CureVac Initiates Phase I Clinical Trial of RNAdjuvant® Candidate as Intratumoral Therapy for Solid Tumors

On October 27, 2017 CureVac AG, a fully-integrated biotechnology company pioneering mRNA-based drugs, reported it has initiated a Phase I study assessing the intratumoral application of its novel RNAdjuvant technology in patients with superficial solid tumors that are easily accessible for repeated intratumoral injections (Press release, CureVac, OCT 27, 2017, View Source [SID1234521231]). RNAdjuvant is designed to amplify the scope and quality of an immune response when used alone or in combination with other immune therapies.

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The trial is designed to assess the safety, tolerability and immunomodulating effects of CV8102, a drug candidate developed with CureVac’s RNAdjuvant technology. The trial includes a dose escalation and several expansion cohorts, with plans to investigate CV8102 in combination with anti-PD-1 therapies.

CureVac’s RNAdjuvant (CV8102) is a potent immunomodulator designed to expand the effects of immuno-oncology treatments and prophylactic vaccines for the prevention of infectious diseases. In a previous Phase I study in healthy volunteers, CV8102 appeared safe and was shown to increase antigen-specific immune responses when combined with a licensed rabies vaccine.

Ulrike Gnad-Vogt, M.D., CMO of CureVac, commented, “The initiation of this study is a significant advancement for CureVac as it showcases our innovative approach to product development by leveraging our RNA platform. CV8102 has been shown to be an effective immunomodulator that results in significant, innate immune activation at the injection site ultimately facilitating tumor rejection. Given this, we believe CV8102 is ideally suited for treating tumors via direct, intratumoral injection. We are looking forward to testing CV8102 for the first time in cancer patients and establishing its ability to trigger systemic immune responses via local injection, in particular in combination with a systemic checkpoint blockade.”

The Phase I clinical study is targeting patients with superficially accessible tumors of several different histologies and is aiming to find a safe and tolerated dose with or without concomitant systemic checkpoint inhibition. As secondary and/or exploratory endpoints, the study will evaluate signals of objective tumor response, and changes in treatment-induced effects of CV8102 on systemic immune parameters, tumor immune cell infiltration and other peripheral biomarkers of interest.

TESARO ANNOUNCES U.S. FDA APPROVAL OF VARUBI® IV FOR DELAYED NAUSEA AND VOMITING ASSOCIATED WITH CANCER CHEMOTHERAPY

October 27, 2017 TESARO, Inc. (NASDAQ:TSRO), an oncology-focused biopharmaceutical company, reported that the U.S. Food and Drug Administration (FDA) has approved VARUBI (rolapitant) IV in combination with other antiemetic agents in adults for the prevention of delayed nausea and vomiting associated with initial and repeat courses of emetogenic cancer chemotherapy, including, but not limited to, highly emetogenic chemotherapy (Press release, TESARO, OCT 27, 2017, View Source [SID1234521258]). Delayed nausea and vomiting can occur anytime between 25 and 120 hours following chemotherapy, and is often extremely debilitating.

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VARUBI is a highly selective and competitive antagonist of human substance P/neurokinin 1 (NK-1) receptors, which play an important role in the delayed phase of chemotherapy-induced nausea and vomiting (CINV). With a long plasma half-life of approximately seven days, a single dose of VARUBI, as part of an antiemetic regimen, significantly improved complete response (CR) rates in the delayed phase of CINV. Results from three Phase 3 trials of VARUBI oral tablets demonstrated a significant reduction in episodes of vomiting or use of rescue medication during the 25- to 120-hour period following administration of highly emetogenic and moderately emetogenic chemotherapy regimens. In addition, patients who received VARUBI reported experiencing less nausea that interfered with normal daily life and fewer episodes of vomiting or retching over multiple cycles of chemotherapy. Results from a bioequivalence trial demonstrated comparability of the IV and oral formulations of VARUBI.

VARUBI IV is supplied in ready-to-use vials and does not require refrigerated storage or mixing. As a result, utilization in busy chemotherapy clinics is straightforward and easily adopted into existing practice patterns for administration of antiemetic regimens associated with emetogenic chemotherapy. VARUBI IV is to be administered up to two hours before chemotherapy administration in combination with a 5-HT3 receptor antagonist and dexamethasone. No dosage adjustment is required for dexamethasone, a CYP3A4 substrate, and VARUBI is the first intravenously administered NK-1 receptor antagonist approved by the FDA that does not contain polysorbate 80.

"The approval of VARUBI IV represents a significant milestone for TESARO. The majority of NK-1 receptor antagonist doses are administered intravenously in the U.S., and with the introduction of VARUBI IV, we now offer healthcare providers a unique, easy-to-use option that fits well into standard operating practices of a chemotherapy clinic or hospital," said Mary Lynne Hedley, Ph.D., President and COO of TESARO. "We will continue our efforts to expand awareness of delayed chemotherapy-induced nausea and vomiting, and plan to make this important medicine available next month."

"Many healthcare providers tend to believe that CINV is no longer an unmet need but the reality is that more than half of patients treated with emetogenic chemotherapy experience delayed CINV, even when prescribed standard preventative therapies, such as a 5-HT3 receptor antagonist and dexamethasone," said Lee Schwartzberg, M.D., Professor of Medicine at University of Tennessee Health Science Center. "The FDA approval of VARUBI IV gives doctors and nurses a new option to help protect their patients from these often preventable side effects."

The full prescribing information for VARUBI IV will be available at www.VarubiRx.com.

TOGETHER with TESARO
TOGETHER with TESARO is a patient resource program dedicated to supporting people living with cancer. The program assists with access issues, so that patients with cancer can be free to focus on treatment goals and simply living life. It provides a full suite of services to meet each patient’s needs and individual experience. A team of access and affordability experts is available to help oncology practices and patients gain access to the medication they require. TOGETHER with TESARO will continue to evolve and grow to meet provider and patient needs.

For more information, please visit www.togetherwithtesaro.com or call 1-844-2TESARO (1-844-283-7276).

About Chemotherapy-Induced Nausea and Vomiting (CINV)
Chemotherapy-induced nausea and vomiting is a debilitating, yet often preventable side effect of chemotherapy. Up to 50% of patients undergoing highly or moderately emetogenic chemotherapy experience delayed CINV (25 to 120 hours post chemotherapy) — even when prescribed a 5-HT3 receptor antagonist and corticosteroid. Blocking both 5-HT3 and NK-1 receptors has been shown to offer better control of nausea and vomiting than inhibiting 5-HT3 receptors alone. Adding a single dose of VARUBI to an antiemetic regimen, including a 5-HT3 receptor antagonist and corticosteroid, further improves prevention of CINV in the delayed phase following chemotherapy.

About the VARUBI (Rolapitant) Clinical Program
The superior efficacy of VARUBI was established in multiple global randomized, well-controlled, double-blinded clinical trials that enrolled more than 2,500 patients. VARUBI, when administered in combination with a 5-HT3 receptor antagonist and dexamethasone, was superior to a 5-HT3 receptor antagonist and dexamethasone alone in preventing delayed CINV in patients receiving either moderately or highly emetogenic chemotherapy.

The clinical profile of VARUBI in cisplatin-based highly emetogenic chemotherapy (HEC) was confirmed in two identical Phase 3 studies: HEC1 and HEC2. Both trials met their primary endpoint of complete response (CR), and demonstrated statistical superiority of rolapitant (180 mg oral) compared to active control (5-HT3 receptor antagonist plus dexamethasone) in the delayed phase (25–120 hours) of CINV. In HEC1, 264 patients received rolapitant and 262 received active control. The proportion of patients achieving a CR was 72.7% vs. 58.4% (p=<0.001). In HEC2, 271 patients received rolapitant and 273 received active control. The proportion of patients achieving a CR was 70.1% vs. 61.9% (p=0.043). The most common adverse reactions (≥3%) among patients receiving cisplatin-based chemotherapy were neutropenia (9% VARUBI vs. 8% control), hiccups (5% vs. 4%), and abdominal pain (3% vs. 2%).

A Phase 3 trial was also conducted to evaluate rolapitant (180 mg oral) compared to active control in 1,332 patients receiving moderately emetogenic chemotherapy regimens, including anthracycline/cyclophosphamide combinations, carboplatin, irinotecan, pemetrexed, oxaliplatin, and doxorubicin. This trial met its primary endpoint of CR, and demonstrated statistical superiority of rolapitant compared to active control (5-HT3 receptor antagonist plus dexamethasone) in the delayed phase of CINV. The proportion of patients achieving a CR was 71.3% vs 61.6% (p=<0.001). The most common adverse reactions (≥3%) among patients receiving these chemotherapies were decreased appetite (9% VARUBI vs. 7% control), neutropenia (7% vs. 6%), dizziness (6% vs. 4%), dyspepsia (4% vs. 2%), urinary tract infection (4% vs. 3%), stomatitis (4% vs. 2%), and anemia (3% vs. 2%).

Primary data from the three Phase 3 studies have been published in Lancet Oncology, the analysis of the non-AC MEC population was presented at the 2015 annual meeting of the Multinational Association for Supportive Care in Cancer, and commentary has been provided in Nature Reviews Clinical Oncology.

In addition to the Phase 3 program, a bioequivalence study was conducted in healthy volunteers to compare the exposure of the 166.5 milligram dose of IV rolapitant to the exposure of a 180 milligram dose of oral rolapitant. Study participants were randomized to receive a single dose of either 166.5 milligrams of intravenous rolapitant administered over 30 minutes (n=61) or 180 milligrams of oral rolapitant (n=62). The primary endpoint of this pivotal study was bioequivalence, defined by estimating whether the 90% confidence intervals (CI) for the ratio of the area under the curves (AUCs) of the two formulations are entirely included within the acceptance range of 80% to 125%. Safety and tolerability were also assessed for both formulations. The safety profile was consistent with previous clinical trials with oral rolapitant, except for infusion-site reactions observed with the IV formulation.

VARUBI Additional Safety Information
VARUBI is contraindicated in patients taking CYP2D6 substrates with a narrow therapeutic index, such as thioridazine and pimozide. VARUBI can significantly increase the plasma concentrations of thioridazine and pimozide, which may result in QT prolongation and Torsades de Pointes.

VARUBI is a moderate inhibitor of CYP2D6 and significantly increases the plasma concentrations of CYP2D6 substrates for at least 28 days, with inhibitory effects expected to persist for an unknown duration. Monitor for adverse reactions when VARUBI is coadministered with CYP2D6 substrates without a narrow therapeutic index (avoid coadministration with CYP2D6 substrates with a narrow therapeutic index, thioridazine and pimozide; see Contraindication).

In clinical trials, the most common adverse reactions reported were neutropenia, hiccups,
decreased appetite and dizziness. IV administration of VARUBI was also associated with infusion-related symptoms (e.g., sensation of warmth, abdominal pain, dizziness, and paresthesia).

Avoid use of VARUBI in patients who require chronic administration of strong CYP3A4 inducers (e.g., rifampin), as significantly reduced plasma concentrations of VARUBI can decrease the efficacy of VARUBI.

VARUBI, administered as an IV or oral medication, is not an inhibitor of CYP3A4 and no dose adjustment is required for co-administered CYP3A4 substrates, including dexamethasone.

VARUBI IV did not inhibit breast cancer resistance protein (BCRP) and P-glycoprotein (P-gp). VARUBI given as an oral dose is an inhibitor of breast cancer resistance protein (BCRP) and P-glycoprotein (P-gp). Increased plasma concentrations of BCRP substrates (e.g., methotrexate, topotecan, or irinotecan) and P-gp substrates (e.g., digoxin) with a narrow therapeutic index may result in potential adverse reactions. Monitor digoxin concentrations with concomitant use of VARUBI, and adjust the dosage as needed to maintain therapeutic concentrations.

Monitor INR and prothrombin time and adjust the dosage of warfarin, as needed, to maintain target INR.

VARUBI is available by prescription only. Please see full prescribing information, including additional important safety information, available at www.varubirx.com.

Kyowa Hakko Kirin Announces Marketing Authorisation Application for Mogamulizumab Validated by European Medicines Agency

On October 27, 2017 Kyowa Hakko Kirin Co., Ltd. (Tokyo: 4151 President and CEO: Nobuo Hanai, “Kyowa Hakko Kirin”) reported that its marketing authorisation application (MAA) for mogamulizumab, for the treatment of cutaneous T-cell lymphoma (CTCL) in adults who have received at least one prior systemic therapy, has been validated by the European Medicines Agency (EMA) and is now under review (Press release, Kyowa Hakko Kirin, OCT 27, 2017, View Source [SID1234521240]).

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This MAA is based on the data from the MAVORIC (Mogamulizumab anti-CCR4 Antibody Versus ComparatOR In CTCL) study, the largest global randomised clinical trial of systemic therapy in CTCL.

“This is a significant milestone for our subsidiary, Kyowa Kirin Pharmaceutical Development,” said Mitsuo Satoh, Ph.D., Executive Officer, Vice President Head of R&D Division of Kyowa Hakko Kirin. “I believe mogamulizumab has the potential to be an advance in therapy for patients with CTCL and we will keep working to make it available to patients as soon as possible.”

Mogamulizumab was first approved in Japan 2012 for other haematological malignancies and in 2014 for use in CTCL. Kyowa Hakko Kirin has also initiated discussions with regulatory authorities concerning plans for marketing authorisation applications for mogamulizumab in CTCL in other countries.

The Kyowa Hakko Kirin Group companies strive to contribute to the health and well-being of people around the world by creating new value through the pursuit of advances in life sciences and technologies.

About Mogamulizumab
Mogamulizumab is a humanised monoclonal antibody (mAb) directed against CC chemokine receptor 4 (CCR4), which is frequently expressed on leukemic cells of certain hematologic malignancies including CTCL. Mogamulizumab was produced using Kyowa Hakko Kirin’s proprietary POTELLIGENT platform, which is associated with enhanced antibody-dependent cellular cytotoxicity (ADCC).

About MAVORIC
MAVORIC is a Phase 3 open-label, multi-centre, randomised study of mogamulizumab versus active comparator in patients with mycosis fungoides (MF) and Sézary syndrome (SS) who have failed at least one prior systemic treatment. The study was conducted in the US, Europe, Japan and Australia, and randomised 372 patients.

About CTCL (Cutaneous T-cell Lymphoma)
CTCL is a rare type of non-Hodgkin’s T-cell lymphoma. The two most common types of CTCL are MF and SS, and depending on the stage, the disease may involve skin, blood, lymph nodes, and viscera. In advanced stage CTCL is associated with significant morbidity and mortality.

Kura Oncology Lead Candidate Tipifarnib Shows Durable Anti-Tumor Activity in HRAS Mutant Head and Neck Cancer in AACR-NCI-EORTC Update

On October 27, 2017 Kura Oncology, Inc. (Nasdaq:KURA), a clinical stage biopharmaceutical company focused on the development of precision medicines for oncology, reported presented updated preliminary results from its Phase 2 open-label trial of tipifarnib, a farnesyltransferase inhibitor, in patients with head and neck squamous cell carcinomas (HNSCC) with HRAS mutations (Press release, Kura Oncology, OCT 27, 2017, View Source [SID1234521243]).

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The results were featured in a late-breaking, oral presentation by Dr. Alan Ho of Memorial Sloan Kettering Cancer Center at the Spotlight on Proffered Papers Session 1 at the AACR (Free AACR Whitepaper)-NCI-EORTC AACR-NCI-EORTC (Free AACR-NCI-EORTC Whitepaper) International Conference on Molecular Targets and Cancer Therapeutics (EORTC-NCI-AACR) (Free ASGCT Whitepaper) (Free EORTC-NCI-AACR Whitepaper), taking place today in Philadelphia.

Four out of six evaluable HRAS mutant HNSCC patients enrolled in the study achieved a confirmed partial response, as defined by standard RECIST criteria. In addition, as of the data cutoff date of October 4, 2017, four HRAS mutant HNSCC patients remained on study in cycles 21, 7, 5 and 3. The patients in cycles 21, 7 and 5 had all experienced partial responses while the patient in cycle 3 experienced stable disease as of the first response assessment in cycle 2. One HRAS mutant HNSCC patient with a confirmed partial response remained on study through cycle 20 and withdrew in cycle 21 with progressive disease. Another HRAS mutant HNSCC patient experienced a best response assessment of stable disease and withdrew from the study in cycle 8.

Tipifarnib has demonstrated clinical activity in previously treated patients, including those who have progressed on chemotherapy with or without cetuximab or immune therapy. The majority of adverse events reported by the investigators have been mild to moderate and are consistent with the adverse event profile previously reported for tipifarnib.

“The responses, durability and safety data with tipifarnib clearly suggest this is an important drug candidate for patients with HRAS mutant head and neck cancers,” said Alan Ho, M.D., Ph.D., of Memorial Sloan Kettering Cancer Center and presenter of the tipifarnib oral presentation. “We are excited to continue to follow these patients and treat additional HRAS mutant patients in the ongoing Phase 2 trial.”

“The consistent clinical activity of tipifarnib in HNSCC patients with HRAS mutations is very encouraging,” said Antonio Gualberto, M.D., Ph.D., chief medical officer of Kura Oncology. “Based on these positive results, we continue to explore available options to rapidly advance the development of tipifarnib and subject to input from regulatory authorities, we plan to initiate a registration-enabling study in HRAS mutant HNSCC in 2018.”

About HRAS Mutant HNSCC

Head and neck cancer is one of the leading causes of cancer-related deaths worldwide, with squamous cell carcinomas accounting for most head and neck cancers. Response rates for the three agents approved for treatment of HNSCC in the second line, including cetuximab and immune therapy agents, are in the range of 13-16%, and median overall survival is up to 7.5 months. HRAS is a proto-oncogene that has been implicated in the development and progression of HNSCC and has been established to be uniquely farnesylated.

Eagle Pharmaceuticals Receives Tentative FDA Approval for PEMFEXY (Pemetrexed Injection) Ready-to-Dilute

On October 27, 2017 Eagle Pharmaceuticals, Inc. (Nasdaq:EGRX) (“Eagle” or “the Company”) reported that the United States Food and Drug Administration (“FDA”) has granted tentative approval for the Company’s PEMFEXY, a pemetrexed injection ready-to-dilute formulation for locally advanced or metastatic nonsquamous non-small cell lung cancer in combination with cisplatin; locally advanced or metastatic nonsquamous non-small cell lung cancer whose disease has not progressed after four cycles of platinum-based first-line chemotherapy, as maintenance treatment; locally advanced or metastatic nonsquamous non-small cell lung cancer after prior chemotherapy as a single agent; and malignant pleural mesothelioma whose disease is unresectable or who are otherwise not candidates for curative surgery in combination with cisplatin (Press release, Eagle Pharmaceuticals, OCT 27, 2017, View Source [SID1234521256]).

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“We are pleased to have received this tentative approval for PEMFEXY, which we believe offers a material benefit to healthcare providers. PEMFEXY fits well within our growing portfolio of oncology drugs, including BENDEKA, bendamustine hydrochloride ready-to-dilute and rapid infusion, DOCETAXEL INJECTION, and fulvestrant, which is in development. We will work toward bringing this much needed drug to market as soon as the patent issues are resolved,” stated Scott Tarriff, Chief Executive Officer.

“Tentative approval” means that FDA has concluded that a drug product has met all required quality, safety and efficacy standards, but is not eligible for marketing in the U.S. because of existing patent protections. The tentative approval will be eligible for conversion to a final approval subject to the resolution of the current patent litigation between Eagle and Eli Lilly and Co.

“Our formulation does not require reconstitution, reducing the potential for dosing errors during mixing as well as the hazards of inhaling cytotoxic vapors that can occur when handling the powder form of the drug during preparation. We believe there is a need in the market for our improved formulation,” concluded Tarriff.

Eagle submitted, and the FDA accepted for filing, its NDA under Section 505(b)(2) of the Federal Food, Drug and Cosmetic Act (“FDCA”) for PEMFEXY ready-to-dilute in December 2016.

This NDA references ALIMTA, the branded product manufactured by Eli Lilly and Co., which had annual U.S. sales of approximately $1.0 billion over the last twelve months.