Key result
A primary open strategy for port implantation significantly reduced the rate of pneumothorax or haemothorax compared with a closed strategy (OR 0.27; 95% CI 0.09-0.88; P=0.029).
Why the study?
The implantation strategy for totally implantable venous access ports with the optimal benefit/risk ratio remained unclear.
Does a primary open strategy reduce pneumothorax or haemothorax in adult oncology patients undergoing elective port implantation compared to a closed strategy?
RCT (n=1,159)
parallel-group
Yes
Does a primary open strategy reduce pneumothorax or haemothorax in adult oncology patients undergoing elective port implantation compared to a closed strategy?
Odds Ratio: 0.27 (95% CI 0.09–0.88)
p-value: p=0.029
A primary open strategy for venous port implantation significantly reduces the risk of pneumothorax or haemothorax compared to a closed strategy without routine sonographic guidance.
Supports primary open port implantation to lower pneumothorax or haemothorax risk in oncology patients; confirms RCT superiority over closed strategy.
OBJECTIVES: PORTAS-3 was designed to compare the frequency of pneumothorax or haemothorax in a primary open versus closed strategy for port implantation. BACKGROUND DATA: The implantation strategy for totally implantable venous access ports with the optimal benefit/risk ratio remains unclear. METHODS: PORTAS-3 was a multicentre, randomized, controlled, parallel-group superiority trial. Adult patients with oncological disease scheduled for elective port implantation were randomized to a primary open or closed strategy. Primary endpoint was the rate of pneumothorax or haemothorax. Assuming a difference of 2.5% between the 2 groups, a sample size of 1154 patients was needed to prove superiority of the open group. A logistic regression model after the intention-to-treat principle was applied for analysis of the primary endpoint. RESULTS: Between November 9, 2014 and September 5, 2016, 1205 patients were randomized. Of these, 1159 (open n = 583; closed n = 576) were finally analyzed. The rate of pneumothorax or haemothorax was significantly reduced with the open strategy [odds ratio 0.27, 95% confidence interval (CI) 0.09-0.88; P = 0.029]. Operation time was shorter for the closed strategy. Primary success rates, tolerability, morbidity, dose rate of radiation, and 30-day mortality did not differ significantly between the groups. CONCLUSION: A primary open strategy by cut-down of the cephalic vein, if necessary enhanced by a modified Seldinger technique, reduces the frequency of pneumothorax or haemothorax after central venous port implantation significantly compared with a closed strategy by primary puncture of the subclavian vein without routine sonographic guidance. Therefore, open surgical cut-down should be the reference standard for port implantation in comparable cohorts. TRIAL REGISTRATION: German Clinical Trials Register DRKS 00004900.
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Hüttner et al. (2019) conducted an RCT in Oncological disease requiring port implantation (n=1,159). Primary open strategy vs. Closed strategy was evaluated on Rate of pneumothorax or haemothorax (OR 0.27, 95% CI 0.09-0.88, p=0.029). A primary open strategy for port implantation significantly reduced the rate of pneumothorax or haemothorax compared with a closed strategy (OR 0.27; 95% CI 0.09-0.88; P=0.029).
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