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1.
Xenobiotica ; : 1-11, 2024 May 13.
Artículo en Inglés | MEDLINE | ID: mdl-38738473

RESUMEN

(171/200)ADCs represent a transformative class of medicine that combines the specificity of monoclonal antibodies with the potency of highly cytotoxic agents through linkers, aiming to enhance the therapeutic index of cytotoxic drugs. Given the complex molecular structures of ADCs, combining the molecular characteristics of small-molecule drugs and those of large-molecule biotherapeutics, there are several unique considerations when designing nonclinical-to-clinical PK/PD translation strategies.This complexity also demands a thorough understanding of the ADC's components-antibody, linker, and payload-to the overall toxicological, PK/PD, and efficacy profile. ADC development is a multidisciplinary endeavor requiring a strategic integration of nonclinical safety, pharmacology, and PK/PD modeling to translate from bench to bedside successfully.The ADC development underscores the necessity for a robust scientific foundation, leveraging advanced analytical and modeling tools to predict human responses and optimize therapeutic outcomes.This review aims to provide an ADC translational PK/PD framework by discussing unique aspects of ADC nonclinical to clinical PK translation, starting dose determination, and leveraging PK/PD modeling for human efficacious dose prediction and potential safety mitigation.

2.
Bioconjug Chem ; 33(10): 1837-1851, 2022 10 19.
Artículo en Inglés | MEDLINE | ID: mdl-36153839

RESUMEN

Here, we explore whether PEGylation of antibodies can modulate their biodistribution to the eye, an organ once thought to be immune privileged but has recently been shown to be accessible to IV-administered large molecules, such as antibodies. We chose to PEGylate an anti-MerTK antibody, a target with known potential for ocular toxicity, to minimize biodistribution to retinal pigment epithelial cells (RPEs) in the eye by increasing the hydrodynamic volume of the antibody. We used site-specific conjugation to an engineered cysteine on anti-MerTK antibody to chemically attach 40-kDa branched or linear PEG polymers. Despite reduced binding to MerTK on cells, site-specifically PEGylated anti-MerTK retained similar potency in inhibiting MerTK-mediated macrophage efferocytosis of apoptotic cells. Importantly, we found that PEGylation of anti-MerTK significantly reduced MerTK receptor occupancy in RPE cells in both naïve mice and MC-38 tumor-bearing mice, with the branched PEG exhibiting a greater effect than linear PEG. Furthermore, similar to unconjugated anti-MerTK, PEGylated anti-MerTK antibody triggered type I IFN response and exhibited antitumor effect in syngeneic mouse tumor studies. Our results demonstrate the potential of PEGylation to control ocular biodistribution of antibodies.


Asunto(s)
Cisteína , Neoplasias , Ratones , Animales , Tirosina Quinasa c-Mer/metabolismo , Distribución Tisular , Cisteína/metabolismo , Fagocitosis/fisiología , Anticuerpos/metabolismo , Neoplasias/metabolismo , Polietilenglicoles/química , Polímeros/metabolismo , Pigmentos Retinianos/metabolismo
3.
Mol Cancer Ther ; 21(6): 974-985, 2022 06 01.
Artículo en Inglés | MEDLINE | ID: mdl-35364611

RESUMEN

New therapeutics and combination regimens have led to marked clinical improvements for the treatment of a subset of colorectal cancer. Immune checkpoint inhibitors have shown clinical efficacy in patients with mismatch-repair-deficient or microsatellite instability-high (MSI-H) metastatic colorectal cancer (mCRC). However, patients with microsatellite-stable (MSS) or low levels of microsatellite instable (MSI-L) colorectal cancer have not benefited from these immune modulators, and the survival outcome remains poor for the majority of patients diagnosed with mCRC. In this article, we describe the discovery of a novel T-cell-dependent bispecific antibody (TDB) targeting tumor-associated antigen LY6G6D, LY6G6D-TDB, for the treatment of colorectal cancer. RNAseq analysis showed that LY6G6D was differentially expressed in colorectal cancer with high prevalence in MSS and MSI-L subsets, whereas LY6G6D expression in normal tissues was limited. IHC confirmed the elevated expression of LY6G6D in primary and metastatic colorectal tumors, whereas minimal or no expression was observed in most normal tissue samples. The optimized LY6G6D-TDB, which targets a membrane-proximal epitope of LY6G6D and binds to CD3 with high affinity, exhibits potent antitumor activity both in vitro and in vivo. In vitro functional assays show that LY6G6D-TDB-mediated T-cell activation and cytotoxicity are conditional and target dependent. In mouse xenograft tumor models, LY6G6D-TDB demonstrates antitumor efficacy as a single agent against established colorectal tumors, and enhanced efficacy can be achieved when LY6G6D-TDB is combined with PD-1 blockade. Our studies provide evidence for the therapeutic potential of LY6G6D-TDB as an effective treatment option for patients with colorectal cancer.


Asunto(s)
Anticuerpos Biespecíficos , Neoplasias Colorrectales , Inmunoglobulinas , Animales , Anticuerpos Biespecíficos/inmunología , Anticuerpos Biespecíficos/farmacología , Neoplasias Colorrectales/tratamiento farmacológico , Neoplasias Colorrectales/genética , Humanos , Inhibidores de Puntos de Control Inmunológico/farmacología , Inmunoglobulinas/inmunología , Ratones , Inestabilidad de Microsatélites , Linfocitos T/inmunología
4.
Anal Chem ; 94(2): 1158-1168, 2022 01 18.
Artículo en Inglés | MEDLINE | ID: mdl-34958550

RESUMEN

Quantitative analysis of antibody-drug conjugates (ADCs) involves cleavage of ADCs into smaller analytes representing different components and subsequent measurements from multiple assays for a more comprehensive pharmacokinetic (PK) assessment. Multiple PK analytes including the drug remaining conjugated to the antibody (or antibody-conjugated drug, acDrug) and total antibody can be accessed simultaneously using a multiplex assay by proteolytic digestion of an ADC, if the sites of conjugation are homogeneous for an ADC and the linker drug is stable to proteases. Herein, a multiplexed immunoaffinity liquid chromatography-mass spectrometry (LC-MS)/MS PK assay is described involving immunoaffinity enrichment, enzymatic conversion of prodrug, trypsin digestion, and LC-MS/MS as applied to next-generation ADCs constructed from linker drugs bearing dimeric cyclopropabenzindole (CBI) payloads (duocarmycin analogues). The cytotoxic payload is chemically labile, requiring extensive optimization in sample preparation steps to stabilize the drug without ex vivo modification and to convert the prodrug into a single active form of the drug. The qualification data for this assay format showed that this approach provides robust acDrug and total antibody data and can be extended to ADCs with different monoclonal antibody frameworks and linker chemistries. Applications of this multiplexed assay to support preclinical studies are presented.


Asunto(s)
Antineoplásicos , Inmunoconjugados , Anticuerpos Monoclonales/química , Antineoplásicos/química , Cromatografía Liquida/métodos , Inmunoconjugados/química , Espectrometría de Masas en Tándem/métodos
5.
Mol Cancer Ther ; 20(6): 1112-1120, 2021 06.
Artículo en Inglés | MEDLINE | ID: mdl-33722856

RESUMEN

Calicheamicin antibody-drug conjugates (ADCs) are effective therapeutics for leukemias with two recently approved in the United States: Mylotarg (gemtuzumab ozogamicin) targeting CD33 for acute myeloid leukemia and Besponsa (inotuzumab ozogamicin) targeting CD22 for acute lymphocytic leukemia. Both of these calicheamicin ADCs are heterogeneous, aggregation-prone, and have a shortened half-life due to the instability of the acid-sensitive hydrazone linker in circulation. We hypothesized that we could improve upon the heterogeneity, aggregation, and circulation stability of calicheamicin ADCs by directly attaching the thiol of a reduced calicheamicin to an engineered cysteine on the antibody via a disulfide bond to generate a linkerless and traceless conjugate. We report herein that the resulting homogeneous conjugates possess minimal aggregation and display high in vivo stability with 50% of the drug remaining conjugated to the antibody after 21 days. Furthermore, these calicheamicin ADCs are highly efficacious in mouse models of both solid tumor (HER2+ breast cancer) and hematologic malignancies (CD22+ non-Hodgkin lymphoma). Safety studies in rats with this novel calicheamicin ADC revealed an increased tolerability compared with that reported for Mylotarg. Overall, we demonstrate that applying novel linker chemistry with site-specific conjugation affords an improved, next-generation calicheamicin ADC.


Asunto(s)
Antibióticos Antineoplásicos/uso terapéutico , Calicheamicinas/uso terapéutico , Inmunoconjugados/uso terapéutico , Animales , Antibióticos Antineoplásicos/farmacología , Calicheamicinas/farmacología , Modelos Animales de Enfermedad , Humanos , Inmunoconjugados/farmacología , Ratones
6.
Bioorg Med Chem Lett ; 30(4): 126907, 2020 02 15.
Artículo en Inglés | MEDLINE | ID: mdl-31902710

RESUMEN

Chimeric molecules which effect intracellular degradation of target proteins via E3 ligase-mediated ubiquitination (e.g., PROTACs) are currently of high interest in medicinal chemistry. However, these entities are relatively large compounds that often possess molecular characteristics which may compromise oral bioavailability, solubility, and/or in vivo pharmacokinetic properties. Accordingly, we explored whether conjugation of chimeric degraders to monoclonal antibodies using technologies originally developed for cytotoxic payloads might provide alternate delivery options for these novel agents. In this report we describe the construction of several degrader-antibody conjugates comprised of two distinct ERα-targeting degrader entities and three independent ADC linker modalities. We subsequently demonstrate the antigen-dependent delivery to MCF7-neo/HER2 cells of the degrader payloads that are incorporated into these conjugates. We also provide evidence for efficient intracellular degrader release from one of the employed linkers. In addition, preliminary data are described which suggest that reasonably favorable in vivo stability properties are associated with the linkers utilized to construct the degrader conjugates.


Asunto(s)
Anticuerpos Monoclonales/inmunología , Portadores de Fármacos/química , Receptor alfa de Estrógeno/inmunología , Anticuerpos Monoclonales/química , Antineoplásicos/química , Antineoplásicos/inmunología , Antineoplásicos/farmacología , Diseño de Fármacos , Receptor alfa de Estrógeno/metabolismo , Humanos , Inmunoconjugados/química , Inmunoconjugados/inmunología , Inmunoconjugados/farmacología , Células MCF-7 , Proteolisis/efectos de los fármacos , Receptor ErbB-2/metabolismo
7.
ChemMedChem ; 15(1): 17-25, 2020 01 07.
Artículo en Inglés | MEDLINE | ID: mdl-31674143

RESUMEN

The ability to selectively degrade proteins with bifunctional small molecules has the potential to fundamentally alter therapy in a variety of diseases. However, the relatively large size of these chimeric molecules often results in challenging physico-chemical properties (e. g., low aqueous solubility) and poor pharmacokinetics which may complicate their in vivo applications. We recently discovered an exquisitely potent chimeric BET degrader (GNE-987) which exhibited picomolar cell potencies but also demonstrated low in vivo exposures. In an effort to improve the pharmacokinetic properties of this molecule, we discovered the first degrader-antibody conjugate by attaching GNE-987 to an anti-CLL1 antibody via a novel linker. A single IV dose of the conjugate afforded sustained in vivo exposures that resulted in antigen-specific tumor regressions. Enhancement of a chimeric protein degrader with poor in vivo properties through antibody conjugation thereby expands the utility of directed protein degradation as both a biological tool and a therapeutic possibility.


Asunto(s)
Anticuerpos Monoclonales/química , Proteínas de Ciclo Celular/metabolismo , Compuestos Heterocíclicos de 4 o más Anillos/química , Inmunoconjugados/química , Factores de Transcripción/metabolismo , Animales , Anticuerpos Monoclonales/inmunología , Proteínas de Ciclo Celular/antagonistas & inhibidores , Línea Celular Tumoral , Supervivencia Celular/efectos de los fármacos , Portadores de Fármacos/química , Femenino , Semivida , Humanos , Inmunoconjugados/farmacología , Inmunoconjugados/uso terapéutico , Lectinas Tipo C/inmunología , Leucemia Mieloide Aguda/tratamiento farmacológico , Leucemia Mieloide Aguda/patología , Ratones , Ratones SCID , Unión Proteica , Proteolisis/efectos de los fármacos , Proteínas Proto-Oncogénicas c-myc/genética , Proteínas Proto-Oncogénicas c-myc/metabolismo , Receptores Mitogénicos/inmunología , Resonancia por Plasmón de Superficie , Factores de Transcripción/antagonistas & inhibidores , Proteína Supresora de Tumores del Síndrome de Von Hippel-Lindau/metabolismo , Ensayos Antitumor por Modelo de Xenoinjerto
8.
MAbs ; 10(8): 1312-1321, 2018.
Artículo en Inglés | MEDLINE | ID: mdl-30183491

RESUMEN

Few treatment options are available for acute myeloid leukemia (AML) patients. DCLL9718A is an antibody-drug conjugate that targets C-type lectin-like molecule-1 (CLL-1). This receptor is prevalent on monocytes, neutrophils, and AML blast cells, and unlike CD33, is not expressed on hematopoietic stem cells, thus providing possible hematopoietic recovery. DCLL9718A comprises an anti-CLL-1 IgG1 antibody (MCLL0517A) linked to a pyrrolobenzodiazepine (PBD) dimer payload, via a cleavable disulfide-labile linker. Here, we characterize the in vitro and in vivo stability, the pharmacokinetics (PK) and pharmacodynamics (PD) of DCLL9718A and MCLL0517A in rodents and cynomolgus monkeys. Three key PK analytes were measured in these studies: total antibody, antibody-conjugated PBD dimer and unconjugated PBD dimer. In vitro, DCLL9718A, was stable with most (> 80%) of the PBD dimer payload remaining conjugated to the antibody over 96 hours. This was recapitulated in vivo with antibody-conjugated PBD dimer clearance estimates similar to DCLL9718A total antibody clearance. Both DCLL9718A and MCLL0517A showed linear PK in the non-binding rodent species, and non-linear PK in cynomolgus monkeys, a binding species. The PK data indicated minimal impact of conjugation on the disposition of DCLL9718A total antibody. Finally, in cynomolgus monkey, MCLL0517A showed target engagement at all doses tested (0.5 and 20 mg/kg) as measured by receptor occupancy, and DCLL9718A (at doses of 0.05, 0.1 and 0.2 mg/kg) showed strong PD activity as evidenced by notable reduction in monocytes and neutrophils.


Asunto(s)
Inmunoconjugados/farmacocinética , Inmunoconjugados/uso terapéutico , Leucemia Mieloide/tratamiento farmacológico , Leucemia Mieloide/metabolismo , Enfermedad Aguda , Animales , Anticuerpos Monoclonales/inmunología , Anticuerpos Monoclonales/uso terapéutico , Área Bajo la Curva , Benzodiazepinas/inmunología , Benzodiazepinas/uso terapéutico , Humanos , Inmunoconjugados/inmunología , Inmunoglobulina G/inmunología , Inmunoglobulina G/uso terapéutico , Lectinas Tipo C/inmunología , Leucemia Mieloide/sangre , Macaca fascicularis , Tasa de Depuración Metabólica , Ratones , Pirroles/inmunología , Pirroles/uso terapéutico , Ratas , Receptores Mitogénicos/inmunología , Especificidad de la Especie
9.
Mol Cancer Ther ; 16(5): 871-878, 2017 05.
Artículo en Inglés | MEDLINE | ID: mdl-28223423

RESUMEN

A novel disulfide linker was designed to enable a direct connection between cytotoxic pyrrolobenzodiazepine (PBD) drugs and the cysteine on a targeting antibody for use in antibody-drug conjugates (ADCs). ADCs composed of a cysteine-engineered antibody were armed with a PBD using a self-immolative disulfide linker. Both the chemical linker and the antibody site were optimized for this new bioconjugation strategy to provide a highly stable and efficacious ADC. This novel disulfide ADC was compared with a conjugate containing the same PBD drug, but attached to the antibody via a peptide linker. Both ADCs had similar efficacy in mice bearing human tumor xenografts. Safety studies in rats revealed that the disulfide-linked ADC had a higher MTD than the peptide-linked ADC. Overall, these data suggest that the novel self-immolative disulfide linker represents a valuable way to construct ADCs with equivalent efficacy and improved safety. Mol Cancer Ther; 16(5); 871-8. ©2017 AACR.


Asunto(s)
Anticuerpos/administración & dosificación , Benzodiazepinas/administración & dosificación , Inmunoconjugados/administración & dosificación , Neoplasias/tratamiento farmacológico , Pirroles/administración & dosificación , Animales , Anticuerpos/química , Anticuerpos/inmunología , Antineoplásicos/administración & dosificación , Antineoplásicos/química , Antineoplásicos/inmunología , Benzodiazepinas/química , Benzodiazepinas/inmunología , Línea Celular Tumoral , Proliferación Celular/efectos de los fármacos , Supervivencia Celular/efectos de los fármacos , Disulfuros/química , Disulfuros/inmunología , Humanos , Inmunoconjugados/química , Ratones , Neoplasias/inmunología , Neoplasias/patología , Pirroles/química , Pirroles/inmunología , Ensayos Antitumor por Modelo de Xenoinjerto
10.
AAPS J ; 19(1): 130-140, 2017 01.
Artículo en Inglés | MEDLINE | ID: mdl-27679517

RESUMEN

Antibody drug conjugates (ADC), in which small molecule cytotoxic agents are non-specifically linked to antibodies, can enable targeted delivery of chemotherapeutics to tumor cells. ADCs are often produced and administered as a mixture of conjugated antibodies with different drug to antibody ratios (DAR) resulting in complex and heterogeneous disposition kinetics. We developed a mechanism-based platform model that can describe and predict the complex pharmacokinetic (PK) behavior of ADCs with protease-cleavable valine-citrulline (VC) linker linked to Monomethylmonomethyl auristatin F/E by incorporating known mechanisms of ADC disposition. The model includes explicit representation of all DAR species; DAR-dependent sequential deconjugation of the drug, resulting in the conversion of higher DAR to lower DAR species; and DAR-dependent antibody/ADC clearance. PK profiles of multiple analytes (total antibody, drug-conjugated antibody, and/or antibody-conjugated drug) for different ADC molecules and targets in rodents and cynomolgus monkeys were used for model development. The integrated cross-species model was successful in capturing the multi-analyte PK profiles after administration of purified ADCs with defined DAR species and ADCs with mixtures of DAR. Human PK predictions for DSTP3086S (anti-STEAP1-vc-MMAE) with the platform model agreed well with PK (total antibody and antibody-conjugated drug concentrations) measurements in the dose-ranging phase I clinical study. The integrated model is applicable to various other ADCs with different formats, conjugated drugs, and linkers, and provides a valuable tool for the exploration of mechanisms governing disposition of ADCs and enables translational predictions.


Asunto(s)
Anticuerpos Monoclonales/farmacocinética , Antineoplásicos/farmacocinética , Inmunoconjugados/farmacocinética , Modelos Biológicos , Oligopéptidos/farmacocinética , Animales , Simulación por Computador , Humanos , Oligopéptidos/química , Investigación Biomédica Traslacional
11.
J Med Chem ; 57(19): 7890-9, 2014 Oct 09.
Artículo en Inglés | MEDLINE | ID: mdl-25191794

RESUMEN

Antibody-drug conjugates (ADCs) have a significant impact toward the treatment of cancer, as evidenced by the clinical activity of the recently approved ADCs, brentuximab vedotin for Hodgkin lymphoma and ado-trastuzumab emtansine (trastuzumab-MCC-DM1) for metastatic HER2+ breast cancer. DM1 is an analog of the natural product maytansine, a microtubule inhibitor that by itself has limited clinical activity and high systemic toxicity. However, by conjugation of DM1 to trastuzumab, the safety was improved and clinical activity was demonstrated. Here, we report that through chemical modification of the linker-drug and antibody engineering, the therapeutic activity of trastuzumab maytansinoid ADCs can be further improved. These improvements include eliminating DM1 release in the plasma and increasing the drug load by engineering four cysteine residues into the antibody. The chemical synthesis of highly stable linker-drugs and the modification of cysteine residues of engineered site-specific antibodies resulted in a homogeneous ADC with increased therapeutic activity compared to the clinically approved ADC, trastuzumab-MCC-DM1.


Asunto(s)
Anticuerpos Monoclonales Humanizados/farmacología , Antineoplásicos/síntesis química , Inmunoconjugados/farmacología , Maitansina/análogos & derivados , Ingeniería de Proteínas , Animales , Antineoplásicos/farmacología , Línea Celular Tumoral , Proliferación Celular/efectos de los fármacos , Humanos , Ratones , Trastuzumab
12.
Cancer Chemother Pharmacol ; 74(5): 969-80, 2014 Nov.
Artículo en Inglés | MEDLINE | ID: mdl-25186956

RESUMEN

PURPOSE: Trastuzumab emtansine (T-DM1), an antibody-drug conjugate (ADC) comprised of trastuzumab linked to the antimitotic agent DM1, has shown promising results in patients with human epidermal growth factor receptor 2-positive metastatic breast cancer. Investigations of the mechanisms of the action of ADCs, including T-DM1, have been primarily descriptive or semiquantitative. However, quantitative pharmacokinetic/pharmacodynamic (PK/PD) analysis may provide insights into their complex behavior. The analyses described herein applied PK/PD modeling to nonclinical studies of maytansinoid conjugates. METHODS: The maytansinoid conjugates T-DM1 and T-SPP-DM1, with thioether and disulfide linkers, respectively, were tested in mouse efficacy, PK, and tumor uptake studies. (3)[H]DM1-bearing ADCs were used to facilitate the quantitation of the ADCs in plasma, as well as ADC and ADC catabolites in tumors. Three mechanistic PK/PD models were used to characterize plasma ADC, tumor ADC, and tumor catabolite concentrations. Tumor catabolite concentrations were used to fit tumor response. Model parameters were estimated using R software and nonlinear least squares regression. RESULTS: Plasma ADC-associated DM1 concentrations of T-DM1 decreased more slowly than those of T-SPP-DM1, likely due to slower DM1 release. A comparison of the mechanistic models found that the best model allowed catabolism and catabolite exit rates to differ between ADCs, that T-DM1 exhibited both faster tumor catabolism and catabolite exit rate from tumors than T-SPP-DM1; findings inconsistent with expected behavior based on the physicochemical nature of the respective catabolites. Tumor catabolite concentrations adequately described tumor response with both ADCs showing similar potency. CONCLUSION: Mechanistic PK/PD studies described herein provided results that confirmed and challenged current hypotheses, and suggested new areas of investigation.


Asunto(s)
Anticuerpos Monoclonales Humanizados/farmacocinética , Maitansina/análogos & derivados , Modelos Biológicos , Neoplasias/tratamiento farmacológico , Neoplasias/metabolismo , Ado-Trastuzumab Emtansina , Algoritmos , Animales , Anticuerpos Monoclonales Humanizados/sangre , Área Bajo la Curva , Línea Celular Tumoral , Femenino , Humanos , Maitansina/sangre , Maitansina/farmacocinética , Ratones Desnudos , Trastuzumab , Resultado del Tratamiento , Tritio
13.
AAPS J ; 16(5): 994-1008, 2014 Sep.
Artículo en Inglés | MEDLINE | ID: mdl-24917179

RESUMEN

Trastuzumab emtansine (T-DM1) is an antibody-drug conjugate (ADC) therapeutic for treatment of human epidermal growth factor receptor 2 (HER2)-positive cancers. The T-DM1 dose product contains a mixture of drug-to-antibody ratio (DAR) moieties whereby the small molecule DM1 is chemically conjugated to trastuzumab antibody. The pharmacokinetics (PK) underlying this system and other ADCs are complex and have not been elucidated. Accordingly, we have developed two PK modeling approaches from preclinical data to conceptualize and understand T-DM1 PK, to quantify rates of DM1 deconjugation, and to elucidate the link between trastuzumab, T-DM1, and DAR measurements. Preclinical data included PK studies in rats (n = 34) and cynomolgus monkeys (n = 18) at doses ranging from 0.3 to 30 mg/kg and in vitro plasma stability. T-DM1 and total trastuzumab (TT) plasma concentrations were measured by enzyme-linked immunosorbent assay. Individual DAR moieties were measured by affinity capture liquid chromatography-mass spectrophotometry. Two PK modeling approaches were developed for T-DM1 using NONMEM 7.2 software: a mechanistic model fit simultaneously to TT and DAR concentrations and a reduced model fit simultaneously to TT and T-DM1 concentrations. DAR moieties were well described with a three-compartmental model and DM1 deconjugation in the central compartment. DM1 deconjugated fastest from the more highly loaded trastuzumab molecules (i.e., DAR moieties that are ≥3 DM1 per trastuzumab). T-DM1 clearance (CL) was 2-fold faster than TT CL due to deconjugation. The two modeling approaches provide flexibility based on available analytical measurements for T-DM1 and a framework for designing ADC studies and PK-pharmacodynamic modeling of ADC efficacy- and toxicity-related endpoints.


Asunto(s)
Anticuerpos Monoclonales Humanizados/farmacocinética , Antineoplásicos/farmacocinética , Neoplasias de la Mama/tratamiento farmacológico , Maitansina/análogos & derivados , Modelos Biológicos , Ado-Trastuzumab Emtansina , Animales , Anticuerpos Monoclonales Humanizados/administración & dosificación , Anticuerpos Monoclonales Humanizados/sangre , Antineoplásicos/administración & dosificación , Antineoplásicos/sangre , Biotransformación , Neoplasias de la Mama/sangre , Neoplasias de la Mama/metabolismo , Neoplasias de la Mama/patología , Cromatografía Liquida , Estabilidad de Medicamentos , Femenino , Humanos , Inyecciones Intravenosas , Macaca fascicularis , Masculino , Espectrometría de Masas , Maitansina/administración & dosificación , Maitansina/sangre , Maitansina/farmacocinética , Metástasis de la Neoplasia , Ratas , Ratas Sprague-Dawley , Receptor ErbB-2/antagonistas & inhibidores , Receptor ErbB-2/metabolismo , Reproducibilidad de los Resultados , Trastuzumab
14.
Mol Cancer Ther ; 11(5): 1133-42, 2012 May.
Artículo en Inglés | MEDLINE | ID: mdl-22408268

RESUMEN

Trastuzumab emtansine (T-DM1) is an antibody-drug conjugate consisting of the anti-HER2 antibody trastuzumab linked via a nonreducible thioether linker to the maytansinoid antitubulin agent DM1. T-DM1 has shown favorable safety and efficacy in patients with HER2-positive metastatic breast cancer. In previous animal studies, T-DM1 exhibited better pharmacokinetics (PK) and slightly more efficacy than several disulfide-linked versions. The efficacy findings are unique, as other disulfide-linked antibody-drug conjugates (ADC) have shown greater efficacy than thioether-linked designs. To explore this further, the in vitro and in vivo activity, PK, and target cell activation of T-DM1 and the disulfide-linked T-SPP-DM1 were examined. Both ADCs showed high in vitro potency, with T-DM1 displaying greater potency in two of four breast cancer cell lines. In vitro target cell processing of T-DM1 and T-SPP-DM1 produced lysine-N(ε)-MCC-DM1, and lysine-N(ε)-SPP-DM1 and DM1, respectively; in vivo studies confirmed these results. The in vitro processing rates for the two conjugate to their respective catabolites were similar. In vivo, the potencies of the conjugates were similar, and T-SPP-DM1 had a faster plasma clearance than T-DM1. Slower T-DM1 clearance translated to higher overall tumor concentrations (conjugate plus catabolites), but unexpectedly, similar levels of tumor catabolite. These results indicate that, although the ADC linker can have clear impact on the PK and the chemical nature of the catabolites formed, both linkers seem to offer the same payload delivery to the tumor.


Asunto(s)
Anticuerpos Monoclonales Humanizados/farmacología , Antineoplásicos/farmacología , Neoplasias de la Mama/metabolismo , Maitansina/análogos & derivados , Ado-Trastuzumab Emtansina , Animales , Anticuerpos Monoclonales Humanizados/química , Anticuerpos Monoclonales Humanizados/metabolismo , Anticuerpos Monoclonales Humanizados/farmacocinética , Antineoplásicos/química , Antineoplásicos/metabolismo , Antineoplásicos/farmacocinética , Línea Celular Tumoral , Supervivencia Celular/efectos de los fármacos , Femenino , Humanos , Maitansina/química , Maitansina/metabolismo , Maitansina/farmacocinética , Maitansina/farmacología , Ratones , Ratones Desnudos , Receptor ErbB-2/metabolismo , Trastuzumab , Ensayos Antitumor por Modelo de Xenoinjerto
15.
J Pharmacokinet Pharmacodyn ; 37(3): 221-42, 2010 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-20424896

RESUMEN

Trastuzumab-DM1 (T-DM1) is a novel antibody-drug conjugate under investigation for the treatment of human epidermal growth factor receptor 2 (HER2)-positive metastatic breast cancer. One challenge in oncologic drug development is determining the optimal dose and treatment schedule. A novel dose regimen-finding strategy was developed for T-DM1 using experimental data and pharmacokinetic/pharmacodynamic modeling. To characterize the disposition of T-DM1, pharmacokinetic studies were conducted in athymic nude and beige nude mice. The pharmacokinetics of T-DM1 were described well by a two-compartment model. Tumor response data were obtained from single-dose, multiple-dose and time-dose-fractionation studies of T-DM1 in animal models of HER2-positive breast cancer, specifically engineered to be insensitive to trastuzumab. A sequential population-based pharmacokinetic/pharmacodynamic modeling approach was developed to describe the anti-tumor activity of T-DM1. A cell-cycle-phase nonspecific tumor cell kill model incorporating transit compartments captured well the features of tumor growth and the activity of T-DM1. Key findings of the model were that tumor cell growth rate played a significant role in the sensitivity of tumors to T-DM1; anti-tumor activity was schedule independent; and tumor response was linked to the ratio of exposure to a concentration required for tumor stasis.


Asunto(s)
Anticuerpos Monoclonales/administración & dosificación , Antineoplásicos/administración & dosificación , Inmunotoxinas/uso terapéutico , Maitansina/análogos & derivados , Modelos Biológicos , Neoplasias/tratamiento farmacológico , Ado-Trastuzumab Emtansina , Animales , Anticuerpos Monoclonales/farmacocinética , Anticuerpos Monoclonales Humanizados , Antineoplásicos/farmacocinética , Línea Celular Tumoral , Relación Dosis-Respuesta a Droga , Esquema de Medicación , Femenino , Humanos , Maitansina/administración & dosificación , Maitansina/farmacocinética , Ratones , Ratones Desnudos , Factores de Tiempo , Trastuzumab , Ensayos Antitumor por Modelo de Xenoinjerto
16.
Nat Biotechnol ; 26(8): 925-32, 2008 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-18641636

RESUMEN

Antibody-drug conjugates enhance the antitumor effects of antibodies and reduce adverse systemic effects of potent cytotoxic drugs. However, conventional drug conjugation strategies yield heterogenous conjugates with relatively narrow therapeutic index (maximum tolerated dose/curative dose). Using leads from our previously described phage display-based method to predict suitable conjugation sites, we engineered cysteine substitutions at positions on light and heavy chains that provide reactive thiol groups and do not perturb immunoglobulin folding and assembly, or alter antigen binding. When conjugated to monomethyl auristatin E, an antibody against the ovarian cancer antigen MUC16 is as efficacious as a conventional conjugate in mouse xenograft models. Moreover, it is tolerated at higher doses in rats and cynomolgus monkeys than the same conjugate prepared by conventional approaches. The favorable in vivo properties of the near-homogenous composition of this conjugate suggest that our strategy offers a general approach to retaining the antitumor efficacy of antibody-drug conjugates, while minimizing their systemic toxicity.


Asunto(s)
Anticuerpos Antineoplásicos/farmacología , Antineoplásicos/farmacología , Citotoxinas/farmacología , Inmunotoxinas/farmacocinética , Neoplasias Ováricas/inmunología , Animales , Anticuerpos Monoclonales/genética , Anticuerpos Monoclonales/farmacología , Anticuerpos Antineoplásicos/genética , Especificidad de Anticuerpos , Sitios de Unión , Antígeno Ca-125/inmunología , Línea Celular Tumoral , Química Farmacéutica/métodos , Cisteína/genética , Femenino , Humanos , Macaca fascicularis , Proteínas de la Membrana/inmunología , Ratones , Mutagénesis Sitio-Dirigida , Oligopéptidos/farmacología , Neoplasias Ováricas/tratamiento farmacológico , Ratas , Ratas Sprague-Dawley , Compuestos de Sulfhidrilo/farmacología
17.
Chirality ; 16(6): 379-87, 2004 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-15190583

RESUMEN

Information about the potential and extent of bioinversion of chiral drugs in laboratory animal species and humans is critical to the interpretation of preclinical pharm-tox studies with these drugs. Unlike in the dog, guinea pig, and rabbit, in humans the 2-arylpropionic acid (APA) R-flurbiprofen (R-FB) undergoes very little bioinversion to S-flurbiprofen. The primary objective of this research was to identify laboratory animal species with an R- to S-bioinversion profile similar to humans. Detailed evaluations of the pharmacokinetics parameters of R-flurbiprofen in male and female rats and mice, and male nude rats and monkeys demonstrated R- to S-bioinversion of 30% (average) in monkeys, 15-24% in mice, and approximately 4% in rats. To date, no laboratory animal species has been identified with an R-flurbiprofen bioinversion profile identical to humans. However, the rat has a bioinversion profile sufficiently similar to humans to be useful for preclinical.


Asunto(s)
Flurbiprofeno/química , Flurbiprofeno/farmacocinética , Animales , Antiinflamatorios no Esteroideos/química , Área Bajo la Curva , Cromatografía Líquida de Alta Presión , Relación Dosis-Respuesta a Droga , Femenino , Haplorrinos , Humanos , Masculino , Ratones , Ratones Endogámicos C57BL , Modelos Químicos , Propionatos/química , Ratas , Ratas Sprague-Dawley , Factores Sexuales , Especificidad de la Especie , Estereoisomerismo , Factores de Tiempo
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