View clinical trials related to Carcinoma, Hepatocellular.
Filter by:To explore the efficacy and safety of candonilimab plus bevacizumab for patients with advanced hepatocellular carcinoma who progressed on atezolizumab plus bevacizumab.
Hepatocellular carcinoma is one of the most common solid malignant tumors. The prognosis of unresectable hepatocellular carcinoma is very poor. According to the current literature and the clinical practice of our center, portal vein blood supply control may have great potential in the synergistic treatment of unresectable hepatocellular carcinoma. Thus, we hope to study the safety and efficacy of portal blood supply control +TACE+ Camrelizumab + Apatinib combined therapy in initial unresectable hepatocellular carcinoma through a single-center clinical trial, and explore the synergistic effect of portal blood flow control in target immune therapy of hepatocellular carcinoma.
To explore the key genes of human and mouse hepatocellular carcinoma, identify the key genes and prognostic markers, and develop small molecule drugs targeting the key genes to treat hepatocellular carcinoma.
This phase 1 open-label study will evaluate the safety, tolerability, pharmacokinetics (PK), and preliminary efficacy of CHS-006 in combination with toripalimab in 2 phases. Phase 1 (Dose Optimization phase) will explore 2 different dose combinations in participants with advanced/metastatic solid tumors (except pancreatic) and Phase 2 (Indication-specific Expansion phase) will use one selected dose in specific tumor types (non-small cell lung cancer-non squamous [NSCLC-NS] and Hepatocellular carcinoma [HCC])
Most current guidelines recommend hepatocellular carcinoma (HCC) surveillance with ultrasound and alpha feto-protein (AFP) every 6 months for individuals with risk factors. However, the sensitivity of ultrasound for HCC detection is significantly reduced, especially in high-risk cirrhotic patients. In this study, the investigators aim to evaluate the efficacy of multiple reaction monitoring (MRM)-based multimarker panel as a surveillance tool for HCC. During two surveillance periods (starting from the time of voluntary consent and 6 months later), participants receive ultrasound, AFP, and MRM-based multimarker panel analysis. Patients who are suspected of HCC based on one of three tests undergo a contrast-enhanced CT scan within 6 weeks. After 6 months from the second surveillance period, the investigators re-evaluate the development of HCC using contrast-enhanced CT and AFP. The diagnostic accuracy of MRM-based multimarker panel is compared to ultrasound and AFP.
The investigators will first use our previously collected serum samples and surgical/biopsied tissues from HBV-related HCC patients undergoing radiotherapy. The consistency of junctional clones by Capture NGS needs to be tested between both pre- and post-RT serums, and serial changes in copy numbers of vh-DNA by ddPCR are quantified in the representative cases. The same junction clones from pre-post-RT serums and surgical tissues will be confirmed and the copy number changes of vh-DNA be correlated with RT response and disease-control status. The investigators plan to identify HBV integrations by Capture NGS and quantify the specific vh-DNA by ddPCR as personalized biomarkers from the same-patient serum samples. The investigators will further correlate clinical response and recurrence/metastasis with serial changes of vh-DNA copy numbers. The investigators have been prospectively collecting plasma samples from HBV-related HCC patients before/after RT, at 1, 4, 7 months, and at recurrence/metastasis. The investigators plan to confirm the viable role of pre-/post-RT changes of plasma vh-DNA copies of the same junction clone in post-RT response and prognosis. Moreover, The investigators will explore the recurrent/metastatic tumors arising from the original or a de novo one by identifying their clonality with HBV integration patterns. The true value of this novel HBV chimera vh-DNA will be revealed. The results will also support the consolidative use of personalized vh-DNA for earlier evaluating treatment response after RT, for post-RT disease monitoring, and for differentiating clonality at recurrence to design future clinical trial on combinational treatment.
Transartial chemobolization plus hepatic artery infusion chemotherapy showed performance for unresectable hepatocellular carcinoma (HCC). Whether the additional of atezolizumab plus bevacizumab will improve the response rate for those patients is still unknown. This phase 2 clinical trial aims to investigate the objective response rate for unresectable hepatocellular carcinoma.
This single-center, pilot study (phase IIa) will evaluate the safety, feasibility, and efficacy of FMT from patients with HCC who responded to PD-(L)1-based immunotherapy to patients with HCC who failed to respond to atezolizumab/bevacizumab.
Tumor micronecrosis is a pathological feature that reflects malignant biological behavior in hepatocellular carcinoma (HCC). This study aimed to evaluate the prognostic significance of tumor micronecrosis based on the current BCLC and TNM staging systems, and futher improve the performance of the staging models by establishing modified new staging models including tumor micronecrosis.
To compare the safety and efficacy of unmodified RAK cells and anti-TIM-3 blocked autologous RAK cells in preventing postoperative recurrence of HCC by postoperative TACE therapy combined with immune cell therapy.