Department of Chemistry, University of Pittsburgh, 219 Parkman Avenue, Pittsburgh, Pennsylvania 15260, USA.
Anal Chem. 2010 Aug 1;82(15):6377-83. doi: 10.1021/ac1012706.
We hypothesize that peptide-containing solutions pulled through tissue should reveal the presence and activity of peptidases in the tissue. Using the natural zeta-potential in the organotypic hippocampal slice culture (OHSC), physiological fluids can be pulled through the tissue with an electric field. The hydrolysis of the peptides present in the fluid drawn through the tissue can be determined using capillary HPLC with electrochemical detection of the biuret complexes of the peptides following a postcolumn reaction. We have characterized this new sampling method by measuring the flow rate, examining the use of internal standards, and examining cell death caused by sampling. The sampling flow rate ranges from 60 to 150 nL/min with a 150 microm (ID) sampling capillary with an electric field (at the tip of the capillary) from 30 to 60 V/cm. Cell death can be negligible with controlled sampling conditions. Using this sampling approach, we have electroosmotically pulled Leu-enkephalin through OHSCs to identify ectopeptidase activity in the CA3 region. These studies show that a bestatin-sensitive aminopeptidase may be critical for the hydrolysis of exogenous Leu-enkephalin, a neuropeptide present in the CA3 region of OHSCs.
我们假设,通过组织提取的含肽溶液应该能够揭示组织中肽酶的存在和活性。利用器官型海马切片培养物(OHSC)中的自然 ζ 电位,可以用电场将生理流体通过组织提取出来。通过毛细管 HPLC 电化学检测肽的生物脲复合物,以及随后的柱后反应,可以确定通过组织提取的流体中存在的肽的水解情况。我们通过测量流速、检查内标物的使用情况以及检查采样引起的细胞死亡来对这种新的采样方法进行了表征。在 30 至 60 V/cm 的电场下,使用 150 微米内径(ID)的采样毛细管,采样流速范围为 60 至 150 nL/min。通过控制采样条件,可以使细胞死亡降至最低。使用这种采样方法,我们通过电渗作用将亮氨酸脑啡肽提取通过 OHSCs,以鉴定 CA3 区的外肽酶活性。这些研究表明,一种贝司他汀敏感的氨肽酶可能对 CA3 区 OHSCs 中存在的外源性亮氨酸脑啡肽的水解至关重要。