The primary objective of this study is to determine the safety and feasibility of combining cyclin B1/WT-1/CEF (antigen)-loaded DC vaccination with preoperative chemotherapy. The secondary objectives of this trial are to determine pathologic complete response rates; disease-free survival; to assess immune biomarkers of immunity (antigen-specific CD8+ T cell immunity and TH2 T cells) in breast cancer biopsy specimens and blood samples in patients receiving DC vaccinations; and to assess the feasibility of immunizing LA TNBC and ER+/HER2- BC patients with patient-specific tumor antigens.
Recent studies have shown that human breast cancers can be immunogenic, and that enhancing the immune effector function already present may augment the cytotoxic effects of standard therapies. vaccination remains the most attractive strategy because of its expected inducement of both therapeutic T cell immunity (effector T cells) and protective T cell immunity (tumor-specific memory T cells that can control tumor relapse). Several clinical studies have now demonstrated that immunity against tumor antigens can be enhanced in cancer patients by vaccination with ex vivo-generated tumor antigen-loaded dendritic cells (DCs). This strategy capitalizes on the unique capacity of DCs to prime lymphocytes and to regulate and maintain immune responses. Our goals are to boost T cell immunity targeted against breast cancer utilizing a tumor antigen-loaded DC vaccine, to enhance chemotherapy effectiveness and decrease tumor metastagenicity, and to decrease the recurrence rates of LA TNBC and ER+/HER2- BC. Patients will be treated with a combination of antigen-loaded DC vaccinations along with standard preoperative chemotherapy, to improve immunogenicity and to increase the pCR rate achieved with standard therapy. The trial will consist of 2 patient cohorts: TNBC and ER+/HER2- BC.
Study Type
INTERVENTIONAL
Allocation
NON_RANDOMIZED
Purpose
TREATMENT
Masking
NONE
Enrollment
10
LA TNBC patients will receive standard preop AC followed by TCb chemo for 24 weeks. Chemo and DC vaccinations will be given intratumoral and subcutaneous for 4 times prior surgery. During the AC cycles, vaccines will be given on any day between Days 9-12 of Cycles 1 and 3 of AC. Vaccines will be given on any day between Days 11-15 of Cycles 1 and 3 of TCb. Patients will undergo biopsies of their cancer prior to treatment and 1-2 days prior to or on Day 1 of Cycle 4 of AC. After this, patients will have surgery, locoregional radiation therapy to the breast or chest wall and regional lymphatics per standard of care, and will receive 3 boost DC vaccinations subcutaneously, rotating injection sites in the upper arm. The 1st vaccination will occur after the surgery and prior to radiation; 2nd will occur 30 days ± 3 days after radiation; the 3rd will occur 90 days ± 3 days after the 2nd boost.
ER+/HER2- BC patients will receive standard preop AC followed by weekly T given for 22 weeks. Chemo and DC vaccinations will be given intratumoral and subcutaneous, for 4 times prior surgery. During the AC cycles, vaccines will be given any day between Days 9-12 of Cycles 1 and 3 of AC. Vaccines will be given on Day 1 during Cycle 2 or Cycle 3 and on Day 1 during either Cycle 8 or Cycle 9 of T. Vaccine will be given after T infusion is completed. Patients will undergo biopsies of their cancer prior to treatment and 1-2 days prior to or on Day 1 of Cycle 4 of AC. Patients will have surgery, locoregional radiation therapy to the breast or chest wall and regional lymphatics per standard of care, and will receive 3 boost DC vaccinations subcutaneously, rotating injection sites in the upper arm. The 1st vaccination will occur after surgery and prior to radiation; the 2nd will occur 30 days ± 3 days after radiation; and the 3rd will occur 90 days ± 3 days after the 2nd boost.
Baylor University Medical Center
Dallas, Texas, United States
Safety of DC Vaccine Combined With Chemotherapy
Toxicities will be graded according to the NCI Common Terminology Criteria for Adverse Events (CTCAE) Version 4.03 . This will include all patients (eligible and ineligible) who receive at least 1 inoculation of DC vaccine therapy. This safety population will also be used for the summaries and analysis of all safety parameters (drug exposure, tables of adverse events information, including serious adverse events, etc.).
Time frame: 4 years
Pathologic Complete Response Rate
Results are only reported for Arm 1, "LA TNBC: DC vaccine+preop chemo patients". Arm 2 did not enroll any patients. The pathologic specimen will be graded per the tumor regression grading schema provided by the University of Texas MD Anderson Cancer Center "Residual Cancer Burden Calculator" at http://www3.mdanderson.org/app/medcalc/index.cfm?pagename=jsconvert3. The following parameters are required from pathologic examination in order to calculate RCB: largest 2 dimensions of residual tumor bed in the breast; entire largest cross-sectional area of residual tumor bed; percentage of the tumor bed area that contains carcinoma; percentage of carcinoma in tumor bed that is in situ; number of positive (metastatic) lymph nodes; largest diameter of largest nodal metastasis. A pathologic complete response is defined as NO pathologic evidence of invasive disease in the breast or axillary lymph nodes. RCB-I (minimal cancer burden); RCB-II (moderate burden); and RCB-III (extensive burden).
Time frame: 1 year
Disease-free Survival
Results are only reported for Arm 1, "LA TNBC: DC vaccine+preop chemo patients". Arm 2, "ER+/HER2- BC: DC vaccine+preop chemo patients" did not enroll any patients with these hormone receptor criteria. Analysis of disease-free survival ("DFS", reported in months) was calculated from the first day of treatment up to 36 months.
Time frame: 36 months
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