A Clinical Trial of Four Medicines (Elranatamab Plus Carfilzomib and Dexamethasone or Maplirpacept) in People With Relapsed Refractory Multiple Myeloma
The main purpose of the study is to evaluate the safety and tolerability of the combination
of elranatamab and carfilzomib and dexamethasone or elranatamab and maplirpacept.
There are 2 parts to this study. Part 1 will evaluate the safety and tolerability of
elranatamab when given in combination with carfilzomib plus dexamethasone. Part 2 has 2 arms.
The first will evaluate the safety and tolerability of elranatamab when given in combination
with maplirpacept. The second will identify the optimal dose(s) of elranatamab plus
maplirpacept.
All study medicines are given over 4-week cycles. Everyone taking part in this study will
receive elranatamab as a shot under the skin. Participants in Part 1 will also receive weekly
carfilzomib as an IV infusion (given directly into a vein) and dexamethasone either by mouth
(as a pill) or by IV infusion. Participants in Part 2 will receive elranatamab in combination
with maplirpacept as an IV infusion (given directly into a vein)
The investigators will examine the experiences of people receiving the study medicines. This
will help determine if the study medicines are safe and can be used for multiple myeloma
treatment. Participants will take part in this study for about 2 years after the first dose.
of elranatamab and carfilzomib and dexamethasone or elranatamab and maplirpacept.
There are 2 parts to this study. Part 1 will evaluate the safety and tolerability of
elranatamab when given in combination with carfilzomib plus dexamethasone. Part 2 has 2 arms.
The first will evaluate the safety and tolerability of elranatamab when given in combination
with maplirpacept. The second will identify the optimal dose(s) of elranatamab plus
maplirpacept.
All study medicines are given over 4-week cycles. Everyone taking part in this study will
receive elranatamab as a shot under the skin. Participants in Part 1 will also receive weekly
carfilzomib as an IV infusion (given directly into a vein) and dexamethasone either by mouth
(as a pill) or by IV infusion. Participants in Part 2 will receive elranatamab in combination
with maplirpacept as an IV infusion (given directly into a vein)
The investigators will examine the experiences of people receiving the study medicines. This
will help determine if the study medicines are safe and can be used for multiple myeloma
treatment. Participants will take part in this study for about 2 years after the first dose.
Not Available
I
Baljevic, Muhamed
NCT05675449
VICC-DTPCL23011P
Genetic Testing to Select Therapy for the Treatment of Advanced or Metastatic Kidney Cancer, OPTIC RCC Study
Kidney (Renal Cell)
Kidney (Renal Cell)
This phase II trial tests whether using genetic testing of tumor tissue to select the optimal treatment regimen works in treating patients with clear cell renal cell (kidney) cancer that has spread to other places in the body (advanced or metastatic). The current Food and Drug Administration (FDA)-approved regimens for advanced kidney cancer fall into two categories. One treatment combination includes two immunotherapy drugs (nivolumab plus ipilimumab), which are delivered by separate intravenous infusions into a vein. The other combination is one immunotherapy drug (nivolumab infusion) plus an oral pill taken by mouth (cabozantinib). Nivolumab and ipilimumab are immunotherapies which release the brakes of the immune system, thus allowing the patient's own immune system to better kill cancer cells. Cabozantinib is a targeted therapy specifically designed to block certain biological mechanisms needed for growth of cancer cells. In kidney cancer, cabozantinib blocks a tumors blood supply. The genetic (DNA) makeup of the tumor may affect how well it responds to therapy. Testing the makeup (genes) of the tumor, may help match a treatment (from one of the above two treatment options) to the specific cancer and increase the chance that the disease will respond to treatment. The purpose of this study is to learn if genetic testing of tumor tissue may help doctors select the optimal treatment regimen to which advanced kidney cancer is more likely to respond.
Kidney (Renal Cell)
II
Rini, Brian
NCT05361720
VICCURO21103
Loncastuximab Tesirine for the Treatment of Relapsed or Refractory Marginal Zone Lymphoma
Lymphoma
Lymphoma
This phase II trial tests whether loncastuximab tesirine works to shrink tumors in patients with marginal zone lymphoma (MZL), a type of immune cell cancer, that has come back (relapsed) or become unresponsive to one or more treatments (refractory). Loncastuximab tesirine is composed of an antibody, called loncastuximab linked to a chemotherapy drug called tesirine. Loncastuximab attaches to specific proteins in the cancer cell and delivers tesirine only to the cancer cells because of this antibody. Ultimately this results in cancer cell death only without exposing normal cells to the tesirine.
Lymphoma
II
Oluwole, Olalekan
NCT05296070
VICC-ITCTT23024
Testing the Addition of Anti-Cancer Drug, ZEN003694 (ZEN-3694) and PD-1 inhibitor (Pembrolizumab), to Standard Chemotherapy (Nab-Paclitaxel) Treatment in Patients with Advanced Triple-Negative Breast Cancer
Multiple Cancer Types
This phase Ib trial tests the safety and tolerability of ZEN003694 in combination with an immunotherapy drug called pembrolizumab and the usual chemotherapy approach with nab-paclitaxel for the treatment of patients with triple negative-negative breast cancer that has spread to other parts of the body (advanced). Paclitaxel is in a class of medications called antimicrotubule agents. It stops cancer cells from growing and dividing and may kill them. Nab-paclitaxel is an albumin-stabilized nanoparticle formulation of paclitaxel which may have fewer side effects and work better than other forms of paclitaxel. Immunotherapy with monoclonal antibodies, such as pembrolizumab may help the body's immune system attach the cancer and may interfere with the ability of tumor cells to grow and spread. ZEN003694 is an inhibitor of a family of proteins called the bromodomain and extra-terminal (BET). It may prevent the growth of tumor cells that over produce BET protein. Combination therapy with ZEN003694 pembrolizumab immunotherapy and nab-paclitaxel chemotherapy may help shrink or stabilize cancer for longer than chemotherapy alone.
Breast,
Phase I
I
Abramson, Vandana
NCT05422794
NCIBREP10525
Nilotinib, Trametinib, and Dabrafenib for the Treatment of BRAF V600 Mutant Metastatic or Unresectable Melanoma
Multiple Cancer Types
This phase I trial is to find out the best dose, possible benefits and/or side effects of nilotinib given together with trametinib and dabrafenib in treating patients with BRAF V600 mutant melanoma that has spread to other places in the body (metastatic) or cannot be removed by surgery (unresectable). Nilotinib, trametinib, and dabrafenib may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth. Giving nilotinib together with trametinib and dabrafenib may lower the chance of cancer growing or spreading.
Melanoma,
Phase I
I
Johnson, Douglas
NCT04903119
VICCMELP2274
Claudin 18.2-Targeted Chimeric Antigen Receptor T-cells in Subjects With Unresectable, Locally Advanced, or Metastatic Gastric, Gastroesophageal Junction (GEJ), Esophageal, or Pancreatic Adenocarcinoma
Multiple Cancer Types
This is a Phase 1, Open-Label, Dose Escalation and Expansion, Multicenter Study of Claudin
18.2-Targeted Chimeric Antigen Receptor T-cells in Subjects with Unresectable, Locally
Advanced, or Metastatic Gastric, Gastroesophageal Junction (GEJ), Esophageal, or Pancreatic
Adenocarcinoma
18.2-Targeted Chimeric Antigen Receptor T-cells in Subjects with Unresectable, Locally
Advanced, or Metastatic Gastric, Gastroesophageal Junction (GEJ), Esophageal, or Pancreatic
Adenocarcinoma
Esophageal,
Gastric/Gastroesophageal,
Pancreatic,
Phase I
I
Gibson, Mike
NCT05539430
VICC-PHI22112
Evexomostat Plus Alpelisib and Fulvestrant in Women With the PIK3CA Mutation With HR+/Her2- Breast Cancer
The PIK3CA gene is frequently mutated in breast cancer, leading to disease aggressiveness and
patient mortality. Alpelisib, a small molecule that inhibits the activity of the PIK3CA gene
product PI3K, has demonstrated clinical benefit in cancer patients with this gene mutation.
However, hyperglycemia, an on-target toxicity associated with alpelisib that leads to
hyperinsulinemia, limits the drug's clinical efficacy and induces high grade hyperglycemia in
patients with baseline metabolic dysfunction, insulin resistance and/or elevated HbA1c.
Restoring insulin sensitivity and reduction in circulating concentrations of insulin have
been reported to improve the activity of alpelisib.
Evexomostat (SDX-7320) is a polymer-conjugate of a novel small molecule methionine
aminopeptidase 2 (MetAP2) inhibitor that has demonstrated the ability to reduce
alpelisib-induced hyperglycemia in multiple animal experiments and has demonstrated
synergistic anti-tumor activity independent of changes in glucose or insulin. Evexomostat was
well tolerated in a Phase 1 safety study in late-stage cancer patients and showed
improvements in insulin resistance for patients that presented with baseline elevated
insulin. Overall, the most common treatment-emergent adverse events with evexomostat (TEAEs)
were fatigue (44%), decreased appetite (38%), constipation and nausea (each 28%), and
diarrhea (22%). All other TEAEs occurred at an incidence <20%.
The purpose of this study is to characterize the safety of the triplet drug combination
(alpelisib, fulvestrant plus evexomostat), to test whether evexomostat, when given in
combination with alpelisib and fulvestrant will reduce the number and severity of
hyperglycemic events and/or reduce the number of anti-diabetic medications needed to control
the hyperglycemia for patients deemed at risk for alpelisib-induced hyperglycemia (baseline
elevated HbA1c or well-controlled type 2 diabetes), and to assess preliminary anti-tumor
efficacy and changes in key biomarkers and quality of life in this patient population.
patient mortality. Alpelisib, a small molecule that inhibits the activity of the PIK3CA gene
product PI3K, has demonstrated clinical benefit in cancer patients with this gene mutation.
However, hyperglycemia, an on-target toxicity associated with alpelisib that leads to
hyperinsulinemia, limits the drug's clinical efficacy and induces high grade hyperglycemia in
patients with baseline metabolic dysfunction, insulin resistance and/or elevated HbA1c.
Restoring insulin sensitivity and reduction in circulating concentrations of insulin have
been reported to improve the activity of alpelisib.
Evexomostat (SDX-7320) is a polymer-conjugate of a novel small molecule methionine
aminopeptidase 2 (MetAP2) inhibitor that has demonstrated the ability to reduce
alpelisib-induced hyperglycemia in multiple animal experiments and has demonstrated
synergistic anti-tumor activity independent of changes in glucose or insulin. Evexomostat was
well tolerated in a Phase 1 safety study in late-stage cancer patients and showed
improvements in insulin resistance for patients that presented with baseline elevated
insulin. Overall, the most common treatment-emergent adverse events with evexomostat (TEAEs)
were fatigue (44%), decreased appetite (38%), constipation and nausea (each 28%), and
diarrhea (22%). All other TEAEs occurred at an incidence <20%.
The purpose of this study is to characterize the safety of the triplet drug combination
(alpelisib, fulvestrant plus evexomostat), to test whether evexomostat, when given in
combination with alpelisib and fulvestrant will reduce the number and severity of
hyperglycemic events and/or reduce the number of anti-diabetic medications needed to control
the hyperglycemia for patients deemed at risk for alpelisib-induced hyperglycemia (baseline
elevated HbA1c or well-controlled type 2 diabetes), and to assess preliminary anti-tumor
efficacy and changes in key biomarkers and quality of life in this patient population.
Not Available
I/II
Rexer, Brent
NCT05455619
VICCBREP2271
An Adjuvant Endocrine-based Therapy Study of Camizestrant (AZD9833) in ER+/HER2- Early Breast Cancer (CAMBRIA-2)
Breast
Breast
This is a Phase III open-label study to assess if camizestrant improves outcomes compared to
standard adjuvant endocrine therapy for patients with ER+/HER2- early breast cancer with
intermediate-high or high risk for disease recurrence who completed definitive locoregional
therapy (with or without chemotherapy). The planned duration of treatment in either arm
within the study will be 7 years.
standard adjuvant endocrine therapy for patients with ER+/HER2- early breast cancer with
intermediate-high or high risk for disease recurrence who completed definitive locoregional
therapy (with or without chemotherapy). The planned duration of treatment in either arm
within the study will be 7 years.
Breast
III
Reid, Sonya
NCT05952557
VICC-DTBRE23083
Study of Tinengotinib VS. Physician's Choice a Treatment of Subjects With FGFR-altered in Cholangiocarcinoma
Liver
Liver
This study is a Phase III, Randomized, Controlled, Global Multicenter Study to Evaluate the
Efficacy and Safety of Oral Tinengotinib versus Physician's Choice in Subjects with
Fibroblast Growth Factor Receptor (FGFR)-altered, Chemotherapy- and FGFR
Inhibitor-Refractory/Relapsed Cholangiocarcinoma
Efficacy and Safety of Oral Tinengotinib versus Physician's Choice in Subjects with
Fibroblast Growth Factor Receptor (FGFR)-altered, Chemotherapy- and FGFR
Inhibitor-Refractory/Relapsed Cholangiocarcinoma
Liver
III
Heumann, Thatcher
NCT05948475
VICC-DTGIT23271
Canakinumab for the Prevention of Progression to Cancer in Patients with Clonal Cytopenias of Unknown Significance, IMPACT Study
Leukemia
Leukemia
This phase II trial tests how well canakinumab works to prevent progression to cancer in patients with clonal cytopenias of unknown significance (CCUS). CCUS is a blood condition defined by a decrease in blood cells. Blood cells are composed of either red blood cells, white blood cells, or platelets. In patients with CCUS, blood counts have been low for a long period of time. Patients with CCUS also have a mutation in one of the genes that are responsible for helping blood cells develop. The combination of genetic mutations and low blood cell counts puts patients with CCUS at a higher risk to develop blood cancers in the future. This transformation from low blood cell counts to cancer may be caused by inflammation in the body. Canakinumab is a monoclonal antibody that may block inflammation in the body by targeting a specific antibody called the anti-human interleukin-1beta (IL-1beta).
Leukemia
II
Kishtagari, Ashwin
NCT05641831
VICC-ITHEM23019