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Gadolinium-Based Contrast Media Nephrotoxicity in Kidney Impairment: The Physio-Pathological Conditions for the Perfect Murder

机译:基于Gadolinium的造粒介质肾脏损伤的肾毒性:完美谋杀的物理病理条件

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摘要

Gadolinium-based contrast media (GBCM) toxicity in patients with kidney disease is a concern for the possible development of systemic nephrogenic fibrosis and possible renal complications. This review focuses on the pathological mechanisms underlying the potential kidney toxicity of gadolinium. Gadolinium, as a free compound (Gd3+), is highly toxic in humans because it competes with divalent calcium (Ca2+) and magnesium (Mg2+) ions, interfering in some relevant biologic processes. Its toxicity is blunted by the complexing of Gd3+ with a carrier, allowing its use in magnetic resonance imaging. The binding reaction between gadolinium and a carrier is thermodynamically reversible. Consequently, under some conditions, gadolinium can be released in the interstitial space as a free Gd3+ compound with the possibility of toxicity. Other metals such as iron, copper, and calcium can interfere with the binding between gadolinium and its carrier because they compete for the same binding site. This process is known as transmetallation. In patients with kidney impairment, conditions such as low clearance of the Gd-carrier complex, acid-base derangements, and high serum phosphorous can increase the presence of free Gd3+, leading to a higher risk for toxicity.
机译:基于Gadolinium的造影剂(GBCM)肾脏疾病患者的毒性是患有全身肾纤维化和可能肾并发症的可能发展的疑虑。本综述重点是钆毒性潜在肾脏毒性的病理机制。钆,作为游离化合物(GD3 +),在人体中具有高度毒性,因为它与二价钙(Ca2 +)和镁(Mg2 +)离子竞争,干扰了一些相关的生物过程。它的毒性通过GD3 +与载体的络合物钝化,允许其在磁共振成像中使用。钆与载体之间的结合反应是热力学上可逆的。因此,在某些条件下,钆可以在间质空间中作为游离Gd3 +化合物释放,具有毒性的可能性。其他金属如铁,铜和钙可以干扰钆和其载体之间的结合,因为它们竞争相同的结合位点。此过程称为传输。在肾脏损伤患者中,诸如GD载体复合物,酸碱紊乱和高血清磷的低间隙的条件可以增加游离GD3 +的存在,导致毒性的风险更高。

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