This study evaluated the usefulness of cone-beam computed tomography (CBCT) during ultraselective transcatheter arterial chemoembolization (TACE) for hepatocellular carcinomas (HCC) that could not be demonstrated on angiography. Twenty-eight patients with 33 angiographically occult tumors (mean diameter 1.3 +/- 0.3 cm) were enrolled in the study. The ability of CBCT during arterial portography (CBCTAP), during hepatic arteriography (CBCTHA), and after iodized oil injection (LipCBCT) to detect HCC lesions was retrospectively analyzed. The technical success of TACE was divided into three grades: complete (the embolized area included the entire tumor with at least a 5-mm wide margin), adequate (the embolized area included the entire tumor but without a 5-mm wide margin in parts), and incomplete (the embolized area did not include the entire tumor) according to computed axial tomographic (CAT) images obtained 1 week after TACE. Local tumor progression was also evaluated. CBCTAP, CBCTHA, and LipCBCT detected HCC lesions in 93.9% (31 of 33), 96.7% (29 of 30), and 100% (29 of 29) of patients, respectively. A single branch was embolized in 28 tumors, and 2 branches were embolized in five tumors. Twenty-seven tumors (81.8%) were classed as complete, and 6 (18.2%) were classed as adequate. None of the tumors were classed as incomplete. Twenty-five tumors (75.8%) had not recurred during 12.0 +/- 6.2 months. Eight tumors (24.2%), 5 (18.5%) of 27 complete success and 3 (50%) of 6 adequate success, recurred during 10.1 +/- 6.2 months. CBCT during TACE is useful in detecting and treating small HCC lesions that cannot not be demonstrated on angiography.
Aim
To retrospectively evaluate the outcomes of conventional transarterial chemoembolization (cTACE) for hepatocellular carcinoma (HCC) ≥10 cm.
Methods
Twenty‐five patients with naïve HCC ≥10 cm (mean maximum tumor diameter, 130 ± 27.6 mm; single [n = 12], 2–9 [n = 6], and ≥10 [n = 7]) without extrahepatic spread treated with cTACE were eligible. Five (20%) had vascular invasion. Two to three stepwise cTACE sessions using iodized oil ≤10 mL in one cTACE session were scheduled. When the tumor recurred, additional cTACE was repeated on demand, if possible. Overall survival (OS) rates were calculated using the Kaplan–Meier method. The prognostic factors were evaluated using uni‐ and multivariate analyses.
Results
Stepwise cTACE sessions were completed for 20 (80%) patients, but could not be completed for four (16%). In the remaining (4%) patient, the whole tumor was embolized in one session. Additional treatment, mainly cTACE, was undertaken for 19 (76%) patients. The OS rates at 1, 3, and 5 years were 68, 34.7, and 23.1%, respectively. A tumor number of three was a significant prognostic factor (P = 0.020) and the 1‐, 3‐, and 4‐year OS rates in patients with ≤3 and ≥4 tumors were 81.3 and 33.3, 55.6 and 11.1, and 38.9% and 0%, respectively. Whole tumor embolization and the serum level of protein induced by vitamin K absence or antagonist‐II were also significant prognostic factors (P < 0.001 and P = 0.042, respectively). Bile duct complications requiring additional interventions developed in two (8%) patients.
Conclusion
Conventional TACE is safe and effective for huge HCCs, but has limited effects in cases with four or more tumors.
This study evaluated the clinical features of hepatocellular carcinoma (HCC) supplied by the right lumbar artery. Eleven patients with HCC supplied by the right lumbar artery were treated with chemoembolization. The patients' medical records were retrospectively analyzed. All patients underwent 6.7 +/- 3.7 (mean +/- SD) chemoembolization sessions, and the hepatic arterial branches were noted as being attenuated. The right inferior phrenic artery (IPA) was also embolized in 10 patients. The interval between initial chemoembolization and chemoembolization of the lumbar artery supply was 53.2 +/- 26.9 months. Mean tumor diameter was 3.1 +/- 2.4 cm and was located at the surface of S7 and S6. The feeding-branch arose proximal to the bifurcation of the dorsal ramus and muscular branches (n = 8) or from the muscular branches (n = 3) of the right first (n = 10) or second lumbar artery (n = 1). The anterior spinal artery originated from the tumor-feeding lumbar artery in one patient. All feeders were selected, and embolization was performed after injection of iodized oil and anticancer drugs (n = 10) or gelatin sponge alone in a patient with anterior spinal artery branching (n = 1). Eight patients died from tumor progression 10.1 +/- 4.6 months later, and two patients survived 2 and 26 months, respectively. The remaining patient died of bone metastases after 32 months despite liver transplantation 10 months after chemoembolization. The right lumbar artery supplies HCC located in the bare area of the liver, especially in patients who undergo repeated chemoembolization, including chemoembolization by way of the right IPA. Chemoembolization by way of the right lumbar artery may be safe when the feeder is well selected.
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