoward effects of AS03-adjuvanted CoVLP on the fertility or reproductive performance of the vaccinated F0 females. There was no evidence of untoward effects on embryo-fetal development (including teratogenicity), or early (pre-weaning) development of the F1 offspring. These results support the acceptable safety profile of the AS03-adjuvanted CoVLP vaccine for administration to women of childbearing potential.


Subject(s)
COVID-19 Vaccines , COVID-19/prevention & control , Embryonic Development/drug effects , Fertility/drug effects , Fetal Development/drug effects , Polysorbates/administration & dosage , Squalene/administration & dosage , Vaccines, Virus-Like Particle/administration & dosage , alpha-Tocopherol/administration & dosage , Animals , Animals, Newborn , Antibodies, Viral/blood , Drug Combinations , Female , Immunoglobulin G/blood , Maternal-Fetal Exchange , Pregnancy , Rats, Sprague-Dawley , Recombinant Proteins/immunology , SARS-CoV-2/immunology , Spike Glycoprotein, Coronavirus/genetics , Spike Glycoprotein, Coronavirus/immunology , Nicotiana/genetics
3.
Mol Pharm ; 16(2): 583-594, 2019 02 04.
Article in English | MEDLINE | ID: mdl-30609376

ABSTRACT

The transferrin receptor (TfR) is highly expressed by brain capillary endothelial cells (BCECs) forming the blood-brain barrier (BBB) and is therefore considered as a potential target for brain drug delivery. Monoclonal antibodies binding to the TfR, such as clone Ri7, have been shown to internalize into BCECs in vivo. However, since Alzheimer's disease (AD) is accompanied by a BBB dysfunction, it raises concerns about whether TfR-mediated transport becomes inefficient during the progression of the disease. Measurements of TfR levels using Western blot analysis in whole homogenates from human post-mortem parietal cortex and hippocampus did not reveal any significant difference between individuals with or without a neuropathological diagnosis of AD (respectively, n = 19 and 22 for the parietal cortex and n = 12 and 14 for hippocampus). Similarly, TfR concentrations in isolated human brain microvessels from parietal cortex were similar between controls and AD cases. TfR levels in isolated murine brain microvessels were not significantly different between groups of 12- and 18-month-old NonTg and 3xTg-AD mice, the latter modeling Aß and τ neuropathologies. In situ brain perfusion assays were then conducted to measure the brain uptake and internalization of fluorolabeled Ri7 in BCECs upon binding. Consistently, TfR-mediated uptake in BCECs was similar between 3xTg-AD mice and nontransgenic controls (∼0.3 µL·g-1·s-1) at 12, 18, and 22 months of age. Fluorescence microscopy analysis following intravenous administration of fluorolabeled Ri7 highlighted that the signal from the antibody was widely distributed throughout the cerebral vasculature but not in neurons or astrocytes. Overall, our data suggest that both TfR protein levels and TfR-dependent internalization mechanisms are preserved in the presence of Aß and τ neuropathologies, supporting the potential of TfR as a vector target for drug delivery into BCECs in AD.


Subject(s)
Alzheimer Disease/metabolism , Blood-Brain Barrier/metabolism , Receptors, Transferrin/metabolism , Animals , Antibodies, Monoclonal/metabolism , Blotting, Western , Enzyme-Linked Immunosorbent Assay , Female , Fluorescent Antibody Technique , Hippocampus/metabolism , Male , Mice , Microscopy, Fluorescence , Neuropathology , Parietal Lobe/metabolism
4.
J Cereb Blood Flow Metab ; 36(4): 731-42, 2016 Apr.
Article in English | MEDLINE | ID: mdl-26661181

ABSTRACT

Receptors located on brain capillary endothelial cells forming the blood-brain barrier are the target of most brain drug delivery approaches. Yet, direct subcellular evidence of vectorized transport of nanoformulations into the brain is lacking. To resolve this question, quantum dots were conjugated to monoclonal antibodies (Ri7) targeting the murine transferrin receptor. Specific transferrin receptor-mediated endocytosis of Ri7-quantum dots was first confirmed in N2A and bEnd5 cells. After intravenous injection in mice, Ri7-quantum dots exhibited a fourfold higher volume of distribution in brain tissues, compared to controls. Immunofluorescence analysis showed that Ri7-quantum dots were sequestered throughout the cerebral vasculature 30 min, 1 h, and 4 h post injection, with a decline of signal intensity after 24 h. Transmission electron microscopic studies confirmed that Ri7-quantum dots were massively internalized by brain capillary endothelial cells, averaging 37 ± 4 Ri7-quantum dots/cell 1 h after injection. Most quantum dots within brain capillary endothelial cells were observed in small vesicles (58%), with a smaller proportion detected in tubular structures or in multivesicular bodies. Parenchymal penetration of Ri7-quantum dots was extremely low and comparable to control IgG. Our results show that systemically administered Ri7-quantum dots complexes undergo extensive endocytosis by brain capillary endothelial cells and open the door for novel therapeutic approaches based on brain endothelial cell drug delivery.


Subject(s)
Capillaries/metabolism , Endothelial Cells/metabolism , Endothelium, Vascular/metabolism , Quantum Dots/metabolism , Animals , Blood-Brain Barrier/ultrastructure , Capillaries/cytology , Capillaries/ultrastructure , Cell Line , Cerebrovascular Circulation , Endocytosis , Endothelial Cells/ultrastructure , Endothelium, Vascular/cytology , Endothelium, Vascular/ultrastructure , Immunoglobulin G/metabolism , Male , Mice , Mice, Inbred BALB C , Nanoparticles , Rats , Receptors, Transferrin/biosynthesis , Receptors, Transferrin/genetics , Tissue Distribution
5.
Neurobiol Dis ; 82: 397-408, 2015 Oct.
Article in English | MEDLINE | ID: mdl-26253607

ABSTRACT

The accumulation of insoluble amyloid-beta (Aß) peptides is associated with neurodegenerative disorders, such as Alzheimer's disease (AD). As essential tremor (ET) could involve neurodegenerative processes in the cerebellum, we quantified soluble and insoluble Aß in cerebellar cortices from patients diagnosed with ET (n=9), compared to Controls (n=16) or individuals with Parkinson's disease (n=10). Although ante-mortem cognitive performance was not documented, all individuals included had the diagnosis of AD ruled out by a neuropathologist. ELISA-determined concentrations of insoluble Aß42 in ET patients displayed a bimodal distribution, with a median 246-fold higher than in Controls (P<0.01, Kruskal-Wallis). Higher Aß42 concentrations were measured in the parietal cortex of the same ET patients, compared to Controls (107-fold median increase, P<0.01, Kruskal-Wallis), but similar phosphorylated tau levels were detected. The rise in cerebellar insoluble Aß42 concentrations is not associated to APP expression and processing or the ApoE4 status. However, Aß42 levels in ET individuals were correlated with cerebellar insoluble phosphorylated tau (r(2)=0.71, P=0.005), unphosphorylated neurofilament heavy chain (NF-H; r(2)=0.50, P=0.030) and Lingo-1 (r(2)=0.73, P=0.007), indicative of a generalized neurodegenerative process involving the cerebellum. Our results suggest prevalent accumulations of insoluble Aß42 in the cerebellum of ET, but not in age-matched PD. Whether this anomaly plays a role in ET symptoms warrants further investigations.


Subject(s)
Amyloid beta-Peptides/metabolism , Amyloid beta-Protein Precursor/metabolism , Cerebellar Cortex/metabolism , Essential Tremor/metabolism , Peptide Fragments/metabolism , Aged , Aged, 80 and over , Alzheimer Disease/metabolism , Apolipoprotein E4/metabolism , Female , Humans , Male , Membrane Proteins/metabolism , Nerve Tissue Proteins/metabolism , Neurofilament Proteins/metabolism , Parietal Lobe/metabolism , Parkinson Disease/metabolism , Phosphorylation , Purkinje Cells/metabolism , Temporal Lobe/metabolism , tau Proteins/metabolism
6.
Mov Disord ; 29(13): 1637-47, 2014 Nov.
Article in English | MEDLINE | ID: mdl-24531928

ABSTRACT

Essential tremor (ET) is the most prevalent adult-onset movement disorder. Despite its health burden, no clear pathognomonic sign has been identified to date because of the rarity of clinicopathological studies. Moreover, treatment options are still scarce and have not significantly changed in the last 30 years, underscoring the urgent need to develop new treatment avenues. In the recent years, leucine-rich repeat (LRR) and immunoglobulin (Ig) domain-containing Nogo receptor-interacting proteins 1 and 2 (LINGO1 and LINGO2, respectively) have been increasingly regarded as possible ET modulators due to emerging genetic association studies linking LINGO with ET. We have investigated LINGO protein and messenger RNA (mRNA) expression in the cerebellum of patients with ET, patients with Parkinson's disease (PD), and a control group using Western immunoblotting and in situ hybridization. Protein levels of LINGO1, but not LINGO2, were significantly increased in the cerebellar cortex of ET patients compared with controls, particularly in individuals with longer disease duration. Compared with controls, LINGO1 protein levels were increased in the cerebellar white matter of PD and ET patients but, for the latter, only when disease duration exceeded 20 years. However, no alteration in LINGO1 mRNA was observed between groups in either the cerebellar cortex or the white matter. We observed alterations in LINGO expression in diseased brain that seemed to progress along with the disease, being initiated in the cerebellar cortex before reaching the white matter. Because LINGO up-regulation has been identified as a potential pathological response to ongoing neurodegenerative processes, the present data suggest that LINGO1 is a potential drug target for ET.


Subject(s)
Cerebellum/metabolism , Essential Tremor/pathology , Gene Expression Regulation/physiology , Membrane Proteins/metabolism , Nerve Tissue Proteins/metabolism , Aged , Aged, 80 and over , Cerebellum/pathology , Female , Humans , Male , Membrane Proteins/genetics , Middle Aged , Nerve Tissue Proteins/genetics , RNA, Messenger/metabolism , White Matter/metabolism , White Matter/pathology
7.
Mol Pharm ; 11(1): 243-53, 2014 Jan 06.
Article in English | MEDLINE | ID: mdl-24215184

ABSTRACT

Monoclonal antibodies (mAbs) targeting blood-brain barrier (BBB) transporters are being developed for brain drug targeting. However, brain uptake quantification remains a challenge, particularly for large compounds, and often requires the use of radioactivity. In this work, we adapted an in situ brain perfusion technique for a fluorescent mAb raised against the mouse transferrin receptor (TfR) (clone Ri7). We first confirmed in vitro that the internalization of fluorolabeled Ri7 mAbs is saturable and dependent on the TfR in N2A and bEnd5 cells. We next showed that the brain uptake coefficient (Clup) of 100 µg (∼220 nM) of Ri7 mAbs fluorolabeled with Alexa Fluor 750 (AF750) was 0.27 ± 0.05 µL g(-1) s(-1) after subtraction of values obtained with a control IgG. A linear relationship was observed between the distribution volume VD (µL g(-1)) and the perfusion time (s) over 30-120 s (r(2) = 0.997), confirming the metabolic stability of the AF750-Ri7 mAbs during perfusion. Co-perfusion of increasing quantities of unlabeled Ri7 decreased the AF750-Ri7 Clup down to control IgG levels over 500 nM, consistent with a saturable mechanism. Fluorescence microscopy analysis showed a vascular distribution of perfused AF750-Ri7 in the brain and colocalization with a marker of basal lamina. To our knowledge, this is the first reported use of the in situ brain perfusion technique combined with quantification of compounds labeled with near-infrared fluorophores. Furthermore, this study confirms the accumulation of the antitransferrin receptor Ri7 mAb in the brain of mice through a saturable uptake mechanism.


Subject(s)
Antibodies, Monoclonal/administration & dosage , Brain/metabolism , Drug Delivery Systems , Genetic Vectors/administration & dosage , Neuroblastoma/drug therapy , Receptors, Transferrin/immunology , Animals , Antibodies, Monoclonal/immunology , Antibodies, Monoclonal/pharmacokinetics , Blood-Brain Barrier/drug effects , Blotting, Western , Brain/drug effects , Fluorescent Antibody Technique , Genetic Vectors/immunology , Genetic Vectors/pharmacokinetics , Male , Mice , Mice, Inbred BALB C , Neuroblastoma/immunology , Neuroblastoma/metabolism , Perfusion , Tissue Distribution , Tumor Cells, Cultured
8.
Brain ; 135(Pt 1): 105-16, 2012 Jan.
Article in English | MEDLINE | ID: mdl-22120148

ABSTRACT

The development of new treatments for essential tremor, the most frequent movement disorder, is limited by a poor understanding of its pathophysiology and the relative paucity of clinicopathological studies. Here, we report a post-mortem decrease in GABA(A) (35% reduction) and GABA(B) (22-31% reduction) receptors in the dentate nucleus of the cerebellum from individuals with essential tremor, compared with controls or individuals with Parkinson's disease, as assessed by receptor-binding autoradiography. Concentrations of GABA(B) receptors in the dentate nucleus were inversely correlated with the duration of essential tremor symptoms (r(2) = 0.44, P < 0.05), suggesting that the loss of GABA(B) receptors follows the progression of the disease. In situ hybridization experiments also revealed a diminution of GABA(B(1a+b)) receptor messenger RNA in essential tremor (↓27%). In contrast, no significant changes of GABA(A) and GABA(B) receptors (protein and messenger RNA), GluN2B receptors, cytochrome oxidase-1 or GABA concentrations were detected in molecular or granular layers of the cerebellar cortex. It is proposed that a decrease in GABA receptors in the dentate nucleus results in disinhibition of cerebellar pacemaker output activity, propagating along the cerebello-thalamo-cortical pathways to generate tremors. Correction of such defective cerebellar GABAergic drive could have a therapeutic effect in essential tremor.


Subject(s)
Cerebellar Nuclei/metabolism , Essential Tremor/metabolism , Receptors, GABA-A/metabolism , Receptors, GABA-B/metabolism , Aged , Aged, 80 and over , Autoradiography , Essential Tremor/genetics , Female , Humans , Male , Parkinson Disease/genetics , Parkinson Disease/metabolism , Receptors, GABA-A/genetics , Receptors, GABA-B/genetics
9.
Mol Pharmacol ; 80(1): 32-9, 2011 Jul.
Article in English | MEDLINE | ID: mdl-21454448

ABSTRACT

The development of vectors for drug delivery to the central nervous system remains a major pharmaceutical challenge. Here, we have characterized the brain distribution of two monoclonal antibodies (MAbs) targeting the mouse transferrin receptor (TfR) (clones Ri7 and 8D3) compared with control IgGs after intravenous injection into mice. MAbs were fluorolabeled with either Alexa Fluor (AF) dyes 647 or 750. Intravenous injection of Ri7 or 8D3 MAb coupled with AF750 led to higher fluorescence emission in brain homogenates compared with control IgGs, indicating retention in the brain. Fluorescence microscopy analysis revealed that AF647-Ri7 signal was confined to brain cerebrovasculature, colocalizing with an antibody against collagen IV, a marker of basal lamina. Confocal microscopy analysis confirmed the delivery of injected Ri7 MAb into brain endothelial cells using the pericyte marker anti-α-smooth muscle actin, the endothelial marker CD31, and the collagen IV antibody. No evidence of colocalization was detected with neurons or astrocytes identified using antibodies specific for neuronal nuclei or glial fibrillary acidic protein, respectively. Our data show that anti-TfR vectors injected intravenously readily accumulate into brain capillary endothelial cells, thus displaying strong drug-targeting potential.


Subject(s)
Antibodies, Monoclonal/administration & dosage , Brain/blood supply , Receptors, Transferrin/immunology , Animals , Antibodies, Monoclonal/immunology , Antibodies, Monoclonal/pharmacokinetics , Endothelium, Vascular/cytology , Endothelium, Vascular/metabolism , Fluorescence , Fluorescent Antibody Technique , Immunoglobulin G/administration & dosage , Injections, Intravenous , Male , Mice , Mice, Inbred BALB C , Microscopy, Confocal
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