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中国的科学革命 [复制链接]

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发表于 2016-7-16 13:12 |只看该作者 |倒序浏览 |打印
Joseph Jimenez    Joseph Jimenez is CEO of Novartis.

                                                        
  • JUL 15, 2016 1                China’s Scientific Revolution
  
                                                               

BEIJING – The Chinese economy has undergone radical transformation in recent years and is now laying the groundwork for impressive advances in science and technology. In particular, China is setting itself up to be a major player in the fight against disease, and there are many reasons to believe that the country will play a central role in the life-sciences research of the future.

For starters, according to a report in McKinsey Quarterly, China spends more than $200 billion on research annually, a level of investment that is second only to the United States. Chinese President Xi Jinping has positioned science-based innovation near the top of the national agenda, with the government’s 13th Five-Year Plan prioritizing complex projects in emerging fields like brain research, gene science, big data, and medical robotics.

     

China is devoting so much to medical research in part because the country has significant unmet medical needs. By 2050, the Chinese population over age 65 is expected to increase by about 190 million. Meanwhile, chronic illnesses now account for more than 80% of China’s disease burden. So it is no surprise that China is already the world’s second largest pharmaceutical market, or that its innovation expenditure, according to the McKinsey Quarterly report, is expected to reach $1 trillion by 2020.

Another reason to expect a Chinese research revolution is that China now graduates more university students in the fields of science, technology, engineering, and mathematics than any other country – about 2.5 million students per year, or about five times more than the US. In science and engineering alone, China generates nearly 30,000 PhDs annually.

At the same time, government incentives are luring Chinese scientists who have been working abroad – many with top-tier Western institutions – back home. From its inception in 2008 through mid-2014, this “Thousand Talents” program has attracted more than 4,000 returnees.

These trends clearly indicate that China has a real opportunity to become a major force in global pharmaceuticals research, and that there will soon come a time when breakthrough innovation occurs in China on a regular basis.

Global pharmaceutical companies have taken notice. My own company has been working in research and development in China for ten years. Back in 2006, we opened the first integrated R&D facility in the country, and the largest among international firms. And we recently opened a new R&D center in Shanghai’s Zhangjiang Hi-Tech Park.

In Shanghai, premier scientists – many having returned to China from major research centers like Harvard Medical School and MIT – will focus on diseases that are endemic to the Chinese population. These include lung, liver, and gastric cancers, as well as other liver diseases, such as chronic hepatitis B, liver fibrosis, and cirrhosis. These diseases disproportionately affect people in China. For example, the incidence of hepatitis B in China is nearly 30 times higher than in the US; stomach and liver cancer rates are 11-18 times higher than in the US or Europe.

Thanks to advances in recent years, scientists can now identify epigenetic modification enzymes that regulate gene activities. This area of research is especially promising in the search for effective new oncological therapies. And by better understanding how these diseases manifest in Chinese patients, the industry is honing targeted therapies that can then be introduced in other settings worldwide.

  

China could very well set the global standard for using epigenetics to gain a better understanding of the underlying causes of diseases. In China, Novartis scientists alone are already running 15 drug discovery projects at different stages, and this pace of development will only accelerate.

I am inspired by China’s potential for making landmark scientific discoveries. As the country becomes increasingly important to global R&D, its contributions will be a boon for the fight against disease, both in China and worldwide.

                             
                           

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发表于 2016-7-16 13:13 |只看该作者
约瑟夫·希门尼斯

约瑟夫·希门尼斯是诺华公司的首席执行官。

2016年7月15日1
中国的科学革命


北京 - 中国的经济发生了根本的转变,近年来,现在奠定科学和技术的进步令人印象深刻的基础。特别是,中国本身设置是在与疾病作斗争的主要参与者,而且有很多理由相信该国将在未来生命科学的研究中发挥核心作用。

对于初学者来说,根据麦肯锡季刊的报告显示,中国花费超过200十亿研究每年$,投资水平是仅次于美国。中国国家主席习近平定位科学为基础的创新附近的国家议程的顶部,与政府的第13五年计划像大脑研究,基因科学,大数据和医疗机器人新兴领域优先复杂的项目。


中国正致力于这么多的医学研究部分是因为国家有显著医疗需求。到2050年,65岁以上的中国人口预计约1.9亿增加。同时,慢性疾病现在占中国的疾病负担的80%以上。因此,毫不奇怪,中国已经是全球第二大医药市场,或者说,其创新的支出,根据麦肯锡季度报告,预计到2020年将达到1万亿$。

期待中国的研究革命的另一个原因是,中国现在毕业生在科学,技术,工程领域的更多的大学生和数学比其他任何国家 - 每年约250万学生,还是比美国更多的五倍。仅在科学和工程,中国每年产生近30000名博士。

与此同时,政府的激励措施吸引中国科学家谁一直在国外工作 - 很多与顶级的西方机构 - 回家。通过从2014年中期2008年成立以来,这个“千人”计划已经吸引了4000多名海归。

这些趋势清楚地表明,中国有一个真正的机会,成为全球药品研发的主要力量,而当突破创新在中国发生定期会很快到来的时候。

全球制药公司已经注意到。我自己的公司在研究和开发一直致力于在中国的十年。早在2006年,我们在全国开设了第一家整合研发机构,以及国际公司中最大的。我们最近在上海张江高科技园区的一个新的研发中心。

在上海,最大的科学家 - 许多具有重要的研究中心如美国哈佛医学院和麻省理工学院回到中国 - 将重点放在那些特有的中国人口的疾病。这些包括肺,肝,胃癌症,以及其它肝脏疾病,如慢性乙型肝炎,肝纤维化和肝硬化。这些疾病不成比例地影响中国人。例如,在中国乙肝的发病率比美国高出近30倍;胃和肝脏发病率比美国或欧洲高11-18倍。

由于进步,近年来,科学家现在可以鉴定调节基因活动表观遗传修饰的酶。这方面的研究是寻找有效的新的治疗肿瘤尤其是有前途的。并通过更好地理解如何将这些疾病在中国患者明显,行业针对性的珩磨可随后在其他设置中引入全球治疗。

中国很可能会设定全球标准使用表观遗传学更好地了解疾病的根本原因。在中国,诺华的科学家独自已经运行在不同阶段的15药物研发项目,这样的发展速度只会加快。

我对中国的潜在作出里程碑式的科学发现的启发。随着国家变得对全球研发越来越重要,它的贡献将是与疾病作斗争的福音,无论是在中国和世界各地。

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发表于 2016-7-16 14:52 |只看该作者
之前还有人说中国不如印度,脑袋进水了
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