Search PubMedSearch

SEARCH · Search PubMed

Results for “Coronary collateral circulation”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 19 recordsLinked to original sources

Distinct immune-metabolic phenotypes underlie poor coronary collateral circulation.

BACKGROUND: Coronary collateral circulation (CCC) significantly impacts myocardial perfusion and clinical outcomes in coronary artery disease patients, yet the underlying molecular heterogeneity remains inadequately characterized. OBJECTIVE: To identify distinct molecular phenotypes in patients with poor CCC, validate these phenotypes using clinical parameters, and evaluate their prognostic implications. METHODS: This study enrolled 149 patients (80 with good CCC and 69 with poor CCC) for high-throughput proteomic profiling. Unsupervised consensus clustering identified molecular subtypes within poor CCC patients, followed by differential expression analysis and KEGG pathway enrichment. Boruta feature selection was implemented, and multiple machine learning algorithms were tested on clinical data, with XGBoost optimization (accuracy 80.0%, F1-score 80.31%) and SHAP value interpretation. External validation was performed using the MIMIC database. Kaplan-Meier analysis and Cox regression models assessed major adverse cardiovascular events (MACE). RESULTS: Two distinct phenotypes emerged among poor CCC patients: Cluster 1 (n&#x2009;=&#x2009;39, Complement-Driven Vascular Remodeling [CDVR]) and Cluster 2 (n&#x2009;=&#x2009;30, Immuno-Thrombotic Myocardial Dysfunction [ITMD]). An XGBoost model incorporating fasting glucose, eosinophil percentage, and HbA1c achieved excellent discrimination (AUC&#x2009;>&#x2009;0.91). External validation confirmed the phenotype-specific clinical patterns. Notably, Cluster 2 demonstrated significantly higher MACE incidence compared to Cluster 1 (Log-rank p&#x2009;<&#x2009;0.05), with KEGG analysis revealing significant upregulation of platelet activation, diabetic cardiomyopathy, and metabolic pathways in the ITMD phenotype. CONCLUSION: Poor CCC encompasses distinct immune-metabolic phenotypes that can be accurately classified using integrated proteomic-clinical modeling. This classification enables more precise risk stratification and may guide personalized therapeutic strategies for coronary artery disease patients with inadequate collateralization.

Humans

[Coronary collateral circulation in coronary atherosclerosis (author's transl)].

The coronary collateral circulation of 162 patients suffering from atherosclerosis and coronary insufficiency (coronary artery disease) was studied. It was found to be present in 44 patients, or 27.1%; homocoronary in 9%, intercoronary in 90.9%. As other Authors have previously reported, anastomotic circulation is more developed when the coronary occlusion exceeds 75%. Not one of the 44 cases with normal coronary arteries or occlusion inferior to 75% presented collateral circulation. In addition, it was found to be present more frequently in cases with three branch lesions. The time of insurgence of coronary insufficiency seems to condition the development of anastomotic circulation which appears more frequently when the symptoms have been present for more than 5 years (43.9%). Anastomotic circulation is also found more frequently (48.4%) in patients who have suffered myocardial infarction and who have angina. Collateral circulation was not found in any of the 46 patients with unstable isolated angina; this seems to show the importance, in its pathogenesis, of the functional factor (spasm). In conclusion, we may say that anastomotic circulation is more developed: 1) in cases of severe occlusive lesions (in severe coronary occlusive disease/atherosclerosis) (85%);2) in three branch lesions; 3) in cases of long standing symptomatology; 4) in stable angina and in angina t infarction.

Angina Pectoris

Coronary collateral circulation as an important factor to modify the ischemic injury of the myocardium in coronary ligated dogs.

Effect of coronary ligation on epicardial and intramyocardial ST-segment voltage was investigated in 121 dogs. After ligation of the anterior descending coronary artery, marked ST-elevation, more than 2 mV, was detected in 102 dogs (Group-I) in epicardial lead of the area which was nourished by the ligated coronary artery. In 7 dogs (Group-II), coronary ligation produced negligible changes in ST-segment voltage in epicardial lead, while significant ST-elevation was observed in the leads of middle and inner layers of the myocardium. Systemic hemo-dynamic parameters showed no statistically significant difference between the 2 groups. Coronary collateral indices, however, revealed the significant difference between them. Systolic peripheral coronary pressure was 29.3 +/- 3.1 mmHg in Group-I and 59.2 +/- 10.6 mmHg in Group-II (P less than 0.05). Retrograde flow was also greater in Group-II (14.8 +/- 4.4 ml/min) than in Group-I (1.3 +/- 0.5 ml/min) (p less than 0.01). Diversion of retrograde flow produced a marked ST-elevation in Group-II. Restoration of retrograde flow to the myocardium immediately decreased the ST-segment voltage. These results suggest that spontaneously developed collaterals have an important function for the prevention of the occurrence of ischemic injury after coronary ligation in dogs.

Animals

Pharmacological alterations of coronary collateral circulation; implication to the steal-phenomenon.

Measurements of resistances were performed on different parts of coronary vessels, including spontaneous collaterals in anesthetized dogs, following ligation and embolization of the descending branch of the left coronary artery. The normal situation was compared with the state of maximal pharmacological dilatation. The pharmacological dilatation decreased the collateral resistance by 24% in spite of the fact that the collaterals supplied an infarcted area in this case; the precollateral resistance, which chiefly consists of large vessels was also diminished. The collateral perfusion pressure is not only dependent on the aortic pressure, but also on the flow rate in the corresponding large coronary vessel and thereby on the ratio of precollateral to postcollateal resistance. A decrease of the collateral perfusion pressure causes an insufficient perfusion of the area supplied by the collaterals only when the pressure fall is not compensated for by an adequate decrease in the collateral resistance and when the ratio of the collateral to the nutritive resistance increases. Thus, both, the extent of the pressure fall across the precollateral resistance and the dilating capacity of the collaterals determine whether is not a pharmacological dilatation of the coronary vascular bed results in an insufficient supply of an infarcted area, i.e. in a so called "Steal-phenomenon". The results show further, that the given physical model of the microcirculation satisfactorily approximates the observed behaviour of the vascular system.

Animals

Pressure-flow characteristics of the coronary collateral circulation during cardiopulmonary bypass. Effects of ventricualr fibrillation.

Even though ventricular fibrillation is used frequently during cardiopulmonary bypass (CPB), the effects of fibrillation on myocardial regions supplied by collateral vessels have not been determined. To study these effects, nine dogs with left ventricles (ameroid model) consisting of a region of myocardium supplied by collateral vessels (CR) and a region supplied by normal coronary arteries (NR) were subjected to normothermic CPB at two perfusion pressures. In both the empty beating heart (EBH) and empty fibrillating heart (EFH) regional myocardial flow was determined by tracer microspheres. Retrograde coronary pressure was measured via cannulation of the circumflex artery distal to the ameroid induced occlusion. When perfusion pressure was maintained at 80 mm Hg, retrograde coronary pressure was similar in the EBH (46 +/- 4 mm Hg) and in the EFH (48 +/- 3 mm Hg). During fibrillation subendocardial flow in the CR was unchanged, while flow in the NR increased (P less than 0.02). In addition, the endo/epi was greater in the NR than in the CR (P less than 0.01), a difference which did not exist in the EBH. The flow response to fibrillation in the CR could be produced in the NR by reducing the perfusion pressure to 50 mm Hg. These data suggest that during CPB, fibrillation exaggerates existing subendocardial perfusion deficits in collateral regions and the impaired flow response appears to be related to a low regional intravascular pressure.

Animals

Reappraisal of the functional significance of the coronary collateral circulation.

A review of data in 465 patients with complete obstruction of either the left anterior descending or right coronary artery was undertaken to evaluate the functional role of the collateral circulation. Complete obstruction of a dominant right coronary artery was observed in 288 patients, 83 percent with distal filling and visualization of the posterior descending artery by way of collateral vessels. Complete obstruction of the left anterior descending artery was noted in 177 patients, 71 percent with filling and visualization distal to the obstruction by way of collateral vessels. Among patients with obstruction of the left anterior descending artery, there was a significantly greater frequency of congestive heart failure and cardiomegaly in those without collateral vessels than in those with collateral vessels. The former also had a significantly greater frequency of both electrocardiographic evidence of an anterior wall myocardial infarction and angiographic findings of anterior wall asynergy. The frequency of inferior myocardial infarction and inferior wall asynergy was not influenced by the presence of collateral vessels. These observations indicate that the collateral circulation plays a significant protective role in the presence of obstruction of the left anterior descending artery, which is not apparent with obstruction of the right coronary artery.

Adult

The behavior of collateral circulation after coronary artery bypass surgery.

The changes in coronary collateral circulation after bypass surgery were analyzed in 50 patients with coronary disease. The demonstration of collateral circulation was found to be dependent upon the severity of the coronary heart disease and the patency of the bypass. When the graft was patent, it was usually not possible to visualize the collateral circulation demonstrated preoperatively. When the bypass was occluded, the same collateral circulation as before surgery was frequently found.

Collateral Circulation