This trial is designed to investigate the safety, response rates and survival outcomes of patients with advanced solid tumors by intra-tumor (IT) injection of multiple drugs including CTLA4, PD1, and/or PDL1 antibodies combined with drugs-eluting beads loaded with IL2, chemodrug, anti-angiogenesis drug, et. al that will be recommended by an AI-based medical software named IRSW-MIM developed by a cooperating company.
Malignant solid tumors including lung and liver cancers are the most common malignancy worldwide, and their mortality rates are very high. China has a huge population base with about 4,000,000 new cancer cases each year. More than 60% of the solid tumors in China are diagnosed at mid-to-late stage and have lost the chance of surgery. Recently a lot of therapeutic strategies have been developed and applied to clinic including targeted therapy and immunotherapy, but the overall therapeutic efficiency is still low. It is very difficult to treat patients with recurrent/refractory/metastatic advanced solid cancers and more alternative therapies are urgently needed. Antibodies against CTLA4, PD1 and PDL1 are representative drugs for the check-points inhibitory agents, and their clinical indications have been approved in various types of tumors, including advanced melanoma, non-small cell lung cancer, renal cell carcinoma, and classical Hodgkin's lymphoma and late recurrent head and neck squamous cell carcinoma patients, et al. Those drugs are regularly systemically administrated by vein infusion, however, local delivery of those drugs via interventional radiology technique including trans-artery or intra-tumor injection may increase the local drug concentration of the tumor, improve the efficacy, and reduce systemic adverse reactions. CTLA4 antibody ipilimumab has been widely effectively using to combine with PD1 or PDL1 antibody or other drugs, therefore, an AI-based medical software has been developed to help to determine the detailed combinations and dosages according to personalized medical condition such as sex, body weight, key organ functions, tumor types and their PDL1 level, status of MSI and TMB, previous treatment, et. al. This software, named interventional radiology appliable software for muti-immunothepy (IRSW-MIM), will be assessed by clinical applications on cancer patients. This phase II clinical trial is to test the the safety, efficacy and survival benefit of the IRSW-MIM guided immunotherapy for advanced solid tumors, including PFS, ORR, DCT, and median survival time.
Study Type
INTERVENTIONAL
Allocation
NA
Purpose
TREATMENT
Masking
NONE
Enrollment
60
IRSW-MIM collects patient's data and outputs a therapeutical strategy for treating advanced solid tumors.
Second Affiliated Hospital of Guangzhou Medical University
Guangzhou, Guangdong, China
RECRUITINGSafety of the reccommended treatment generated by the medical device
Safety will be assessed by recording all types of advise effects upon and after the treatment.
Time frame: 5 years
Progression-free survival
Progression-free survival (PFS) will be defined as the elapsed time from the first date of study treatment until documented disease progression (as per RECIST 1.1) or death from any cause, whichever is earlier. For patients who remain alive without progression, follow-up time will be censored at the date of last disease assessment.
Time frame: 5 years
Disease control rate
Disease control rate will be defined as objective response rate + steady disease rate.
Time frame: 5 years
Duration of remission (DOR)
DOR will be defined as the duration of the cancer remission
Time frame: 5 years
Overall survival
Overall survival (OS) will be defined as the elapsed time from the enrollment to death from any cause. For surviving patients, follow-up will be censored at the date of last contact (or last date known to be alive). Follow-up for OS will occur every 12 weeks (±1 month) until death or withdrawal of consent from the study.
Time frame: 5 years
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