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1.
Bioanalysis ; 2024 Mar 20.
Article in English | MEDLINE | ID: mdl-38506259

ABSTRACT

Background: Measuring pharmacodynamic biomarkers near the therapeutic site of action presents considerable challenges for sites with limited matrix volume or difficult access. Bioanalytical method qualification requires the use of numerous matrix samples, which is problematic for rare matrices. The aim of this study was to design and implement a streamlined, fit-for-purpose strategy for qualification of biomarker assays in rare matrices. Materials & methods: A multiplexed biomarker immunoassay was developed in human aqueous humor. Results: Our strategy was successfully implemented, providing characterization of assay performance while reducing number of samples in assay qualification. Our assay was used in clinical trial support for an ophthalmic drug candidate. Conclusion: Our results indicate this approach can be applied to other early stage drug development programs facing similar challenges.

2.
Toxicol Appl Pharmacol ; 483: 116837, 2024 02.
Article in English | MEDLINE | ID: mdl-38278496

ABSTRACT

FLT3L-Fc is a cytokine-Fc fusion agonizing receptor-type tyrosine-protein kinase FLT3 (fms-related tyrosine kinase 3; CD135). FLT3 is expressed on dendritic cells (DCs) as well as myeloid and lymphoid progenitors. Nonclinical pharmacokinetics, pharmacodynamics and safety of FLT3L-Fc were investigated in rats and cynomolgus monkeys. FLT3L-Fc induced robust pharmacodynamic responses, evidenced by marked expansion of peripheral blood cDC1s, cDC2s, and pDCs (up to 301-fold in rats and 378-fold in monkeys), peaking at 8-10 days after the first dose. FLT3L-Fc was well tolerated with no adverse findings at doses up to 10 mg/kg administered intravenously twice three weeks apart. In both species, major clinical pathology findings consisted of expansion of white blood cell (WBC) populations including lymphocytes, monocytes, neutrophils, basophils, and large unstained cells, which were pronounced after the first dose. The WBC findings were associated microscopically with histiocytic and mononuclear cell infiltrates in multiple organs. Tissue immunohistochemistry in monkeys showed that the leukocyte infiltrates consisted of hematopoietic progenitor cells and histiocytes with a reactive morphology and were associated with a slight stimulation of regional T and B cell populations. Additional FLT3L-Fc-associated changes included decreases in red blood cell (RBC) mass, increases in RBC distribution width, variable changes in reticulocytes, and transient alterations in platelet counts (rats only). The RBC and WBC findings were associated microscopically with increased hematopoietic cellularity of the bone marrow in both species and increased splenic megakaryocytic extramedullary hematopoiesis in rats. The totality of nonclinical safety data support the clinical development of FLT3L-Fc.


Subject(s)
Membrane Proteins , Neoplasms , Rats , Animals , Dendritic Cells , Hematopoietic Stem Cells , Immunotherapy
3.
Toxicol Pathol ; 50(8): 910-919, 2022 12.
Article in English | MEDLINE | ID: mdl-36329562

ABSTRACT

Removal of the core fucose from the Fc region of humanized monoclonal antibodies (afucosylated antibodies) enhances their antibody-dependent cell cytotoxicity activities in killing cancer cells. Based on the authors' experience and literature, administrations of afucosylated antibodies have been associated with neutropenia in cynomolgus monkeys. However, in a recent general toxicology study conducted with an afucosylated antibody in cynomolgus monkeys, transient neutropenia was observed and correlated with the emergence of anti-drug antibodies (ADAs) in the affected animals. To further explore the relationship between neutropenia, afucosylated antibodies, and ADAs in cynomolgus monkeys, we performed an investigational retrospective meta-analysis of data from general toxicology studies conducted with Genentech's therapeutic antibodies administered to cynomolgus monkeys between 2005 and 2021. In this analysis, transient neutropenia strongly correlated with ADA-induced inflammation in cynomolgus monkeys administered afucosylated antibodies. This may reflect the simultaneous occurrence of two distinct processes of neutrophil elimination and utilization, thus overwhelming bone marrow reserve capacity leading to transient neutropenia. The integrated analysis of immunogenicity, and anatomic and clinical pathology results from these studies highlights the correlation of transient neutropenia in cynomolgus monkeys with ADA-related inflammation, potentially exacerbated by enhanced effector function of afucosylated antibodies.


Subject(s)
Antibodies, Monoclonal, Humanized , Neutropenia , Animals , Macaca fascicularis , Retrospective Studies , Antibodies, Monoclonal, Humanized/toxicity , Neutropenia/chemically induced , Inflammation
4.
Sci Transl Med ; 12(545)2020 05 27.
Article in English | MEDLINE | ID: mdl-32461331

ABSTRACT

Most lysosomal storage diseases (LSDs) involve progressive central nervous system (CNS) impairment, resulting from deficiency of a lysosomal enzyme. Treatment of neuronopathic LSDs remains a considerable challenge, as approved intravenously administered enzyme therapies are ineffective in modifying CNS disease because they do not effectively cross the blood-brain barrier (BBB). We describe a therapeutic platform for increasing the brain exposure of enzyme replacement therapies. The enzyme transport vehicle (ETV) is a lysosomal enzyme fused to an Fc domain that has been engineered to bind to the transferrin receptor, which facilitates receptor-mediated transcytosis across the BBB. We demonstrate that ETV fusions containing iduronate 2-sulfatase (ETV:IDS), the lysosomal enzyme deficient in mucopolysaccharidosis type II, exhibited high intrinsic activity and degraded accumulated substrates in both IDS-deficient cell and in vivo models. ETV substantially improved brain delivery of IDS in a preclinical model of disease, enabling enhanced cellular distribution to neurons, astrocytes, and microglia throughout the brain. Improved brain exposure for ETV:IDS translated to a reduction in accumulated substrates in these CNS cell types and peripheral tissues and resulted in a complete correction of downstream disease-relevant pathologies in the brain, including secondary accumulation of lysosomal lipids, perturbed gene expression, neuroinflammation, and neuroaxonal damage. These data highlight the therapeutic potential of the ETV platform for LSDs and provide preclinical proof of concept for TV-enabled therapeutics to treat CNS diseases more broadly.


Subject(s)
Blood-Brain Barrier , Iduronate Sulfatase , Animals , Brain , Disease Models, Animal , Enzyme Replacement Therapy , Lysosomes , Mice
5.
Sci Transl Med ; 12(545)2020 05 27.
Article in English | MEDLINE | ID: mdl-32461332

ABSTRACT

Effective delivery of protein therapeutics to the central nervous system (CNS) has been greatly restricted by the blood-brain barrier (BBB). We describe the development of a BBB transport vehicle (TV) comprising an engineered Fc fragment that exploits receptor-mediated transcytosis for CNS delivery of biotherapeutics by binding a highly expressed brain endothelial cell target. TVs were engineered using directed evolution to bind the apical domain of the human transferrin receptor (hTfR) without the use of amino acid insertions, deletions, or unnatural appendages. A crystal structure of the TV-TfR complex revealed the TV binding site to be away from transferrin and FcRn binding sites, which was further confirmed experimentally in vitro and in vivo. Recombinant expression of TVs fused to anti-ß-secretase (BACE1) Fabs yielded antibody transport vehicle (ATV) molecules with native immunoglobulin G (IgG) structure and stability. Peripheral administration of anti-BACE1 ATVs to hTfR-engineered mice and cynomolgus monkeys resulted in substantially improved CNS uptake and sustained pharmacodynamic responses. The TV platform readily accommodates numerous additional configurations, including bispecific antibodies and protein fusions, yielding a highly modular CNS delivery platform.


Subject(s)
Amyloid Precursor Protein Secretases , Blood-Brain Barrier , Amyloid Precursor Protein Secretases/metabolism , Animals , Aspartic Acid Endopeptidases/metabolism , Blood-Brain Barrier/metabolism , Brain/metabolism , Haplorhini/metabolism , Immunoglobulin Fc Fragments , Mice , Receptors, Transferrin/metabolism
6.
PLoS One ; 8(11): e80474, 2013.
Article in English | MEDLINE | ID: mdl-24260399

ABSTRACT

The inhibition of tyrosine kinases is a successful approach for the treatment of cancers and the discovery of kinase inhibitor drugs is the focus of numerous academic and pharmaceutical laboratories. With this goal in mind, several strategies have been developed to measure kinase activity and to screen novel tyrosine kinase inhibitors. Nevertheless, a general non-radioactive and inexpensive approach, easy to implement and adapt to a range of applications, is still missing. Herein, using Bcr-Abl tyrosine kinase, an oncogenic target and a model protein for cancer studies, we describe a novel cost-effective high-throughput screening kinase assay. In this approach, named the BacKin assay, substrates displayed on a Bacterial cell surface are incubated with Kinase and their phosphorylation is examined and quantified by flow cytometry. This approach has several advantages over existing approaches, as using bacteria (i.e. Escherichia coli) to display peptide substrates provides a self renewing solid support that does not require laborious chemical strategies. Here we show that the BacKin approach can be used for kinetic and mechanistic studies, as well as a platform to characterize and identify small-molecule or peptide-based kinase inhibitors with potential applications in drug development.


Subject(s)
Bacteria/metabolism , Cell Surface Display Techniques , Enzyme Assays/methods , Flow Cytometry , Phosphotransferases/metabolism , Enzyme Activation , Fusion Proteins, bcr-abl/antagonists & inhibitors , Fusion Proteins, bcr-abl/chemistry , Fusion Proteins, bcr-abl/metabolism , Kinetics , Models, Molecular , Peptide Fragments/chemistry , Peptide Fragments/metabolism , Phosphotransferases/antagonists & inhibitors , Phosphotransferases/chemistry , Protein Binding , Protein Conformation , Protein Kinase Inhibitors/chemistry , Protein Kinase Inhibitors/pharmacology , Protein-Tyrosine Kinases/antagonists & inhibitors , Protein-Tyrosine Kinases/chemistry , Protein-Tyrosine Kinases/metabolism , Reproducibility of Results , Substrate Specificity
7.
ACS Chem Biol ; 8(6): 1147-54, 2013.
Article in English | MEDLINE | ID: mdl-23537207

ABSTRACT

Neuropilin-1 and -2 are critical regulators of angiogenesis, lymphangiogenesis, and cell survival as receptors for multiple growth factors. Disulfide-rich peptides that antagonize the growth factor receptors neuropilin-1 and neuropilin-2 were developed using bacterial display libraries. Peptide ligands specific for the VEGFA binding site on neuropilin-1 were identified by screening a library of disulfide-rich peptides derived from the thermostable, protease-resistant cyclotide kalata B1. First generation ligands were subjected to one cycle of affinity maturation to yield acyclic peptides with affinities of 40-60 nM and slow dissociation rate constants (∼1 × 10(-3) s(-1)). Peptides exhibited equivalent affinities for human and mouse neuropilin-1 and cross-reacted with human neuropilin-2 with lower affinity. A C-to-N cyclized variant (cyclotide) of one neuropilin ligand retained high affinity, exhibited increased protease resistance, and conferred improved potency for inhibiting endothelial cell migration in vitro (EC50 ≈ 100 nM). These results demonstrate that potent, target-specific cyclotides can be created by evolutionary design and that backbone cyclization can confer improved pharmacological properties.


Subject(s)
Cell Movement/drug effects , Endothelial Cells/drug effects , Neuropilin-1/antagonists & inhibitors , Neuropilin-2/antagonists & inhibitors , Peptides/chemistry , Peptides/pharmacology , Amino Acid Sequence , Animals , Endothelial Cells/cytology , Human Umbilical Vein Endothelial Cells , Humans , Mice , Models, Molecular , Molecular Sequence Data , Neuropilin-1/metabolism , Neuropilin-2/metabolism
8.
Biol Chem ; 393(9): 933-41, 2012 Sep.
Article in English | MEDLINE | ID: mdl-22944693

ABSTRACT

Many peptidases are thought to require non-active site interaction surfaces, or exosites, to recognize and cleave physiological substrates with high specificity and catalytic efficiency. However, the existence and function of protease exosites remain obscure owing to a lack of effective methods to identify and characterize exosite-interacting substrates. To address this need, we modified the cellular libraries of peptide substrates (CLiPS) methodology to enable the discovery of exosite-interacting peptide ligands. Invariant cleavage motifs recognized by the active sites of thrombin and caspase-7 were displayed on the outer surface of bacteria adjacent to a candidate exosite-interacting peptide. Exosite peptide libraries were then screened for ligands that accelerate cleavage of the active site recognition motif using two-color flow cytometry. Exosite CLiPS (eCLiPS) identified exosite-binding peptides for thrombin that were highly similar to a critical exosite interaction motif in the thrombin substrate, protease-activated receptor 1. Protease activity probes incorporating exosite-binding peptides were cleaved ten-fold faster than substrates without exosite ligands, increasing their sensitivity to thrombin activity in vitro. For comparison, screening with caspase-7 yielded peptides that modestly enhanced (two-fold) substrate cleavage rates. The eCLiPS method provides a new tool to profile the ligand specificity of protease exosites and to develop improved substrates.


Subject(s)
Peptides/chemistry , Peptides/metabolism , Thrombin/chemistry , Thrombin/metabolism , Amino Acid Sequence , Caspase 7/chemistry , Caspase 7/metabolism , Catalytic Domain , Humans , Kinetics , Ligands , Models, Molecular , Molecular Sequence Data , Receptor, PAR-1/chemistry , Receptor, PAR-1/metabolism , Substrate Specificity
9.
J Control Release ; 161(3): 804-12, 2012 Aug 10.
Article in English | MEDLINE | ID: mdl-22634092

ABSTRACT

As a general strategy to selectively target antibody activity in vivo, a molecular architecture was designed to render binding activity dependent upon proteases in disease tissues. A protease-activated antibody (pro-antibody) targeting vascular cell adhesion molecule 1 (VCAM-1), a marker of atherosclerotic plaques, was constructed by tethering a binding site-masking peptide to the antibody via a matrix metalloprotease (MMP) susceptible linker. Pro-antibody activation in vitro by MMP-1 yielded a 200-fold increase in binding affinity and restored anti-VCAM-1 binding in tissue sections from ApoE⁻/⁻ mice ex vivo. The pro-antibody was efficiently activated by native proteases in aorta tissue extracts from ApoE⁻/⁻, but not from normal mice, and accumulated in aortic plaques in vivo with enhanced selectivity when compared to the unmodified antibody. Pro-antibody accumulation in aortic plaques was MMP-dependent, and significantly inhibited by a broad-spectrum MMP inhibitor. These results demonstrate that the activity of disease-associated proteases can be exploited to site-specifically target antibody activity in vivo.


Subject(s)
Antibodies, Monoclonal/administration & dosage , Drug Delivery Systems , Matrix Metalloproteinase 1/administration & dosage , Plaque, Atherosclerotic/metabolism , Prodrugs/administration & dosage , Vascular Cell Adhesion Molecule-1/immunology , Animals , Antibodies, Monoclonal/metabolism , Antibodies, Monoclonal/pharmacokinetics , Aorta/metabolism , Apolipoproteins E/deficiency , Apolipoproteins E/genetics , Cell Line , Coronary Artery Disease/metabolism , Coronary Artery Disease/pathology , Disease Models, Animal , HEK293 Cells , Humans , Matrix Metalloproteinase 1/metabolism , Matrix Metalloproteinase 1/pharmacokinetics , Mice , Mice, Inbred BALB C , Mice, Inbred C57BL , Mice, Knockout , Tissue Distribution , Vascular Cell Adhesion Molecule-1/metabolism
10.
Methods Enzymol ; 503: 75-97, 2012.
Article in English | MEDLINE | ID: mdl-22230566

ABSTRACT

Peptides are increasingly used as therapeutic and diagnostic agents. The combination of bacterial cell-surface display peptide libraries with magnetic- and fluorescence-activated cell sorting technologies provides an efficient and highly effective methodology to identify and engineer peptides for a growing number of molecular recognition applications. Here, detailed protocols for both the generation and screening of bacterial display peptide libraries are presented. The methods described enable the discovery and evolutionary optimization of protein-binding peptides, cell-specific peptides, and enzyme substrates for diverse biotechnology applications.


Subject(s)
Drug Discovery/methods , Escherichia coli/chemistry , Flow Cytometry/methods , Peptide Library , Peptides/chemistry , DNA/chemistry , Fluorescent Dyes/chemistry , Genetic Vectors/chemistry , Humans , Peptides/isolation & purification , Peptides/standards , Plasmids/chemistry , Protein Binding , Protein Engineering/methods , Protein Engineering/standards , Species Specificity , Substrate Specificity
11.
ACS Chem Biol ; 6(8): 837-44, 2011 Aug 19.
Article in English | MEDLINE | ID: mdl-21615106

ABSTRACT

Peptides within the knottin family have been shown to possess inherent stability, making them attractive scaffolds for the development of therapeutic and diagnostic agents. Given its remarkable stability to proteases, the cyclic peptide kalata B1 was employed as a scaffold to create a large knottin library displayed on the surface of E. coli. A library exceeding 10(9) variants was constructed by randomizing seven amino acids within a loop of the kalata B1 scaffold and screened using fluorescence-activated cell sorting to identify peptide ligands specific for the active site of human thrombin. Refolded thrombin binders exhibited high nanomolar affinities in solution and slow dissociation rates and were able to inhibit thrombin's enzymatic activity. Importantly, 80% of a knottin-based thrombin inhibitor remained intact after a 2 h incubation both with trypsin and with chymotrypsin, demonstrating that modifying the kalata B1 sequence did not compromise its stability properties. In addition, the knottin variant mediated 20-fold enhanced affinity for thrombin, when compared to the same seven residue binding epitope constrained by a single disulfide bond. Our results indicate that peptide libraries derived from the kalata B1 scaffold can yield high-affinity protein ligands that retain the remarkable protease resistance associated with the parent scaffold. More generally, this strategy may prove useful in the development of stable peptide ligands suitable for in vivo applications.


Subject(s)
Antithrombins/chemistry , Antithrombins/pharmacology , Cyclotides/chemistry , Cyclotides/pharmacology , Cystine-Knot Miniproteins/chemistry , Peptide Library , Thrombin/antagonists & inhibitors , Amino Acid Sequence , Antithrombins/metabolism , Catalytic Domain , Cyclotides/metabolism , Cystine Knot Motifs , Escherichia coli/metabolism , Humans , Models, Molecular , Molecular Sequence Data , Peptide Hydrolases/metabolism , Thrombin/chemistry , Thrombin/metabolism
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