首页> 外文会议>Conference on advancing manufacture of cell and gene therapies >THE DYNAMIC MASS SPECTROMETRY PROBE (DMSP) - ADVANCED PROCESS ANALYTICS FOR THERAPEUTIC CELL MANUFACTURING, HEALTH MONITORING AND BIOMARKER DISCOVERY
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THE DYNAMIC MASS SPECTROMETRY PROBE (DMSP) - ADVANCED PROCESS ANALYTICS FOR THERAPEUTIC CELL MANUFACTURING, HEALTH MONITORING AND BIOMARKER DISCOVERY

机译:动态质谱检测探针(DMSP)-用于治疗性细胞生产,健康监测和生物标志物发现的先进过程分析

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Spatially and temporally resolved in situ monitoring of biochemical cell culture environments, e.g., in application to therapeutic cell bioreactors, is of critical importance for facilitating the development of new and reliable quality control methodologies for cell therapies. Identifying and monitoring secreted biomolecular critical quality attributes (CQAs) to enable online feedback control will enable large scale, cost-effective manufacturing of therapeutic cells. These CQA biomarkers have varying concentrations within a bioreactor, both in time and space. Current methods for monitoring these diverse biomolecules are generally ex-situ, time consuming, destructive, provide bulk measurements, or lack the ability to reveal the complete secretome/metabolome composition. The Dynamic Mass Spectrometry Probe (DMSP) synergistically incorporates a sampling interface for localized intake of a small fluid volume of the cellular content, a micro-fabricated mass exchanger for sample conditioning and inline separation, and an integrated electrospray ionization (ESI) emitter for softly ionizing (i.e. preserved biochemical structure) extracted biomolecules for mass spectrometry (MS). ESI-MS via DMSP treatment enables both biomarker discovery and transient (~1 min) analysis of biochemical information indicative of cell health and potency. DMSP is manufactured using advanced batch microfabrication techniques, which minimize dead volume (~20 nL) and ensure repeatable operation and precise geometry of each device. DMSP treatment removes 99% of compounds that interfere with mass spectrometry analysis, such as inorganic salts, while retaining biomolecules of interest within the sample for ESI-MS analysis. DMSP has demonstrated the ability to substantially increase signal to noise ratio in MS detection of biomolecules, and to further enhance sensitivity for probing lower biomarker concentrations via introduction of ESI-MS enhancing molecules (i.e. proton donating chemicals, protein denaturing solvents, and supercharging agents) into the sample within the integrated mass exchanger. To exemplify the DMSP's unique capabilities, Fig. 1 demonstrates detection of multiple low-concentration protein biomarkers sampled from a biochemically-complex cell media solution serving as a proxy to samples taken directly from cell growth bioreactors.
机译:对生化细胞培养环境进行时空分辨的原位监测,例如在治疗性细胞生物反应器中的应用,对于促进开发新的,可靠的细胞治疗质量控制方法至关重要。识别和监测分泌的生物分子关键质量属性(CQA)以实现在线反馈控制,将能够大规模,经济高效地生产治疗细胞。这些CQA生物标志物在生物反应器中在时间和空间上均具有变化的浓度。用于监测这些多样的生物分子的当前方法通常是异位的,费时的,具有破坏性的,提供大量的测量结果或缺乏揭示完整的分泌组/代谢组学组成的能力。动态质谱探针(DMSP)协同集成了一个采样接口,用于局部摄入少量的细胞内液体;一个微型制造的质量交换器,用于样品处理和在线分离;以及一个集成的电喷雾电离(ESI)发射器,可实现轻柔电离(即保留的生化结构)提取的生物分子,用于质谱分析(MS)。通过DMSP处理的ESI-MS既可以发现生物标志物,又可以对指示细胞健康和效力的生化信息进行瞬时分析(约1分钟)。 DMSP采用先进的批量微制造技术制造,可最大程度地减少死体积(〜20 nL),并确保每个设备的可重复操作和精确的几何形状。 DMSP处理去除了99%干扰质谱分析的化合物(例如无机盐),同时保留了样品内感兴趣的生物分子用于ESI-MS分析。 DMSP已证明能够通过引入ESI-MS增强分子(例如,质子捐赠化学物质,蛋白质变性溶剂和增压剂)引入ESI-MS增强分子,从而大幅提高MS检测生物分子时的信噪比,并进一步提高灵敏度,以探测较低的生物标志物浓度。进入集成质量交换器中的样品。为了说明DMSP的独特功能,图1演示了从生物化学复杂细胞培养基溶液中采样的多个低浓度蛋白质生物标志物的检测,该生物标志物可作为直接从细胞生长生物反应器中获取的样品的代理。

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