State Key Laboratory of Power Transmission Equipment & System Security and New Technology, Chongqing University, Chongqing 400044, China.
Department of Mechanical Engineering, Virginia Polytechnic Institute and State University, Blacksburg, VA 24060, USA.
Biosensors (Basel). 2022 Jun 16;12(6):422. doi: 10.3390/bios12060422.
Calorimeters, which can be used for rapid thermal characterization of biomolecules, are getting intense attention in drug development. This paper presents a novel MEMS-based differential scanning calorimeter (DSC) for direct thermal characterization of protein samples. The DSC consisted of a pair of temperature sensors made by vanadium oxide (VO) film with a temperature coefficient of resistivity of -0.025/K at 300 K, a microfluidic device with high thermal insulation (2.8 K/mW), and a Peltier heater for linear temperature scanning. The DSC exhibited high sensitivity (6.1 µV/µW), low noise (0.4 µW), high scanning rate (45 K/min), and low sample consumption volume (0.63 µL). The MEMS DSC was verified by measuring the temperature-induced denaturation of lysozyme at different pH, and then used to study the thermal stability of a monoclonal antibody (mAb), an antigen-binding fragment (Fab), and a dual variable domain immunoglobulin (DVD-Ig) at pH = 6. The results showed that lysozyme is a stable protein in the pH range of 4.0-8.0. The protein stability study revealed that the transition temperatures of the intact Fab fragment, mAb, and DVD proteins were comparable with conformational stability results obtained using conventional commercial DSC. These studies demonstrated that the MEMS DSC is an effective tool for directly understanding the thermal stability of antibodies in a high-throughput and low-cost manner compared to conventional calorimeters.
量热仪可用于快速热生物分子特性分析,在药物研发中受到广泛关注。本文提出了一种新颖的基于 MEMS 的差示扫描量热仪(DSC),可直接对蛋白质样品进行热特性分析。该 DSC 由一对温度传感器组成,温度传感器由氧化钒(VO)薄膜制成,在 300 K 时的电阻温度系数为-0.025/K,具有高隔热性能的微流控装置(2.8 K/mW)和用于线性温度扫描的珀耳帖加热器。该 DSC 具有高灵敏度(6.1 µV/µW)、低噪声(0.4 µW)、高扫描速率(45 K/min)和低样品消耗体积(0.63 µL)。通过测量不同 pH 值下溶菌酶的温度诱导变性,验证了 MEMS DSC 的性能,然后用于研究 pH = 6 时单克隆抗体(mAb)、抗原结合片段(Fab)和双可变域免疫球蛋白(DVD-Ig)的热稳定性。结果表明,溶菌酶在 pH 4.0-8.0 范围内是一种稳定的蛋白质。蛋白质稳定性研究表明,完整 Fab 片段、mAb 和 DVD 蛋白的转变温度与使用传统商业 DSC 获得的构象稳定性结果相当。这些研究表明,与传统量热仪相比,MEMS DSC 是一种直接了解抗体热稳定性的有效工具,具有高通量和低成本的特点。