Chrome Extension
WeChat Mini Program
Use on ChatGLM

Oxygen Delivery Using Engineered Microparticles

Proceedings of the National Academy of Sciences of the United States of America(2016)SCI 1区

Boston Childrens Hosp

Cited 60|Views26
Abstract
A continuous supply of oxygen to tissues is vital to life and interruptions in its delivery are poorly tolerated. The treatment of low-blood oxygen tensions requires restoration of functional airways and lungs. Unfortunately, severe oxygen deprivation carries a high mortality rate and can make otherwise-survivable illnesses unsurvivable. Thus, an effective and rapid treatment for hypoxemia would be revolutionary. The i.v. injection of oxygen bubbles has recently emerged as a potential strategy to rapidly raise arterial oxygen tensions. In this report, we describe the fabrication of a polymerbased intravascular oxygen delivery agent. Polymer hollow microparticles (PHMs) are thin-walled, hollow polymer microcapsules with tunable nanoporous shells. We show that PHMs are easily charged with oxygen gas and that they release their oxygen payload only when exposed to desaturated blood. We demonstrate that oxygen release from PHMs is diffusion-controlled, that they deliver approximately five times more oxygen gas than human red blood cells (per gram), and that they are safe and effective when injected in vivo. Finally, we show that PHMs can be stored at room temperature under dry ambient conditions for at least 2 mo without any effect on particle size distribution or gas carrying capacity.
More
Translated text
Key words
hypoxemia,microparticle,oxygen,core-shell,colloids
PDF
Bibtex
AI Read Science
AI Summary
AI Summary is the key point extracted automatically understanding the full text of the paper, including the background, methods, results, conclusions, icons and other key content, so that you can get the outline of the paper at a glance.
Example
Background
Key content
Introduction
Methods
Results
Related work
Fund
Key content
  • Pretraining has recently greatly promoted the development of natural language processing (NLP)
  • We show that M6 outperforms the baselines in multimodal downstream tasks, and the large M6 with 10 parameters can reach a better performance
  • We propose a method called M6 that is able to process information of multiple modalities and perform both single-modal and cross-modal understanding and generation
  • The model is scaled to large model with 10 billion parameters with sophisticated deployment, and the 10 -parameter M6-large is the largest pretrained model in Chinese
  • Experimental results show that our proposed M6 outperforms the baseline in a number of downstream tasks concerning both single modality and multiple modalities We will continue the pretraining of extremely large models by increasing data to explore the limit of its performance
Try using models to generate summary,it takes about 60s
Must-Reading Tree
Example
Generate MRT to find the research sequence of this paper
Related Papers
G Bourne, RG Smith
1927

被引用19 | 浏览

Data Disclaimer
The page data are from open Internet sources, cooperative publishers and automatic analysis results through AI technology. We do not make any commitments and guarantees for the validity, accuracy, correctness, reliability, completeness and timeliness of the page data. If you have any questions, please contact us by email: report@aminer.cn
Chat Paper

要点】:本研究报道了一种基于聚合物的新型血管内氧输送剂,能够快速有效地提升动脉氧张力,为低血氧张力治疗提供了一种革命性方法。

方法】:研究利用聚合物空心微颗粒(PHMs),这种具有可调节纳米孔壳的薄壁空心聚合物微囊,可以通过静脉注射实现氧气的输送。

实验】:实验中,研究人员充氧PHMs,并验证了它们在暴露于不饱和血液时能够控制释放氧气。研究结果表明,PHMs输送的氧气量大约是人体红细胞的五倍(每克)。实验使用的数据集未明确提及,但通过体内注射证明了PHMs的安全性和有效性。同时,研究还表明PHMs在室温干燥环境下至少可以储存2个月,不会影响颗粒尺寸分布或气体携带能力。