PubMed Health⌕ Search

PubMed · 12174207

Microbubble-endothelial cell interactions as a basis for assessing endothelial function.

Abstract

Clinical signs and symptoms of coronary artery disease are predated in decades by endothelial dysfunction, an aberration in the vascular lining that permits the development and propagation of atherosclerotic lesions and vasomotor dysfunction in the arterial circulation. These ultimately lead to acute and chronic coronary ischemic syndromes. Other pathophysiologic scenarios encountered in clinical cardiology practice, such as cardiac transplant rejection and the period following coronary angioplasty or cardiac surgery, also are associated with endothelial dysfunction. Endothelial dysfunction parallels coronary risk factors and is potentially reversible, rendering early identification of the phenomenon a clinically important endpoint. Current methods for detecting endothelial dysfunction are limited, however. Myocardial contrast echocardiography using microbubbles targeted to bind to cell surface markers uniquely expressed by dysfunctional endothelial cells may offer an approach to the noninvasive detection of endothelial disease using clinical ultrasound imaging techniques. This article will discuss the concept of targeted ultrasound imaging and present preliminary studies in this area as applied to endothelial assessment. Potential applications to other disease states, both diagnostic and therapeutic, also are discussed.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Flordeliza S Villanueva, Alexander Klibanov, William R Wagner. 2002. Microbubble-endothelial cell interactions as a basis for assessing endothelial function.. https://doi.org/10.1046/j.1540-8175.2002.00427.x

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Type, severity, frequency and management of adverse reactions associated with ultrasound contrast agents: a systematic review and meta-analysis.

OBJECTIVES: This systematic review and meta-analysis are aimed at evaluating the incidence of adverse drug reactions (ADRs) following administration of clinically approved ultrasound contrast agents (UCAs) in adults and children, to assess risks in patients with cardiovascular disease and in pregnancy, and to evaluate the effectiveness of emergency management of severe ADRs. MATERIALS AND METHODS: A PRISMA 2020 systematic review was conducted searching PubMed, Scopus, and Embase. Two reviewers independently screened, extracted data, and assessed quality. Incidence estimates were pooled when feasible, stratified by age group, contrast agent, and administration route. RESULTS: Seventy-four studies encompassing >&#x2009;1 million adults and >&#x2009;36,000 children were included, contributing multiple analytic cohorts to the quantitative synthesis. Severe acute ADRs were extremely rare (6 and 16 cases per 100,000 in adults and children, respectively) and absent following endocavitary administration in children. Non-severe acute ADRs occurred in 11 and 8 cases per 10,000 adults and children, respectively. Delayed reactions were very rare (<&#x2009;1 case per million in adults). No significant safety differences emerged between UCA products. The incidence of ADRs in patients with cardiovascular disease was analogous to the general population. No ADRs were reported in pregnant women. Standard emergency management was effective in almost all serious cases, though rare fatalities occurred. CONCLUSION: UCAs show an excellent safety profile in adults and children, with very rare severe ADRs and few non-severe, typically self-limiting reactions. Strict adherence to recommended emergency management protocols mitigates the remaining risks, supporting safe use across a broad range of clinical indications. PROSPERO REGISTRATION: CRD42023432668. KEY POINTS: Question What is the incidence, type, and severity of acute and delayed ADRs associated with clinically approved UCAs across different patient populations? Findings Severe acute adverse reactions are very rare, and non-severe reactions are rare and self-limiting, with no significant safety differences between adults, children, or patients with cardiovascular disease. Clinical relevant UCAs show an excellent safety profile across populations. These findings support their safe clinical use as reliable alternatives to iodine-based and gadolinium-based contrast agents in routine diagnostic imaging.

Contrast Media↗

Near-infrared fluorescence contrast-enhanced imaging with area illumination and area detection: the forward imaging problem.

Fluorescence frequency-domain photon migration measurements were acquired from tissue phantoms, each containing a fluorescent target, by means of area illumination and area detection on the same surface and for the first time, to our knowledge, compared with predictions computed with a numerical solution to the coupled photon diffusion equations. We accomplished area illumination and area detection using a planar, intensity-modulated excitation light source and a gain-modulated intensified charge-coupled device camera, respectively. A 1-ml vessel containing 1-microm solution of Indocyanine Green in 1% Liposyn was immersed 1 cm deep in each 512-ml tissue phantom. For most tissue phantoms, the background surrounding the 1-ml target was composed of Liposyn solution containing Indocyanine Green or 3,3'-Diethylthiatricarbocyanine Iodide such that the target-to-background ratio of fluorescence yield was > or = 10:1. Measurements of fluorescence modulation amplitude and phase were predicted with a mean error ranging from 10.1% to 13.6% and 0.56 degrees to 1.72 degrees, respectively. These numbers are similar to those obtained by use of single-pixel frequency-domain photon migration techniques and validate the potential use of area illumination and area detection for biomedical imaging of tissues. Results also demonstrate that target-to-background ratios of fluorescence yield and fluorescence lifetime significantly affect target detectability.

Contrast Media↗