AV0113 DC-CIT
BiologicalMature loaded DCs will be injected intra-nodally into tumour free lymph nodes or subcutaneously close to tumour free lymph nodes at weekly intervals for at least 6 weeks.
NCT Number: NCT02533895
This is an un-blinded Phase 1 study in which 21 patients suffering from solid advanced paediatric malignancies (14 sarcoma and 7 non-sarcoma patients) are treated with AV0113, an anti-tumour immune therapy with autologous Dendritic Cells (DCs) loaded with tumour cell lysates, in order to investigate its safety and feasibility.
For obtaining a clearer picture of AV0113's utility in the treatment of bone and soft tissue sarcoma, a long-term (LT) follow-up investigation of the 14 sarcoma patients, which will be treated using the AV0113 Dendritic Cell Cancer Immune Therapy (DC-CIT) technology is planned, in order to gather first evidence for a potential LT effect of DC-CIT with AV0113.
Furthermore, a comparison of the 14 sarcoma patients treated with AV0113 DC-CIT with a cohort of matched historic control patients that were treated using standard of care will be conducted. It is planned to analyse 42 historic control sarcoma patients that will be matched for disease, recurrences, relapses etc.
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Interventional
Phase 1
Department of Orthopaedics, Medical University Vienna, Vienna, Austria
In this phase I trial 21 paediatric patients with solid tumours of childhood (14 sarcoma and 7 non-sarcoma patients) that have exhausted all conventional treatment options are recruited for the treatment with AV0113.
Peripheral blood mononuclear cells (MNCs) will be obtained from patients by leukocyte apheresis. Monocytes enriched by density gradient centrifugation from MNCs will be used to generate immature DCs by cultivation in recombinant human interleukin-4 (IL-4) and granulocyte-macrophage colony-stimulating-factor (GM-CSF). These immature DCs will be loaded with autologous tumour cell lysates obtained by needle biopsy or surgery prior to tumour vaccination.The antigen loaded immature DCs will then receive a final maturation stimulus transmitted by exposure to lipopolysaccharide (LPS) and interferon-gamma (IFN-gamma). Maturation enables DCs to present antigen with high efficiency to T-lymphocytes. Subsequently, mature loaded DCs will be injected subcutaneously close to tumour free lymph nodes or intra-nodally into tumour free lymph nodes at weekly intervals for at least 6 weeks.
It is anticipated to establish the feasibility and safety of tumour vaccination in the described clinical setting and to find some clinical and/or experimental evidence for the induction of an anti-tumour immune response.
For obtaining a clearer picture of AV0113's utility in the treatment of bone and soft tissue sarcoma, a long-term (LT) follow-up investigation of the 14 Sarcoma patients, which will be treated using the AV0113 DC-CIT technology is planned, in order to gather first evidence for a potential LT effect of DC-CIT with AV0113.
Furthermore, a comparison of the 14 sarcoma patients treated with AV0113 DC-CIT with a cohort of matched historic control patients that were treated using standard of care will be conducted. It is planned to analyse 42 historic control sarcoma patients that will be matched for disease, recurrences, relapses etc.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Inclusion criteria
for the safety and feasibility testing of AV0113
Inclusion criteria
for patients included in the long-term follow up and comparison with historic controls
Exclusion criteria
Exclusion criteria
for the safety and feasibility testing of AV0113
Exclusion criteria
for patients included in the long-term follow up and comparison with historic controls
Mature loaded DCs will be injected intra-nodally into tumour free lymph nodes or subcutaneously close to tumour free lymph nodes at weekly intervals for at least 6 weeks.
For obtaining a clearer picture of AV0113's utility in the treatment of bone and soft tissue sarcoma, a LT follow-up investigation of the 14 Sarcoma patients, which will be treated using the AV0113 DC-CIT technology, is planned, in order to gather first evidence for a potential LT effect of DC-CIT with AV0113.
Furthermore, a comparison of the 14 sarcoma patients treated with AV0113 DC-CIT with a cohort of matched historic control patients that were treated using standard of care will be conducted. It is planned to analyse 42 control sarcoma patients that will be matched for disease, recurrences, relapses etc
Time frame: 15 years
Total survival time of sarcoma patients, that underwent DC-CIT, measured from the "inclusion time point" (ITP) until death, independent of subsequent surgeries after DC-CIT.
In the treatment group the inclusion time point (ITP) is defined as the day of surgery of the surgically treated relapse immediately before DC-CIT.
Time frame: 15 Years
Total survival time of sarcoma patients, that underwent DC-CIT, measured from the "inclusion time point" (ITP) until death, independent of subsequent surgeries after DC-CIT; in comparison with the survival time of matched historical control patients measured from the ITP until death independent of subsequent surgeries.
In the treatment group the ITP is defined as the day of surgery of the surgically treated relapse immediately before DC-CIT. In the control group the ITP is defined as the time of the surgery performed for the treatment of the xth relapse after which the matching patient of the treatment group received DC-CIT.
Time frame: 2 years
Percentage of sarcoma patients that underwent DC-CIT with AV0113, still alive after 2 years measured from the ITP independent of subsequent surgeries after DC-CIT; in comparison with the percentage of matched historical control patients still alive after 2 years measured from the ITP, independent of subsequent surgeries.
In the treatment group the ITP is defined as the day of surgery of the surgically treated relapse immediately before DC-CIT. In the control group the ITP is defined as the time of the surgery performed for the treatment of the xth relapse after which the matching patient of the treatment group received DC-CIT.
Time frame: 5 years
Percentage of sarcoma patients that underwent DC-CIT with AV0113, still alive after 5 years measured from the ITP independent of subsequent surgeries after DC-CIT; in comparison with the percentage of matched historical control patients still alive after 5 years measured from the ITP, independent of subsequent surgeries.
In the treatment group the ITP is defined as the day of surgery of the surgically treated relapse immediately before DC-CIT. In the control group the ITP is defined as the time of the surgery performed for the treatment of the xth relapse after which the matching patient of the treatment group received DC-CIT.
Time frame: 10 years
Percentage of sarcoma patients that underwent DC-CIT with AV0113, still alive after 10 years measured from the ITP independent of subsequent surgeries after DC-CIT; in comparison with the percentage of matched historical control patients still alive after 10 years measured from the ITP, independent of subsequent surgeries.
In the treatment group the ITP is defined as the day of surgery of the surgically treated relapse immediately before DC-CIT. In the control group the ITP is defined as the time of the surgery performed for the treatment of the xth relapse after which the matching patient of the treatment group received DC-CIT.
Time frame: 4 years
Establishment of the feasibility of anti-tumour immune therapy with autologous DCs loaded with tumour cell lysates for the treatment of patients suffering from solid advanced paediatric malignancies.
Time frame: 4 years
Assessment of the qualitative and quantitative toxicity of DC based anti-tumour immune therapy.
Time frame: 4 years
In vivo evaluation of the vaccination efficiency by delayed-type hypersensitivity (DTH) testing.
Time frame: 4 years
In vitro characterization of the anti-tumour immunity generated by the tumour vaccination.
Activartis Biotech
Industry
Monocyte-derived Dendritic Cells Loaded With Tumour Cell Lysates for the Treatment of Refractory Solid Tumours of Childhood
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