Akonni Biosystems, Frederick, MD 21701, USA.
Anal Biochem. 2012 Feb 15;421(2):526-33. doi: 10.1016/j.ab.2011.09.028. Epub 2011 Oct 5.
By modifying polymer compositions and cross-linking reagents, we have developed a simple yet effective manufacturing strategy for copolymerized three-dimensional gel element arrays. A new gel-forming monomer, 2-(hydroxyethyl) methacrylamide (HEMAA), was used. HEMAA possesses low volatility and improves the stability of copolymerized gel element arrays to on-chip thermal cycling procedures relative to previously used monomers. Probe immobilization efficiency within the new polymer was 55%, equivalent to that obtained with acrylamide (AA) and methacrylamide (MA) monomers. Nonspecific binding of single-stranded targets was equivalent for all monomers. Increasing cross-linker chain length improved hybridization kinetics and end-point signal intensities relative to N,N-methylenebisacrylamide (Bis). The new copolymer formulation was successfully applied to a model orthopox array. Because HEMAA greatly simplifies gel element array manufacture, we expect it (in combination with new cross-linkers described here) to find widespread application in microarray science.
通过改变聚合物组成和交联试剂,我们开发了一种简单而有效的共聚三维凝胶元件阵列制造策略。使用了一种新的凝胶形成单体 2-(羟乙基)甲基丙烯酰胺(HEMAA)。HEMAA 挥发性低,相对于以前使用的单体,提高了共聚凝胶元件阵列对芯片上热循环程序的稳定性。新聚合物中的探针固定效率为 55%,与丙烯酰胺(AA)和甲基丙烯酰胺(MA)单体相当。所有单体的单链靶标非特异性结合相当。增加交联剂链长可改善杂交动力学和终点信号强度,优于 N,N-亚甲基双丙烯酰胺(Bis)。这种新的共聚物配方成功地应用于模型正痘数组。由于 HEMAA 极大地简化了凝胶元件阵列的制造,我们期望它(与这里描述的新交联剂结合使用)在微阵列科学中得到广泛应用。