Vatsa Rakhee, Bhusari Priya, Kumar Sunil, Chakraborty Sudipta, Dash Ashutosh, Singh Gurpreet, Dhawan Devinder Kumar, Shukla Jaya, Mittal Bhagwant Rai
1 Department of Nuclear Medicine and PET, PGIMER, Chandigarh, India .
2 Centre for Nuclear Medicine, Punjab University , Chandigarh, India .
Cancer Biother Radiopharm. 2015 Jun;30(5):217-24. doi: 10.1089/cbr.2014.1781.
For the growth and spread of a tumor beyond 2 mm, angiogenesis plays a crucial role, and association of various integrins with angiogenesis is evidential. The aim of the study was radiolabeling of DOTA-chelated RGD (arginine-glycine-aspartic acid) peptide with (68)Ga for PET imaging in locally advanced breast carcinoma. DOTA-RGD was incubated with (68)GaCl3, eluted in 0.05 m HCl. Elution volume, peptide amount, and reaction pH were studied. Radio-ITLC, gas chromatography, endotoxin, and sterility testing were performed. Serial (n=3) and whole-body (n=2) PET/CT imaging was done on patients post i.v. injection of 111-185 MBq of (68)Ga-DOTA-RGD. Maximum radiolabeling yield was achieved with 3 mL elution volume of 15-20 μg peptide at pH 3.5-4.0 with 10 minutes of incubation at 95°C. Product samples were sterile having 99.5% radiochemical purity with residual ethanol content and endotoxins in injectable limits. Intense radiotracer uptake was noticed in the tumor with SUVmax 15.3 at 45 minutes in serial images. Physiological radiotracer uptake was seen in the liver, spleen, ventricles, and thyroid with excretion through the kidneys. The authors concluded that (68)Ga-DOTA-RGD has the potential for imaging α,vβ3 integrin-expressing tumors.
对于肿瘤生长超过2毫米并发生扩散而言,血管生成起着关键作用,并且各种整合素与血管生成之间的关联是有证据的。本研究的目的是用(68)镓对DOTA螯合的RGD(精氨酸 - 甘氨酸 - 天冬氨酸)肽进行放射性标记,用于局部晚期乳腺癌的PET成像。将DOTA - RGD与(68)GaCl3孵育,在0.05 m HCl中洗脱。研究了洗脱体积、肽量和反应pH值。进行了放射性薄层色谱法、气相色谱法、内毒素和无菌检测。在静脉注射111 - 185 MBq的(68)Ga - DOTA - RGD后,对患者进行了系列(n = 3)和全身(n = 2)PET/CT成像。在pH 3.5 - 4.0、洗脱体积为3 mL、肽量为15 - 20 μg、95°C孵育10分钟的条件下,实现了最大放射性标记产率。产品样品无菌,放射化学纯度为99.5%,残留乙醇含量和内毒素在可注射范围内。在系列图像中,45分钟时肿瘤内可见强烈的放射性示踪剂摄取,SUVmax为15.3。在肝脏、脾脏、心室和甲状腺中可见生理性放射性示踪剂摄取,并通过肾脏排泄。作者得出结论,(68)Ga - DOTA - RGD具有对表达α,vβ3整合素的肿瘤进行成像的潜力。