Inhibition of the extracellular signal-regulated kinases ERK1 and ERK2 (ERK1/2) offers a promising therapeutic strategy in cancers harboring activated RAS/RAF/MEK/ERK signaling pathways. Here, we describe an orally bioavailable and selective ERK1/2 inhibitor, ASN007, currently in clinical development for the treatment of cancer. In preclinical studies, ASN007 shows strong antiproliferative activity in tumors harboring mutations in BRAF and RAS (KRAS, NRAS, and HRAS). ASN007 demonstrates activity in a BRAFV600E mutant melanoma tumor model that is resistant to BRAF and MEK inhibitors. The PI3K inhibitor copanlisib enhances the anti proliferative activity of ASN007 both in vitro and in vivo due to dual inhibition of RAS/MAPK and PI3K survival pathways. Our data provide a rationale for evaluating ASN007 in RAS/RAF-driven tumors as well as a mechanistic basis for combining ASN007 with PI3K inhibitors.
Abstract The 5T4 oncofetal antigen (trophoblast glycoprotein) is expressed in a wide range of malignant tumors but shows very limited expression in normal adult tissues. ASN004 is a 5T4-targeted antibody–drug conjugate (ADC) that incorporates a novel single-chain Fv-Fc antibody and Dolaflexin drug-linker technology, with an Auristatin F hydroxypropylamide payload drug-to-antibody ratio of approximately 10–12. The pharmacology, toxicology, and pharmacokinetic properties of ASN004 and its components were investigated in vitro and in vivo. ASN004 showed high affinity for the 5T4 antigen and was selectively bound to and internalized into 5T4-expressing tumor cells, and potent cytotoxicity was demonstrated for a diverse panel of solid tumor cell lines. ASN004 induced complete and durable tumor regression in multiple tumor xenograft models, derived from human lung, breast, cervical, and gastric tumor cell lines having a wide range of 5T4 expression levels. A single dose of ASN004, as low as 1 mg/kg i.v., achieved complete tumor regression leading to tumor-free survivors in the A431 cervical cancer model. In head-to-head studies, superior activity of ASN004 was demonstrated against trastuzumab-DM1, in a low-5T4/high-HER2 expressing gastric tumor model, and 10-fold greater potency was found for ASN004 against the 5T4-targeted ADC PF-06263507 in a lung tumor model. In marmoset monkeys, ASN004 was well tolerated at doses up to 1.5 mg/kg Q3W i.v., and showed dose-dependent exposure, linear pharmacokinetics, and markedly low exposure of free payload drug. Taken together, these findings identify ASN004 as a promising new ADC therapeutic for clinical evaluation in a broad range of solid tumor types.
The RAS/RAF/MEK/ERK pathway is aberrantly activated in approximately 30% of human cancers. Selective inhibitors of MEK or BRAF have shown clinical activity in both solid tumors and hematologic malignancies, but responses are typically transient due to acquired resistance and feedback activation of ERK1/2. We developed a potent, selective ERK1/2 inhibitor, ASN007, with anti-tumor activity in both solid tumors and lymphoma models with BRAF and RAS mutations and also in a melanoma PDX model resistant to BRAF and MEK inhibitors. ASN007 synergizes with PI3K inhibitors both in vitro and in vivo. Our data show that the selective ERK1/2 inhibitor ASN007, alone or in combination with PI3K inhibitors, may offer a new therapeutic option for patients with RAS or MAPK pathway activated cancers.
Abstract The RAS/MAPK pathway is one of the most commonly dysregulated signaling pathways found in human cancers. KRAS, HRAS and NRAS genes, which play a critical role in transducing the signal from receptor tyrosine kinases to the downstream target proteins such as BRAF and MEK1/2, are frequently mutated in most solid tumors. The extracellular signal-regulated kinases, ERK1 and ERK2 (ERK1/2), which are downstream of MEK and RAF kinases, serve as a key node in this crucial signaling pathway in tumor cells. Targeting ERK1/2 offers a promising therapeutic strategy for a broad range of cancers, particularly the ones driven by RAS mutations, and in overcoming resistance to MEK/BRAF inhibitors. In this report, we present discovery and characterization of a novel orally bioavailable compound, ASN007, that showed potent inhibition of ERK1/2 kinases in a biochemical assay with IC50 = 2 nM for both targets. Interestingly, ASN007 displayed a much slower dissociation rate (longer target residence time) as compared to other ERK inhibitors. ASN007 showed potent antiproliferative activity that was selective for RAS/MAPK pathway dependent cancer cell lines, and did not affect the growth of cell lines harboring PI3K pathway or receptor tyrosine kinase mutations. Of note, ASN007 showed much more potent and broader activity against a panel of RAS mutant cell lines as compared to other ERK1/2 inhibitors. In a panel of 96 KRAS mutant cell lines, ASN007 showed strong activity across all KRAS subtype mutations, including G12C, G12D, G12V and G13D. In tumor xenograft models harboring KRAS and NRAS mutations, a daily oral dosing regimen of ASN007 provided strong tumor growth inhibition and was well tolerated. ASN007 also showed strong single-agent antitumor activity in colorectal PDX models with various KRAS subtype mutations including G12C, G12D, and G12S. A clinical phase 1 trial of ASN007 in patients with BRAF and KRAS, HRAS and NRAS mutant melanoma, colorectal, non-small lung and pancreatic cancers is currently ongoing (NCT03415126). Citation Format: Sanjeeva P. Reddy, Scott K. Thompson, Helen Usansky, Roger A. Smith, Louis Denis, Sandeeep Gupta. ASN007, an oral ERK1/2 inhibitor, shows strong antitumor activity across a panel of KRAS subtype mutant cancer models [abstract]. In: Proceedings of the AACR Special Conference on Targeting RAS-Driven Cancers; 2018 Dec 9-12; San Diego, CA. Philadelphia (PA): AACR; Mol Cancer Res 2020;18(5_Suppl):Abstract nr B05.
The extracellular-signal-regulated kinases, ERK1 and ERK2 (ERK1/2), are key players in the RAS/RAF/MEK signaling pathway. This pathway is frequently hyper-activated in a wide range of cancers through mutations in upstream targets such as BRAF, RAS, and receptor tyrosine kinases. Inhibition of ERK1/2 offers a promising therapeutic strategy for these cancers, particularly the ones driven by RAS mutations. In order to inhibit this critical node of the RAS/RAF/MEK pathway, we discovered and characterized ASN007, a novel compound that shows potent inhibition of ERK1/2 kinases in a biochemical assay with low single-digit nM IC50 values. ASN007 showed a slow dissociation rate (long target residence time) as compared to several other known ERK inhibitors. In mechanistic cell-based assays, ASN007 inhibited the phosphorylation of ERK1/2 substrates such as RSK1, FRA1, and Elk1 in various cell lines. ASN007 showed single-digit nanomolar antiproliferative activity that was selective for MAPK-pathway dependent cancer cell lines. Indeed, ASN007 showed much more potent activity against a broader panel of KRAS, NRAS, and HRAS mutant cell lines compared to other ERK1/2 inhibitors such as BVD-523 and GDC-0994. In a daily oral dosing regimen, ASN007 demonstrated strong inhibition of tumor growth in multiple BRAF and KRAS mutant xenograft models in mice and was well tolerated at efficacious doses. Of note, ASN007 also showed strong efficacy using various intermittent dosing regimens. ASN007 has a good pharmacokinetic profile in preclinical species and does not exhibit significant inhibition of CYP enzymes or hERG channel. IND-enabling studies are ongoing in preparation for a phase 1 clinical trial to evaluate oral ASN007 in patients with BRAF and K- , H- , and N-RAS mutant cancers Citation Format: Sanjeeva P. Reddy, Dhanalakshmi Sivanandhan, Purushottam Dewang, Niranjan Rao, Roger A. Smith, Scott K. Thompson. ASN007, a novel oral ERK inhibitor, shows robust antitumor activity in RAS mutant cancer models [abstract]. In: Proceedings of the AACR-NCI-EORTC International Conference: Molecular Targets and Cancer Therapeutics; 2017 Oct 26-30; Philadelphia, PA. Philadelphia (PA): AACR; Mol Cancer Ther 2018;17(1 Suppl):Abstract nr B150.
Abstract The 5T4 oncofetal antigen (trophoblast glycoprotein) is expressed in a wide range of malignant tumors, while showing very limited expression in normal adult tissues. This selective pattern of expression establishes 5T4 as an attractive therapeutic target for the Antibody-Drug Conjugate (ADC) strategy. ASN004 is an anti-5T4 ADC that incorporates a novel single-chain homo-dimer antibody, Fleximer® linker technology (Mersana Therapeutics), and cytotoxic dolastatin (auristatin) analog warheads, with a drug/antibody ratio of ~15:1. ASN004 shows high affinity for the 5T4 antigen (Kd < 30 pM), with selective binding and internalization to 5T4-expressing tumor cells. Potent, selective cytotoxicity has been determined for a diverse panel of tumor cell lines. ASN004 provides complete and durable tumor regression in multiple tumor xenograft models, derived from human lung, breast, cervical, and gastric tumor cell lines having a range of 5T4 expression levels. Tumor-free survivors could be achieved in tumor models with a single dose of ASN004, as low as 1 mg/kg iv. The broad, superior activity of ASN004 was demonstrated in a head-to-head study against trastuzumab-DM1, in a low-5T4/high-HER2 expressing tumor model. Finally, efficacy of ASN004 in patient-derived tumor xenograft (PDX) models will be presented. In summary, ASN004 has been established as a promising ADC therapeutic for multiple tumor types, encompassing a wide range of 5T4-expression levels. IND-enabling studies are ongoing in preparation for advancement to clinical development. Citation Format: Roger A. Smith, David J. Zammit, Sanjeeva P. Reddy. ASN004, a novel 5T4-targeted Dolaflexin ADC, causes complete and durable tumor regression in a variety of tumor xenograft models [abstract]. In: Proceedings of the AACR-NCI-EORTC International Conference: Molecular Targets and Cancer Therapeutics; 2017 Oct 26-30; Philadelphia, PA. Philadelphia (PA): AACR; Mol Cancer Ther 2018;17(1 Suppl):Abstract nr B109.
Abstract The RAS/RAF/MEK pathway is frequently dysregulated in a broad range of cancers through mutations in several targets such as KRAS, NRAS, HRAS, BRAF, NF1 and receptor tyrosine kinases. Although MEK and BRAF inhibitors improve the outcome for patients with BRAF mutant melanoma and lung cancers, the duration of response is limited due to reactivation of the pathway. The extracellular-signal-regulated kinases, ERK1 and ERK2 (ERK1/2), which are downstream of MEK and BRAF kinases, serve as a key node in this crucial signaling pathway. Targeting ERK1/2 offers a promising therapeutic strategy for a broad range of cancers, particularly the ones driven by RAS mutations, and in overcoming resistance to MEK/BRAF inhibitors. Here, we present discovery and characterization of a novel orally bioavailable compound, ASN007, that showed inhibition of ERK1/2 kinases in a biochemical assay with IC50 = 2 nM for both targets. Interestingly, ASN007 displayed a much slower dissociation rate (longer target residence time) as compared to other ERK inhibitors. ASN007 inhibited the phosphorylation of ERK1/2 substrates such as RSK1, FRA1 and Elk1 in various cell lines with low nM IC50 values. ASN007 showed potent anti-proliferative activity that was selective for MAPK-pathway dependent cancer cell lines. Indeed, ASN007 showed much more robust activity against RAS mutant cell lines as compared to other ERK1/2 inhibitors. In a daily oral dosing regimen, ASN007 demonstrated strong tumor growth inhibition in BRAF, KRAS and NRAS mutant xenograft models in mice and was well tolerated at efficacious doses. Of note, ASN007 showed strong efficacy using various intermittent dosing regimens. It also showed a strong anti-tumor activity in colorectal PDX models with various KRAS mutations. Furthermore, ASN007 showed regression of tumor growth in a melanoma PDX model that was resistant to both MEK and BRAF inhibitors. In addition to the single agent activity, greater efficacy was observed when ASN007 was combined with immunotherapeutic agents such as an anti-PD-1 antibody or an IDO-1 inhibitor. ASN007 does not exhibit significant inhibition of CYP enzymes or the hERG channel. A Phase 1 trial with ASN007 in patients with BRAF and K-, H- and N-RAS mutant melanoma, colorectal, non-small lung and pancreatic cancers is being planned. Citation Format: Sanjeeva P. Reddy, Niranjan S. Rao, Roger A. Smith, Scott K. Thompson, Sarper Toker. Strong antitumor activity of ASN007, an oral ERK1/2 inhibitor, in PDX tumor models with MAP kinase pathway alterations including KRAS mutations [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2018; 2018 Apr 14-18; Chicago, IL. Philadelphia (PA): AACR; Cancer Res 2018;78(13 Suppl):Abstract nr 5783.
Abstract ASN004 is an Antibody Drug Conjugate (ADC) that targets the 5T4 oncofetal antigen (trophoblast glycoprotein). High expression of 5T4 is observed in a wide range of malignant tumors, while very limited expression is found in normal tissues. ASN004 incorporates a novel single-chain homo-dimer antibody, Fleximer® linker technology (Mersana Therapeutics), and several cytotoxic dolastatin (auristatin) analog warheads per ADC molecule with a drug/antibody ratio of ~15:1. ASN004 shows high affinity for the 5T4 antigen (Kd < 30 pM) and 5T4-expressing tumor cells; rapid cellular internalization; and potent, selective cytotoxicity. ASN004 provides complete tumor regressions and tumor-free survivors in multiple tumor xenograft models, derived from human tumor cell lines having both high and low 5T4 expression levels. Tumor-free survivors were achieved at doses that are well-tolerated, based on xenograft body weight measures and exploratory toxicology studies in pharmacologically-relevant non-human primates. As well, tumor-free survivors were achieved in xenograft tumor models following administration of a single dose of ASN004, as low as 1 mg/kg iv. The broad activity of ASN004 has been demonstrated by its superior efficacy in a head-to-head study against trastuzumab-DM1, in a low-5T4, high-HER2 expressing tumor xenograft model. Finally, tumor xenografts that initially responded to ASN004 and later showed tumor regrowth, had not developed resistance and responded well to subsequent treatment with ASN004. Overall, ASN004 is demonstrated to be an ADC with high therapeutic potential in multiple tumor types, encompassing a wide range of 5T4-expression levels. IND-enabling toxicology studies are ongoing, in preparation for advancement to clinical studies in patients with solid tumors. Citation Format: Roger A. Smith, David J. Zammit, Sanjeeva P. Reddy. ASN004, a novel 5T4-targeted Dolaflexin ADC, achieves complete regressions and tumor-free survivors in a broad variety of solid tumor models [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2017; 2017 Apr 1-5; Washington, DC. Philadelphia (PA): AACR; Cancer Res 2017;77(13 Suppl):Abstract nr 43. doi:10.1158/1538-7445.AM2017-43
Abstract Spleen tyrosine kinase (SYK) and Janus kinase (JAK) play important roles in the pathogenesis of various types of lymphomas, solid tumors, and myeloproliferative and inflammation disorders. Inhibition of both SYK and JAK kinases has been shown to suppress tumor growth in various preclinical and/or clinical studies. ASN002 is a novel and potent dual inhibitor of SYK and JAK kinases with IC50 values of 4-46 nM in biochemical assays. In mechanistic cell-based studies, ASN002 strongly suppressed the SYK and JAK family kinase signaling pathways as measured in pLAT and pSTAT assays, respectively. When profiled in a panel of 178 cell lines, the compound showed strong anti-proliferative activity in many lymphoid/leukemia cell lines, including SU-DHL-6, SU-DHL-4, OCI-LY10, H929 and Pfeiffer. The proliferation of many solid tumor cell lines representing bladder, lung and colorectal cancer tumor types was also potently inhibited. Importantly, it also strongly inhibited the growth of ibrutinib and idelalisib resistant cell lines. ASN002 was highly efficacious in inhibiting the tumor growth in several tumor xenograft models which include Pfeiffer (diffuse large B-cell lymphoma, DLBCL), SU-DHL-6 (DLBCL), H929 (myeloma), HEL (erythroleukemia), and RT112 (bladder). ASN002 shows little to no inhibition of CYP450 isozymes suggesting low potential for drug-drug interactions. ASN002 is currently being evaluated in a Phase I/II clinical study in patients with lymphomas (DLBCL, mantle cell lymphoma and follicular lymphoma) and solid tumors. Citation Format: Sanjeeva P. Reddy, Niranjan Rao, David Zammit, Scott K. Thompson, Roger A. Smith, Louis Denis. ASN002: A novel dual SYK/JAK inhibitor with strong antitumor activity in both hematological and solid tumor xenograft models [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2017; 2017 Apr 1-5; Washington, DC. Philadelphia (PA): AACR; Cancer Res 2017;77(13 Suppl):Abstract nr 4204. doi:10.1158/1538-7445.AM2017-4204
Abstract The RAS-RAF-MEK and PI3K-AKT-mTOR pathways are two major signaling pathways involved in human cancer. Components of these two pathways are frequently mutated in a wide variety of solid tumors. Concurrent double mutations in the two pathways are also observed quite often in a broad range of tumor types. Additionally, inhibition of one of these pathways often leads to the upregulation of the other pathway and development of resistance. In preclinical models, combined inhibition of both pathways has been shown to impart greater efficacy as compared to inhibition of either pathway alone. ASN003 is a novel, highly selective, small-molecule inhibitor of both RAS-RAF and PI3K pathways, discovered using a rational design approach. ASN003 shows potent inhibitory activity against B-RAF and PI3K kinases (low nM IC50). Within the PI3K family, ASN003 has high selectivity for inhibition of PI3Kα and PI3Kδ over PI3Kβ. In a panel of 292 kinases, ASN003 showed high selectivity for inhibiting B-RAF and PI3 kinases, and associated mutant kinases. In cell-based mechanistic studies, ASN003 inhibited phosphorylation of ERK, AKT and S6, and showed strong antiproliferative activity (IC50 = 60-300 nM) in cell lines with B-RAF and PI3K pathway mutations as well as in vemurafenib-resistant cell lines. In pharmacodynamic studies in multiple tumor models, ASN003 showed strong inhibition of the phosphorylation of downstream targets of B-RAF and PI3K, confirming appropriate target engagement. In in vivo efficacy studies, ASN003 showed strong tumor growth inhibition or regression in multiple tumor xenograft models, including A375 (B-Raf V600E mutation), RKO (B-Raf V600E and PIK3CA mutations), and A2058 (B-Raf V600E mutation and PTEN loss). We now report that ASN003 also showed strong tumor growth inhibition (>80%) in a patient-derived xenograft (PDX) model established from a relapsed patient with progressive B-Raf mutant melanoma who showed initial response to vemurafenib. Sequencing analysis showed that the vemurafenib resistant tumor acquired a concurrent PIK3CA mutation. Dual targeting of the B-RAF and PI3K pathways with ASN003 has the potential to treat and/or prevent the acquired resistance to selective B-RAF inhibitors, and may also treat a broader patient population and provide greater efficacy and survival benefit than selective B-RAF inhibitors or selective PI3K pathway inhibitors alone. ASN003 is currently in Phase I clinical development in patients with advanced solid tumors, including tumors with B-Raf V600 mutation, PI3 kinase pathway alterations or PTEN loss. Citation Format: Scott K. Thompson, Roger A. Smith, Niranjan Rao, Michael J. Wick, Sanjeeva P. Reddy. ASN003, a highly selective inhibitor of B-Raf and PI3 kinases, shows strong antitumor activity in B-Raf inhibitor resistant patient-derived xenograft models [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2017; 2017 Apr 1-5; Washington, DC. Philadelphia (PA): AACR; Cancer Res 2017;77(13 Suppl):Abstract nr 158. doi:10.1158/1538-7445.AM2017-158
The SPIRAL2 injector, installed in its tunnel, is currently under commissioning at GANIL, Caen, France. The injector is composed of two low energy beam transport lines: one is dedicated to the light ion beam production, the other to the heavy ions. The first light ion beam, created by a 2.45 GHz electron cyclotron resonance ion source, has been successfully produced in December 2014. The first beam of the PHOENIX V2 18 GHz heavy ion source was analyzed on 10 July 2015. A status of the SPIRAL2 injector commissioning is given. An upgrade of the heavy ion source, named PHOENIX V3 aimed to replace the V2, is presented. The new version features a doubled plasma chamber volume and the high charge state beam intensity is expected to increase by a factor of 1.5 to 2 up to the mass ∼50. A status of its assembly is proposed.
The extracellular-signal-regulated kinases, ERK1 and ERK2 (ERK1/2), play a critical role in the RAS/RAF/MEK signaling pathway which is quite frequently activated by mutations in upstream targets such as BRAF, RAS and receptor tyrosine kinases. Most of the resistance mechanisms to BRAF and MEK inhibitors ultimately lead to increase in phosphorylation of ERK1/2 suggesting the importance of this node in the RAS/RAF/MEK pathway even in the resistance setting. Therefore, inhibition of ERK1/2 offers a promising strategy to address both innate and acquired resistance to BRAF and MEK inhibitors in various solid tumors. In order to inhibit this critical node of the RAS/RAF/MEK pathway, we discovered and characterized ASN007, a novel compound that shows potent inhibition of ERK1/2 kinases in a biochemical assay with low single-digit IC50 values. In mechanistic cell-based assays, ASN007 inhibited the phosphorylation of ERK1/2 substrates such as pRSK1, FRA1 and Elk1 in various cell lines. As expected, the compound did not have any effect on the phosphorylation of ERK1/2. ASN007 showed strong anti-proliferative activity in both BRAF and RAS mutant cell lines. Importantly, when compared to other ERK1/2 inhibitors such as BVD-523 and GDC-0994, ASN007 showed potent antiproliferative activity in a much broader panel of KRAS, NRAS and HRAS mutant cell lines representing various histological tumor types. The compound also caused cell cycle arrest at the G0-G1 phase and induced apoptosis in both BRAF and RAS mutant cell lines. In a daily oral dosing regimen, ASN007 demonstrated strong inhibition of tumor growth in multiple BRAF and KRAS mutant xenograft models in mice and was well tolerated at efficacious doses. ASN007 has a good pharmacokinetic profile in pre-clinical species and does not exhibit significant inhibition of CYP enzymes or hERG channel. Based on its profile in preclinical studies, ASN007 is expected to show strong efficacy in BRAF and RAS mutant cancers. ASN007 is currently in preclinical development. Citation Format: Sanjeeva P. Reddy, Dhanalakshmi Sivanandhan, Raghava Reddy Kethiri, Sreekala Nair, Purushottam Dewang, Mohd Zainuddin, Krishnakumar Vaithilingam, Roger A. Smith, Sandeep Gupta, Scott K. Thompson. ASN0007, a potent ERK1/2 inhibitor with strong antitumor activity in multiple RAS mutant models. [abstract]. In: Proceedings of the 107th Annual Meeting of the American Association for Cancer Research; 2016 Apr 16-20; New Orleans, LA. Philadelphia (PA): AACR; Cancer Res 2016;76(14 Suppl):Abstract nr 187.
Various genes in RAS-RAF and PI3K pathways are frequently mutated in a wide variety of solid tumors. Concurrent double mutations are also observed quite often in a broad range of tumor types. Combined inhibition of both pathways has been shown to impart greater efficacy in multiple tumor models in animals. In order to simultaneously block these pathways, we have discovered and characterized several molecules showing dual inhibition of the RAS-RAF and PI3K pathways. ASN003 has been identified as a lead compound with potent and highly selective inhibitory activity against B-RAF, PI3K and mTOR kinases (low nM IC50). Within the PI3K family, ASN003 has high selectivity for inhibition of PI3Kα and PI3Kδ over PI3Kβ. In cell-based mechanistic studies, ASN003 did not increase phospho-ERK levels in the KRAS mutant cell line HCT116 and thus may not cause paradoxical activation of RAS/MAPK pathway in tumors. Consistent with its dual inhibition profile, ASN003 showed strong antiproliferative activity in cell lines with B-RAF and PI3K pathway mutations as well as vemurafenib (B-RAF inhibitor)-resistant cell lines. ASN003 suppressed the phosphorylation of downstream targets of B-RAF, PI3K and mTOR in pharmacodynamic studies in multiple tumor models, indicating appropriate target engagement. In in vivo efficacy studies, ASN003 showed regression in a B-RAFV600E mutant A375 xenograft model and also caused significant tumor growth inhibition in RKO and A2058 tumor models, which harbor mutations in PIK3CA or PTEN genes, respectively, in addition to the B-RAF V600E mutation. Dual targeting of the B-RAF and PI3K pathways with ASN003 has the potential to treat and/or prevent the acquired resistance to selective B-RAF inhibitors, and may also treat a broader patient population and provide greater efficacy and survival benefit than selective B-RAF inhibitors or selective PI3K pathway inhibitors alone. Due to the lack of paradoxical activation, treatment with ASN003 may not cause skin toxicities seen with pure B-RAF inhibitors. ASN003 is currently in preclinical development and is expected to enter Phase I/II clinical trials by early 2016. Citation Format: Scott K. Thompson, Mahaboobi Jaleel, Vijay Kumar Nyavanandi, Murali Ramachandra, Hosahalli Subramanya, Aravind Basavaraju, Vaibhav Sihorkar, Roger A. Smith, Niranjan Rao, Sandeep Gupta, Sanjeeva P. Reddy. ASN003, a unique B-RAF inhibitor with additional selective activity against PI3K and mTOR kinases, shows strong antitumor activity in multiple xenograft models. [abstract]. In: Proceedings of the AACR-NCI-EORTC International Conference: Molecular Targets and Cancer Therapeutics; 2015 Nov 5-9; Boston, MA. Philadelphia (PA): AACR; Mol Cancer Ther 2015;14(12 Suppl 2):Abstract nr B100.
ASN004 is an Antibody Drug Conjugate (ADC) that targets the 5T4 oncofetal antigen (trophoblast glycoprotein), which is highly expressed in a wide range of malignant tumors, while having very limited expression in normal tissues. ASN004 incorporates a novel single-chain homo-dimer antibody, Fleximer® linker technology (Mersana Therapeutics), and several cytotoxic dolastatin (auristatin) analog warheads per ADC molecule (drug/antibody ratio ∼15). ASN004 shows high affinity for the 5T4 antigen and for 5T4-expressing tumor cells. As well, ASN004 shows potent cytotoxicity that is selective for 5T4-expressing tumor cells. ASN004 provides strong tumor regression and tumor-free survivors in multiple tumor xenograft models, at well-tolerated doses as low as 0.3 mg/kg iv. Furthermore, ASN004 causes tumor regression when administered to xenografts bearing more advanced (500 mm3) tumors. Robust, potent efficacy for ASN004 has also been demonstrated in head-to-head comparison studies with relevant reference ADCs. A favorable pharmacokinetics profile was observed in rodents and primates. Dose-range finding exploratory toxicology studies have been completed in both pharmacological and non-pharmacological non-clinical species. Efforts toward IND-enabling safety studies with this promising new agent are in progress. Citation Format: Roger A. Smith, Nitin K. Damle, Sanjeeva P. Reddy, Alex Yurkovetskiy, Natalya Bodyak, Mao Yin, Dmitry Gumerov, Elena Ter-Ovanesyan, Liu Qin, Peter U. Park, Timothy B. Lowinger, Sandeep Gupta. ASN004, a novel 5T4-targeted Dolaflexin™ antibody drug conjugate, causes complete regression in multiple solid tumor models. [abstract]. In: Proceedings of the 106th Annual Meeting of the American Association for Cancer Research; 2015 Apr 18-22; Philadelphia, PA. Philadelphia (PA): AACR; Cancer Res 2015;75(15 Suppl):Abstract nr 1693. doi:10.1158/1538-7445.AM2015-1693
Abstract Spleen tyrosine kinase (SYK) and Janus kinase (JAK) play important roles in the pathogenesis of various types of lymphomas, solid tumors, myeloproliferative and inflammation disorders. Inhibition of these targets has been shown to suppress tumor growth in various preclinical and/or clinical studies. Most B-cell malignancies are driven by the B-cell receptor (BCR) pathway, and SYK plays a critical role in this pathway by initiating and amplifying the signal from the receptor. JAK kinases (JAK1, JAK2, JAK3 and TYK2), upon stimulation by various growth factors and cytokines, phosphorylate signal transducers and activators of transcription family proteins (STAT1 -5) which activate various downstream target genes. ASN002 is a novel and potent dual inhibitor of SYK and JAK kinases with IC50 values of 5-46 nM in biochemical assays. In mechanistic cell-based studies involving IgE and cytokine stimulations, ASN002 strongly suppressed the SYK and JAK family kinase signaling pathways measured as pLAT and pSTAT levels, respectively. The compound showed anti-proliferative activity in a broad panel of human cancer cell lines including DHL6, DHL4, OCI-LY10, H929, Pfeiffer, HT-1376, and Lovo, suggesting activity in both solid and hematological tumor types. In a multiple myeloma (H929) xenograft model, ASN002 exhibited significant efficacy in inhibiting tumor growth (>95%). It also significantly delayed the onset of hind limb paralysis in the human erythroleukemia (HEL) mouse model. ASN002 has good oral bioavailability, metabolic stability, is not a Pgp substrate, and shows little to no inhibition of CYP450 isozymes. ASN002 showed a favorable safety profile in rat and dog toxicology studies. A Phase I/II clinical study is being planned for the evaluation of ASN002 in lymphomas (diffuse large B cell lymphoma, mantle cell lymphoma, follicular lymphoma) and solid tumors. Citation Format: Sanjeeva Reddy, Nitin K. Damle, Aranapakam M. Venkatesan, Scott K. Thompson, Niranajan Rao, Roger A. Smith, Sandeep Gupta. ASN002: A novel dual SYK/JAK inhibitor with strong antitumor activity. [abstract]. In: Proceedings of the 106th Annual Meeting of the American Association for Cancer Research; 2015 Apr 18-22; Philadelphia, PA. Philadelphia (PA): AACR; Cancer Res 2015;75(15 Suppl):Abstract nr 792. doi:10.1158/1538-7445.AM2015-792
ASN002 is an orally bioavailable potent dual inhibitor of spleen tyrosine kinase (SYK) and Janus kinases (JAK) with low nM IC50 values in biochemical assays. It is currently under clinical evaluation in a phase I/II study for safety, tolerability, pharmacokinetics, pharmacodynamics, and preliminary efficacy in diffuse large B-cell lymphoma (DLBCL), Mantle cell lymphoma (MCL) and Follicular lymphoma (FCL). SYK and JAK are tyrosine kinases that play important roles in various types of lymphomas, solid tumors, myeloproliferative and inflammation disorders. Inhibition of these targets has been shown to suppress tumor growth in various preclinical and clinical studies. ASN002 showed anti-proliferative activity in a broad panel of cell lines representing both solid and leukemia/lymphoma tumor types. ASN002 potently induced apoptosis in a DLBCL cell-line and showed a strong dose dependent tumor growth inhibition in multiple DLBCL xenograft models. ASN002 also showed strong anti-proliferative activity in an ibrutinib-resistant cell line. In mechanistic cell-based studies, ASN002 strongly suppressed IgE and IL-6 stimulated responses that are thought to be mediated by SYK and JAK, respectively. ASN002 exhibited good oral bioavailability and metabolic stability in animal models. ASN002 is being evaluated in patients with solid tumors and hematological malignancies (excluding those with extensive marrow involvement) in the dose escalation phase which employs a 3+3 open label design. Sequential doses of 10, 20, 30, 40 and 50 mg BID are planned. Patient accrual is continuing and no dose limiting toxicities were identified in the first cohort. Data on safety, tolerability, pharmacokinetics and pharmacodynamics will be presented.