{"id":3779,"date":"2019-06-17T14:01:07","date_gmt":"2019-06-17T05:01:07","guid":{"rendered":"http:\/\/163.180.4.222\/lab\/?p=3779"},"modified":"2019-06-17T14:18:45","modified_gmt":"2019-06-17T05:18:45","slug":"science-fiction-fictitious-experiments-in-patents","status":"publish","type":"post","link":"https:\/\/biochemistry.khu.ac.kr\/lab\/?p=3779","title":{"rendered":"Science fiction: Fictitious experiments in patents"},"content":{"rendered":"<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<p id=\"p-4\">Although it may surprise scientists, one can receive a patent in many jurisdictions without implementing an invention in practice and demonstrating that it works as expected. Instead, inventors applying for patents are allowed to include predicted experimental methods and results, known as prophetic examples, as long as the examples are not written in the past tense (<a id=\"xref-ref-1-1\" class=\"xref-bibr\" href=\"https:\/\/science.sciencemag.org\/content\/364\/6445\/1036?rss=1#ref-1\"><em>1<\/em><\/a>\u2013<a id=\"xref-ref-3-1\" class=\"xref-bibr\" href=\"https:\/\/science.sciencemag.org\/content\/364\/6445\/1036?rss=1#ref-3\"><em>3<\/em><\/a>). Allowing untested inventions to be patented may encourage earlier disclosures about new ideas and provide earlier certainty regarding legal rights\u2014which may help small firms acquire financing to bring their ideas to market. Yet granting patents too early may also discourage researchers from doing the work to bring ideas to fruition (<a id=\"xref-ref-4-1\" class=\"xref-bibr\" href=\"https:\/\/science.sciencemag.org\/content\/364\/6445\/1036?rss=1#ref-4\"><em>4<\/em><\/a>,\u00a0<a id=\"xref-ref-5-1\" class=\"xref-bibr\" href=\"https:\/\/science.sciencemag.org\/content\/364\/6445\/1036?rss=1#ref-5\"><em>5<\/em><\/a>). Even if allowing untested inventions to be patented is desirable, we think prophetic examples deserve closer scrutiny, and clearer labeling, because of the likelihood that they are unnecessarily confusing\u2014particularly to scientists, many of whom read patents but are unlikely to appreciate that not all the claims are based on actual data.<\/p>\n<p id=\"p-5\">The U.S. Patent and Trademark Office (USPTO) formally recognized prophetic examples in 1981, but the practice is considerably older. A patent application need only contain sufficient information that a skilled researcher in the field would recognize as credibly demonstrating how to make and use the invention (<a id=\"xref-ref-6-1\" class=\"xref-bibr\" href=\"https:\/\/science.sciencemag.org\/content\/364\/6445\/1036?rss=1#ref-6\"><em>6<\/em><\/a>). Prophetic examples are one way to help satisfy this legal standard for inventions that have not yet been demonstrated to work (<a id=\"xref-ref-2-1\" class=\"xref-bibr\" href=\"https:\/\/science.sciencemag.org\/content\/364\/6445\/1036?rss=1#ref-2\"><em>2<\/em><\/a>). Although prophetic examples that are close variations on actual experiments are preferable, many prophetic examples appear to be entirely hypothetical predictions. Preliminary research suggests that these examples are particularly prevalent in chemistry and biology; an estimated 17% of examples in U.S. patents in these fields are prophetic, and almost one-quarter of U.S. patents in these fields have at least one prophetic example\u2014making prophetic examples a commonplace feature (for examples, see the box) (<a id=\"xref-ref-7-1\" class=\"xref-bibr\" href=\"https:\/\/science.sciencemag.org\/content\/364\/6445\/1036?rss=1#ref-7\"><em>7<\/em><\/a>).<\/p>\n<p>Because of concerns about awarding patents to unproven inventions, prophetic examples are viewed with greater skepticism in Europe (<a id=\"xref-ref-8-1\" class=\"xref-bibr\" href=\"https:\/\/science.sciencemag.org\/content\/364\/6445\/1036?rss=1#ref-8\"><em>8<\/em><\/a>), Canada (<a id=\"xref-ref-9-1\" class=\"xref-bibr\" href=\"https:\/\/science.sciencemag.org\/content\/364\/6445\/1036?rss=1#ref-9\"><em>9<\/em><\/a>), Japan (<a id=\"xref-ref-10-1\" class=\"xref-bibr\" href=\"https:\/\/science.sciencemag.org\/content\/364\/6445\/1036?rss=1#ref-10\"><em>10<\/em><\/a>), and China (<a id=\"xref-ref-11-1\" class=\"xref-bibr\" href=\"https:\/\/science.sciencemag.org\/content\/364\/6445\/1036?rss=1#ref-11\"><em>11<\/em><\/a>). However, because patents with the same contents are often filed in multiple regions, prophetic examples originating in U.S. applications will often be present in applications filed in other jurisdictions. Further, because patent offices and examiners in those countries commonly read and cite patents from other jurisdictions, countries skeptical of prophetic examples still feel their effects.<\/p>\n<p>&nbsp;<\/p>\n<div id=\"sec-1\" class=\"section\">\n<p><strong>Prophetic Examples May Be Confusing<\/strong><\/p>\n<p id=\"p-7\">Contrary to the assertions of some patent scholars that scientists never read patents, survey evidence shows that many researchers do look to the patent literature for general research, to browse information about cutting-edge technologies, and to learn how other researchers solved particular problems (<a id=\"xref-ref-12-1\" class=\"xref-bibr\" href=\"https:\/\/science.sciencemag.org\/content\/364\/6445\/1036?rss=1#ref-12\"><em>12<\/em><\/a>). Training on how to search patents is even provided in some undergraduate science classes (<a id=\"xref-ref-12-2\" class=\"xref-bibr\" href=\"https:\/\/science.sciencemag.org\/content\/364\/6445\/1036?rss=1#ref-12\"><em>12<\/em><\/a>). But the usefulness of patents as a source of technical information is diminished if scientific readers are unable to distinguish actual data from predicted results.<\/p>\n<p id=\"p-8\">Although scientists read patents\u2014and therefore also read prophetic examples\u2014the verb tense rule that distinguishes these predicted results from actual data is unlikely to be familiar to the average scientist. Most patent drafters do not seek to intentionally mislead readers, but they are writing for a legal audience and using conventions that may be unclear to nonlegal readers. Prophetic examples are confusing because they mimic real experiments, particularly by including excessive detail\u2014for example, age of the hypothetical patient (\u201ca 46-year-old woman\u2026\u201d)\u2014and specific, numerical results (\u201cblood pressure is reduced within 3 hours\u2026\u201d). Some preliminary work suggests that of 100 randomly selected patents with only prophetic examples\u2014that is, no actual data\u2014that were cited in a scientific article or book for a specific proposition, 99 were not cited in a way that made clear that the cited information was prophetic (<a id=\"xref-ref-7-2\" class=\"xref-bibr\" href=\"https:\/\/science.sciencemag.org\/content\/364\/6445\/1036?rss=1#ref-7\"><em>7<\/em><\/a>). To the contrary, these prophetic patents were cited with phrases such as \u201c[d]ehydration reaction in gas phase has been carried out over solid acid catalysts\u201d (<a id=\"xref-ref-7-3\" class=\"xref-bibr\" href=\"https:\/\/science.sciencemag.org\/content\/364\/6445\/1036?rss=1#ref-7\"><em>7<\/em><\/a>), suggesting that prophetic examples mislead scientist readers.<\/p>\n<p>Prophetic examples may also be confusing to other readers who are unfamiliar with the tense rule, such as investors seeking to accurately evaluate complex technologies. Causing further misunderstanding, the subtlety of prophetic examples may literally be lost in translation for patent applications that must be translated into different languages because they are filed in international jurisdictions. To be sure, quantifying the cost of this confusion would be challenging, especially because most confused scientists, investors, and patent examiners are likely unaware of the problem. But given the lack of a corresponding benefit, there seems to be no reason to perpetuate the practice. Nothing in patent law requires early-stage ideas to be described in a way that might confuse these different audiences by mimicking factual experiments; prophetic examples could be signaled more clearly or avoided altogether.<\/p>\n<p>&nbsp;<\/p>\n<\/div>\n<div id=\"sec-2\" class=\"section\">\n<p><strong>Why Use Prophetic Experiments?<\/strong><\/p>\n<p id=\"p-10\">To explore whether benefits for patentees from prophetic examples can be obtained through less confusing patent-drafting methods, we interviewed professional patent prosecutors who write U.S. patents. As described in the supplementary materials, we identified prophetic examples as those written in the present or future tense. We then contacted a randomly selected sample of patent prosecutors in the fields of chemistry and biology who, in patent applications filed between 2011 and 2013, either never used prophetic examples or used prophetic examples in more than half of applications filed. We conducted 26 interviews, with a yield rate of 67%.<\/p>\n<p id=\"p-11\">Prosecutors who use prophetic examples consistently explained that such examples make clear how an inventor expects an idea to work in scenarios for which there is not time or money to test before the desired patent filing deadline. Because patents can cover all variations of an invention described in enough detail for others to make and use without undue experimentation, prophetic examples with predicted results can extend the patent&#8217;s legal protection. For example, if an inventor has made a particular protein in her laboratory but also believes that the protein will work similarly if certain amino acids are switched, a prosecutor can draft prophetic examples with the alternate sequences and a prediction of the expected outcome. These examples help the inventor obtain patent coverage beyond the specifics of what has been done in the laboratory, including to block competitors from working on similar technologies.<\/p>\n<p id=\"p-12\">Interviewed prosecutors generally acknowledged the possibility that scientists reading prophetic examples might be unable to correctly interpret the verb tense rule, although they emphasized the legality of the practice and their duty to obtain the strongest possible patent for their clients. They also agreed, however, that an equally strong patent could be obtained with prophetic examples that were explicitly labeled as predictions that had not been carried out. Interviewees who do not use prophetic examples argued that there is no legal reason to present these predictions in the form of fictitious experiments with specific results rather than in more general terms; to the contrary, prophetic examples carry some legal risk, such as if the example turns out to be inoperative. Prosecutors were particularly wary of using prophetic examples in patent applications that would be filed internationally, given the greater skepticism of these examples in certain countries.<\/p>\n<p>The only benefit to patentees that would be reduced by requiring greater clarity seems to be the benefit that comes from confusion. For example, several prosecutors suggested that prophetic examples could illustrate a technology&#8217;s promise to potential investors, who might not be able to distinguish between prophetic examples and experiments actually conducted. This potential confusion was considered a benefit to patentees, but this benefit does not seem worth preserving.<\/p>\n<p>&nbsp;<\/p>\n<\/div>\n<div id=\"sec-3\" class=\"section\">\n<p><strong>More Clarity, Less Confusion<\/strong><\/p>\n<p>The benefits flowing from prophetic examples exist because some patent systems recognize and allow the use of hypothetical experiments and data. Within these legal systems, prosecutors, patent examiners, and courts can already identify prophetic examples through the tense rule, so requiring a more explicit distinction between prophetic and nonprophetic examples would have no legal impact; prophetic examples would continue to be recognized and rewarded as such, just with lower risk of confusion.<\/p>\n<p>&nbsp;<\/p>\n<figure id=\"F1\" class=\"fig pos-float type-figure  odd figure figure--data\">\n<div class=\"figure__head highwire-figure\">\n<div class=\"fig-inline\"><a class=\"fragment-images colorbox-load highwireFiguresMarkupProcessor-processed cboxElement\" style=\"box-sizing: inherit; background-color: transparent; color: #37588a; text-decoration: none; font-weight: bold;\" title=\"Patently Prophetic The present tense used in patents for a chemical synthesis, a medical procedure, and a medical device suggests that the procedures likely had not actually been conducted at the time of filing a patent application.\" href=\"https:\/\/science.sciencemag.org\/content\/sci\/364\/6445\/1036\/F1.large.jpg?width=800&amp;height=600&amp;carousel=1\" rel=\"gallery-fragment-images-1978096098\" data-figure-caption=\"&lt;div class=&quot;highwire-markup&quot;&gt;&lt;span class=&quot;caption-title&quot;&gt;Patently Prophetic&lt;\/span&gt;&lt;p id=&quot;p-15&quot; class=&quot;first-child&quot;&gt;The present tense used in patents for a chemical synthesis, a medical procedure, and a medical device suggests that the procedures likely had not actually been conducted at the time of filing a patent application.&lt;\/p&gt;&lt;q class=&quot;attrib&quot; id=&quot;attrib-1&quot;&gt;GRAPHICS: A. KITTERMAN\/&lt;em&gt;SCIENCE&lt;\/em&gt;&lt;\/q&gt;&lt;div class=&quot;sb-div caption-clear&quot;\/&gt;&lt;\/div&gt;\" data-icon-position=\"\" data-hide-link-title=\"0\"><span class=\"hw-responsive-img\"><img decoding=\"async\" class=\"fragment-image  lazyloaded\" src=\"https:\/\/science.sciencemag.org\/content\/sci\/364\/6445\/1036\/F1.medium.gif\" aria-describedby=\"F1-caption\" data-src=\"https:\/\/science.sciencemag.org\/content\/sci\/364\/6445\/1036\/F1.medium.gif\" \/><\/span><\/a><\/div>\n<div class=\"figure__options\">\n<ul class=\"highwire-figure-links\">\n<li class=\"0 first\"><a class=\"highwire-figure-link highwire-figure-link-download link-icon\" title=\"Download Figure1\" href=\"https:\/\/science.sciencemag.org\/content\/sci\/364\/6445\/1036\/F1.large.jpg?download=true\"><i class=\"fa fa-download\"><\/i>\u00a0<span class=\"title\">Download high-res image<\/span><\/a><\/li>\n<li class=\"1\"><a class=\"highwire-figure-link highwire-figure-link-newtab link-icon\" href=\"https:\/\/science.sciencemag.org\/content\/sci\/364\/6445\/1036\/F1.large.jpg\" target=\"_blank\" rel=\"noopener noreferrer\"><i class=\"fa fa-external-link\"><\/i>\u00a0<span class=\"title\">Open in new tab<\/span><\/a><\/li>\n<li class=\"2 last\"><a class=\"highwire-figure-link highwire-figure-link-ppt link-icon\" href=\"https:\/\/science.sciencemag.org\/highwire\/powerpoint\/727828\"><i class=\"fa fa-download\"><\/i>\u00a0<span class=\"title\">Download Powerpoint<\/span><\/a><\/li>\n<\/ul>\n<\/div>\n<\/div><figcaption id=\"F1-caption\" class=\"fig-caption attrib\"><span class=\"caption-title\">Patently Prophetic<\/span><\/p>\n<p id=\"p-15\" class=\"first-child\">The present tense used in patents for a chemical synthesis, a medical procedure, and a medical device suggests that the procedures likely had not actually been conducted at the time of filing a patent application.<\/p>\n<p><q id=\"attrib-1\" class=\"attrib\">GRAPHICS: A. KITTERMAN\/<em>SCIENCE<\/em><\/q><\/p>\n<div class=\"sb-div caption-clear\">\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<\/div>\n<\/figcaption><\/figure>\n<p id=\"p-16\">The impact of clarifying prophetic examples would also be felt outside the legal systems that allow the practice. Scientists previously unable to distinguish or unaware of the distinction between prophetic and real experiments would gain more information and clarity. Investors using patents as a source of information about new technologies would find such information clearer and more useful. And international patent offices wrongly interpreting prophetic examples when tenses are lost in translation would be able to avoid such errors.<\/p>\n<p id=\"p-17\">What should be done? A simple and effective solution is to require that prophetic examples in new patent applications be clearly labeled, perhaps with a heading such as \u201chypothetical experiment\u201d or an introductory phrase such as \u201cit is expected that these experiments would provide these results.\u201d In the United States, for example, this change could be implemented by the USPTO along with its other rules for patent formatting. The USPTO already requires that prophetic examples be labeled (by avoiding the past tense), so our proposal does not add a labeling requirement; it merely makes an existing requirement more effective. Further, patent drafters should be encouraged to be mindful of clarity and avoid potentially confusing phrases and details.<\/p>\n<p id=\"p-18\">Just because some patents are not based on actual results does not mean they need to be confusing. Scientists regularly write grant applications in a way that makes clear what preliminary data they have already acquired and what the expected goal of the proposed project is. Perhaps this is an area in which the patent system could learn from the scientific community.<\/p>\n<\/div>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<p>(\uc6d0\ubb38: <a href=\"https:\/\/science.sciencemag.org\/content\/364\/6445\/1036?rss=1\">\uc5ec\uae30<\/a>\ub97c \ud074\ub9ad\ud558\uc138\uc694~)<\/p>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n","protected":false},"excerpt":{"rendered":"<p>&nbsp; &nbsp; Although it may surprise scientists, one can receive a patent in many jurisdictions without implementing an invention in practice and demonstrating that it<a href=\"https:\/\/biochemistry.khu.ac.kr\/lab\/?p=3779\" class=\"more-link\">(more&#8230;)<\/a><\/p>\n","protected":false},"author":1,"featured_media":0,"comment_status":"open","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"_monsterinsights_skip_tracking":false,"_monsterinsights_sitenote_active":false,"_monsterinsights_sitenote_note":"","_monsterinsights_sitenote_category":0,"jetpack_post_was_ever_published":false,"_jetpack_newsletter_access":"","_jetpack_dont_email_post_to_subs":false,"_jetpack_newsletter_tier_id":0,"_jetpack_memberships_contains_paywalled_content":false,"_jetpack_memberships_contains_paid_content":false,"footnotes":"","jetpack_publicize_message":"","jetpack_publicize_feature_enabled":true,"jetpack_social_post_already_shared":true,"jetpack_social_options":{"image_generator_settings":{"template":"highway","default_image_id":0,"font":"","enabled":false},"version":2}},"categories":[32,29],"tags":[],"class_list":["post-3779","post","type-post","status-publish","format-standard","hentry","category-essays-on-science","category-lets-do-science"],"aioseo_notices":[],"jetpack_publicize_connections":[],"jetpack_featured_media_url":"","jetpack-related-posts":[{"id":3895,"url":"https:\/\/biochemistry.khu.ac.kr\/lab\/?p=3895","url_meta":{"origin":3779,"position":0},"title":"CRISPR patent fight revived","author":"biochemistry","date":"July 16, 2019","format":false,"excerpt":"\u00a0 \u00a0 A surprise ruling last week reignited the high-profile patent fight over who invented a key application of the genome editor CRISPR. The 3-year-old battle pits parties represented by the University of California (UC) against the Broad Institute in Cambridge, Massachusetts. It revolves around the use of CRISPR, originally\u2026","rel":"","context":"In &quot;Essays on Science&quot;","block_context":{"text":"Essays on Science","link":"https:\/\/biochemistry.khu.ac.kr\/lab\/?cat=32"},"img":{"alt_text":"","src":"","width":0,"height":0},"classes":[]},{"id":2908,"url":"https:\/\/biochemistry.khu.ac.kr\/lab\/?p=2908","url_meta":{"origin":3779,"position":1},"title":"Making Sense of the CRISPR Patent Dispute Between the University of California and Broad","author":"biochemistry","date":"March 22, 2019","format":false,"excerpt":"\u00a0 \u00a0 Anyone fond of intricate intellectual property disputes (and really, who isn't?) is going to have their cup runnething over when it comes to the long-running battle between the University of California and Harvard\/MIT's Broad Institute to determine who will get to cash in the most on their\u00a0seminal CRISPR\/Cas\u2026","rel":"","context":"In &quot;Essays on Science&quot;","block_context":{"text":"Essays on Science","link":"https:\/\/biochemistry.khu.ac.kr\/lab\/?cat=32"},"img":{"alt_text":"","src":"https:\/\/i0.wp.com\/ww2.kqed.org\/science\/wp-content\/uploads\/sites\/35\/2039\/02\/DESKTOP_CRISPR_171115-1-1020x677.jpg?resize=350%2C200&ssl=1","width":350,"height":200,"srcset":"https:\/\/i0.wp.com\/ww2.kqed.org\/science\/wp-content\/uploads\/sites\/35\/2039\/02\/DESKTOP_CRISPR_171115-1-1020x677.jpg?resize=350%2C200&ssl=1 1x, https:\/\/i0.wp.com\/ww2.kqed.org\/science\/wp-content\/uploads\/sites\/35\/2039\/02\/DESKTOP_CRISPR_171115-1-1020x677.jpg?resize=525%2C300&ssl=1 1.5x"},"classes":[]},{"id":3534,"url":"https:\/\/biochemistry.khu.ac.kr\/lab\/?p=3534","url_meta":{"origin":3779,"position":2},"title":"Companies persist with biomedical papers","author":"biochemistry","date":"May 16, 2019","format":false,"excerpt":"\u00a0 Corporate research in the life sciences endures, despite diminishing in other fields of science. \u00a0 Many advanced countries struggle to increase their productivity. Between 1970 and 2014, real GDP per hour worked, a measure of labour productivity, grew by an average of just 1.62% per year in the United\u2026","rel":"","context":"In &quot;Essays on Science&quot;","block_context":{"text":"Essays on Science","link":"https:\/\/biochemistry.khu.ac.kr\/lab\/?cat=32"},"img":{"alt_text":"","src":"","width":0,"height":0},"classes":[]},{"id":1073,"url":"https:\/\/biochemistry.khu.ac.kr\/lab\/?p=1073","url_meta":{"origin":3779,"position":3},"title":"Factors that make an impact","author":"biochemistry","date":"July 9, 2018","format":false,"excerpt":"\u00a0 \u00a0 (\uc6d0\ubb38) \u00a0 Nature Nanotechnology\u00a0 volume\u00a013,\u00a0page\u00a0525\u00a0(2018) \u00a0 Number of citations in academic papers is not always a good measure for the influence of applied research papers. \u00a0 \u00a0 In the vast majority of cases, scientists use public money to support their research. In return, the public wants to see\u2026","rel":"","context":"In &quot;Essays on Science&quot;","block_context":{"text":"Essays on Science","link":"https:\/\/biochemistry.khu.ac.kr\/lab\/?cat=32"},"img":{"alt_text":"","src":"","width":0,"height":0},"classes":[]},{"id":1679,"url":"https:\/\/biochemistry.khu.ac.kr\/lab\/?p=1679","url_meta":{"origin":3779,"position":4},"title":"\uc720\uc804\uc790 \uac00\uc704 \uc138\uae30\uc758 \ud2b9\ud5c8\u6230 \uc885\uc9c0\ubd80\u2026 &#8220;\ucd5c\ud6c4 \uc2b9\uc790\ub294 MIT\u00b7\ud558\ubc84\ub4dc\ub300&#8221; &#038; \uc720\uc804\uc790\uac00\uc704 \ub178\ubca8\uc0c1 \uc218\uc0c1\uc790, 7\ub144 \ud2b9\ud5c8 \uc18c\uc1a1\uc11c \ud328\ubc30 &#038;&#038;","author":"biochemistry","date":"September 11, 2018","format":false,"excerpt":"\u00a0 \u00a0 (\uc6d0\ubb38: \uc5ec\uae30\ub97c \ud074\ub9ad\ud558\uc138\uc694~) \u00a0 \u00a0 \u2018\uc138\uae30\uc758 \ud2b9\ud5c8 \uc804\uc7c1\u2019\uc73c\ub85c \ubd88\ub9ac\ub358 \ubbf8\uad6d \ube0c\ub85c\ub4dc\uc5f0\uad6c\uc18c\uc640\u00a0UC\ubc84\ud074\ub9ac \uc0ac\uc774\uc758 \uc720\uc804\uc790\uac00\uc704 \u2018\ud06c\ub9ac\uc2a4\ud37c\u2019 \ud2b9\ud5c8 \ubd84\uc7c1\uc774 \uacb0\uad6d \ube0c\ub85c\ub4dc\uc5f0\uad6c\uc18c\uc758 \uc2b9\ub9ac\ub85c \ub05d\ub0ac\ub2e4. \uc774\ub85c\uc368 3\ub144 \ub118\uac8c \ub04c\uc5b4\uc628 \ub450 \uc5f0\uad6c\ud300 \uc0ac\uc774\uc758 \ud2b9\ud5c8 \uc18c\uc1a1\uc774 \uacf5\uc2dd \uc885\ub8cc\ub410\ub2e4. \ubbf8\uad6d\uc5f0\ubc29\ud56d\uc18c\ubc95\uc6d0\uc740 10\uc77c \u201c\uc9c4\ud575\uc138\ud3ec(\ubbf8\uc0dd\ubb3c \uc678\uc5d0 \ub3d9\uc2dd\ubb3c\uc744 \ud3ec\ud568\ud558\ub294 \ubcf4\ub2e4 \ubcf5\uc7a1\ud55c \uc0dd\ubb3c\uad70)\ub97c \ub300\uc0c1\uc73c\ub85c \ud55c \ube0c\ub85c\ub4dc\uc5f0\uad6c\uc18c\uc758 \uc720\uc804\uc790\uac00\uc704 \ud06c\ub9ac\uc2a4\ud37c \uad00\ub828 \ubc1c\uacac\uc740 \ucda9\ubd84\ud55c\u2026","rel":"","context":"In &quot;Essays on Science&quot;","block_context":{"text":"Essays on Science","link":"https:\/\/biochemistry.khu.ac.kr\/lab\/?cat=32"},"img":{"alt_text":"","src":"https:\/\/i0.wp.com\/www.statnews.com\/wp-content\/uploads\/2018\/09\/AdobeStock_184633987-645x645.jpeg?resize=350%2C200&ssl=1","width":350,"height":200,"srcset":"https:\/\/i0.wp.com\/www.statnews.com\/wp-content\/uploads\/2018\/09\/AdobeStock_184633987-645x645.jpeg?resize=350%2C200&ssl=1 1x, https:\/\/i0.wp.com\/www.statnews.com\/wp-content\/uploads\/2018\/09\/AdobeStock_184633987-645x645.jpeg?resize=525%2C300&ssl=1 1.5x"},"classes":[]},{"id":3487,"url":"https:\/\/biochemistry.khu.ac.kr\/lab\/?p=3487","url_meta":{"origin":3779,"position":5},"title":"Bring on the biosimilars","author":"biochemistry","date":"May 9, 2019","format":false,"excerpt":"\u00a0 \u00a0 Some of the most effective modern drugs are complex biological molecules. 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