Supplementary Figure 5 from R428, a Selective Small Molecule Inhibitor of Axl Kinase, Blocks Tumor Spread and Prolongs Survival in Models of Metastatic Breast Cancer
Supplementary Materials, Figure Legends 1-6 from R428, a Selective Small Molecule Inhibitor of Axl Kinase, Blocks Tumor Spread and Prolongs Survival in Models of Metastatic Breast Cancer
Supplementary Tables 1-3 from R428, a Selective Small Molecule Inhibitor of Axl Kinase, Blocks Tumor Spread and Prolongs Survival in Models of Metastatic Breast Cancer
Structural optimization of a previously reported agonist of µOR, PZM21 is described resulting in the discovery of a novel series of amides with at least 4-folds enhanced CNS penetration in rat. Furthermore, these efforts yielded compounds with varying levels of efficacy on the receptor ranging from high efficacy agonists such as compound 20 to antagonists, such as 24. The correlation between in vitro activation of µOR and relative activity in models of analgesia for these compounds is discussed. The compelling results obtained in these studies demonstrate the potential utility of these newly discovered compounds in the treatment of pain and opioid use disorder.
Axl tyrosine kinase has been shown to be involved in multiple pathways contributing to tumor development, angiogenesis, and metastasis. High Axl expression has been observed in many human tumors where it appears to confer aggressive tumor behavior. Here we present several series of dual Axl-VEGF-R2 kinase inhibitors based on extensive optimization of an acyl diaminotriazole. It was hypothesized that dual inhibition of these two receptor tyrosine kinases may have a synergistic affect in inhibiting tumor angiogenesis and metastasis. One of these molecules, R916562 showed comparable activity to Sunitinib in two mouse tumor xenograft models and a mouse corneal micropocket model.
Abstract MerTK, a TAM (Tyro3, Axl, MerTK) family RTK, is expressed on phagocytic cells. Its normal function is to dampen innate immune responses to self-antigens. MerTK is an indirect phosphatidylserine (PtdSer) receptor: PtdSer-binding TAM ligands (Gas6 or Protein S) bridge interactions between MerTK and PtdSer externalized on apoptotic cells (ACs), resulting in AC internalization (efferocytosis). Ensuing MerTK signaling leads to anti-inflammatory M2 macrophage polarization, suppression of pro-inflammatory cytokine production, and a tolerogenic outcome. Tumors are rich in ACs and TAM ligands. Syngeneic tumors implanted in MerTK −/− mice exhibit impaired growth and metastasis compared with those implanted in WT mice. Moreover, MerTK aberrantly expressed on hematological and epithelial malignancies promotes survival and chemoresistance. Thus, pharmacological inhibition of MerTK may have clinical benefit by increasing availability of dead tumor cell antigens, blocking tumor-induced immunosuppression, or blocking tumor cell survival. Here we describe novel and potent MerTK-selective and Mer-Axl small molecule inhibitors that block both MerTK in vitro kinase activity and MerTK autophosphorylation and downstream signaling in cells. Moreover, compounds were able to inhibit phagocytosis of ACs by MerTK-expressing human primary macrophages, and they block activation of MerTK in vivo. The MerTK inhibitors were not overtly cytotoxic or antiproliferative, and did not block the activity of TLR or T cell immune effector pathways. Limited off-target activity was observed in an in vitro kinase panel. Activity of these novel MerTK inhibitors in tumor models is currently under investigation.
Esophageal adenocarcinoma (EAC) arises in the backdrop of reflux-induced metaplastic phenomenon known as Barrett esophagus. The prognosis of advanced EAC is dismal, and there is an urgent need for identifying molecular targets for therapy. Serial Analysis of Gene Expression (SAGE) was performed on metachronous mucosal biopsies from a patient who underwent progression to EAC during endoscopic surveillance. SAGE confirmed significant upregulation of Axl "tags" during the multistep progression of Barrett esophagus to EAC. In a cohort of 92 surgically resected EACs, Axl overexpression was associated with shortened median survival on both univariate (p < 0.004) and multivariate (p < 0.036) analysis. Genetic knockdown of Axl receptor tyrosine kinase (RTK) function was enabled in two EAC lines (OE33 and JHEsoAd1) using lentiviral short hairpin RNA (shRNA). Genetic knockdown of Axl in EAC cell lines inhibited invasion, migration and in vivo engraftment, which was accompanied by downregulation in the activity of the Ral GTPase proteins (RalA and RalB). Restoration of Ral activation rescued the transformed phenotype of EAC cell lines, suggesting a novel effector mechanism for Axl in cancer cells. Pharmacological inhibition of Axl was enabled using a small molecule antagonist, R428 (Rigel Pharmaceuticals). Pharmacological inhibition of Axl with R428 in EAC cell lines significantly reduced anchorage-independent growth, invasion and migration. Blockade of Axl function abrogated phosphorylation of ERBB2 (Her-2/neu) at the Tyr877 residue, indicative of receptor crosstalk. Axl RTK is an adverse prognostic factor in EAC. The availability of small molecule inhibitors of Axl function provides a tractable strategy for molecular therapy of established EAC.
Abstract Accumulating evidence suggests important roles for the receptor tyrosine kinase Axl in cancer progression, invasion, metastasis, drug resistance, and patient mortality, highlighting Axl as an attractive target for therapeutic development. We have generated and characterized a potent and selective small-molecule inhibitor, R428, that blocks the catalytic and procancerous activities of Axl. R428 inhibits Axl with low nanomolar activity and blocked Axl-dependent events, including Akt phosphorylation, breast cancer cell invasion, and proinflammatory cytokine production. Pharmacologic investigations revealed favorable exposure after oral administration such that R428-treated tumors displayed a dose-dependent reduction in expression of the cytokine granulocyte macrophage colony-stimulating factor and the epithelial-mesenchymal transition transcriptional regulator Snail. In support of an earlier study, R428 inhibited angiogenesis in corneal micropocket and tumor models. R428 administration reduced metastatic burden and extended survival in MDA-MB-231 intracardiac and 4T1 orthotopic (median survival, >80 days compared with 52 days; P < 0.05) mouse models of breast cancer metastasis. Additionally, R428 synergized with cisplatin to enhance suppression of liver micrometastasis. Our results show that Axl signaling regulates breast cancer metastasis at multiple levels in tumor cells and tumor stromal cells and that selective Axl blockade confers therapeutic value in prolonging survival of animals bearing metastatic tumors. Cancer Res; 70(4); 1544–54
AACR Annual Meeting-- Apr 12-16, 2008; San Diego, CA 4866 The receptor tyrosine kinase (RTK), Axl, is a novel therapeutic target for solid tumors. Axl is expressed in both neoplastic and stromal compartments and is associated with poor outcome in several human tumor types. Signaling via Axl drives migration, invasion proliferation, and cell survival. Genetic inhibition of Axl signaling blocks both tumor growth and suppresses angiogenesis in vivo. These data suggest that Axl inhibitors may suppress tumor growth via multiple mechanisms. By high throughput screening of a diverse chemical library followed by an extensive structure activity relationship (SAR) study, we have identified highly selective small molecule inhibitors of Axl kinase which exhibit potent on-target activity in both cell-based and biochemical assays. These compounds exhibit selectivity for Axl over other RTKs including PDGFR, EGFR, InsulinR and VEGFR2 as well as the Axl family member Mer in cells and lack generalized antiproliferative activity. Axl-selective inhibitors demonstrate favorable pharmacokinetic properties and are generally well tolerated. Our proof-of-concept Axl-selective inhibitor, R572, significantly reduced corneal neovascularization in vivo (p< 0.001). Basic tumor profiling was conducted to prioritize sensitive tumors for xenograft efficacy studies. Among cell lines tested, Caki-1 renal tumors exhibited consistent reduction of growth in xenograft studies when treated with R572 (%T/C 67% compared to vehicle, p<0.001). Follow-on compounds that exhibit low nM potency against Axl, further improved selectivity and pharmacokinetic properties have been generated and are being tested in efficacy models. Rigel has generated potent and selective inhibitors of Axl kinase. We propose that small molecule inhibition of Axl represents a novel therapy for a subgroup of sensitive solid tumors.
In order to look for potent analgesic compounds and to study the relationships between structures and activities, twenty bifentanyl derivatives were synthesized and their analgesic activities were tested. The structures of the compounds were confirmed by spectral analysis and elemental analysis. Compounds IIa and IIb showed strong analgesic activities in preliminary pharmacological test. Further pharmacological examinations are in progress.