Development and prospects of microfluidic platforms for sperm inspection
文献情報
To date, male infertility has become a critical global health problem in contemporary society, which adversely impacts human natural reproduction and social development. Moreover, male infertility is generally associated with an inadequate concentration, low motility and a high abnormity rate of sperms. However, although current medical tests have achieved significant progress in quantifying sperm count and normal sperm density, point-of-care testing (POCT) devices are still urgently needed for more rapid, effective and accurate diagnoses, which can also overcome the drawbacks of expensive examination and concerns related to the disclosure of patient privacy for clinical testing. Recently, microfluidic chips for sperm inspection, which feature greater convenience, low cost, a tiny sample volume, high-throughput and scale-up production, have attracted increasing attention in the field of auxiliary medical devices for assessing sperm quality and quantity. Herein, we systematically review the most prevalently used analytical strategies towards sperm inspection in recent years. Future prospects for the development of sperm diagnostic devices were put forward to facilitate their commercialization for maximizing the benefits of both patients and providers.
関連文献
Photodissociation of DOBr—Time-dependent wavepacket calculations
Alex Brown, Gabriel G. Balint-Kurti, László Füsti-Molnár
DOI: 10.1039/B102542M
Separation of linear, mono-methyl and di-methyl alkanes in the 5–7 carbon atom range by exploiting configurational entropy effects during sorption on silicalite-1
S. Calero, B. Smit, R. Krishna
DOI: 10.1039/B103118J
Dimers of the major components of the atmosphere: Realistic potential energy surfaces and quantum mechanical prediction of spectral features
DOI: 10.1039/B106672M
FTIR study of the photo-induced reaction of NO + CO on Rh/TiO2
DOI: 10.1039/B103627K
Comparison of the non-linear optical properties of a dimethylaminostilbene derivative containing a molybdenum mononitrosyl redox centre and of p,p′-dimethylaminonitrostilbene, calculated by ab-initio methods
H. Reis, S. G. Raptis, M. G. Papadopoulos
DOI: 10.1039/B104240H
Ab initio and kinetic calculations for the reactions of H with SiH(4−n)Fn (n = 1–3)
Qingzhu Zhang, Shaokun Wang, Chunsheng Wang, Yueshu Gu
DOI: 10.1039/B104107J
The effect of anionic, cationic and neutral surfactants on the photophysics and isomerization of 3,3′-diethylthiacarbocyanine
Sílvia M. B. Costa
DOI: 10.1039/B104807B
The electronic spectra of symmetric cyanine dyes: A CASPT2 study
DOI: 10.1039/B103417K
Processes during liquation of Vycor glass studied by positron annihilation lifetime spectroscopy
Bożena Jasińska, Andrzej L. Dawidowicz, Tomasz Goworek, Stanisław Radkiewicz
DOI: 10.1039/B002499F
こちらもおすすめ
S-(甲硅烷基丙基)異硫酰氯を取り扱う際の実験室安全事項は何ですか?
取り扱う際にはPPE(防護具)が必要です。特に手袋と面マスクは必須です。ドラフトチャンバーを使用して漏洩処理を行い、温度は常温、湿度は乾燥状態、容器はガラス容器...
8-硝基-咪唑并[1,2-a]吡啶とは何ですか?
8-硝基-咪唑并[1,2-a]吡啶は、CAS番号52310-46-0の化合物で、8-位に硝基を有する咪唑並みの结构をもつ吡啶の化合物です。この化合物は、酸化還元...
4-ブロモ-5-メトキシピリジン-2-甲醇の代替品はありますか?
4-ブロモ-5-メトキシピリジン-2-甲醇の代替品には、類似構造を持つ化合物や機能性に等しい代替試薬があります。例えば、4-クロロ-5-メトキシピリジン-2-甲...
全氟-1,2-二甲基環己烷を含む廃棄物はどのように処理すべきですか?
全氟-1,2-二甲基環己烷(CAS番号:306-98-9)の廃棄物は、特別な処理が必要です。まず、廃棄物を密閉容器に収集し、適切な防漏容器に保管します。次に、専...
3-(溴甲基)苯乙酸の主な用途は何ですか?
3-(溴甲基)苯乙酸は主に研究用化学薬品として利用され、有機合成や医薬品の開発に用いられます。また、特定の化合物の合成中間体としても使用されることがあります。
5-イドキド-4-メチオキシ-6-メチルピリミジニン-2-アミンはどのように保存すればよいですか?
5-イドキド-4-メチオキシ-6-メチルピリミジニン-2-アミンは冷暗所で密栓の容器に保存し、直射日光を避けて保管することをお勧めします。温度は常温とし、湿気を...
1-(2-溴-6-甲氧基苯基)乙酮を取り扱う際の実験室安全事項は何ですか?
実験室では、1-(2- Bromo-6-methoxyphenyl)ethanoneを取り扱う際には、ゴーグルや面具、手袋などのPPEを使用することが推奨されま...
5-(4,4,5,5-テトラメチル-1,3,2-ダイオキサボラロール-2-イル)-1,3-ジヒドロ-2-ベンゾフランは安全ですか?
5-(4,4,5,5-テトラメチル-1,3,2-ダイオキサボラロール-2-イル)-1,3-ジヒドロ-2-ベンゾフランは一般に安全ですが、取扱いには注意が必要です...
4-溴萘-1-甲酸の代替品はありますか?
4-溴萘-1-甲酸は比較的稀な化合物ですが、類似物としては、4-クロロ-1-ナフホリック酸やその他のブロモ置換ナフホリック酸が挙げられます。ただし、これらの代替...
ε-白藜芦醇脱氢二聚体の代替品はありますか?
ε-白藜芦醇脱氢二聚体の代替品としては、ε-白藜芦醇、ポリフェノール類、フラボノイド類が挙げられます。これらは類似の化学構造と生物学的活性を持っています。ただし...
掲載誌
Analytical Methods

Analytical Methods welcomes early applications of new analytical and bioanalytical methods and technology demonstrating the potential for societal impact. We require that methods and technology reported in the journal are sufficiently innovative, robust, accurate, and compared to other available methods for the intended application. Developments with interdisciplinary approaches are particularly welcome. Systems should be proven with suitably complex and analytically challenging samples. We encourage developments within, but not limited to, the following technologies and applications: global health, point-of-care and molecular diagnostics biosensors and bioengineering drug development and pharmaceutical analysis applied microfluidics and nanotechnology omics studies, such as proteomics, metabolomics or glycomics environmental, agricultural and food science neuroscience biochemical and clinical analysis forensic analysis industrial process and method development














![Sodium 3-[(E)-(4-anilinophenyl)diazenyl]benzenesulfonate structure Sodium 3-[(E)-(4-anilinophenyl)diazenyl]benzenesulfonate structure](https://static.chemtradehub.com/structs/587/587-98-4-035f.webp)