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1.
Am J Physiol Heart Circ Physiol ; 325(5): H1126-H1132, 2023 Nov 01.
Article in English | MEDLINE | ID: mdl-37682239

ABSTRACT

Cardiotoxicity is the most worrying cardiovascular alteration in patients treated with chemotherapy. To improve the understanding regarding the cardiotoxicity, we studied whether 1) patients with cardiac dysfunction related to anthracycline-based chemotherapy have augmented sympathetic nerve activity and decreased exercise capacity and 2) these responses are similar to those observed in patients with heart failure caused by other etiologies. Sixteen patients with heart failure with reduced ejection fraction related to anthracycline-based chemotherapy with or without chest radiation (HFrEFCA), 10 patients with heart failure with reduced ejection not related to cancer therapy (HFrEF), and 16 age- and body mass index (BMI)-matched healthy control subjects were studied. Left ventricular ejection fraction (LVEF, echocardiography), peak oxygen consumption (peak V̇o2, cardiopulmonary exercise test), muscle sympathetic nerve activity (MSNA, microneurography), and forearm blood flow (FBF, venous occlusion plethysmography) were measured. We found that peak oxygen consumption peak V̇o2 and LVEF were significantly reduced in patients with HFrEFCA compared with that of control subjects (P < 0.0001) but similar to those found in patients with HFrEFCA. The sympathetic nerve activity burst frequency and incidence were significantly higher in patients with HFrEFCA than that in control subjects (P < 0.0001). No differences were found between patients with HFrEF and HFrEFCA. Peak V̇o2 was inversely associated with MSNA burst frequency (r = -0.53, P = 0.002) and burst incidence (r = -0.38, P = 0.01) and directly associated with LVEF (r = 0.71, P < 0.0001). Taken together, we conclude that patients who develop heart failure due to anthracycline-based chemotherapy have sympathetic neural overdrive and reduced exercise capacity. In addition, these physiological changes are similar to those observed in patients with HFrEF.NEW & NOTEWORTHY Patients with heart failure with reduced ejection fraction related to anthracycline-based chemotherapy have increased sympathetic nerve activity and decreased exercise capacity. These alterations in autonomic control and physical capacity are similar to those observed in patients with heart failure due to other etiologies. These findings highlight the importance of special care of oncological patients treated with chemotherapy.

2.
BMC Cardiovasc Disord ; 20(1): 206, 2020 04 28.
Article in English | MEDLINE | ID: mdl-32345217

ABSTRACT

BACKGROUND: In recent years, the field of cardio-oncology has grown worldwide, bringing benefits to cancer patients in terms of survival and quality of life. This study reports the experience of a pioneer cardio-oncology programme at University Cancer Hospital in Brazil over a period of 10 years, describing the clinical profile of patients and the clinical outcomes. METHODS: A retrospective study was conducted on a cohort of patients treated at the cardio-oncology programme from April 2009 to February 2019. We analysed the characteristics of patients and outcomes, including mortality, according to the type of clinical indication for outpatient care (general cardiology, perioperative evaluation and follow-up and treatment cardiotoxicity). RESULTS: From a total of 26,435 medical consultations, we obtained the data of 4535 individuals among the medical care outpatients. When we analysed the clinical characteristics of patients considering the clinical indication - general cardiology, perioperative evaluation and cardiotoxicity outpatient clinics, differences were observed with respect to age (59 [48-66], 66 [58-74] and 69 [62-76], p < 0.001), diabetes (67 [15%], 635 [22.6%] and 379 [29.8%]; p < 0.001), hypertension (196 [43.8%], 1649 [58.7%] and 890 [70.1%], p < 0.001) and dyslipidaemia (87 [19.7%), 735 [26.2%] and 459 [36.2%], p < 0.001). A similar overall mortality rate was observed in the groups (47.5% vs. 45.7% vs. 44.9% [p = 0.650]). CONCLUSION: The number of oncologic patients in the Cardio-Oncology Programme has grown in the last decade. A well-structured cardio-oncology programme is the key to achieving the true essence of this area, namely, ongoing care for cancer patients throughout the disease treatment process, optimizing their cardiovascular status to ensure they can receive the best therapy against cancer.


Subject(s)
Cancer Survivors , Cardiology , Delivery of Health Care, Integrated , Heart Diseases/therapy , Medical Oncology , Neoplasms/therapy , Radiation Injuries/therapy , Aged , Antineoplastic Agents/adverse effects , Brazil , Cardiotoxicity , Heart Diseases/chemically induced , Heart Diseases/diagnosis , Heart Diseases/mortality , Hospitals, University , Humans , Male , Middle Aged , Neoplasms/mortality , Quality of Life , Radiation Injuries/diagnosis , Radiation Injuries/etiology , Radiation Injuries/mortality , Radiotherapy/adverse effects , Retrospective Studies , Risk Factors , Specialization , Time Factors
4.
Rev Assoc Med Bras (1992) ; 58(4): 505-12, 2012.
Article in English | MEDLINE | ID: mdl-22930033

ABSTRACT

When dealing with surgical patients, a perioperative evaluation is essential to anticipate complications and institute measures to reduce the risks. Several algorithms and exams have been used to identify postoperative cardiovascular events, which account for more than 50% of perioperative mortality. However, they are far from ideal. Some of these algorithms and exams were proposed before important advances in cardiology, at a time when pharmacological risk reduction strategies for surgical patients were not available. New biomarkers and exams, such as C-reactive protein, brain natriuretic peptide, and multislice computed tomography have been used in cardiology and have provided important prognostic information. The ankle-brachial index is another significant marker of atherosclerosis. However, specific information regarding the perioperative context of all these methods is still needed. The objective of this article is to evaluate cardiovascular risk prediction models after noncardiac surgery.


Subject(s)
Cardiovascular Diseases/diagnosis , Perioperative Care/standards , Postoperative Complications/prevention & control , Algorithms , Ankle Brachial Index , Biomarkers/analysis , Humans , Natriuretic Peptide, Brain/analysis , Risk Assessment
5.
Rev. Assoc. Med. Bras. (1992, Impr.) ; Rev. Assoc. Med. Bras. (1992, Impr.);58(4): 505-512, July-Aug. 2012. tab
Article in English | LILACS | ID: lil-646896

ABSTRACT

When dealing with surgical patients, a perioperative evaluation is essential to anticipate complications and institute measures to reduce the risks. Several algorithms and exams have been used to identify postoperative cardiovascular events, which account for more than 50% of perioperative mortality. However, they are far from ideal. Some of these algorithms and exams were proposed before important advances in cardiology, at a time when pharmacological risk reduction strategies for surgical patients were not available. New biomarkers and exams, such as C-reactive protein, brain natriuretic peptide, and multislice computed tomography have been used in cardiology and have provided important prognostic information. The ankle-brachial index is another significant marker of atherosclerosis. However, specific information regarding the perioperative context of all these methods is still needed. The objective of this article is to evaluate cardiovascular risk prediction models after noncardiac surgery.


Subject(s)
Humans , Cardiovascular Diseases/diagnosis , Perioperative Care/standards , Postoperative Complications/prevention & control , Algorithms , Ankle Brachial Index , Biomarkers/analysis , Natriuretic Peptide, Brain/analysis , Risk Assessment
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