Coil spring-powered pump with inertial microfluidic chip for size-based isolation and enrichment of biological cells
文献情報
Hogyeong Gwak, Seong Min Ha, Jae-Woo Song, Kyung-A. Hyun
Microfluidic chips have been widely used for in vitro diagnostics using pretreatment of biological samples; however, biologists and clinical researchers have difficulties using them in resource-limited settings. Sample injection systems for microfluidic chips are bulky, expensive, electricity-powered, and complex. A coiled spring-powered device, which can be used to isolate variously sized cells with high efficiency continuously and passively, was developed for portable, low-cost, electricity-free, and simple sample injection. The flow driving power was provided by releasing the compression spring in the mechanical syringe driver with a one-click action. In general, a syringe pump generates a stable passive flow rate. However, the syringe pumps are large in size and expensive because they have many functions such as infusion/withdrawal flow injection and the use of syringes of various sizes, allowing them to be applied in a variety of applications performed in the laboratory. In addition, it is not suitable for portable devices because of the considerable amount of electric power required. To overcome these drawbacks, we developed a device prototype that sorts different-sized particles and separates rare tumor cells or blood cells from blood with high efficiency. The performance of the coiled spring-powered device was evaluated and found to be comparable with that of syringe pump-powered devices. In situations where trained personnel cannot handle microfluidic chips for isolating circulating biomarkers (CTCs, WBCs, or plasma) from blood samples, the coiled spring-powered device can provide diagnostic tools, especially in resource-limited countries.
おすすめジャーナル
関連文献
Investigation of collisional quenching of CCl2( 1B1 and ã 3B1) by some inorganic molecules
Yide Gao, Changjin Hu, Qin Ran, Yang Chen, Xingxiao Ma, Congxiang Chen
DOI: 10.1039/B105728F
Ionization and excitation yields in liquid water due to the primary irradiation: Relationship of radiolysis with far UV-photolysis
DOI: 10.1039/B106017C
Excited-state hydrogen detachment and hydrogen transfer driven by repulsive 1πσ* states: A new paradigm for nonradiative decay in aromatic biomolecules
A. L. Sobolewski, W. Domcke, C. Dedonder-Lardeux, C. Jouvet
DOI: 10.1039/B110941N
Co-existence of hydrated electron and metal di-cation in [Mg(H2O)n]+
DOI: 10.1039/B109774C
Quasiclassical trajectory calculations of collisional energy transfer in propane systems: Multiple direct-encounter hard-sphere model
Apichart Linhananta, Kieran F. Lim
DOI: 10.1039/B109074G
A generalized “reaction–diffusion” model to describe spatio-temporal patterns in the catalytic CO oxidation on Pt(110)
Pierre Borckmans, Guy Dewel
DOI: 10.1039/B109389B
Solvation dynamics of Coumarin 490 in methanol and acetonitrile reverse micelles
Partha Hazra, Nilmoni Sarkar
DOI: 10.1039/B109447E
Solvent effects in the photodenitrogenation of the azoalkane diazabicyclo[2.2.1]hept-2-ene: viscosity- and polarity-controlled stereoselectivity in housane formation from the diazenyl diradical
Waldemar Adam, Manfred Diedering
DOI: 10.1039/B110562K
Rate constants for the reaction of HO2 radicals with cyclopentane and propane between 673 and 783 K
S. M. Handford-Styring, R. W. Walker
DOI: 10.1039/B108578F
Transition from local to global feedback control of spiral wave dynamics
Vladimir S. Zykov, Stefan C. Müller
DOI: 10.1039/B110641B
こちらもおすすめ
アエポキシアビレーターONE酢酸エステルを含む廃棄物はどのように処理すべきですか?
アエポキシアビレーターONE酢酸エステルを含む廃棄物は、焼却や専門廃棄処理が一般的です。具体的には、廃棄物は密閉容器に収集し、適切な温度と湿度の下で保存します。...
4-ヒドロキシ但線を取り扱う際の実験室安全事項は何ですか?
取り扱いには化学製品安全管理データシート(SDS)を参照してください。温度10℃以下で保存し、密閉容器に保管してください。漏れ時にはドラフトチャンバーを使用し、...
4-(3-環戊基尿素)フェノールボロネートはどの業界で使用されていますか?
4-(3-環戊基尿素)フェノールボロネートは主に医薬品産業で使用されています。この化合物は抗炎症薬や抗うつ薬の候補物質として研究されています。また、ポリマー産業...
N~1~-[3-氯-5-(三氟甲基)-2-吡啶]-1,2-乙二胺の市場動向や研究トレンドはどうですか?
市場では、安全性と効果性を基にした化学物質の需要が高まっています。研究分野では、環境に優しい代替品の開発が進んでおり、その結果、この化合物の市場需要は減少傾向に...
6-硝基苯并二氢吡喃-4-酮についての法規ガイドラインは何ですか?
6-硝基苯并二氢吡喃-4-酮(CAS番号: 68043-53-8)は、GHS(統一化された化学品の危険性的分類と標識)で急性毒性第4クラスに分類されます。EUで...
6-乙酰基-2(3H)-苯并噻唑酮は安全ですか?
安全性は化合物の使用方法によります。適切な取扱いと防護措置を講じれば、一定の安全性があります。ただし、吸入や皮膚への接触は避けてください。
3-メチル-6-(1-メチルヒドラジニル)ピリジジンはどの業界で使用されていますか?
3-メチル-6-(1-メチルヒドラジニル)ピリジジンは主に医薬品、ポリマー、センサー製造業界で使用されています。特に、医薬品産業では抗がん剤や抗真菌剤の候補物質...
tert-butyl 5-oxo-2,6-diazaspiro[3.4]octane-2-carboxylateの物理化学的性質は何ですか?
tert-butyl 5-オキソ-2,6-ジアザスパイロ[3.4]オクタネ-2-カルボキサongyangはCAS番号1330765-39-3で、分子量は334....
3-塩素メチルフェニル-4,4,5,5-テトラメチル-1,3,2-ジオキソボロラノールは安全ですか?
3-塩素メチルフェニル-4,4,5,5-テトラメチル-1,3,2-ジオキソボロラノールは、毒性が低いと考えられていますが、直接的な皮膚接触や吸入は避けるべきです...
掲載誌
Analyst

Analyst publishes analytical and bioanalytical research that reports premier fundamental discoveries and inventions, and the applications of those discoveries, unconfined by traditional discipline barriers.














