Background: A new Xenon computed tomography (CT) system was developed to measure both hepatic arterial and portal venous tissue blood flow (HATBF/PVTBF) non-invasively. Despite its clinical trial, the effect of prostaglandin E1 (PGE1) on hepatic hemodynamics is not well investigated. In a rabbit model, we evaluated the accuracy of this system by comparing it with the electromagnetic blood flowmeter (EMBF), the pharmacological effect of PGE1 on the fractional hepatic hemodynamics.
Materials And Methods: Seven NZW-rabbits were used. Serial abdominal CT scan was obtained every min before and during the 4 min inhalation of the Xenon gas, followed by 5 min administration of oxygen air. From these images, HATBF and PVTBF were separately calculated with a special new imaging system. We also used EMBF during laparotomy, and directly measured the hepatic arterial and portal venous flow with or without PGE1 administration.
Results: Xenon CT showed HATBF of 18.4 +/- 4.5 (ml/min/100 g) and PVTBF of 69.4 +/- 15.0, was almost identical with those of EMBF (19.8 +/- 5.7 and 67.2 +/- 19.1, respectively). After PGE1 administration, Xenon CT showed 22.9 +/- 4.6 and 76.5 +/- 20.5, while those with EMBF were 21.0 +/- 6.5 and 84.7 +/- 21.6, respectively. There were significant correlations (P < 0.01) in total HTBF, HATBF, and PVTBF between results of Xenon CT and EMBF.
Conclusions: Xenon CT with a newly developed imaging system enables us to measure the fractional hepatic tissue blood flow in rabbits, differentially and accurately. Venous administration of PGE1 increased total hepatic blood flow, mainly affecting the portal blood flow.
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http://dx.doi.org/10.1016/j.jss.2005.01.027 | DOI Listing |
Cytotherapy
January 2025
Institute for Bioengineering of Catalonia (IBEC), The Barcelona Institute of Science and Technology (BIST), Barcelona, Spain. Electronic address:
Background/aims: Human mesenchymal stromal cells (hMSC) are multipotent adult cells commonly used in regenerative medicine as advanced therapy medicinal products. The expansion of these cells in xeno-free supplements is highly encouraged by regulatory agencies due to safety concerns. However, the number of supplements with robust performance and consistency for hMSC expansion are limited.
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Angiology and Vascular Surgery, Unidade Local de Saúde de São João; Surgery and Physiology, Faculdade de Medicina da Universidade do Porto, Portugal.
A 44 year-old previously healthy woman presented a persistent epigastric pain. Computed tomography revealed a saccular aneurysm with a diameter of 25x20 mm in the first jejunal artery and also a stenosis in the celiac trunk associated with median arcuate ligament syndrome, turning the hepatic perfusion dependent of the gastroduodenal artery flow. Through a midline laparotomy, celiac axis was exposed, and median arcuate ligament released for median arcuate ligament syndrome treatment.
View Article and Find Full Text PDFPort J Card Thorac Vasc Surg
January 2025
Department of Biomedicine - Unit of Anatomy, Faculty of Medicine, University of Porto; RISE@Health, Porto, Portugal.
Background: Aortoiliac disease (AID) is a variant of peripheral artery disease involving the infrarenal aorta and iliac arteries. Similar to other arterial diseases, aortoiliac disease obstructs blood flow through narrowed lumens or by embolization of plaques. AID, when symptomatic, may present with a triad of claudication, impotence, and absence of femoral pulses, a triad also referred as Leriche Syndrome (LS).
View Article and Find Full Text PDFJ Infect Dev Ctries
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Intensive Care Unit, Columbia Asia Hospital, Semarang, Indonesia.
Introduction: Hemoperfusion (HP), a blood filtration method targeting the removal of toxins and inflammatory elements, was investigated in this study. The objective was to present the observations in four individuals with confirmed COVID-19 who underwent several rounds of HP utilizing the HA330 cartridge at a hospital in Indonesia.
Case Studies: We report four cases of COVID-19 patients who underwent HP.
Mol Ther
January 2025
Department of Surgery, McGowan Institute for Regenerative Medicine, University of Pittsburgh, Pittsburgh, PA 15219, United States; Department of Surgery, Indiana Center for Regenerative Medicine and Engineering, Indiana University School of Medicine, Indianapolis, IN 46202, United States. Electronic address:
Diabetic wounds are complicated by underlying peripheral vasculopathy. Reliance on vascular endothelial growth factor (VEGF) therapy to improve perfusion makes logical sense, yet clinical study outcomes on rescuing diabetic wound vascularization have yielded disappointing results. Our previous work has identified that low endothelial phospholipase Cγ2 (PLCγ2) expression hinders the therapeutic effect of VEGF on the diabetic ischemic limb.
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