On March 3, 2017 Amgen (NASDAQ:AMGN) reported positive data from the Phase 3 ‘482 study, the largest international multiple myeloma trial ever conducted (Press release, Amgen, MAR 3, 2017, View Source [SID1234517976]). In this study, XGEVA (denosumab) met the primary endpoint, demonstrating non-inferiority to zoledronic acid in delaying the time to first on-study skeletal-related event (SRE) in patients with multiple myeloma (HR=0.98, 95 percent CI: 0.85, 1.14; p=0.01). The median time to first on-study SRE was similar between XGEVA (22.83 months) and zoledronic acid (23.98 months). These data will be presented today during the late-breaking abstract session at the 16th International Myeloma Workshop (IMW) in New Delhi. Schedule your 30 min Free 1stOncology Demo! "Bone complications are devastating for patients with multiple myeloma. Renal function is a constant consideration in the treatment of multiple myeloma patients, often preventing the use of bisphosphonates, the only approved class of agents for prevention of bone complications, underscoring the need for new treatment options," said Noopur Raje, M.D., director, Center for Multiple Myeloma, Massachusetts General Hospital Cancer Center, Boston. "The results of this study showed that denosumab may be an effective novel option that is not cleared through the kidneys that may help prevent bone complications in patients with multiple myeloma."
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The secondary endpoints of superiority in delaying time to first SRE and delaying time to first-and-subsequent SRE were not met in this study. There was a suggested trend in overall survival (OS) in favor of XGEVA over zoledronic acid (HR=0.90, 95 percent CI: 0.70, 1.16; p=0.41); however, it was not statistically significant. The hazard ratio of XGEVA versus zoledronic acid for progression-free survival (PFS) was 0.82 (95 percent CI: 0.68, 0.99; descriptive p=0.036). The median PFS difference between arms was 10.7 months in favor of XGEVA.
"XGEVA is currently approved for the prevention of bone complications in patients with solid tumors based on superior clinical benefits over zoledronic acid in this setting," said Sean E. Harper, M.D., executive vice president of Research and Development at Amgen. "The results being presented today reinforce that XGEVA’s unique mechanism of action and subcutaneous administration may also offer patients with multiple myeloma a valuable alternative to the current standard of care. Amgen plans to submit these results to regulatory agencies worldwide to support a potential update to the XGEVA label."
Adverse events observed in patients treated with XGEVA were consistent with the known safety profile of XGEVA. The most common adverse events (greater than 25 percent) were diarrhea (33.5 percent XGEVA and 32.4 percent zoledronic acid) and nausea (31.5 percent XGEVA and 30.4 percent zoledronic acid).
Multiple myeloma is the second most common hematologic cancer, and it develops in plasma cells located in the bone marrow microenvironment.1,2 Bone lesions appear in the vast majority of patients with multiple myeloma and weaken the bone.3 Myeloma cells induce RANK ligand (RANKL) expression, a protein essential for the formation, function and survival of osteoclasts, which break down bone. In addition, direct RANKL expression by myeloma cells may enhance osteoclast activity in the bone microenvironment.4 Excessive RANKL can increase the risk of bone complications, including pathologic fractures, radiation therapy or surgery to the bone, and spinal cord compression.5,6
About ‘482 Study (NCT01345019)
The ‘482 study was an international, Phase 3, randomized, double-blind, multicenter trial of XGEVA compared with zoledronic acid in the prevention of bone complications in patients with newly diagnosed multiple myeloma. In the study, a total of 1,718 patients (859 on each arm) were randomized to receive either subcutaneous XGEVA 120 mg and intravenous placebo every four weeks, or intravenous zoledronic acid 4 mg (adjusted for renal function) and subcutaneous placebo every four weeks. The primary endpoint of the study was non-inferiority of XGEVA versus zoledronic acid with respect to time to first on-study SRE (fracture, radiation to bone, surgery to bone or spinal cord compression). Secondary endpoints included superiority of XGEVA versus zoledronic acid with respect to time to first on-study SRE and first-and-subsequent on-study SRE and OS. PFS was an exploratory endpoint. The safety and tolerability of XGEVA were also compared with zoledronic acid.
About Multiple Myeloma and Bone Complications
Multiple myeloma is the second most common hematologic cancer, and it develops in plasma cells located in the bone marrow microenvironment.1,2 It is characterized by a recurring pattern of remission and relapse, with patients eventually becoming refractory to treatment.7 Each year an estimated 114,000 new cases of multiple myeloma are diagnosed worldwide, resulting in more than 80,000 deaths per year.1
Bone lesions are a hallmark of multiple myeloma and often result in bone complications.3,6 Additionally, renal impairment is a common complication of multiple myeloma.8 Approximately 60 percent of all multiple myeloma patients have or will have renal impairment over the course of the disease.8 Current treatment options including zoledronic acid are cleared by the kidneys and associated with renal toxicity.6 Preventing bone complications is a critical aspect of caring for patients with multiple myeloma, because these events can cause significant morbidity.9
About XGEVA (denosumab)
XGEVA targets the RANKL pathway to prevent the formation, function and survival of osteoclasts, which break down bone. XGEVA is indicated for the prevention of SREs in patients with bone metastases from solid tumors and for treatment of adults and skeletally mature adolescents with giant cell tumor of bone that is unresectable or where surgical resection is likely to result in severe morbidity. XGEVA is also indicated in the United States (U.S.) for the treatment of hypercalcemia of malignancy refractory to bisphosphonate therapy. XGEVA is not indicated for the prevention of SREs in patients with multiple myeloma.
U.S. Important Safety Information
Hypocalcemia
Pre-existing hypocalcemia must be corrected prior to initiating therapy with XGEVA. XGEVA can cause severe symptomatic hypocalcemia, and fatal cases have been reported. Monitor calcium levels, especially in the first weeks of initiating therapy, and administer calcium, magnesium, and vitamin D as necessary. Monitor levels more frequently when XGEVA is administered with other drugs that can also lower calcium levels. Advise patients to contact a healthcare professional for symptoms of hypocalcemia.
An increased risk of hypocalcemia has been observed in clinical trials of patients with increasing renal dysfunction, most commonly with severe dysfunction (creatinine clearance less than 30 mL/minute and/or on dialysis), and with inadequate/no calcium supplementation. Monitor calcium levels and calcium and vitamin D intake.
Hypersensitivity
XGEVA is contraindicated in patients with known clinically significant hypersensitivity to XGEVA, including anaphylaxis that has been reported with use of XGEVA. If an anaphylactic or other clinically significant allergic reaction occurs, initiate appropriate therapy and discontinue XGEVA therapy permanently.
Drug Products with Same Active Ingredient
Patients receiving XGEVA should not take Prolia (denosumab).
Osteonecrosis of the Jaw
Osteonecrosis of the jaw (ONJ) has occurred in patients receiving XGEVA, manifesting as jaw pain, osteomyelitis, osteitis, bone erosion, tooth or periodontal infection, toothache, gingival ulceration, or gingival erosion. Persistent pain or slow healing of the mouth or jaw after dental surgery may also be manifestations of ONJ. In clinical trials in patients with osseous metastasis, the incidence of ONJ was higher with longer duration of exposure.
Patients with a history of tooth extraction, poor oral hygiene, or use of a dental appliance are at a greater risk to develop ONJ. Other risk factors for the development of ONJ include immunosuppressive therapy, treatment with angiogenesis inhibitors, systemic corticosteroid, diabetes, and gingival infections.
Perform an oral examination and appropriate preventive dentistry prior to the initiation of XGEVA and periodically during XGEVA therapy. Advise patients regarding oral hygiene practices. Avoid invasive dental procedures during treatment with XGEVA. Consider temporarily interrupting XGEVA therapy if an invasive dental procedure must be performed.
Patients who are suspected of having or who develop ONJ while on XGEVA should receive care by a dentist or an oral surgeon. In these patients, extensive dental surgery to treat ONJ may exacerbate the condition.
Atypical Subtrochanteric and Diaphyseal Femoral Fracture
Atypical femoral fracture has been reported with XGEVA. These fractures can occur anywhere in the femoral shaft from just below the lesser trochanter to above the supracondylar flare and are transverse or short oblique in orientation without evidence of comminution.
Atypical femoral fractures most commonly occur with minimal or no trauma to the affected area. They may be bilateral and many patients report prodromal pain in the affected area, usually presenting as dull, aching thigh pain, weeks to months before a complete fracture occurs. A number of reports note that patients were also receiving treatment with glucocorticoids (e.g. prednisone) at the time of fracture. During XGEVA treatment, patients should be advised to report new or unusual thigh, hip, or groin pain. Patient presenting with an atypical femur fracture should also be assessed for symptoms and signs of fracture in the contralateral limb. Interruption of XGEVA therapy should be considered, pending a risk/benefit assessment, on an individual basis.
Embryo-Fetal Toxicity
XGEVA can cause fetal harm when administered to a pregnant woman. Based on findings in animals, XGEVA is expected to result in adverse reproductive effects. Advise females of reproductive potential to use highly effective contraception during therapy, and for at least five months after the last dose of XGEVA. Apprise the patient of the potential hazard to a fetus if XGEVA is used during pregnancy or if the patient becomes pregnant while patients are exposed to XGEVA.
Adverse Reactions
The most common adverse reactions in patients receiving XGEVA with bone metastasis from solid tumors were fatigue/asthenia, hypophosphatemia, and nausea. The most common serious adverse reaction was dyspnea.
The most common adverse reactions in patients receiving XGEVA for giant cell tumor of bone were arthralgia, headache, nausea, back pain, fatigue, and pain in extremity. The most common serious adverse reactions were osteonecrosis of the jaw and osteomyelitis. The most common adverse reactions resulting in discontinuation of XGEVA were osteonecrosis of the jaw and tooth abscess or tooth infection.
The most common adverse reactions in patients receiving XGEVA for hypercalcemia of malignancy were nausea, dyspnea, decreased appetite, headache, peripheral edema, vomiting, anemia, constipation, and diarrhea.
Denosumab is also marketed as Prolia in other indications.
Please visit www.amgen.com or www.xgeva.com for Full U.S. Prescribing Information.
Month: March 2017
10-K – Annual report [Section 13 and 15(d), not S-K Item 405]
Regulus has filed a 10-K – Annual report [Section 13 and 15(d), not S-K Item 405] with the U.S. Securities and Exchange Commission (Filing, 10-K, Regulus, MAR 2, 2017, View Source [SID1234517975]).
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OncoMed Announces Multiple Abstracts Related to Anti-TIGIT Program Accepted for Presentation at the American Association for Cancer Research Annual Meeting 2017
On March 2, 2017 OncoMed Pharmaceuticals Inc. (NASDAQ:OMED) reported that it will present new data related to its clinical and preclinical immuno-oncology and anti-cancer stem cell therapeutic candidates in a total of six presentations at the upcoming American Association for Cancer Research (AACR) (Free AACR Whitepaper) Meeting to be held April 1-5, 2017 in Washington, DC (Press release, OncoMed, MAR 2, 2017, View Source [SID1234517949]).
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Know more, wherever you are:
Latest on Anti-TIGIT Antibodies at the AACR (Free AACR Whitepaper) Annual Meeting, book your free 1stOncology demo here.
Among the presentations will be three posters detailing preclinical data for OncoMed’s novel anti-TIGIT (OMP-313M32) immuno-oncology therapeutic candidate. These will be the first data that the company has shared publicly for its anti-TIGIT antibody program. New data will also be presented on biomarker research associated with the Phase 1b portion of OncoMed’s tarextumab (anti-Notch2/3, OMP-59R5) clinical trial in small cell lung cancer and OncoMed’s preclinical GITRL-Fc trimer (OMP-336B11) program. In addition, xenograft data will be presented for anti-RSPO3 (OMP-131R10) in combination with taxane chemotherapy in colorectal cancer.
The following abstracts have been selected for presentation by OncoMed scientists:
Sunday, April 2, 2017 1:00 PM — 5:00 PM
Title: Pharmacodynamic biomarkers for anti-TIGIT treatment and prevalence of TIGIT expression in multiple solid tumor types
Presenting author: Fiore Cattaruzza, Pharm. D., Ph.D., Senior Scientist II, Translational Medicine
Abstract Number: 599
Session: T-cell Immunity to Cancer: New Progress
Location: Poster section 26; Poster board 3
Monday, April 3, 2017 8:00 AM – Noon
Title: Antibody against TIGIT (T-cell immunoreceptor with Ig and ITIM domains) induces anti-tumor immune response and generates long-term immune memory
Presenting author: Angie Inkyung Park, Ph.D., Senior Director Immunotherapy
Abstract Number: 2003
Session: Tumor Microenvironment
Location: Poster section 44; Poster board 18
Title: Circulating Tumor Cells (CTCs) in patients with extensive-stage small cell lung cancer and their association with clinical outcome
Abstract number: 1727
Presenting author: Chun Zhang, Ph.D., Director, Translational Medicine
Session: Liquid Biopsies 1: Circulating Tumor Cells
Location: Poster section 30; Poster board 17
Title: R-SPONDIN3 antagonism sensitizes colorectal cancer to taxane treatment
Abstract Number: 1911
Presenting author: Marcus Fischer, Scientist
Session: Normal and Neoplastic Stem Cells
Location: Poster section 41; Poster board 12
Monday, April 3, 2017 1:00 PM — 5:00 PM
Title: Anti-TIGIT induces T cell mediated anti-tumor immune response and combines with immune checkpoint inhibitors to enhance strong and long term anti-tumor immunity
Abstract number: 2612
Presenting author: Minu Srivastava, Ph.D., Senior Scientist II
Session: Checkpoints 2: Small Molecule Inhibitors (Note: anti-TIGIT is a monoclonal antibody)
Location: Poster section 25; Poster board 1
Wednesday, April 5, 2017 8:00 AM – Noon
Title: Prevalence of GITR expression and pharmacodynamic (PD) biomarkers in syngeneic tumor models treated by a GITR agonist (GITRL-Fc)
Abstract number: 5621
Presenting author: Min Wang, Ph.D., Director, Translational Medicine
Session: Immune Checkpoints and Immunosurveillance
Location: Poster section 25; Poster board 23
Infinity Announces Presentation on IPI-549 at AACR Annual Meeting
On March 2, 2017 Infinity Pharmaceuticals, Inc. (NASDAQ: INFI) reported that new Phase 1 data for IPI-549, an orally administered immuno-oncology development candidate that selectively inhibits phosphoinositide-3-kinase gamma (PI3K-gamma), will be presented in a clinical trial poster session at the American Association for Cancer Research (AACR) (Free AACR Whitepaper) Annual Meeting 2017 taking place in Washington, D.C. April 1 – 5 (Press release, Infinity Pharmaceuticals, MAR 2, 2017, View Source;p=RssLanding&cat=news&id=2251054 [SID1234517936]). A Phase 1 clinical study is ongoing to explore the safety and activity of IPI-549 both as a monotherapy and in combination with Opdivo (nivolumab), a PD-1 immune checkpoint inhibitor, in patients with advanced solid tumors. IPI-549 is believed to be the only PI3K-gamma inhibitor in clinical development.
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Details of the presentation are as follows:
Poster presentation time: Tuesday, April 4, 2017, 8:00 a.m. – 12:00 p.m. ET
Title: IPI-549-01 – A Phase 1/1b, First-in-Human Study of IPI-549, a PI3K-Gamma Inhibitor, as Monotherapy and in Combination with Nivolumab in Patients with Advanced Solid Tumors
Abstract number: CT089
Lead author: Jedd Wolchok, M.D., Ph.D., Chief of the Melanoma and Immunotherapeutics Service at Memorial Sloan Kettering Cancer Center (MSK), as well as Associate Director of the Ludwig Center for Cancer Immunotherapy and Director of the Parker Institute for Cancer Immunotherapy, both at MSK
Location: Convention Center, Halls A-C, Poster Section 33
About the IPI-549 and the Ongoing Phase 1 Study
IPI-549 is an investigational, orally administered immuno-oncology development candidate that selectively inhibits PI3K-gamma. In preclinical studies, IPI-549 increases antitumor immunity by targeting tumor-associated myeloid cells and overcomes immune checkpoint blockade resistance in preclinical tumor models.1,2 As such, IPI-549 may have the potential to treat a broad range of solid tumors and represents a potentially complementary approach to restoring anti-tumor immunity in combination with other immunotherapies such as checkpoint inhibitors.
A Phase 1 study of IPI-549 in patients with advanced solid tumors is ongoing to explore the activity, safety, tolerability, pharmacokinetics and pharmacodynamics of IPI-549 as a monotherapy and in combination with Opdivo in patients with advanced solid tumors.3 The study includes monotherapy and combination dose-escalation phases, in addition to a monotherapy expansion cohort and combination expansion cohorts. Overall, the study is expected to enroll approximately 175 patients.
The expansion cohorts evaluating IPI-549 plus Opdivo will include patients with non-small cell lung cancer (NSCLC), melanoma and squamous cell carcinoma of the head and neck (SCCHN). There is a great need for additional treatment options for the growing number of patients living with these types of cancers, which account for more than 17 percent of all new cancer cases in the U.S.4,5 Additionally, patients enrolled in the combination expansion cohorts represent a difficult-to-treat population, as they must have demonstrated initial resistance or subsequently develop resistance to a PD-1 or PD-L1 therapy immediately prior to enrolling in the study.
IPI-549 is an investigational compound and its safety and efficacy has not been evaluated by the U.S. Food and Drug Administration or any other health authority.
Geron Announces Presentation at American Association for Cancer Research Annual Meeting
On March 2, 2017 Geron Corporation (Nasdaq:GERN) reported an abstract submitted by Janssen Research & Development, LLC describing non-clinical data on imetelstat has been accepted for presentation as a poster at the 2017 American Association for Cancer Research (AACR) (Free AACR Whitepaper) Annual Meeting to be held in Washington, D.C. from April 1-5, 2017 (Press release, Geron, MAR 2, 2017, View Source;p=RssLanding&cat=news&id=2250980 [SID1234517934]). The abstract is available on the AACR (Free AACR Whitepaper) website at www.aacr.org.
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Abstract Title: Telomerase inhibitor imetelstat in combination with the BCL-2 inhibitor venetoclax enhances apoptosis in vitro and increases survival in vivo in acute myeloid leukemia (Abstract #1101)
AACR Session Title: Combination Therapy 1
Session Date: Monday, April 3, 2017
Session Time: 8:00 a.m. ET – 12:00 p.m. ET
In accordance with AACR (Free AACR Whitepaper) policies, abstracts submitted to the AACR (Free AACR Whitepaper) Annual Meeting are embargoed from the time of submission. To be eligible for presentation at the AACR (Free AACR Whitepaper) Annual Meeting, information contained in the abstract, as well as additional data and information to be presented at the Annual Meeting, may not be made public before the abstract has been presented in connection with the AACR (Free AACR Whitepaper) Annual Meeting.