Publications by authors named "Jeffrey A Silverman"

JZP458 is a recombinant Erwinia chrysanthemi asparaginase for patients with acute lymphoblastic leukemia (ALL)/lymphoblastic lymphoma (LBL) who have developed hypersensitivity to Escherichia coli-derived asparaginases. A population pharmacokinetic (PopPK) model was developed for intramuscular (i.m.

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AALL1931, a phase 2/3 study conducted in collaboration with the Children's Oncology Group, investigated the efficacy and safety of JZP458 (asparaginase erwinia chrysanthemi [recombinant]-rywn), a recombinant Erwinia asparaginase derived from a novel expression platform, in patients with acute lymphoblastic leukemia/lymphoblastic lymphoma who developed hypersensitivity/silent inactivation to Escherichia coli-derived asparaginases. Each dose of a pegylated E coli-derived asparaginase remaining in patients' treatment plan was substituted by 6 doses of intramuscular (IM) JZP458 on Monday/Wednesday/Friday (MWF). Three regimens were evaluated: cohort 1a, 25 mg/m2 MWF; cohort 1b, 37.

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JZP-458 is a recombinant Erwinia asparaginase produced using a novel Pseudomonas fluorescens expression platform that yields an enzyme expected to lack immunologic cross-reactivity to Escherichia coli-derived asparaginases. It is being developed as part of a multiagent chemotherapeutic regimen to treat acute lymphoblastic leukemia or lymphoblastic lymphoma patients who develop E coli-derived asparaginase hypersensitivity. A population pharmacokinetic (PopPK) model was developed for JZP-458 using serum asparaginase activity (SAA) data from a phase 1, single-dose study (JZP458-101) in healthy adults.

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L-asparaginase has been an important component of acute lymphoblastic leukemia (ALL) therapy for over 40 years, and is standard therapy during ALL induction and consolidation treatment. L-asparaginases are immunogenic and can induce hypersensitivity reactions; inability to receive asparaginase has been associated with poor patient outcomes. There are L-asparaginases of varied bacterial origins, with the most commonly used being Escherichia coli (E.

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Matrix metalloproteinase-9 (MMP9) is implicated in protumorigenic processes. Andecaliximab (GS-5745, a monoclonal antibody targeting MMP9) was evaluated as monotherapy and in combination with mFOLFOX6. Three dosages of andecaliximab monotherapy [200, 600, and 1800 mg i.

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Respiratory syncytial virus (RSV) is a major cause of lower respiratory tract infections in young children. Presatovir (previously GS-5806) is a novel, orally administered RSV fusion inhibitor with a favorable safety profile and proven antiviral efficacy in preclinical and clinical studies. In vitro, presatovir is a substrate of the efflux transporters P-glycoprotein (P-gp) and breast cancer resistance protein (BCRP) and hepatic uptake transporters organic anion transporting polypeptide (OATP) 1B1 and OATP1B3 and is slowly metabolized by cytochrome P450 (CYP) 3A4 and CYP3A5.

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Article Synopsis
  • Momelotinib (MMB) is a drug being developed to treat myeloproliferative neoplasms and works by inhibiting JAK1/2 and ACVR1.* -
  • A study showed MMB is quickly absorbed in the body, with most metabolites found in feces and only a small amount in urine, and it doesn't irreversibly bind to blood components.* -
  • The main metabolite, M21, is a strong inhibitor of JAK1/2 and ACVR1, and its formation in humans differs from animal models, highlighting the need for further studies on how it metabolizes and interacts with other drugs.*
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Article Synopsis
  • Momelotinib is a drug being tested for treating myelofibrosis, focusing on its effects in patients with liver or kidney issues compared to healthy individuals.
  • Research found that there were no significant differences in the drug's levels in the bloodstream for patients with moderate to severe kidney problems or moderate liver impairment, meaning these patients can take the standard dose.
  • However, those with severe liver impairment showed increased levels of momelotinib and decreased levels of its active form, indicating that they should take a lower dose to avoid complications.
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Article Synopsis
  • * A phase 1/2 trial identified a 300-mg once-daily capsule as having a good benefit-to-risk ratio, leading to the development of a new tablet formulation for further studies.
  • * The study found that a 200-mg momelotinib tablet had similar plasma levels to the 300-mg capsule; food increased absorption slightly, while the drug omeprazole decreased absorption, but neither change was significant for the drug’s overall safety and effectiveness.
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Background: VSLI (Marqibo) is active in advanced non-Hodgkin lymphoma (NHL) and untreated aggressive NHL. Because of its favorable hematologic toxicity profile, VSLI might be useful in patients unable to tolerate myelosuppressive therapies.

Patients And Methods: Twenty-two patients with heavily pretreated, advanced CD20(+) DLBCL or MCL were treated with VSLI 2.

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Vincristine sulfate liposome injection (VSLI,) is a sphingomyelin and cholesterol nanoparticle formulation of vincristine sulfate (VCR) that was designed to overcome the dosing and pharmacokinetic limitations of standard VCR. In contrast to the rapid CL and wide tissue distribution of non-liposomal VCR, VSLI circulates in plasma for a prolonged period of time, with a slow CL of 345 mL/h and relatively small Vd of 3,570 mL. This facilitates enhanced and prolonged tumor-tissue delivery of VCR.

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Vincristine sulfate liposome injection (VSLI; Marqibo(®) ; M) is active in relapsed and refractory lymphomas, and approved in the United States for relapsed and refractory adult acute lymphocytic leukaemia. We evaluated VSLI (2·0 mg/m(2) without dose cap) substituted for non-liposomal vincristine (VCR) in a cyclophosphamide, doxorubicin, vincristine, prednisone ± ritiximab (CHOP±R) regimen, creating CHMP±R in 72 untreated, aggressive non-Hodgkin lymphoma patients, including 60 with diffuse large B-cell lymphoma (DLBCL). The overall response rate was 96% (69/72) including complete response (CR) in 65 (90%) and unconfirmed CR in 2 (3%).

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Vincristine (VCR) is a mainstay of treatment of hematologic malignancies and solid tumors due to its well-defined mechanism of action, demonstrated anticancer activity and its ability to be combined with other agents. VCR is an M-phase cell cycle-specific anticancer drug with activity that is concentration and exposure duration dependent. The pharmacokinetic profile of standard VCR is described by a bi-exponential elimination pattern with a very fast initial distribution half-life followed by a longer elimination half-life.

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Purpose: Relapsed adult acute lymphoblastic leukemia (ALL) is associated with high reinduction mortality, chemotherapy resistance, and rapid progression leading to death. Vincristine sulfate liposome injection (VSLI), sphingomyelin and cholesterol nanoparticle vincristine (VCR), facilitates VCR dose-intensification and densification plus enhances target tissue delivery. We evaluated high-dose VSLI monotherapy in adults with Philadelphia chromosome (Ph) -negative ALL that was multiply relapsed, relapsed and refractory to reinduction, and/or relapsed after hematopoietic cell transplantation (HCT).

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LFA-1/ICAM-1 interaction is essential in support of inflammatory and specific T-cell regulated immune responses by mediating cell adhesion, leukocyte extravasation, migration, antigen presentation, formation of immunological synapse, and augmentation of T-cell receptor signaling. The increase of ICAM-1 expression levels in conjunctival epithelial cells and acinar cells was observed in animal models and patients diagnosed with dry eye. Therefore, it has been hypothesized that small molecule LFA-1/ICAM-1 antagonists could be an effective topical treatment for dry eye.

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This letter describes the structure-activity relationship (SAR) of the 'right-wing' α-amino acid residue of potent tetrahydroisoquinoline (THIQ)-derived LFA-1/ICAM-1 antagonists. Novel (S)-substituted heteroaryl-bearing α-amino acids have been identified as replacements of the 'right-wing' (S)-2,3-diaminopropanoic acid (DAP) moiety. Improvement of potency in the Hut-78 assay in the presence of 10% human serum has also been achieved.

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Marqibo (vincristine sulfate liposome injection, VSLI) is a novel liposomal formulation of vincristine sulfate (VCR) being developed for the systemic treatment of cancer. This study evaluated the pharmacokinetics (PK) of Marqibo in subjects with melanoma and impaired hepatic function. Calculated PK parameters were similar in subjects with impaired liver function compared with those in subjects with adequate liver function.

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This letter describes the discovery of a novel series of tetrahydroisoquinoline (THIQ)-derived small molecules that potently inhibit both human T-cell migration and super-antigen induced T-cell activation through disruption of the binding of integrin LFA-1 to its receptor, ICAM-1. In addition to excellent in vitro potency, 6q shows good pharmacokinetic properties and its ethyl ester (6t) demonstrates good oral bioavailability in both mouse and rat. Either intravenous administration of 6q or oral administration of its ethyl ester (6t) produced a significant reduction of neutrophil migration in a thioglycollate-induced murine peritonitis model.

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Purpose: Voreloxin, a novel replication-dependent DNA-damaging agent, intercalates DNA and inhibits topoisomerase II. Voreloxin induces site-selective DNA double-strand breaks and apoptosis. We report the phase 1 experience of voreloxin in patients with relapsed/refractory solid tumors, including dose-limiting toxicity (DLT), maximum-tolerated dose (MTD), pharmacokinetics, and clinical activity.

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Main Purpose: Voreloxin is a first-in-class anticancer quinolone derivative that intercalates DNA and inhibits topoisomerase II, inducing site-selective DNA damage. Voreloxin is in clinical studies, as a single agent and in combination with cytarabine, for the treatment of acute myeloid leukemia (AML). The preclinical studies reported here were performed to investigate the activity of voreloxin alone and in combination with cytarabine, in support of the clinical program.

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Purpose: The Aurora family of serine/threonine kinases (Aurora-A, Aurora-B, and Aurora-C) plays a key role in cells orderly progression through mitosis. Elevated expression levels of Aurora kinases have been detected in a high percentage of melanoma, colon, breast, ovarian, gastric, and pancreatic tumors. We characterized the biological and pharmacological properties of SNS-314, an ATP-competitive, selective, and potent inhibitor of Aurora kinases.

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This Letter describes the discovery and key structure-activity relationship (SAR) of a series of 2-aminobenzimidazoles as potent Aurora kinase inhibitors. 2-Aminobenzimidazole serves as a bioisostere of the biaryl urea residue of SNS-314 (1c), which is a potent Aurora kinase inhibitor and entered clinical testing in patients with solid tumors. Compared to SNS-314, this series of compounds offers better aqueous solubility while retaining comparable in vitro potency in biochemical and cell-based assays; in particular, 6m has also demonstrated a comparable mouse iv PK profile to SNS-314.

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Compound 1 (SNS-314) is a potent and selective Aurora kinase inhibitor that is currently in clinical trials in patients with advanced solid tumors. This communication describes the synthesis of prodrug derivatives of 1 with improved aqueous solubility profiles. In particular, phosphonooxymethyl-derived prodrug 2g has significantly enhanced solubility and is converted to the biologically active parent (1) following iv as well as po administration to rodents.

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(+)-1,4-Dihydro-7-(trans-3-methoxy-4-methylamino-1-pyrrolidinyl)-4-oxo-1-(2-thiazolyl)-1,8-naphthyridine-3-carboxylic acid (voreloxin; formerly SNS-595 or AG-7352) is currently under investigation for the treatment of platinum-resistant ovarian cancer and acute myeloid leukemia. In vitro voreloxin undergoes minimal cytochrome P450 (P450) and UDP glucuronosyltransferase (UGT)-mediated metabolism, and in vivo excretion of unchanged voreloxin as the major species is consistent with the slow rate of metabolism observed in vitro. The objective of the present study was to examine the cross-species metabolic profile of voreloxin and to identify and characterize the metabolites formed in rats.

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