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1.
Curr Probl Cardiol ; 48(1): 101435, 2023 Jan.
Article in English | MEDLINE | ID: mdl-36183977

ABSTRACT

Cardiovascular disease and cancer are the leading causes of death worldwide. With advent of novel and improved cancer therapies, a growing population of cancer patients with cardiac complications is seen. Taking this into consideration, the clinical studies have also shifted their focus from the study of a single disease to the interdisciplinary study of oncology and cardiology. This current review article provides a comprehensive review of all major articles and guidelines from the year 2021-2022 in the field of cardio-oncology.


Subject(s)
Cardiology , Cardiovascular Diseases , Heart Diseases , Neoplasms , Humans , Cardiotoxicity/etiology , Medical Oncology , Neoplasms/complications , Neoplasms/drug therapy , Cardiovascular Diseases/epidemiology , Cardiovascular Diseases/therapy , Cardiovascular Diseases/complications
2.
Lab Chip ; 18(19): 3037-3050, 2018 09 26.
Article in English | MEDLINE | ID: mdl-30168827

ABSTRACT

Cells are complex systems with concurrent multi-physical responses, and cell physiological signals are often encoded with spatiotemporal dynamics and further coupled with multiple cellular activities. However, most existing electronic sensors are only single-modality and cannot capture multi-parametric cellular responses. In this paper, a 1024-pixel CMOS quad-modality cellular interfacing array that enables multi-parametric cell profiling for drug development is presented. The quad-modality CMOS array features cellular impedance characterization, optical detection, extracellular potential recording, and biphasic current stimulation. The fibroblast transparency and surface adhesion are jointly monitored by cellular impedance and optical sensing modalities for comprehensive cell growth evaluation. Simultaneous current stimulation and opto-mechanical monitoring based on cardiomyocytes are demonstrated without any stimulation/sensing dead-zone. Furthermore, drug dose-dependent multi-parametric feature extractions in cardiomyocytes from their extracellular potentials and opto-mechanical signals are presented. The CMOS array demonstrates great potential for fully automated drug screening and drug safety assessments, which may substantially reduce the drug screening time and cost in future new drug development.


Subject(s)
Drug Evaluation, Preclinical/instrumentation , Metals/chemistry , Oxides/chemistry , Semiconductors , Tissue Array Analysis/instrumentation , Automation , Fibroblasts/cytology , Fibroblasts/drug effects
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