Sunday, August 10, 2014

謝金河,,, 史上罕見的無量崩盤!!

蘋中信:基亞意外戳破兆元生技夢(謝金河)20140809    上月27日是生技展最後一天,全市場都關注著一個焦點:基亞早期肝癌術後防止復發新藥PI88的期中分析報告「解盲」,若數據達到標準,將會進行期末分析報告,最快年底將直接申請藥證。工研院生醫所估計PI88全球上市後,全球市場商機達620億台幣,股本13.87億的基亞若能獨吃這個大餅,那股價還了得?而在此之前,市場透過媒體耳語傳播,歐美有數家大藥廠考慮以100億美元併下基亞。這些好消息簇擁而來,讓基亞在期中報告揭露之前一刻,股價最高漲到479元,總市值達664億元,不但超過宏碁,也超過華航。 一顆PI88把基亞的夢幻拉升到最高點。此時所有新藥股也跟著一飛沖天,像浩鼎憧憬全球乳癌市場有60億美元的大商機,股價漲到402元,市值達598;因宇昌案暴紅的中裕因靜派注射型劑有望在美上市,股價漲到198元,市值跑到428億;而智擎則因為與MERRIMACK合作發展能延長晚期胰臟癌病患整體存活期的新藥,預計有7500萬美元的里程金入帳,股價衝到355元,市值也達356億元。

高額股價瞬間崩解 基亞、智擎、中裕、浩鼎的飆升,讓台灣有4家新藥公司股價一度超過400元,有3家超過300元;市值超過300億的新藥股有6家,而這一段時間,台灣的生技產業也展開快速搶錢風潮,在短短2年之內,台灣有26家生技股上市,58家上櫃及42家生技股上興櫃,總共有126家企業在資本市場淘金。以前的兆元產業只有在半導體、面板等產業出現,但是這2年,在官方與民間共同努力之下,加上台灣的資本市場創造的神奇魔力,台灣上市與上櫃生技股,合力將總市值推升上9千億,若再加上上興櫃的生技股,正式完成兆元產業的拼圖,一顆新藥的夢幻,帶來的財富效應比印鈔票還快。就在市場期待基亞期中報告再下一城之際,27日深夜基亞公布期中分析未達預期療效,市場高度期待,瞬間落空,基亞的股價彷若從山上滾下來的石頭,短短2周,居然暴跌10個停板,基亞的股價也從479元慘跌到213.5元,股價跌掉265.5元,市值縮水310億,這是史上罕見的無量崩盤景況。這個由PI88端出來的新藥饗宴,讓過去1年來買進基亞的股民沉醉在新藥快速回報的夢境中,現在發現劇場失火了,卻逃生無門,因為每天都有12萬籌碼掛出卻賣不掉。基亞暴跌拖累母公司云辰,也讓過去股價奔馳的浩鼎、中裕、太景、安成、智擎、台微體、美時、晟德紛紛加入跌停行列。就像三國時代火燒連環船一般,這可能是台灣生技投資熱以來規模最大一次調整,短短2周,台灣上市、上櫃生技股市值已吹掉千億。但隨著基亞的暴跌,股民逃生無門,才掀開這原是一場市場惡性炒作戲碼,背後有十分具爭議的大股東,也有股市作手,也有煽風點火的媒體,助興的生醫機構,加上供輸資金的兩種金主。基亞意外戳破台灣生技股炒作的夢幻,也讓這瞬間吹出來的兆之產業根基動搖。 財金文化董事長 《蘋中信》作者群  謝金河、何飛鵬、張鐵志、殷乃平、劉克襄、呂秋遠、米果、胡晴舫、馬維敏、吳惠林、王尚智、劉靜怡

迅捷(聯電?) 投資疫苗(基亞疫苗) 非肝癌藥PI88 (基亞生技) !!!

基亞疫苗 獲聯電集團入股【經濟日報╱記者黃文奇、簡永祥/台北報導】

2014.08.08 05:29 am基亞生技董事長張世忠昨(7)日宣布,聯電集團旗下創投公司迅捷入股基亞集團旗下子公司基亞疫苗,投資金額1.2億元,以每股30元取得基亞疫苗400萬股、約8%股權,成為大股東之一。張世忠昨日接受本報專訪,雖公司近日因股價無量下跌飽受批評,但他言談中仍透露自信,並宣布聯電集團旗下迅捷入股基亞子公司基亞疫苗;面對近日股價無量下跌,他強調,股價下跌不影響公司財務,請外界不要擔心。張世忠指出,昨日董事會決議引進策略性投資人迅捷,經雙方達成共識,由迅捷董事長洪炳坤拍板。他透露,雙方此一交易協議多時,迅捷此次入股基亞疫苗,確實受到聯電高層「認可」,並授權以「集團名義入股」方式發出新聞,就是看好公司在生產技術能力、產品線及未來潛力,並認為這次合作將開啟聯電集團跨入生技領域的重要里程碑。不過,聯電財務長劉啟東昨日表示,聯電持有迅捷股權不到50%,沒有控制權,此次訊捷投資基亞子公司基亞疫苗400萬股,占資本額8%,金額1.2億元,是迅捷本身的投資規劃,與聯電無關。基亞昨日股價吞下第九根跌停板,收229.5元,委賣張數仍超過1萬張,成交量僅24,今日在此利多加持下,能否打開僵局,值得注意。不過,基亞大股東云辰昨日有逾1.5萬張神秘買盤湧入,企圖打開云辰跌停狀態,但未竟全功。對於後續合作,張世忠指出,由於雙方對生技產業布局及策略發展看法相近,除了這項投資案,未來不排除在股權投資或生技專案投資有更進一步的深化結盟。至於迅捷為何看好基亞疫苗,張世忠表示,公司目前除了PI-88OBP-301項肝癌新藥在臨床試驗並致力於全人源單株抗體開發外旗下業務還包含分子檢測試劑細胞培養疫苗及學名藥其中疫苗領域則有新型流感H7N9H5N1及新型腸病毒71型與日本腦炎疫苗等,都已進入臨床階段。近年來由純研發領域擴大到生產規劃,張世忠說,細胞培養疫苗廠預計明年上半年於竹北生醫園區落成,開始進行認證,位於廈門的檢驗試劑廠預計今年底啟用;今年完成併購的學名藥大廠溫士頓也正進行新廠PIC/s GMP製造規範認證。

聯電人看好競爭力 雪中送炭 基亞生技昨(7)日公告聯電集團旗下投資公司迅捷入股子公司基亞疫苗。在基亞遭逢新藥期中分析失敗的敏感時機,股價無量下跌,迅捷卻在此刻「雪中送炭」,讓人好奇,頻問「為什麼?」業界分析,基亞疫苗競爭力應是關鍵。據悉,聯電集團旗下迅捷董事長洪炳坤,是「老聯電人」,還曾任職京元電,是投資界老將。基亞與迅捷在此案斡旋已久,談判時間超過一年以上,日前因基亞新藥進入期中分析的緊鑼密鼓階段而擱置,近期基亞遭逢困厄,洪炳坤特別重啟談判,並對基亞說「在這個時間點,不妨來完成之前的交易,以表達我們對公司的力挺」,雙方一拍即合。業界指出,迅捷此刻入股基亞,不僅可能有較好的談判條件,還能因此給基亞一個天大人情,基亞在產業面布局還算完整,未來雙方若深化合作,算是雙贏交易。【2014/08/08 經濟日報】

創新醫材(MedTech) 進市場將面臨比藥 更唯(微)利化 (market access complexity) !!

 

MedTech Market Access Hurdles are a Global Problem By Amit Kukreja and Matias Gonzalez  Posted in Medical Device Business by MDDI Staff on March 25, 2014 Medtech companies are developing more breakthrough technologies, but getting those innovations to market around the world remains a challenge. We are living in times in which opportunities for innovation in medical technology and the subsequent improvement in healthcare provision have multiplied. Advances such as the artificial retina (or bionic eye), bone-cell generation, and 3-D printed exoskeletons once thought possible only in science fiction have become reality. Today, innovative medical technologies can cure, diagnose, treat, or provide rehabilitation for previously unmet needs. The medtech industry is mainly driven by SME research and development, and ongoing revolutions in key areas, such as neurostimulation, bionics, nanotechnologies, or 3-D printing, are exponentially increasing opportunities for the next generation of devices.3–5 But despite medtech's significant potential for improving the quality and efficiency of healthcare, barriers in the access to advanced technologies have also been growing in recent years and this may negatively impact the incentives for research and development in the industry. Even though the commercial climate in some of the biggest medtech markets still looks positive, signs of deterioration have become evident in most of the traditional commercial hotspots in recent years.3,5 Complex reimbursement and procurement pathways, budgetary constraints, and increased price control mechanisms are all taking a toll. Other factors impacting market access for breakthrough medtech products include the following:

v         A weaker venture capital climate due to the financial crisis.

v         New low-cost competitors.

v         Inadequate patent protection in many emerging markets.

v         The changing regulatory landscape.

v         A lack of transparency in many ongoing healthcare reforms.

v         Hospital practices' slow progress in adapting innovative technologies (e.g., in the UK).

v         Lengthy assessment processes (e.g., in the outpatient sector in Germany).

v         Increased development costs.

v         Health technology assessment methodologies that are still not fully developed for the sector.

v         More stringent evidence requirements. 1–9

The reimbursement approval process in European countries is often considered more complex than that in the United States due to its increasing focus on evidence-based reimbursement decisions and cost-containment policies. Consequently, reimbursement access has become the focus of many device makers' attention in a number of global markets. After obtaining the CE mark in Europe, manufacturers face fragmentation in reimbursement scenarios across as well as within countries—for example, subdivided by regions in Wales and Northern Ireland within the UK or by 21 regions in Italy, with a large difference in cost structures in the northern and southern parts of the country. Furthermore, key factors affecting technology access, such as variation in hospital purchase functions, and commissioners and patient organizations, have only emerged in recent times. This creates a multiple stakeholders and multiple entry points to the marketplace. Strong analytics and value propositions should be elaborated to meet different stakeholder's needs. Additionally, cost containment pressures in such markets leads many caregiver institutions to focus on procurement as an area where they can cut operating costs. In some cases, management and procurement among institutions (such as primary care trusts in the UK in the past) can be fragmented and uncoordinated, for example, for high value capital equipment. 6,8 As observed by Eucomed, some of these factors may have little or nothing to do with how well or how safely a device performs its intended task.2 In the case of breakthrough technologies such as the bionic eye and others, some additional obstacles should be considered throughout the market access process. These challenges include educating and training the medical community on new treatment procedures and therapies, creating awareness programs for patients, and building the necessary infrastructure to conduct the procedure. There are economic barriers such as temporary, short-term approval conditions, and companies must also clear hurdles such as achieving final adoption by hospitals and eventual incorporation into diagnosis-related groups' (DRG) coding systems. These challenges build numerous uncertainties in the process and restrain a product's growth potential. Highly innovative devices must demonstrate strong long-term clinical evidence, which leads to a longer regulatory process. More critically, market access for these novel devices depends on the fundamental roadblock of a lack of preexisting reimbursement mechanisms (i.e., codes, coverage, and payment rates). For instance, in many of the western reimbursement systems, a device must first be in widespread use among physicians before the company can apply for the creation of a new reimbursement code, creating the risk of a circular problem.6 The disproportionate balance in market access conditions between incremental innovations and breakthrough technologies is all too evident. In recent years, policy makers in some countries have begun to address these barriers in access to innovative medical technology. In Germany, the annual new diagnostic and therapeutic methods (NUB) program offers a unique platform for market access to innovative medical technologies. As product use and clinical confidence in the new therapy grows, it eventually gets fully integrated into a DRG. Based on product development stage, France offers multiple platforms to introduce innovative technologies into its healthcare system, including PMRE, STIC, and Article 165-1-1. In Italy, each region can decide to reimburse or not reimburse a new technology, which can serve as a platform to open doors for new innovations in Europe. Similar early-stage, temporary funding and policies can also be found in other countries outside Europe, such as CMS's temporary DRG in the United States. In the case of emerging economies, a recent report commissioned by the Dutch government for the WHO on overall barriers to medical technologies innovation arrived at similar conclusions regarding barriers in developed markets and innovation incentives, while addressing the conditions that are specific to emerging economies.9 First, the broader category of developing countries represents a new market opportunity for the medical device industry, with a strong degree of reliance on imports, opportunities for lower production costs, and in terms of their total population (4.9B), generating and aggregating gross domestic product comparable to that of developed nations. According to the report, common barriers to innovation shared by both developed and developing countries include limited staff training, resistance on the part of the established medical practice, and reluctance to admit the need for a skills upgrade. For example, among the studied cases of radical innovations in the field of ophthalmology, the slower adoption of intraocular lenses and phakoemulsification by the UK as compared with other jurisdictions was due both to resistances in adopting and acquiring necessary skills, and to methods of resource allocation reflected on managers' fear that potential demand could not be met.7,9 However, there are barriers to innovation that are unique to the developing world, including costs, lack of spare parts and consumables supply chains, expertise training, infrastructure, and lack of universal health insurance system. Concerning emerging economies (such as those in Brazil, Russia, India, and China), systems operate under different and complex dynamics, with some similarities to a developed market environment—especially from a private-pay perspective. Even if such economies are commonly grouped as "emerging," each of these markets is at a different stage of maturity— from regulatory process, public-private insurance system, or a Health Technology Assessment (HTA) development. Considering the local healthcare environment combined with cultural and business complexity, there is no single approach with which such markets can be approached. Some of these hurdles affecting market access for technology-led innovations are comparable to the challenges faced in Europe. For example, the emerging role of HTA in South Korea, Taiwan, China, Mexico, and Brazil is another indicator of how these markets are developing their public healthcare coverage policies along the lines of some of the European markets. In sum, an increasing number of breakthrough medical technologies are being developed to fulfill unmet clinical needs or to achieve improved patient outcomes. It is therefore imperative to achieve a broader recognition of the need for improving market access conditions for valuable and life-saving medical technology innovations. Greater transparency in reimbursement and funding decision-making processes is urgently needed, while the need for a fresh, innovative approach toward evaluating breakthrough medical devices cannot be emphasized enough. Even though globally many policy efforts are moving forward on these issues, most countries have yet to figure out the overall balance of their healthcare investments, reimbursement decision process, patient care programs, optimal incentives for research and development, and the ultimate impact of such policies on the medical innovation ecosystem at large.

References

1. Drummond M et al, "Economic evaluation for devices and drugs -same or different?" Value in Health: V12, 4, 402-6, 2009.

2. Eucomed, "A MedTech map for bypassing market-access roadblocks", 2012, accessed on 10-08-2013 http://www.eucomed.org/blog/102/77/blog/2012/01/07/A-MedTech-map-for-byp....

3. Eucomed, "Medtech industry must change its way of doing business to remain successful in the EU", 2012, accessed on 13-08-2013, http://www.eucomed.org/blog/95/159/blog/2011/09/06/Medtech-industry-must....

4. European medical device technology, "Breakthroughs of 2013 (So far)", accessed on 12-08-2013, http://www.emdt.co.uk/article/medtech-breakthroughs-2013-so-far.

5. Simon-Kucher & Partners, "Med-tech Barometer survey", 2011, accessed on 12-08-2013, http://www2.simon-kucher.com/files/MedTech_Barometer_2011_Short_Summary_....

6. Mediclever Outsourced Medical Reimbursement, "A shortcut to medical device reimbursement in the UK", 2012.

7. Metcalfe et al, "Emerging innovation systems and the delivery of clinical services: The case of intraocular lenses", Research Policy 34: 1283 – 1304, 2005.

8. SCRIP insights, "Pricing and Reimbursement Strategies for Medical Devices", 2012.

9. The WHO, "Barriers to innovation in the field of medical devices," 2010.

Amit Kukreja, MBA, B.Engg, is director of market access and reimbursement at Second Sight.

Matias Gonzalez, Msc, MA, PhD, is assistant researcher at the Centre for Research in Health and Social Care Management (CERGAS) at Bocconi University.

Friday, August 1, 2014

健喬 積極收購藥廠! 益得生9億取Novartis台廠(2016年投產)

益得 9億購諾華子廠 20140801 04:10記者杜蕙蓉/台北報導 益得生技(6461)擴大營運布局!昨(31)日公告斥資9.28億購買知名瑞士諾華藥廠(全球排名第一)在台子廠。董事長林智暉表示,益得開發的HFA-MDI(氫氟烷定量噴霧吸入劑)至少享有10年黃金成長期,新購置的藥廠不僅備足產能,也能打進歐美大市場。已於上月15日以75元登錄興櫃的益得,為健喬持有49.98%的子公司,目前已拿到2張台灣MDI(定量噴霧吸入劑)藥證並取得健保價銷售外,開發的2項新藥也符合向FDA申請新藥,其中1項將搶首仿學名藥(First Generic),另1項則為全球新藥。林智暉表示,為了能快速打進國際舞台,健喬集團近年積極購買國際藥廠在台子廠,透過外資藥廠建置的腹地、廠區規畫、人才孕育和符合國際法規,也讓集團近年營運亮麗。健喬除已於2005年購入德國百靈佳在台子廠後,2010年也因收購躍欣公司取得美國禮來在台子廠,而益得購買的諾華子廠,則是第三家外資藥廠。益得斥資9.28億購入的廠房,預定2016年完工投產,每條線年產能3千萬支。因諾華子廠廠區空間足夠,益得也規畫將增加產線及劑型別,並擴增產量。另外,原定2018年獲歐洲認證、2019年取得美國認證等規畫,也可望提早1年以上。備受矚目的益得,目前是全球第七家,唯一擁有MDI技術平台,在預計10年內都不會有第二家競爭廠商下,明年有機會力拚損平。

Si2C難整合台灣生技?! 無蘇懷仁的 生技整合育成中心

台灣生技大老蘇懷仁 癌症逝世2014-07-31 Web only 作者:黃惠鈴 台灣的生技發展痛失良師!昨天傳出,華人生技界翹楚、台灣生技整合育成中心首席顧問蘇懷仁,才65歲卻因淋巴癌,已於28日在美國過世,震驚政府與業界。 「本來說好,明年要一起駕帆船環遊世界!」與蘇懷仁有數十年私交情誼,台灣浩鼎董事長張念慈在美國聖地牙哥家中,接受《天下》越洋採訪,掩不住哀傷。蘇懷仁在海外成就非凡,分別擔任過羅氏大藥廠、Biogen IdecShire等國際知名藥廠的高階主管,在華人生技圈中,是難得具備新藥開發、臨床實驗、藥物上市銷售、從上游到下游完整產業經驗的關鍵人物。「他是美國華人中,擁有成功開發最多新藥經驗的人,」張念慈說,蘇懷仁領導開發的新藥多達十幾種。例如,2009H1N1新型流感在全球肆虐,各國爭相採購由羅氏大藥廠生產的「克流感」(Tamiflu),就是蘇懷仁的成名作之一。不過,蘇懷仁始終心繫台灣。張念慈透露,早在扁政府時代,核准成立宇昌生技時,時任行政院副院長的蔡英文、中研院院士何大一等人,即力邀蘇懷仁返台擔任總經理,帶動台灣的生技發展,但蘇懷仁當時在國際藥廠擔任全球總裁,位高、責任重,因此沒有成局。馬政府上台後,蘇懷仁與馬英九因為是高中同學,一直有很好的交情,馬英九經常向他請教生技的發展方向,蘇懷仁也以行政院海外生技諮詢委員的身份,積極提供意見。 直到2011年,蘇懷仁自國際大藥廠退休,終於在時任行政院政務委員朱敬一的邀請下,回台建構台灣生技整合育成中心。甫退休的台灣神隆前總經理馬海怡觀察,蘇懷仁回台,「對這兩年,台灣學術界能朝產品開發邁大步,功勞很大。」 今年2月底,生技整合育成中心才剛輔導兩個學研團隊,新創成立高階醫材公司。這兩家公司分別著重在新穎的神經再生用導管,以及高階齒顎醫療器材。更為人稱道的是,去年剛成立的醣基生醫,是由蘇懷仁一手催生。醣基生醫結合了中研院基因體研究中心專精的醣體研究技術,以及鑽石生技創投(金主包括潤泰、台新、富邦、中天四大集團)等的資金奧援,要積極研發醣分子新藥,開創新藥的藍海,成為台灣生技的旗艦。張念慈透露,醣基生醫從創立的理念、策劃、架構、營運方向等,都是蘇懷仁的想法。除了積極串聯台灣生技產業鏈,蘇懷仁也樂於與業界分享豐富的經驗。馬海怡跟《天下》記者分享,蘇懷仁提醒她,神隆在原料藥化學合成及藥物化學方面具有優勢,在新藥開發上是具有強大競爭力,帶給她很大的信心。特別是台灣神隆最初並非從事新藥開發,蘇懷仁提出非常有效的鼓勵,也很耐心指導。在馬海怡印象中,蘇懷仁非常平易近人、有內涵。某次晚宴後,兩人有機會一同唱歌,她發現蘇懷仁歌喉佳、音調準,大吃一驚。問了蘇懷仁的夫人,才知道蘇懷仁還是一位很棒的小提琴家。「我正準備要寫信告訴他,我退休的事,不料就接到噩耗,真令人唏噓不已,」馬海怡感慨。蘇懷仁殞落後,台灣生技整合育成中心的發展,令人關注。張念慈不捨地說,蘇懷仁當初對建構生技整合育成中心有很好的理念,但最終政府能做到的,還是有落差,以致於生技整合育成中心的資金、架構、規模、人才運用等,無法完全到位,「只能做半套,」張念慈分析。這也是蘇懷仁生前因為有挫折感,一直不願接生技整合育成中心執行長職位的緣故。另有生技界權威人士指出,如果政府能提供生技整合育成中心更多資源、更多發揮空間,才可能找到優秀的人才接下蘇懷仁的棒子,繼續協助台灣生技業發展。「如果每件事做起來捉襟見肘,難有(生技)大咖願意投入,」這位人士說。這將是蘇懷仁殞落後,政府必須思索的課題。

蘇懷仁小檔案 重要經歷:台灣生技整合育成中心首席顧問、羅氏大藥廠副總裁、Biogen Idec臨床研發部門全球負責人、Shire人類基因治療公司的資深副總裁與研發部門全球負責人 學歷:美國加州大學柏克萊分校生物化學博士、加州大學舊金山分校醫學博士

蘇懷仁 力搏台灣生技最後機會2011-07-26 天下雜誌 作者:謝明玲 相關關鍵字: 蘇懷仁生技藥物研發藥廠 「我希望給最好的案子最好、最短的成功機會。」從美國決心回台奮力一搏的蘇懷仁說,眼見大陸發展生技野心勃勃,蘇懷仁將主導的台灣超級育成中心如何對抗? 台灣是有扇『機會之窗』的,」電話那一頭,蘇懷仁緩而堅定地說,「那時候,我還以為這個機會要喪失了。」台灣土生土長的蘇懷仁是美國生技製藥業的指標人物,曾擔任羅氏藥廠、美國第三大藥廠BiogendecShire等公司高階主管。六月底,政務委員朱敬一從美國帶回好消息,蘇懷仁將參與「生技鑽石起飛方案」中「超級育成中心」建構,第一年任顧問,並預計二○一三年將中心轉為民營公司。戴著細框眼鏡,今年六十一歲的蘇懷仁看來像位不多話的學者。實際上,他活躍於產業,擁有華人圈少見的豐富產業資歷。蘇懷仁台大化學系畢業後,赴美攻讀生化,拿到醫學博士。進入業界後,帶領過臨床實驗,以及評估標的、一路帶領藥品商轉上市等,不論在學術背景或產業經驗都很完整。

台灣生技走到最後黃金期 旅美三十年,七年前,他第一次聯繫上台灣生技界,以海外諮詢委員身分,參加行政院生技產業策略會議(BTC)。兩年後,他在會中提出「超級育成中心」的構想。他估計,從提出中心構想開始,台灣發展生技,只有三到五年的黃金期,一定要把握、快馬加鞭。之所以需要超級育成中心,是因為台灣學界的研發能量很強,學術發表很多;但經費、軟硬體資源和人才都集中在學界,沒有往產業下一步推進。育成中心要扮演的角色,就是找出有未來性的前端研究,串連台灣有的智慧財產、臨床研究、技術法律資源等,把這些研究轉成有商業價值的成果,打通過去台灣在發展生技產業時的瓶頸。蘇懷仁舉例,像是運用分子影像(molecular imaging),能在新藥進入身體時觀察新藥與細胞的交互作用,協助判斷出有沒有往下一步發展的未來性。但目前擁有這台前端儀器的學校,大多還是用在學術研究,而不是協助產業篩選標的。然而,超級育成中心「育成」了四年,換了四任行政院長;期間,大陸發展生技野心勃勃。過去一年,蘇懷仁觀察到,大陸已經有兩家夠規模、夠成熟的生技公司了。但台灣的計劃,卻始終走走停停。競爭,已經愈來愈激烈;時機,卻在悄悄流逝。現在是台灣發展生技的黃金期末端,也是奮力一搏的最後機會。「我希望把最好的案子最有效率、最短的往前帶,給它最好成功、最短成功的機會,」蘇懷仁說。

超富毅力追著病毒全球跑 中央研究院院長翁啟惠分析,育成中心最困難的,是要讓人「覺得值得請他幫忙」。「人家把智慧財產交給你,你可以把它經營成大家覺得有價值的東西,」翁啟惠說。這裡面牽涉判斷出有未來性的目標,技轉、智慧財產的整合,以及和台灣、甚至世界有研發與臨床能量的地方溝通、挖資源。

蘇懷仁完整的職業生涯,是很好的起點與背書。他在羅氏藥廠十八年,負責帶領臨床實驗的團隊,參與過兩個C型肝炎、四個愛滋病藥物和流行性感冒藥物克流感的研發。雖然是負責在人體上測試的臨床實驗,但蘇懷仁從前端的試管實驗、動物實驗等就要開始參與,才能協助實驗員挑選適合的實驗來預測藥物在人體上的反應;也才能和參與臨床實驗的受試者解釋。

到了Shire,他更要負責所有的新藥研發,價值鏈從頭走到尾。他必須有效率的找到案源,判斷有沒有市場和商業價值,觀察實驗結果,看有沒有下一步,專利會不會太快過期而沒有成本效益,甚至考量製造、原料成本等。他手中握有三億到四億美元的龐大研發經費,但因藥品發展過程長又燒錢,這筆錢常只能支持十到十五種藥物,他必須要動態的考量,安排好手中的牌,獲得最大回收。他調度資源和發展藥物的能力,讓中研院院士陳良博以「非常有想像力」來形容。意思是他能無中生有。就像看到平凡石頭的光,轉化為寶石。 上騰生技顧問董事長兼總經理張鴻仁觀察,蘇懷仁有不屈不撓鍥而不捨的意志,因為製藥價值鏈長、發展時間長,他卻都能一守就是好幾年,且一肩挑起成敗。他最令人津津樂道的故事,是在羅氏藥廠發展克流感時,繞著地球追流感病毒跑的故事。每年,流行性感冒病毒都從亞洲開始流行,接著往西跑,經過歐洲、美國後繞回亞洲,然後就變種,因此必須搶時間發展疫苗。且流行性感冒說來就來,說走就走,很難找到病人。當時,蘇懷仁坐鎮美國,設計實驗,各地臨床團隊跟著病毒跑,一路執行,連南半球也不例外:一接到當地通報有流感病例,就要立刻進行實驗,然後將數據傳回蘇懷仁,由他監控、分析、彙整報告。最後,他們做了四十個不同的臨床實驗,有超過四千個病例參與,只花了兩年一個月的時間完成臨床實驗,送進美國食品藥物管理局(FDA),是一般新藥開發所花時間的一半左右,創下紀錄。在國際大藥廠擔任主管超過二十五年,也是醫生的蘇懷仁常有感受,當新藥出來,第一個市場一定是美國與西歐,接下來是南美、東歐,甚至中東等,最後才是亞洲。有些藥在美國上市九年後才考慮台灣市場;有的甚至最後因為台灣市場太小,而根本放棄上市。「我現在要反過來走,」蘇懷仁回台灣,除希望幫忙抓住最後發展生技的機會,更希望專攻一些亞洲流行的疾病,第一個在亞洲上市,既嘉惠亞洲病人,又能帶動產業。特別是,現在歐美許多藥廠因為太大了,研發效率變得很差,很仰賴學術界和小公司提供案源,台灣在這樣的趨勢中,能有發展空間。超級育成中心推動辦公室預計十一月就要正式運轉。但業界觀察,坐落於竹北生醫園區的育成中心,管轄權屬國科會,層級還是太低,恐怕發揮有限;而中心能否招募到足夠人才,又能否真正打破國內生技界的門戶與整合起分散的資源,甚至是否會因為選舉、政黨輪替等又無疾而終,都是挑戰。但蘇懷仁有個座右銘:「很多事情看起來覺得很複雜,但到最後,也許解決的方法可以變得比較簡單。」意思是當徹底明白了自己的路和方向,就勇敢往前走。對自己的想法有信心,依靠直覺作下決定後,就能坦然面對。因為複雜的事情,大多都沒有絕對的黑與白。 或許就像他回台灣的決定,就像要建構超級育成中心的計劃,看來儘管複雜又未知,但台灣和蘇懷仁,對自己腳下一步步踩的路,都從容以對,了然於心。

蘇懷仁1950年出生。台大化學系、加州大學柏克萊分校生物化學博士、加州大學舊金山分校醫學博士。曾任哈佛大學醫院住院醫師、羅氏大藥廠臨床發展副總裁、Biogenidec生技製藥資深發展副總裁、Shire生技製藥研究發展總裁。游泳、跑步、腳踏車鐵人三項選手及帆船選手。

 

 

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