Radiation & Photochemistry Division, Bhabha Atomic Research Centre, Mumbai 400 085, India.
University Institute of Biotechnology, Chandigarh University, Panjab 140 413, India.
J Mater Chem B. 2024 Apr 17;12(15):3786-3796. doi: 10.1039/d4tb00264d.
Trypsin, a pancreatic enzyme associated with diseases like pancreatic cancer and cystic fibrosis, requires effective diagnostic tools. Current detection systems seldom utilize macrocyclic molecules and tetraphenyl ethylene (TPE) derivative-based supramolecular assemblies, known for their biocompatibility and aggregation-induced emission (AIE) properties, for trypsin detection. This study presents an enzyme-responsive, AIE-based fluorescence 'Turn-On' sensing platform for trypsin detection, employing sulfated-β-cyclodextrin (S-βCD), an imidazolium derivative of TPE (TPE-IM), and protamine sulfate (PrS). The anionic S-βCD and cationic TPE-IM formed a strongly fluorescent supramolecular aggregation complex in an aqueous buffer. However, PrS suppresses fluorescence because of its strong binding affinity with S-βCD. The non-fluorescent TPE-IM/S-βCD/PrS supramolecular assembly system exhibits trypsin-responsive properties, as PrS is a known trypsin substrate. Trypsin restores fluorescence in the TPE-IM/S-βCD system through the enzymatic cleavage of PrS, correlating linearly with trypsin catalytic activity in the 0-10 nM concentration range. The limit of detection is 10 pM. This work contributes to the development of self-assembled supramolecular biosensors using charged TPE derivatives and β-cyclodextrin-based host-guest chemistry, offering an innovative fluorescence 'Turn-On' trypsin sensing platform. The sensing system is highly stable under various conditions, selective for trypsin, and demonstrates potential for biological analysis and disease diagnosis in human serum. Additionally, it shows promise for the screening of trypsin inhibitors.
胰蛋白酶是一种与胰腺癌和囊性纤维化等疾病相关的胰腺酶,需要有效的诊断工具。目前的检测系统很少利用大环分子和四苯乙烯(TPE)衍生物基超分子组装体,这些组装体以其生物相容性和聚集诱导发射(AIE)特性而闻名,用于胰蛋白酶检测。本研究提出了一种基于酶响应的 AIE 荧光“开启”传感平台,用于胰蛋白酶检测,该平台使用磺化-β-环糊精(S-βCD)、TPE 的咪唑衍生物(TPE-IM)和鱼精蛋白硫酸盐(PrS)。带负电荷的 S-βCD 和带正电荷的 TPE-IM 在水性缓冲液中形成强荧光超分子聚集复合物。然而,由于其与 S-βCD 的强结合亲和力,PrS 会抑制荧光。非荧光 TPE-IM/S-βCD/PrS 超分子组装体系表现出对胰蛋白酶的响应特性,因为 PrS 是已知的胰蛋白酶底物。胰蛋白酶通过酶切 PrS 恢复 TPE-IM/S-βCD 体系中的荧光,与 0-10 nM 浓度范围内的胰蛋白酶催化活性呈线性相关。检测限为 10 pM。这项工作为使用带电 TPE 衍生物和基于β-环糊精的主体-客体化学开发自组装超分子生物传感器做出了贡献,提供了一种创新的荧光“开启”胰蛋白酶传感平台。该传感系统在各种条件下具有高度稳定性,对胰蛋白酶具有选择性,并在人血清中的生物分析和疾病诊断方面具有潜在应用,还展示了筛选胰蛋白酶抑制剂的潜力。