Buja L M, Tofe A J, Kulkarni P V, Mukherjee A, Parkey R W, Francis M D, Bonte F J, Willerson J T
J Clin Invest. 1977 Sep;60(3):724-40. doi: 10.1172/JCI108825.
This study was performed to elucidate the localization at the cellular level of technetium-99m phosphorus ((99m)Tc-P) radiopharmaceuticals in acute myocardial infarcts and the mechanisms responsible for (99m)Tc-P uptake in acute myocardial infarcts and other tissues. In 20 dogs with proximal left anterior descending coronary arterial ligation for 1-3 days, elevated calcium levels were measured at all sites of increased (99m)Tc-P uptake (acute myocardial infarcts, necrotic thoracotomy muscle, lactating breast, and normal bone); however, a consistent linear relationship between (99m)Tc-P and calcium levels was not observed. A strong correlation (r = 0.95 and 0.99, n = 2 dogs) was demonstrated between levels of (3)H-diphosphonate and (99m)Tc-P in infarcted myocardium. Autoradiographic studies with (3)H-diphosphonate revealed extensive labeling in the infarct periphery which contained necrotic muscle cells with features of severe calcium overloading, including widespread hypercontraction as well as more selective formation of mitochondrial calcific deposits. Autoradiography also demonstrated labeling of a small population of damaged border zone muscle cells which exhibited prominent accumulation of lipid droplets and focal, early mitochondrial calcification. Cell fractionation studies revealed major localization of both (99m)Tc-P and calcium in the soluble supernate and membrane-debris fractions of infarcted myocardium and less than 2% of total (99m)Tc-P and calcium in the mitochondrial fractions; however, electron microscopic examination showed that mitochondria with calcific deposits were not preserved in the mitochondrial fractions. In vitro studies evaluating the role of serum protein binding on tissue uptake of (99m)Tc-P agents demonstrated that, in spite of significant complexing with serum proteins, serum (99m)Tc-P activity retained the ability to adsorp to calcium hydroxyapatite and amorphous calcium phosphate. In vivo studies showed that concentration of human serum albumin (labeled with iodine-131) in infarcted myocardium reached a maximum of only 3.8 times normal after a circulation time of 96 h, whereas (99m)Tc-P uptake was at least 10 times normal after a circulation time as short as 1 h. It is concluded that: (a) (99m)Tc-P uptake in acutely infarcted myocardium, and possibly other types of soft tissue damage, is limited to necrotic and severely injured cells; (b) concentration of (99m)Tc-P results from selective adsorption of (99m)Tc-P with various forms of tissue calcium stores, including amorphous calcium phosphate, crystalline hydroxyapatite, and calcium complexed with myofibrils and other macromolecules, possibly supplemented by calcium-independent complexing with organic macromolecules; and (c) lack of a linear relationship between (99m)Tc-P and tissue calcium levels mainly results from local differences in composition and physicochemical properties of tissue calcium stores and from local variations in levels of blood flow for delivery of (99m)Tc-P agents.
本研究旨在阐明锝-99m磷((99m)Tc-P)放射性药物在急性心肌梗死中的细胞水平定位,以及急性心肌梗死和其他组织中(99m)Tc-P摄取的机制。对20只左冠状动脉前降支近端结扎1 - 3天的犬进行研究,在(99m)Tc-P摄取增加的所有部位(急性心肌梗死、坏死的开胸肌肉、哺乳期乳腺和正常骨骼)均检测到钙水平升高;然而,未观察到(99m)Tc-P与钙水平之间存在一致的线性关系。梗死心肌中(3)H - 二膦酸盐与(99m)Tc-P水平之间显示出强相关性(r = 0.95和0.99,n = 2只犬)。用(3)H - 二膦酸盐进行的放射自显影研究显示,梗死灶周边有广泛标记,该区域包含具有严重钙超载特征的坏死肌细胞,包括广泛的过度收缩以及更具选择性的线粒体钙化沉积形成。放射自显影还显示一小部分受损的边缘区肌细胞有标记,这些细胞表现出脂质小滴的显著积累和局灶性早期线粒体钙化。细胞分级分离研究表明,(99m)Tc-P和钙主要定位于梗死心肌的可溶性上清液和膜碎片部分,线粒体部分中(99m)Tc-P和钙总量不到2%;然而,电子显微镜检查显示线粒体部分中含有钙化沉积的线粒体未被保留。评估血清蛋白结合对(99m)Tc-P制剂组织摄取作用的体外研究表明,尽管(99m)Tc-P与血清蛋白有显著络合,但血清(99m)Tc-P活性仍保留吸附到羟基磷灰石钙和无定形磷酸钙的能力。体内研究表明,梗死心肌中(用碘-131标记的)人血清白蛋白浓度在循环96小时后最高仅达到正常水平的3.8倍,而(99m)Tc-P摄取在循环时间短至1小时后至少是正常水平的10倍。结论如下:(a) 急性梗死心肌以及可能其他类型的软组织损伤中(99m)Tc-P摄取仅限于坏死和严重受损的细胞;(b) (99m)Tc-P的浓聚是由于(99m)Tc-P与各种形式的组织钙储存选择性吸附所致,包括无定形磷酸钙、结晶性羟基磷灰石以及与肌原纤维和其他大分子络合的钙,可能还通过与有机大分子的非钙依赖性络合得到补充;(c) (99m)Tc-P与组织钙水平之间缺乏线性关系主要是由于组织钙储存的组成和物理化学性质的局部差异以及(99m)Tc-P制剂递送的血流水平的局部变化。