1. Publication
- Title: Albumin Replacement Therapy in Septic Shock: A Randomized Clinical Trial
- Acronym: ARISS
- Year & Journal: JAMA Network Open, published February 19, 2026
- Citation: Sakr Y, Nierhaus A, Schumacher U, et al; SepNet Critical Care Trials Group and ARISS investigators. Albumin Replacement Therapy in Septic Shock: A Randomized Clinical Trial. JAMA Netw Open. 2026;9(2):e2559297. doi:10.1001/jamanetworkopen.2025.59297
2. Context & Rationale
Background: Albumin is a natural colloid with oncotic, anti-inflammatory, antioxidant, and nitric-oxide-modulating properties that have supported its use in critical illness for decades despite conflicting trial evidence. The landmark SAFE trial found similar overall mortality between 4% albumin and saline, but a sepsis subgroup (n=1218) trended toward lower mortality with albumin. The subsequent ALBIOS trial randomized 1810 patients with sepsis/septic shock to 20% albumin (target ≥3.0 g/dL) versus crystalloid; overall there was no difference, but a post-hoc subgroup with septic shock at enrollment showed reduced relative risk of death with albumin.
Research Question/Hypothesis: In adults with septic shock, does albumin administration (started 6–24 hours after shock onset, titrated to maintain serum albumin ≥3.0 g/dL for up to 28 ICU days) reduce 90-day all-cause mortality compared with standard crystalloid-based fluid therapy?
Why This Matters: Septic shock carries roughly 40% mortality and affects hundreds of thousands of patients annually. Albumin is costly, and prior trials left its role in septic shock (as opposed to sepsis broadly) unresolved.
3. Design & Methods
- Study Type: Prospective, multicenter, controlled, parallel-group, open-label RCT
- Setting & Centers: 23 ICUs in Germany (SepNet Critical Care Trials Group), October 21, 2019 – May 2, 2022 (enrollment); study stopped prematurely for low enrollment (COVID-19 impact on ICU capacity and research activity)
- Population:
- Inclusion: Adults ≥18y; clinically possible/probable/confirmed infection; vasopressor requirement to maintain MAP ≥65 mmHg for ≥1h despite adequate volume therapy; serum lactate <18 mg/dL; septic shock onset <24h before inclusion (first albumin dose given 6–24h after shock onset)
- Exclusions: Life expectancy <28 days or palliative care <6 months; end-of-life decision; prior trial participation; hypersensitivity to albumin; conditions where albumin may be harmful (e.g., decompensated heart failure, traumatic brain injury) or specifically indicated (e.g., hepatorenal syndrome); pregnancy/lactation
- Intervention: 20% human albumin, 60-g loading dose over 2–3h (within 6–24h of shock onset, within 2h of randomization), then titrated by daily serum albumin (40g if 2.5–<3.0 g/dL; 60g if 2.0–<2.5 g/dL; 80g if <2.0 g/dL) for up to 28 ICU days
- Comparator: Standard-of-care crystalloid resuscitation; guideline-permitted albumin use allowed at treating physician's discretion for hemodynamic stabilization (48.6% of control patients received some albumin)
- Blinding: Open-label (treating physicians unblinded)
- Statistical Power & Follow-Up: Powered for 1412 patients (706/arm) to detect a 15% relative mortality reduction (50%→42.5%) at 80% power, two-tailed α=0.05; only 440 randomized before early termination. Modified ITT analysis (all randomized with ≥1 post-randomization observation). Follow-up to 90 days.
4. Key Results
Outcome | Albumin Group | Control Group | Effect Size | 95% CI | p-value | Clinical Notes |
90-day mortality (primary) | 91/210 (43.3%) | 96/209 (45.9%) | RR 0.94 | 0.76–1.17 | 0.71 | No significant difference |
28-day mortality | 66/213 (31.0%) | 80/210 (38.1%) | RR 0.81 | 0.62–1.06 | Not significant | Numerically lower, did not reach significance |
60-day mortality | 82/211 (38.9%) | 95/210 (45.2%) | RR 0.86 | 0.68–1.08 | Not significant | Numerically lower, did not reach significance |
ICU mortality | 68/210 (32.4%) | 71/204 (34.8%) | RR 0.93 | 0.70–1.23 | Not significant | — |
In-hospital mortality | 82/203 (40.4%) | 90/201 (44.8%) | RR 0.90 | 0.71–1.14 | Not significant | — |
Subgroup analyses: No significant differences in 90-day mortality by baseline lactate, SOFA, APACHE II, or SAPS II strata.
Safety: 267 AEs in 121/222 patients (54.5%) in the albumin group vs 202 AEs in 105/218 patients (48.1%) in controls — frequency and severity similar between groups; no signal of harm.
Target attainment: More than half of albumin-group patients never reached the target serum albumin ≥3.0 g/dL, despite a more liberal dosing protocol (0–80 g/day) than ALBIOS (0–60 g/day) — attributed to illness severity and dilutional effect of large resuscitation volumes.
5. Internal Validity Assessment
- Randomization & Allocation: Automated internet-based randomization, stratified by lactate (≤81.08 vs >81.08 mg/dL) and center — concealment adequate.
- Protocol Adherence & Separation: Biochemical separation was achieved (higher albumin levels in treatment arm), but heavily diluted by high control-arm crossover: 106/218 (48.6%) control patients received albumin per physician discretion, permitted by protocol/guidelines.
- Blinding & Detection Bias: Open-label; objective mortality endpoint limits detection bias, but performance bias (differential co-interventions) cannot be excluded.
- Missing Data: Primary outcome available for 210/222 (albumin) and 209/218 (control); 16 patients had consent issues, 1 excluded, 4 lost to follow-up.
- Overall Internal Validity Conclusion: Low-Moderate — premature termination (26% of planned sample) left the trial substantially underpowered; per-protocol and modified per-protocol sensitivity analyses were directionally consistent with the primary null result.
6. External Validity Assessment
- Population Representativeness: Single-country (Germany), 23-center trial; nearly half of admissions were post-surgical (emergency surgery 48.2%), which may limit generalizability to primarily medical septic shock populations.
- Practice Context: Reflects high-resource European ICU practice; albumin 20% formulation used (not the 4% used in SAFE), limiting cross-trial comparability.
- Overall External Validity Conclusion: Moderate for European surgical-ICU-heavy septic shock populations; less clear for medical-predominant or resource-limited settings.
7. Strengths & Limitations
Strengths:
- Multicenter, randomized design with concealed allocation
- Rigorous, CONSORT-compliant reporting
- Confirms albumin safety (no excess AEs)
- Liberal, biologically plausible dosing protocol targeting a physiological threshold
Limitations:
- Premature termination (440/1662 planned patients) — severely underpowered
- Open-label design
- Substantial control-arm albumin crossover (48.6%) diluting between-group separation
- Predominantly post-surgical cohort limits generalizability to medical sepsis
- More than half of treatment-arm patients never reached target albumin level
8. Interpretation & Practice Impact
- Clinical Implications: Does not support routine albumin administration targeting serum levels ≥3.0 g/dL in septic shock; current guidelines already restrict albumin to adjunctive use during large-volume crystalloid resuscitation, and this trial does not change that.
- Mechanistic Coherence: Failure to reach target albumin levels in most patients, plus heavy control-arm crossover, means the trial tested a diluted contrast rather than a clean albumin-vs-none comparison.
- Systems-Level Takeaway: Given albumin's cost and this trial's null, underpowered result, routine protocolized albumin-target order sets are not supported by this evidence.
9. Controversies & Subsequent Evidence
- Editorial Commentary: The authors themselves emphasize the result is "inconclusive" due to premature termination rather than a definitive negative finding.
- Guideline Integration: Findings are consistent with existing Surviving Sepsis Campaign guidance, which does not recommend routine albumin use beyond adjunctive resuscitation; ARISS does not provide grounds for a guideline change in either direction.
10. Summary & Executive Takeaway
Summary: ARISS randomized 440 (of a planned 1662) adults with septic shock across 23 German ICUs to albumin-targeted therapy (≥3.0 g/dL) versus standard crystalloid care. Ninety-day mortality was statistically similar (43.3% vs 45.9%; RR 0.94, 95% CI 0.76–1.17; P=.71). Albumin was safe but did not demonstrate a survival benefit; the trial was underpowered due to premature termination.
Overall Takeaway: ARISS neither confirms nor excludes a mortality benefit from targeted albumin replacement in septic shock — it adds a safe-but-null, underpowered data point to an already inconclusive evidence base, and does not justify routine albumin-targeting protocols outside current guideline-permitted adjunctive use.
11. Bibliography
- Finfer S, et al. A comparison of albumin and saline for fluid resuscitation in the ICU (SAFE). N Engl J Med. 2004;350(22):2247-2256.
- Caironi P, et al; ALBIOS Study Investigators. Albumin replacement in patients with severe sepsis or septic shock. N Engl J Med. 2014;370(15):1412-1421.
- Sakr Y, Bauer M, Nierhaus A, et al; SepNet Critical Care Trials Group. ARISS protocol. Trials. 2020;21(1):1002.