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Application of novel targeted molecular imaging probes in the early diagnosis of upper urinary tract epithelial carcinoma

机译:新型靶向分子显像探针在上尿路上皮癌早期诊断中的应用

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摘要

Imaging techniques of upper tract urothelial carcinoma (UTUC) are presently limited. Upconversion particles (UCPs) could be used to target tumors for imaging. The present study aimed to assess the value of a nano-UCP as a diagnostic probe for deep tumor tissue, including UTUC. Polymer-coated water-soluble UCPs were synthesized. The pH Low Insertion Peptide (pHLIP) polypeptide was synthesized using the solid phase method. The silane shell surface was modified to present amino or carboxyl groups. Succinimidyl 4-(N-maleimidomethyl)cyclohexane-1-carboxylate was used for the coupling of the polypeptide to the UCPs. An animal model of subcutaneous tumor was established in 4-week old nude mice using UTUC cells. Urinary tract epithelial cancer T24 cells were injected into the diaphragm below the heart. PHLIP-UCP solution (1 ml) was injected into the abdominal cavity of each animal. Optical detection was performed using a small animal living body multispectral imaging system. UCPs dispersed in chloroform emitted no light under natural light, while they emitted a green light when excited with a 980-nm laser. The maximum emission wavelength of Ho3+-doped UCPs was ~550 nm and the red emission region was ~650 nm. As the coated UCPs possessed a tendency to agglomerate and precipitate, the yield of the UCPs in the aqueous phase was reduced. Tumors could be successfully imaged in tumor-bearing mice. NaYF4: Yb, Ho3+ UPCs could be used for the detection of UTUC, thus further studies are required to determine if it could be used in larger animals with deeper tumors.
机译:上尿路尿路上皮癌(UTUC)的成像技术目前受到限制。上转换粒子(UCP)可用于靶向肿瘤进行成像。本研究旨在评估纳米UCP作为深部肿瘤组织(包括UTUC)的诊断探针的价值。合成了聚合物包衣的水溶性UCP。使用固相方法合成了pH低插入肽(pHLIP)多肽。硅烷壳表面被改性以呈现氨基或羧基。 4-(N-马来酰亚胺基甲基)环己基-1-羧酸琥珀酰亚胺用于将多肽偶联至UCP。使用UTUC细胞在4周龄的裸鼠中建立皮下肿瘤的动物模型。尿路上皮癌T24细胞被注入心脏下方的横diaphragm膜。将PHLIP-UCP溶液(1ml)注射到每只动物的腹腔中。使用小型动物活体多光谱成像系统进行光学检测。分散在氯仿中的UCP在自然光下不发光,而在980 nm激光激发时它们发出绿光。 Ho 3 + 掺杂的UCP的最大发射波长为〜550 nm,红色发射区域为〜650 nm。由于涂覆的UCP具有附聚和沉淀的趋势,因此降低了UCP在水相中的产率。肿瘤可以在荷瘤小鼠中成功成像。 NaYF4:Yb,Ho 3 + UPCs可用于检测UTUC,因此需要进一步研究以确定其是否可用于肿瘤更深的较大动物。

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