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3.
Journal of Clinical Oncology ; 40(16), 2022.
Article in English | EMBASE | ID: covidwho-2009615

ABSTRACT

Background: Immunogenicity and safety of SARS-CoV-2 vaccines have been widely investigated in patients (pts) with cancer. However, their effectiveness against Coronavirus disease 2019 (COVID-19) and the additional protective effect of a booster dose in this population are yet to be defined. Methods: Using OnCovid study data (NCT04393974), a European registry enrolling consecutive pts with cancer and COVID-19, we evaluated morbidity and 14 days case fatality rates (CFR14) from COVID-19 in pts who were unvaccinated, vaccinated (either partially/full vaccinated but not boosted) and those who had received a third dose. Analyses were restricted to pts diagnosed between 17/11/2021 (first breakthrough infection in a boosted pt) and the 31/01/2022. Pts with unknown vaccination status were excluded. Results: By the data lock of 22/02/2022, out of 3820 consecutive pts from 36 institutions, 415 pts from 3 countries (UK, Spain, Italy) were eligible for analysis. Among them, 51 (12.3%) were unvaccinated, 178 (42.9%) were vaccinated and 186 (44.8%) were boosted. Among vaccinated pts, 26 (14.6%) were partially vaccinated (1 dose). Pts with haematological malignancies had more likely received a booster dose prior to infection (25.4% vs 13.6% and 11.8%, p = 0.02). We found no other associations between vaccination status and pts' characteristics including sex, age, comorbidities, smoking history, tumour stage, tumour status and receipt of systemic anticancer therapy. Compared to unvaccinated pts, boosted and vaccinated pts achieved improved CFR14 (6.8% and 7.0% vs 22.4%, p = 0.01), COVID-19-related hospitalization rates (26.1% and 20.6% vs 41.2%, p = 0.01) and COVID-19-related complications rates (14.5% and 15.7% vs 31.4%). Using multivariable Inverse Probability of Treatment Weighting (IPTW) models adjusted for sex, comorbidities, tumour status and country of origin we confirmed that boosted (OR 0.21, 95%CI: 0.05-0.89) and vaccinated pts (OR 0.19, 95%CI: 0.04-0.81) achieved improved CFR14 compared to unvaccinated pts, whilst a significantly reduced risk of COVID-19 complications (OR 0.26, 95%CI: 0.07-0.93) was reported for vaccinated pts only. Conclusions: SARS-CoV-2 vaccines protect from COVID-19 morbidity and mortality in pts with cancer. Accounting for the enrichment of haematologic pts in the boosted group, the observation of comparable mortality outcomes between boosted and vaccinated pts is reassuring and suggests boosting to be associated with reduced mortality in more vulnerable subjects, despite evidence of adverse features in this group.

4.
Clinical Cancer Research ; 27(6 SUPPL 1), 2021.
Article in English | EMBASE | ID: covidwho-1816938

ABSTRACT

Introduction: Cancer patients have been considered a high-risk population in the COVID-19 pandemic. We previously investigated risk of COVID-19 death in COVID-19 positive cancer patients during a median follow-up of 134 days, and identified the following risk factors: male sex, age >60 years, Asian ethnicity, hematological cancer type, cancer diagnosis for >2.5 years, patients presenting with fever or dyspnea, and high levels of ferritin and C-reactive protein (CRP). Here, we further investigate which factors are associated with a COVID-19 related death within 7 days of diagnosis. Methods: Using data from Guy's Cancer Centre and one of its partner trusts (King's College Hospital), we included 306 cancer patients with a confirmed COVID-19 diagnosis (February 29th-July 31st 2020). 72 patients had a COVID-19 related death (24%) of whom 35 died within 7 days (50%). Cox proportional hazards regression was used to identify which factors were associated with a COVID-19 related death <7 days of diagnosis. Results: Of the 72 cancer patients who had a COVID-19 related death, the mean age was 72 years (Standard Deviation (SD) 14). A total of 53 (74%) patients were men. 37 (52%) had a hematological cancer type, 47 (65%) had stage IV cancer, and 42 (58%) had been diagnosed with cancer more than 24 months before COVID-19 related death. In the group of patients who died within 7 days of diagnosis (n= 35), mean age was 73 years (SD 13.96), 24 (68%) were men, 20 (57%) had a hematological cancer type, 26 (74%) had stage IV cancer, and 24 (68%) had been diagnosed with cancer >24 months before COVID-19 diagnosis. Factors associated with COVID-19 related death <7 days of diagnosis were: hematological cancer (Hazard Ratio (HR): 2.74 (95% Confidence Interval (CI): 1.21-6.22)), 2-5 yrs since cancer diagnosis (HR: 4.81 (95%CI: 1.47-15.69)), and >5 yrs since cancer diagnosis (HR: 4.41 (95%CI: 1.38-14.06)). Additionally, patients who presented with dyspnea had increased risk of COVID-19 related death <7 days compared to asymptomatic patients (HR: 5.25 (95%CI 2.14-12.89)). CRP levels in the third tercile (146-528 mg/L) as compared to the first were also associated with increased risk of an early death due to COVID-19. Conclusion: From all the factors identified in our previous COVID-19 related death analysis, only hematological cancer type, a longer-established cancer diagnosis (2-5 years and more than 5 years), dyspnea at time of diagnosis and high levels of CRP were indicative of an early COVID-19 related death (within 7 days of diagnosis) in cancer patients.

5.
Clinical Cancer Research ; 27(6 SUPPL 1), 2021.
Article in English | EMBASE | ID: covidwho-1816914

ABSTRACT

We sought to determine parameters of the acute phase response, a feature of innate immunity activated by infectious noxae and cancer, deranged by Covid-19 and establish oncological indices' prognostic potential for patients with concomitant cancer and Covid-19. Between 27/02 and 23/06/2020, OnCovid retrospectively accrued 1,318 consecutive referrals of patients with cancer and Covid-19 aged 18 from the U.K., Spain, Italy, Belgium, and Germany. Patients with myeloma, leukemia, or insufficient data were excluded. The neutrophil-lymphocyte ratio (NLR), platelet-lymphocyte ratio (PLR), prognostic nutritional index (PNI), modified Glasgow prognostic score (mGPS), and prognostic index (PI) were evaluated for their prognostic potential, with the NLR, PLR, and PNI risk stratifications dichotomized around median values and the pre-established risk categorizations from literature utilized for the mGPS and PI. 1,071 eligible patients were randomly assorted into a training set (TS, n=529) and validation set (VS, n=542) matched for age (67.9±13.3 TS, 68.5±13.5 VS), presence of 1 comorbidity (52.1% TS, 49.8% VS), development of 1 Covid-19 complication (27% TS, 25.9% VS), and active malignancy at Covid-19 diagnosis (66.7% TS, 61.6% VS). Among all 1,071 patients, deceased patients tended to categorize into poor risk groups for the NLR, PNI, mGPS, and PI (P<0.0001) with a return to pre-Covid-19 diagnosis NLR, PNI, and mGPS categorizations following recovery (P<0.01). In the TS, higher mortality rates were associated with NLR>6 (44.6% vs 28%, P<0.0001), PNI<40 (46.6% vs 20.9%, P<0.0001), mGPS (50.6% for mGPS2 vs 30.4% and 11.4% for mGPS1 and 0, P<0.0001), and PI (50% for PI2 vs 40% for PI1 and 9.1% for PI0, P<0.0001). Findings were confirmed in the VS (P<0.001 for all comparisons). Patients in poor risk categories had shorter median overall survival [OS], (NLR>6 30 days 95%CI 1-63, PNI<40 23 days 95%CI 10-35, mGPS2 20 days 95%CI 8-32, PI2 23 days 95%CI 1-56) compared to patients in good risk categories, for whom median OS was not reached (P<0.001 for all comparisons). The PLR was not associated with survival. Analyses of survival in the VS confirmed the NLR (P<0.0001), PNI (P<0.0001), PI (P<0.01), and mGPS (P<0.001) as predictors of survival. In a multivariable Cox regression model including all inflammatory indices and pre-established prognostic factors for severe Covid-19 including sex, age, comorbid burden, malignancy status, and receipt of anti-cancer therapy at Covid-19 diagnosis, the PNI was the only factor to emerge with a significant hazard ratio [HR] in both TS and VS analysis (TS HR 1.97, 95%CI 1.19-3.26, P=0.008;VS HR 2.48, 95%CI 1.47- 4.20, P=0.001). We conclude that systemic inflammation drives mortality from Covid-19 through hypoalbuminemia and lymphocytopenia as measured by the PNI and propose the PNI as the OnCovid Inflammatory Score (OIS) in this context.

6.
Clinical Cancer Research ; 27(6 SUPPL 1), 2021.
Article in English | EMBASE | ID: covidwho-1816911

ABSTRACT

Background: The Coronavirus disease 2019 (COVID-19) pandemic continues to have a significant impact on the treatment of cancer patients. Understanding the clinical course, potential risk factors for severe infection and excess mortality, is essential to improve patient outcomes. We previously presented preliminary results from 156 SARS-CoV-2 positive cancer patients from Guy's Cancer Center, which suggested that increased COVID-19 mortality was associated with a diagnosis of cancer for over 2 years, Asian ethnicity and being on palliative treatment. Herein, we present an updated analysis using data from Guy's Cancer Centre and a partner Hospital Trust (King's College Hospital), with an increased number of patients and an extended follow up. Methods: We performed an analysis of all cancer patients who had a positive RT-PCR nasal/throat swab for SARS-CoV-2 infection at our Centers between 29th February and 31st July 2020. Associations between patients' demographics, clinical characteristics, and laboratory investigations with COVID-19 severity and mortality, were assessed using Logistic regression and Cox proportional hazards models. Results: 306 SARS-CoV-2 positive cancer patients were included in the analysis with a median follow up of 134 days (IQR 32-156). 184 (60%) were male and 217 (71%) were aged over 60 (mean age: 66). The most common malignancies were haematological (38%) and urological-gynaecological (20%). 218 (71%) had mild/moderate COVID-19 and 88 (29%) had severe disease. The overall COVID-related mortality rate was 24%;19% in solid and 32% in haematological cancers. Male sex [OR: 1.84 (95%CI:1.08-3.13)], Asian ethnicity [3.86 (1.20-12.36)], haematological cancer type [2.16 (1.18-3.95)], being diagnosed with cancer for 2-5 years [3.74 (1.80-7.78)] or ≥5 years [3.06 (1.50-6.26)] and a ferritin > 1964 mcg/l [54.92 (5.90-511.33)] were all associated with a risk of developing severe COVID-19 disease. Similarly, male sex [HR:1.97 (95%CI:1.15-3.38)], Asian ethnicity [3.42 (1. 59-7.35)], haematological cancer type [2.03 (1.16-3.56)] as well as a cancer diagnosis for >2-5 years [2.81 (1.41-5.59)] or ≥5 years [2.13 (1.06-4.27)] and a ferritin > 1964 mcg/l [16.11 (3.81-68.17)] were associated with an increased risk of death from COVID-19. Age >60 [2.14 (1.15-3.98)] and a raised CRP [4.10 (1.66-10.10)] were also associated with COVID-19 death. An inverse relationship was observed between a raised albumin and COVID-19 related death [0.12 (0.03- 0.51)]. Performance status and treatment paradigm were not associated with COVID-19 severity or mortality. Conclusions: This study further substantiates the evidence for an increased risk of severe COVID-19 infection and mortality for male and Asian patients with cancer, and those with haematological malignancies or with a diagnosis of cancer for over 2 years. These risk factors should be taken into account when making clinical decisions for cancer patients during the pandemic.

7.
Clinical Cancer Research ; 27(6 SUPPL 1), 2021.
Article in English | EMBASE | ID: covidwho-1816887

ABSTRACT

Background: The provision of cancer services has been strongly impacted by the outbreak of SARS-CoV-2. Our Cancer Centre in South-East London treats about 8,800 patients annually (incl. 4,500 new diagnoses) and is one of the largest Comprehensive Cancer Centres in the UK. The first COVID-19 positive cancer patient was reported on 29 Feb 2020. Whilst we are dealing with the second wave of COVID-19, it is important to further evaluate safety of cancer treatments whilst balancing risks of COVID-19 infection and complications. Methods: Using descriptive statistics, we report on the patient/tumour characteristics as well as short-term clinical outcomes of those patients undergoing radical treatment (i.e. systemic anticancer treatment (SACT), surgery, or radiotherapy (RT)) for their cancer during the first wave as to help establish the clinical guidelines for the management of cancer patients in a SARS-CoV-2 epidemic. Results: Between March-July 2020, 1,553 patients underwent surgery, 1,125 received SACT, and 814 had RT. Compared to the same period in 2019, there was a decrease of 28% for surgery, 15% for SACT, and 10% for radiotherapy. Whilst surgery was performed on more male patients (58%), more women received SACT (75%) and RT (58%). The age distribution was similar between treatment arms, with the majority of patients aged 50 to 80 years. The most common tumour types were breast (21%), thoracic (20%), and urological (29%) for surgical treatment;breast (49%), gastrointestinal (18%), and gynaecological (10%) for SACT;and breast (40%), urology (25%), and head & neck (11%) for RT. Within SACT, 36% received combination therapy, 35% received systemic chemotherapy, 23% targeted therapy, 5% immunotherapy, and 2% biological therapy. In terms of oncological outcomes, outcomes were similar to pre-COVID-19 times;with 6 deaths at 30 days (<1%) for surgical patients and 36 readmissions (2%), 10 deaths (<1%) for SACT patients, and 52% of RT delivered with radical intent (which was the same in 2019). The COVID-19 infection rates for our patients were very low: 12 patients were positive pre-surgery (1%), 7 post-surgery (<1%), 17 SACT patients (2%) and 3 RT patients (<1%). No COVID-19 related deaths were registered for the surgical, SACT and RT patients. Conclusion: Whilst there was a decline in overall radical treatment, likely due to a delay in cancer diagnoses, those who did undergo their treatment were treated in a safe COVID-19 managed environment. Our findings highlight that cancer patients should have the confidence to attend hospitals and be reassured of the safety measurements taken.

9.
Annals of Oncology ; 32:S1149, 2021.
Article in English | EMBASE | ID: covidwho-1432898

ABSTRACT

Background: Early reports in the COVID-19 pandemic suggested higher mortality for cancer patients. The impact of potentially immunosuppressive systemic anti-cancer treatments (SACT) was unknown. This study analysed the delivery of SACT for patients with solid malignancies during the COVID-19 outbreak in 2020 compared to the same period in 2019 to inform future clinical decision-making. Methods: All patients receiving at least one SACT at Guy's comprehensive Cancer Centre during the COVID-19 outbreak for solid tumours (1st March- 31st May 2020) were compared to the same period in 2019. SARS-CoV2 infection was by positive RT-PCR test. Data collected: demographics, tumour type/stage and treatment (chemotherapy, immunotherapy (IO), biological-targeted (BT)). Results: 2125 patients received SACT in 2020, compared to 2450 in 2019 (13% decrease). Demographics were comparable with mean age of 62. 56% females in 2020 vs 54% in 2019, 85% vs 83% in the low socio-economic category, 63% vs 73% PS 0-1;30% vs 29% uro-gynaecological, 27% vs 24% breast and 20% vs 23% GI tumours. In 2020 compared to 2019, there was an increase in metastatic disease (71% vs 62%), decrease in CT (34% vs 42%), increase in IO (10% vs 6%), but similar rates of BT treatments (38% vs 37%). Treatment paradigms were similar in 2020 and 2019: neo/adjuvant (28% vs 29%), radical (4% vs 5%) and palliative (69% vs 67%). Earlier palliative treatments were prioritised in 2020 with significant increase in treatments in 1st-2nd line (72% vs 67%;p=0.02) and reduction in > 3rd line (12% vs 27%;p<0.05). 42 of 2125 patients (2%) developed SARS-CoV2 infections;38% GI, 26% breast with 69% on CT. Of 42 patients with COVID-19, 24 (57%) had severe infections and 6 (14%) resulted in COVID-related death. Conclusions: These data suggest that SACT does not put solid tumour patients at much a higher additional risk from COVID-19. Despite a 13% decline in treatment rates, radical and early palliative treatment were prioritised. There was a low frequency (2%) of SARS-CoV-2 infection;comparable to the 1.4% point prevalence rate in our cancer population. However, this was during national lockdown with limited COVID-19 testing. The next steps are to evaluate the impact of new variant strains and COVID vaccination programme. Legal entity responsible for the study: Guy's Real-World Evidence. Funding: Has not received any funding. Disclosure: All authors have declared no conflicts of interest.

10.
Annals of Oncology ; 32:S1142, 2021.
Article in English | EMBASE | ID: covidwho-1432879

ABSTRACT

Background: Little is known about natural anti-SARS-CoV-2 antibody seroprevalence post COVID-19 and safety of vaccines in COVID-19 survivors with cancer. Methods: Among 2795 consecutive patients (pts) with COVID-19 and cancer registered to OnCovid between 01/2020 and 02/2021, we examined natural seroprevalence of anti-SARS-CoV-2 Antibodies (SC2Ab, IgM or IgG) in pts tested post-infection. We analysed prevalence and safety of SARS-Cov-2 vaccine administration in pts who underwent clinical re-assessment at participating institutions. Results: Out of 350 pts tested for SC2Ab, 318 (90.9%) had a positive SC2Ab titre post-convalescence. Neither baseline features (sex, age, comorbidities, smoking history, tumour stage/status, anticancer-therapy and primary tumour) nor COVID-19-specific features (complications, hospitalization, sequelae) were significantly associated SC2Ab status. Receipt of COVID-19 specific therapy was higher among SC2Ab+ pts (62.6% vs 40.6%, p=0.0156). Out of 593 pts with known vaccination status, 178 (30%) had received 1 dose, whilst 38 pts (6.4%) received 2 doses of mRNA based (70.2%) or viral vector vaccine (17.4%). Vaccinated pts were more likely aged ≥65 years (59% vs 48.3%, p=0.0172), with loco-regional tumour stage (56% vs 40.8%, p=0.0014), on anti-cancer therapy at COVID-19 (49.1% vs 38.2%, p=0.0168) and history of prior hospitalisation due to COVID-19 (61.8% vs 48.3%, p=0.0029). Vaccine-related adverse events were reported for 18/56 evaluable pts (32.1%) and included injection site reactions (50%), fever (44.4%), arthralgias (33.3%), fatigue (33.3%) and allergy (5.5%). No long-term vaccine-related morbidity was reported. Conclusions: We report high seroprevalence (>90%) of SC2Ab in convalescent cancer pts who survived COVID-19 irrespective of baseline demographics, oncological characteristics and COVID-19 severity. COVID-19 vaccines appear to be safe in cancer pts with history of prior infection. Clinical trial identification: NCT04393974. Legal entity responsible for the study: Imperial College London. Funding: Has not received any funding. Disclosure: D.J. Pinato: Financial Interests, Personal, Invited Speaker: ViiV Healthcare;Financial Interests, Personal, Invited Speaker: Bayer;Financial Interests, Personal, Advisory Board: Eisai;Financial Interests, Personal, Advisory Board: Amgen;Financial Interests, Personal, Advisory Board: BMS;Financial Interests, Personal, Advisory Board: Pfizer;Financial Interests, Personal, Advisory Board: Nanostring tech. A. Cortellini: Financial Interests, Personal, Advisory Board: MSD;Financial Interests, Personal, Advisory Board: BMS;Financial Interests, Personal, Advisory Board: Roche;Financial Interests, Personal, Invited Speaker: Novartis;Financial Interests, Personal, Advisory Board: SunPharma;Financial Interests, Personal, Invited Speaker: AstraZeneca;Financial Interests, Personal, Invited Speaker: Astellas. All other authors have declared no conflicts of interest.

12.
Journal of Clinical Oncology ; 39(15 SUPPL), 2021.
Article in English | EMBASE | ID: covidwho-1339187

ABSTRACT

Background: Despite high contagiousness and rapid spread, SARS-Cov-2 has led to heterogeneous outcomes across affected nations. Within Europe, the United Kingdom is the most severely affected country, with a death toll in excess of 100.000 as of February 2021. We aimed to compare the national impact of Covid19 on the risk of death in UK cancer patients versus those in continental Europe (EU). Methods: We performed a retrospective analysis of the OnCovid study database, a European registry of cancer patients consecutively diagnosed with Covid-19 in 27 centres from February 27 to September 10, 2020. We analysed case fatality rates and risk of death at 30 days and 6 months stratified by region of origin (UK versus EU). We compared patient characteristics at baseline, oncological and Covid-19 specific therapy across cohorts and tested these in multivariable Cox regression models to identify predictors of adverse outcome in UK versus EU patients. Results: Compared to EU patients (n = 924), UK patients (n = 468) were characterised by higher case fatality rates (40.38% versus 26.5%, p < 0.0001), higher risk of death at 30 days (hazard ratio, HR 1.64 [95%CI 1.36-1.99]) and 6 months after Covid-19 diagnosis (47.64% versus 33.33%, p < 0.0001, HR 1.59 [95%CI 1.33-1.88]). UK patients were more often males, of older age and more co-morbid than EU counterparts (p < 0.01). Receipt of anti-cancer therapy was lower in UK versus EU patients (p < 0.001). Despite equal proportions of complicated Covid-19, rates of intensive care admission and use of mechanical ventilation, UK cancer patients were less likely to receive anti-Covid-19 therapies including corticosteroids, anti-virals and interleukin-6 antagonists (p < 0.0001). Multivariable analyses adjusted for imbalanced prognostic factors confirmed the UK cohort to be characterised by worse risk of death at 30 days and 6 months, independent of patient's age, gender, tumour stage and status, number of co-morbidities, Covid-19 severity, receipt of anti-cancer and anti-Covid-19 therapy. Rates of permanent cessation of anti-cancer therapy post Covid-19 were similar in UK versus EU. Conclusions: UK cancer patients have been more severely impacted by the unfolding of the Covid-19 pandemic despite societal risk mitigation factors and rapid deferral of anti-cancer therapy. The increased frailty of UK cancer patients highlights high-risk groups that should be prioritised for anti-SARS-Cov-2 vaccination. Continued evaluation of long-term outcomes is warranted.

15.
Clinical Cancer Research ; 26(18 SUPPL), 2020.
Article in English | EMBASE | ID: covidwho-992097

ABSTRACT

Background: Current precautionary management decisions being made for cancer patients are based onassumptions supported by limited evidence, based on small case series from China and Italy and larger series fromNew York and a recent consortium of 900 patients from over 85 hospitals in the USA, Canada, and Spain. Hence, there is insufficient evidence to support clinical decision-making for cancer patients diagnosed with COVID-19 dueto the lack of large studies. Methods: We used data from a single large UK Cancer Centre to assess demographic/clinical characteristics of 156cancer patients with a confirmed COVID-19 diagnosis between 29 February-12 May 2020. Logistic/Cox proportionalhazards models were used to identify which demographic and/or clinical characteristics were associated withCOVID-19 severity/death. Results: 128 (82%) presented with mild/moderate COVID-19 and 28 (18%) with severe disease. Initial diagnosis ofcancer >24m before COVID-19 (OR:1.74 (95%CI: 0.71-4.26)), presenting with fever (6.21 (1.76-21.99)), dyspnea(2.60 (1.00-6.76)), gastrointestinal symptoms (7.38 (2.71-20.16)), or higher levels of CRP (9.43 (0.73-121.12)) werelinked with greater COVID-19 severity. During median follow-up of 47d, 34 patients had died of COVID-19 (22%).Asian ethnicity (3.73 (1.28-10.91), palliative treatment (5.74 (1.15-28.79), initial diagnosis of cancer >24m before(2.14 (1.04-4.44), dyspnea (4.94 (1.99-12.25), and increased CRP levels (10.35 (1.05-52.21)) were positivelyassociated with COVID-19 death. An inverse association was observed with increased levels of albumin (0.04 (0.01-0.04). Conclusions: Our analysis of one of the largest single-center series of COVID-19-positive cancer patients to dateconfirms a similar distribution of age, sex, and comorbidities as reported for other populations. With respect tocancer-specific observations, patients who have lived longer with their cancer were found to be more susceptible toa greater infection severity, possibly reflecting the effect of more advanced malignant disease, as almost half of thesevere cohort were on third-line metastatic treatment, or the impact of this infection. The latter was also found to beassociated with COVID-19 death in cancer patients, as were Asian ethnicity and palliative treatment. Furthervalidation will be provided from other large case series, as well as from those including longer follow-up, to providemore definite guidance for oncologic care.

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