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Abstract Introduction Although the efficacy of PD-L1 blockade has been evaluated in analyses that combine pharmacologically distinct antibodies, the specific efficacy and safety of atezolizumab remain unclear. This review aimed to evaluate the efficacy and safety profile of atezolizumab specifically. Methods PubMed/MEDLINE and CENTRAL were searched (June 2026) for phase I to III trials of atezolizumab in ovarian cancer, reported in full-text English with at least 10 evaluable patients. Randomized and single-arm designs qualified. Randomized comparisons were pooled under random-effects models with Knapp-Hartung adjustment as hazard ratios for survival and risk ratios for response and safety; single-arm rates were pooled as proportions using generalized linear mixed models. Heterogeneity was assessed with I², Cochran Q, and prediction intervals, with leave-one-out sensitivity analysis. Analyses used R 4.6.0. Results Twelve studies (13 reports) enrolled 3,179 patients. Atezolizumab reduced the hazard of progression (HR 0.88, 95% CI 0.83 to 0.93) and death (HR 0.86, 95% CI 0.78 to 0.96), without heterogeneity (I² = 0%), whereas objective response was unchanged (RR 0.88, 95% CI 0.52 to 1.49). Excess toxicity was immune-mediated, raising serious adverse events (RR 1.32, 95% CI 1.05 to 1.67), any-grade immune-related events (RR 1.57, 95% CI 1.12 to 2.20), and grade ≥3 immune-related events (RR 2.23, 95% CI 1.05 to 4.74). Conclusion Atezolizumab adds a small survival benefit to a chemotherapy or bevacizumab backbone, driven by delayed progression rather than tumor regression. Offset by doubled immune toxicity and inseparable from its backbone, the effect may not justify routine use. Introduction Ovarian cancer (OC) is the most lethal gynecologic malignancy, marked by late-stage presentation and a high propensity for recurrence [1]. An estimated 313,959 new cases and 207,252 deaths occurred worldwide in 2020 [2], and 5-year survival for advanced disease remains near 17% [3]. Ovarian carcinoma comprises five histological subtypes, of which high-grade serous carcinoma predominates at 70%, followed by endometrioid and clear cell carcinoma at 10% each; most tumors are high-grade lesions that behave aggressively and present at an advanced stage [4]. Programmed cell death protein 1 (PD-1) is a key immune checkpoint receptor that regulates the immune response and maintains self-tolerance, and cancer cells co-opt this pathway to escape immune surveillance [5]. On activated T cells, PD-1 engages the ligands PD-L1 (programmed death-ligand 1) and PD-L2 (programmed death-ligand 2); tumors upregulate PD-L1 to suppress T-cell function and avoid destruction [6]. In OC, PD-L1 is expressed on tumor cells and tumor-infiltrating lymphocytes in more than half of patients, and higher CD8-positive lymphocyte density correlates with longer overall survival, providing a mechanistic rationale for blockade of this axis [3]. Atezolizumab, also designated MPDL3280A, is a monoclonal immunoglobulin G antibody that binds and inhibits PD-L1 [7]. Blockade of PD-L1 operates within a broader landscape of immunotherapeutic and molecularly targeted strategies, which includes T-cell-engaging agents and tyrosine kinase inhibitors [8,9]. Evidence for PD-1/PD-L1 blockade in OC derives largely from studies that combine antibodies with distinct molecular targets and pharmacologic profiles [10]. Atezolizumab enters such pooled estimates through only a limited number of studies [2], and its efficacy and safety in this setting remain poorly characterized relative to agents examined on their own [11]. This systematic review and meta-analysis study addresses that gap by focusing on the safety and efficacy of the addition of atezolizumab to standard therapy. Methods Study design This systematic review and meta-analysis evaluated the safety and efficacy of atezolizumab in OC. The review was designed, conducted, and reported in accordance with the Preferred Reporting Items for Systematic Reviews and Meta-Analyses (PRISMA) 2020 statement. Data sources and search strategy PubMed/MEDLINE and the Cochrane Central Register of Controlled Trials (CENTRAL) were searched to identify studies evaluating atezolizumab in ovarian cancer. PubMed was searched on June 28, 2026, using the following string: ("Ovarian Neoplasms"[MeSH] OR "ovarian cancer"[tiab] OR "ovarian carcinoma"[tiab] OR "ovarian tumor"[tiab] OR "ovarian tumour"[tiab] OR "ovarian malignancy"[tiab] OR "epithelial ovarian"[tiab] OR "EOC"[tiab] OR "high-grade serous"[tiab] OR "HGSOC"[tiab] OR "primary peritoneal carcinoma"[tiab] OR "fallopian tube neoplasm"[tiab]) AND ("Atezolizumab"[MeSH] OR "atezolizumab"[tiab] OR "MPDL3280A"[tiab] OR "Tecentriq"[tiab] OR "anti-PD-L1"[tiab] OR "PD-L1 inhibitor"[tiab] OR "PD-L1 blockade"[tiab] OR "PD-L1 antibody"[tiab] OR "CD274"[tiab] OR "B7-H1"[tiab] OR "immune checkpoint inhibitor"[tiab] OR "Immune Checkpoint Inhibitors"[MeSH]). The CENTRAL search was conducted on June 29, 2026, restricted to title and abstract: (atezolizumab) AND ("ovarian cancer" OR ovary OR ovaries). No date, language, publication type, or other limits were applied to either search. Eligibility criteria Eligibility followed a pre-specified PICOS (Population, Intervention, Comparator, Outcomes, Study design) framework, with inclusion and exclusion criteria specified for each element. Population. Eligible studies enrolled patients with OC of any histological subtype (epithelial, high-grade serous, clear cell, endometrioid, primary peritoneal, or fallopian tube carcinoma), with no restriction on age, performance status, BRCA (breast cancer susceptibility gene) status, or line of therapy. Studies were excluded when OC patients could not be separated from a mixed-tumor population, when fewer than 10 evaluable OC patients were reported, or when populations overlapped, in which case the most complete report was retained. Intervention. The intervention was atezolizumab-based therapy at any dose or route, given as monotherapy or in combination with any other agent. Studies without an atezolizumab-containing arm extractable separately were excluded. Comparator. Any comparator was eligible, whether placebo, standard of care, or an active agent, as were single-arm studies with no comparator. Outcomes. Eligible studies reported at least one efficacy outcome (progression-free survival (PFS), overall survival (OS), or objective response rate (ORR)) or one safety outcome (adverse events (AE)s, serious AEs, treatment-related AEs, immune-related AEs (irAE)s, AE-related treatment discontinuation, or treatment-related deaths). Studies without extractable data for any pre-specified outcome were excluded. Study design. Eligible designs were Phase II and III trials (randomized or single-arm) and Phase I/Ib trials reporting efficacy or safety data from an expansion cohort, limited to full-text original articles published in English with no date restriction. Preclinical studies, case reports, editorials, commentaries, narrative reviews, and conference abstracts were excluded, as were non-English or non–full-text publications and publications in non-recommended journals, in line with published guidance for identifying such venues [12]. Study selection process Titles and abstracts were first screened in bulk for OC relevance, presence of an atezolizumab arm, clinical study design, and eligible publication type, with the remaining criteria applied at full-text review. Two researchers independently screened the titles and abstracts of all identified records against the predefined inclusion and exclusion criteria. Studies passing this stage underwent full-text assessment by the same reviewers. Disagreements over eligibility were resolved by a third researcher. Data items and data extraction For each eligible study, data were extracted per treatment arm, covering study identification, population characteristics, intervention and comparator, and efficacy and safety outcomes. Efficacy outcomes comprised PFS, OS, and objective response and its components, together with disease control rate; safety outcomes comprised any-grade and grade 3 or higher (grade ≥3) AEs, irAEs, treatment discontinuation, and treatment-related deaths. Proportions were recorded as raw event counts and denominators, and hazard ratios (HRs) with 95% confidence intervals (CIs) were taken only from randomized comparisons. The full list of extracted variables is provided in Table S1. Data analysis and synthesis Analyses were performed in R version 4.6.0 using the metafor and glmmTMB packages, and an outcome was pooled only when at least three studies contributed data. Comparative outcomes were drawn from randomized comparisons of atezolizumab added to a backbone regimen versus the same backbone with placebo, and all were pooled with the same random-effects model, using inverse-variance weighting with restricted maximum likelihood estimation of the between-study variance and the Knapp-Hartung adjustment to the confidence interval. Hazard ratios for PFS and OS were entered as log HRs with standard errors, whereas for objective response and the comparative safety outcomes (any-grade AEs, serious adverse events (SAEs), and irAEs, both any grade and grade ≥3) risk ratios (RRs) were computed from event counts, with a 0.5 continuity correction applied to studies with zero-event cells. Single-arm event frequencies in the atezolizumab arm were pooled as proportions for grade ≥3 AEs, treatment-related grade ≥3 AEs, SAEs, adverse-event-related treatment discontinuation, and grade 5 or treatment-related deaths, using a binomial generalized linear mixed model with multiple arms within a study modeled hierarchically where applicable. Heterogeneity was assessed with the I-squared statistic, tau-squared, the Cochran Q test, and prediction intervals, and leave-one-out omission was used as a sensitivity analysis across pooled outcomes if the number of contributing studies was more than 3. Methodological quality assessment Randomized trials were assessed with the Cochrane Risk of Bias 2 (RoB 2) tool across its five domains, with an overall judgment of low risk, some concerns, or high risk. Data sets analyzed as single arms, comprising the single-arm trials and the randomized trials that contributed single-arm data only, were assessed with the non-comparative Methodological Index for Non-Randomized Studies (MINORS), scoring eight items from 0 to 2 for a maximum of 16. Certainty of evidence was rated with the Grading of Recommendations Assessment, Development, and Evaluation (GRADE) framework for each of the fourteen outcomes. The nine comparative outcomes (PFS, PFS [PD-L1-Positive], OS, OS [PD-L1-Positive], ORR, and the any-grade, SAEs, and irAE risk ratios) were graded as effect estimates versus control and, being derived from randomized trials, began at high certainty; the five single-arm outcomes were graded as certainty in a pooled proportion and began at low certainty. Ratings considered risk of bias, inconsistency, indirectness, imprecision, and other considerations, with the risk-of-bias domain drawn from the RoB 2 and MINORS assessments. Evidence was classified as high, moderate, low, or very low certainty. Results Study selection A total of 613 records were identified, comprising 550 from PubMed/MEDLINE and 63 from CENTRAL (Cochrane Central Register of Controlled Trials). After removal of 17 duplicates, 596 records underwent title and abstract screening, of which 565 were excluded. Thirty-one reports were sought for retrieval; one could not be obtained, leaving 30 for full-text assessment. Of these, 17 were excluded: eight lacked an atezolizumab arm, seven were duplicate reports of an already-included study, one had fewer than 10 patients in the atezolizumab arm, and one had fewer than 10 evaluable OC patients separable from a mixed population. Twelve studies, described in 13 reports, met all eligibility criteria and entered the review [13–25] (Figure 1). Study and patient characteristics The 12 included studies enrolled 3,179 patients and were published between 2019 and 2026. By design, 4 (33.3%) were randomized, double-blind, placebo-controlled, 3 (25.0%) randomized, open-label, and 5 (41.7%) single-arm. Four studies (33.3%) were phase III and accounted for 2,906 patients; the remaining eight (66.7%) were phase I to II, comprising 1 (8.3%) phase II, 6 (50.0%) phase Ib or I, and 1 (8.3%) phase I/II. Seven studies were randomized, and five were single-arm (Table 1 & Table 2). Table 1. Individual Study Characteristics. Study Information Population Time-to-event Response Study (author, year) Trial / acronym Population/line Study Arm(s) Phase Design Analysis pool NCT no. N enrolled (ITT) N treated (safety) N evaluable (response) Median PFS (mo) PFS events n PFS HR (95% CI) PFS population Median OS (mo) OS events n OS HR (95% CI) 1-yr PFS % 1-yr OS % ORR n ORR N CR n PR n SD n PD n DCR n DCR N DCR definition Response criteria Banerjee et al. 2025 [13] EORTC 1508-GCG Recurrent, platinum-resistant Arm 4: Bev + atezo + placebo II Randomized, open-label Both (proportion + HR vs Arm 1) NCT02659384 32 31 32 4.1 28 0.84 (0.50–1.38) ITT (vs Arm 1) 12.1 22 0.89 (0.49–1.59) NR NR 6 32 1 5 NR 22 21 32 NR RECIST 1.1 Arm 1: Bev monotherapy (COMPARATOR) II Randomized, open-label HR comparator NCT02659384 33 31 33 2.3 32 NR ITT (reference) 10.4 23 NR NR NR 3 33 0 3 NR 27 21 33 NR RECIST 1.1 Arm 5: Bev + atezo + ASA II Randomized, open-label Proportion (HR shares Arm 1 control; excl. from HR pool) NCT02659384 33 33 33 4 29 0.81 (0.49–1.34) ITT (vs Arm 1) 11.6 22 0.71 (0.39–1.28) NR NR 6 33 1 5 NR 26 22 33 NR RECIST 1.1 Gaillard et al. 2026 [14] AdORN First-line, neoadjuvant + interval surgery Atezolizumab + NACT (wkly pac/carbo) -> maint atezo +/- bev Ib Single-arm / non-randomized Proportion NCT03394885 18 18 15 23.6 8 NR ITT NR NR NR NR NR 9 15 0 9 6 0 15 15 Sum of partial response and stable disease. RECIST 1.1 Gonzalez-Martin et al. 2025 [15] ANITA / ENGOT-OV41 / GEICO 69-O Recurrent (platinum-based) + maintenance niraparib Atezolizumab + platinum CT → Atezolizumab + Niraparib III Randomized, double-blind, placebo-controlled Both (HR + proportion) NCT03598270 208 207 208 11.2 170 0.89 (0.71–1.10) ITT NR NR NR 44 NR 93 207 14 79 91 NR NR NR NR RECIST 1.1 Placebo + platinum CT → Placebo + Niraparib III Randomized, double-blind, placebo-controlled HR comparator NCT03598270 209 209 209 10.1 174 NR ITT NR NR NR 35 NR 90 209 13 79 96 NR NR NR NR RECIST 1.1 Harter et al. 2026 [16] AGO-OVAR 2.29 / ENGOT-ov34 Recurrent, non-platinum CT Atezolizumab + bev + non-plat CT III Randomized, double-blind, placebo-controlled Both (HR + proportion) NCT03353831 285 281 255 6.4 243 0.87 (0.73–1.04) ITT 14.2 197 0.83 (0.68–1.01) 28 58 101 255 11 90 91 NR NR NR NR NR Placebo + bev + non-plat CT III Randomized, double-blind, placebo-controlled HR comparator NCT03353831 289 286 248 6.7 261 NR ITT 13 221 NR 23 56 108 248 6 102 87 NR NR NR NR NR Kristeleit et al. 2024 [17] COUPLET Platinum-sensitive recurrent, tBRCAmut Part 2 Arm A: rucaparib + atezo, tBRCAmut ovarian Ib Single-arm / non-randomized Proportion NCT03101280 10 10 10 NR NR NR ITT NR NR NR NR NR 6 10 1 5 NR NR NR 10 NR RECIST 1.1 Kurtz et al. 2023 [18] ATALANTE / ENGOT-ov29 Platinum-sensitive recurrent Atezolizumab + bev + platinum CT III Randomized, double-blind, placebo-controlled Both (HR + proportion) NCT02891824 410 408 410 13.5 348 0.83 (0.69–0.99) ITT 35.5 NR 0.81 (0.65–1.01) 56 89 62 410 NR NR NR NR NR NR NR RECIST 1.1 Placebo + bev + platinum CT III Randomized, double-blind, placebo-controlled HR comparator NCT02891824 204 201 204 11.3 187 NR ITT 30.6 NR NR 46 87 66 204 NR NR NR NR NR NR NR RECIST 1.1 Liu et al. 2019 [19] PCD4989g Advanced, monotherapy Atezolizumab monotherapy (ovarian cohort) Ia/I Single-arm / non-randomized Proportion NCT01375842 12 12 9 2.9 NR NR Efficacy evaluable (n=10) 11.3 NR NR 20 41.7 2 9 1 1 0 5 2 9 Percentage of patients with best response of CR, PR or SD for ≥24 weeks RECIST 1.1 Moore et al. 2021 & Pignata et al. 2023 [20, 21] IMagyn050 / GOG-3015 / ENGOT-OV39 First-line, newly diagnosed stage III/IV Atezolizumab + carboplatin/paclitaxel + bevacizumab III Randomized, double-blind, placebo-controlled Both (HR + proportion) NCT03038100 651 642 251 19.5 323 0.92 (0.79–1.07) ITT 50.5 254 0.92 (0.78–1.09) NR NR 233 251 NR NR NR NR NR NR NR RECIST 1.1 Placebo + carboplatin/paclitaxel + bevacizumab III Randomized, double-blind, placebo-controlled HR comparator NCT03038100 650 644 239 18.4 341 NR ITT 46.6 278 NR NR NR 212 239 NR NR NR NR NR NR NR RECIST 1.1 Moroney et al. 2020 [22] GP28328 Recurrent ovarian Atezolizumab + bevacizumab Ib Single-arm / non-randomized Proportion NCT01633970 20 20 20 4.9 NR NR Safety evaluable 10.2 NR NR NR 48.75 3 20 0 3 8 5 11 20 ≥12 weeks RECIST 1.1 Mutch et al. 2024 [23] YO40482 Platinum-sensitive recurrent, BRCA-wt Triplet: PARPi + MEKi + atezolizumab Ib Randomized, open-label Both (HR + proportion) NCT03695380 37 37 37 7.4 28 NR ITT NR NR NR NR 73 NR 37 NR NR NR NR NR NR NR RECIST 1.1 Doublet: PARPi + MEKi (no atezo) Ib Randomized, open-label HR comparator NCT03695380 39 39 39 6 28 NR ITT NR NR NR NR 82 NR 39 NR NR NR NR NR NR NR RECIST 1.1 Rocconi et al. 2022 [24] — Relapsed ovarian Atezo-1st I Randomized, open-label Proportion NCT03073526 10 10 10 2.8 NR NR ITT 10.8 NR NR NR NR NR 10 NR NR NR NR NR NR NR RECIST 1.1 Vigil-1st I Randomized, open-label Proportion NCT03073526 11 11 11 3.4 NR 0.76 (0.28–2.00) ITT NR NR 0.33 (0.06–1.70) NR NR NR 11 NR NR NR NR NR NR NR RECIST 1.1 Simonelli et al. 2022 [25] ACT15377 Advanced solid tumors (ovarian cohort) Isatuximab + atezolizumab (OVARIAN subset only) I/II Single-arm / non-randomized Proportion NCT03637764 18 18 18 2.04 NR NR all treated NR NR NR NR NR 1 18 0 1 6 10 7 18 Not Defined RECIST 1.1 Abbreviations: AGO-OVAR, Arbeitsgemeinschaft Gynäkologische Onkologie–Ovarian Cancer Study Group; ASA, acetylsalicylic acid (aspirin); atezo, atezolizumab; bev, bevacizumab; BRCA-wt, BRCA wild-type; carbo, carboplatin; CI, confidence interval; CR, complete response; CT, chemotherapy; DCR, disease control rate; ENGOT, European Network of Gynaecological Oncological Trial groups; EORTC, European Organisation for Research and Treatment of Cancer; GCG, Gynaecological Cancer Group; GEICO, Grupo Español de Investigación en Cáncer de Ovario; GOG, Gynecologic Oncology Group; HR, hazard ratio; ITT, intention-to-treat; maint, maintenance; MEKi, MEK inhibitor; mo, months; NACT, neoadjuvant chemotherapy; NCT, ClinicalTrials.gov registration number; NR, not reported; ORR, objective response rate; OS, overall survival; pac, paclitaxel; PARPi, poly(ADP-ribose) polymerase inhibitor; PD, progressive disease; PFS, progression-free survival; PR, partial response; RECIST, Response Evaluation Criteria in Solid Tumors; SD, stable disease; tBRCAmut, tumor BRCA-mutated; wkly, weekly. Table 2. Summary of Study and Patient Characteristics. Characteristic n (%) Study & Trial Characteristics Study Design (N=12) Randomized, double-blind, placebo-controlled 4 (33.3%) Randomized, open-label 3 (25.0%) Single-arm / non-randomized 5 (41.7%) Trial Phase (N=12) Phase III 4 (33.3%) Phase II 1 (8.3%) Phase Ib 4 (33.3%) Phase I 1 (8.3%) Phase Ia/I 1 (8.3%) Phase I/II 1 (8.3%) Patient Baseline Characteristics Histology (N=3118) High-grade serous 2335 (74.9%) Low-grade serous 183 (5.9%) Serous (grade unspecified) 180 (5.8%) Endometrioid 99 (3.2%) Clear cell 109 (3.5%) Seromucinous 32 (1.0%) Mucinous 17 (0.5%) Other 163 (5.2%) FIGO Tumor Stage (N=1437) Stage I 2 (0.1%) Stage II 4 (0.3%) Stage III 988 (68.8%) Stage IV 442 (30.8%) Unknown / Missing 1 (0.1%) ECOG Performance Status (N=3169) 0 1848 (58.3%) 1 1240 (39.1%) 2 71 (2.2%) Missing 10 (0.3%) PD-L1 Status (N=2938) PD-L1 Positive 1314(44.7%) PD-L1 Negative 1362 (46.4%) Other (noninformative / missing / unknown) 262 (8.9%) Prior Therapy Lines (N=3168) No prior therapy (treatment-naive) 1320 (41.7%) 1 prior line/regimen 1033 (32.6%) 2 prior lines/regimens 455 (14.4%) 3 prior lines/regimens 213 (6.7%) Missing 3 (0.1%) Other (≥3 / range-reported) 144 (4.5%) Efficacy and Safety Outcomes Response ORR (objective response) (N=2193) 1001 (45.7%) Complete response (CR) (N=1089) 48 (4.4%) Partial response (PR) (N=1089) 382 (35.1%) Stable disease (SD) (N=981) 385 (39.3%) Progressive disease (PD) (N=160) 95 (59.4%) DCR (disease control) (N=160) 99 (61.9%) Worst AE Grade (N=2296) Grade 1–2 (mild–moderate) 562 (24.5%) Grade 3–4 (severe, non-fatal) 1700 (74.0%) Grade 5 (fatal) 22 (1.0%) Not separable (any-grade only) 12 (0.5%) Abbreviations: AE, adverse event; CR, complete response; DCR, disease control rate; ECOG, Eastern Cooperative Oncology Group; FIGO, International Federation of Gynecology and Obstetrics; ORR, objective response rate; PD, progressive disease; PD-L1, programmed death ligand 1; PR, partial response; SD, stable disease. Enrollment was largely restricted to good functional status. Pooled across studies, 1,848 (58.3%) patients had an Eastern Cooperative Oncology Group (ECOG) performance status of 0, 1,240 (39.1%) a status of 1, and 71 (2.2%) a status of 2. Prior treatment exposure spanned the full disease course: 1,320 patients (41.7%) were treatment-naive, 1,033 (32.6%) had received one prior line, 455 (14.4%) two lines, and 213 (6.7%) three lines. High-grade serous carcinoma predominated, at 2,335 (74.9%) patients of those with reported histology. Among patients with staging data, disease was predominantly advanced, 988 (68.8%) stage III and 442 (30.8%) stage IV. Expression of PD-L1 was positive in 1,314 (44.7%) and negative in 1,362 (46.4%), with 262 (8.9%) noninformative or unknown (Table 2 & Table 3). Table 3. Baseline Demographic and Disease Characteristics of Patients. Study & arm characteristics Histology, n (%) Tumor Stage, n (%) Performance status, n (%) Prior therapy lines, n (%) Study (year) / trial Arm N High-grade serous Low-grade serous Serous, NOS Endometrioid Clear cell Other / mixed Stage 1 Stage 2 Stage 3 Stage 4 Unknown PS 0 PS 1 PS 2 Missing / other Treatment-naïve 1 line 2 lines ≥3 lines Grouped (as reported) Missing Banerjee et al. 2025 [13] Bev monotherapy (Arm 1) 33 — — 25 (75.8) 0 (0) 3 (9.1) 5 (15.2)* 1 (3.0%) 1 (3.0%) 22 (66.7%) 9 (27.3%) 0 14 (42.4) 19 (57.6) 0 (0) — — — — 28 (84.8) ≤2: 5 (15.2) — Bev + atezo + placebo (Arm 4) 32 — — 28 (87.5) 1 (3.1) 2 (6.3) 1 (3.1) 1 (3.1%) 2 (6.3%) 21 (65.6%) 7 (21.9%) 1 (3.1%) 13 (40.6) 19 (59.4) 0 (0) — — — — 27 (84.4) ≤2: 5 (15.6) — Bev + atezo + ASA (Arm 5) 33 — — 33 (100) 0 (0) 0 (0) 0 (0) 0 (0.0%) 1 (3.0%) 19 (57.6%) 13 (39.4%) 0 23 (69.7) 10 (30.3) 0 (0) — — — — 27 (81.8) ≤2: 6 (18.2) — Gaillard et al. 2026 [14] Atezo + neoadjuvant CT → maint. atezo ± bev 18 18 (100) — — — — — 0 0 13 (72.2%) 5 (27.8%) 0 2 (11.1) 11 (61.1) 5 (27.8) — 18 (100) — — — — — González-Martín et al. 2025 [15] Atezo → atezo + niraparib 208 187 (90) — — 11 (5) — 10 (4.8)* NR NR NR NR NR 132 (63) 73 (35) — Missing 3 (1) — 181 (87) 26 (13) — — 1 (
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- Rebaz M. Ali, Sami S. Omar, Shano M. Ali, Shvan H. Mohammed, Karokh K. Mohammed, Mohammed Q. Mustafa, Yousif M. Mahmood, Suhaib H. Kakamad, Hawkar A. Nasralla, Ahmed Gh. Hamasaeed, Zheer T. Hamasalih, Danar D. Mahmood, Mohammed Jalal Mohammed, Shahan Syamand Rasull, Fryad Mustafa Qadir, Berun A. Abdalla
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- Barw Medical Journal
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- 2026-01-01
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- 2960-1959
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Rebaz M. Ali, Sami S. Omar, Shano M. Ali, Shvan H. Mohammed, Karokh K. Mohammed, Mohammed Q. Mustafa, Yousif M. Mahmood, Suhaib H. Kakamad, Hawkar A. Nasralla, Ahmed Gh. Hamasaeed, Zheer T. Hamasalih, Danar D. Mahmood, Mohammed Jalal Mohammed, Shahan Syamand Rasull, Fryad Mustafa Qadir, Berun A. Abdalla (2026). Safety and Efficacy of Atezolizumab in Ovarian Cancer. Barw Medical Journal. https://doi.org/10.58742/bmj.v4i2.238
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