Tuesday, March 25, 2014

再生医療等の安全性の確保等に関する法律

再生医療法の成立と薬事法の改正  弁護士 渡辺 直樹、弁護士 根本 鮎子  20131120日、再生医療等の安全性の確保等に関する法律(以下「再生医療法」といいます。)及び薬事法等の一部を改正する法律(以下「改正薬事法」といいます。)が成立しました。これらは、公布の日から 1 年以内に施行される予定です。また、同年1112日、一般用医薬品のインターネット販売を認めること等を内容とする薬事法及び薬剤師法の一部を改正する法律案(以下「ネット販売等改正案」といいます。)が閣議決定を経て、国会に提出されました。今国会での成立が見込まれており、成立した場合には、公布の日から6ヶ月以内に施行される予定です。 本アラートでは、再生医療法、改正薬事法及びネット販売等改正案のポイントを解説いたします。 再生医療法

経緯  2013  4  26 日、再生医療の研究開発から実用までの施策の総合的な推進を図るため、議員立法の「再生医療を国民が迅速かつ安全に受けられるようにするための施策の総合的な推進に関する法律」(再生医療推進法)が成立しました(5 10日公布)。これまで再生医療に関しては、「ヒト幹細胞を用いる臨床研究に関する指針」(平成25年厚生労働省告示第317号により全部改正)による臨床研究の規制のほか、法律に基づく規制は行われていませんでしたが、今回の立法により、再生医療等の提供機関、特定細胞加工物製造事業者及び細胞培養加工施設について基準を設定することにより、再生医療の特性を踏まえた迅速な実用化を進めるとともに、安全性の確保を図ることが目的とされています。

新法の内容  再生医療法においては、法規制の対象となる「再生医療等技術」を、リスクの高い順に第一種、第二種及び第三種と定義し(第2条)、治療等を目的とする再生医療等の提供について、分類に応じた規制を定めています。医療機関等は、再生医療等を提供する際、再生医療等提供計画を厚生労働大臣に提出しなければならず(第4条)、また、厚生労働省令で定める再生医療等提供基準を遵守することが義務付けられています(第 3 条)。

日立法力挺誘導多功能幹細胞研究 朝鮮日報駐東京特派記者 車學峰 (2012.10.24 10:34)據悉,就提前解散國會正在進行激烈爭論的日本執政民主黨和在野自民黨、公明黨決定齊心協力制定支持研究誘導多功能幹細胞的法案。這一決定旨在對製造誘導多功能肝細胞獲得諾貝爾獎的山中伸彌(見圖)教授的研究給于民官聯合的全力支援,以儘早實現實用化。NHK23日報導,民主、自民、公明三黨就制定相當於應用幹細胞再生醫療基本法的《再生醫療推進法》基本達成協議,決定即將通過臨時國會予以立法。該法規定,政府負責支持從促進肝細胞研究到實用化的全過程,以便給日本國民首先提供利用再生醫學治病的機會。為此,該法要求政府在法制、財政、稅制上有義務採取必要的措施。這些措施包括:政府給大學等的研發提供必要資助;促使擁有高新技術的企業等參加研發;培養具有專業知識的人才;構建對再生醫療產品進行迅速審查認定的體系。日本政府今年7月已推出日本再生醫療戰略,決定儘早構建推進再生醫療實用化體制,時下計畫明年向定期國會提交藥師法修訂案,以促進提前研發再生醫療產品。

日本如何打造再生醫學王國_立法(再生医療等の安全性の確保等に関する法律)

Japan's Bold Initiative in Regenerative Medicine and Who the Big Winners Might Be Mar 03, 2014 (ACCESSWIRE via COMTEX) -- Like many other regions in the world, Japan is facing a demographic problem that threatens to pose enormous challenges for their national healthcare system in the years ahead, as the elderly segment of the population expands dramatically. According to analysis by the Ministry of Health Labor and Welfare (MHLW) in Japan, the percentage of the population that is over the age of 65 is expected to nearly double in the coming years. Given that the aging segment of the population requires greater healthcare resources and that this shift will place substantial pressure on the national healthcare system in Japan, it is understandable that the trend has received considerable attention from policy makers. As demand for healthcare resources continues to escalate, over the past several years the political leadership in Japan and the MHLW have given consideration to areas of technology that may enable more effective treatments, while also reducing overall healthcare costs and the economic impact on society. Traditional medical approaches have thus far had limited impact in many diseases that become more prevalent in an aging population, and have failed to address a range of areas that represent substantial unmet medical needs that impose a high social burden, as well as enormous direct and indirect costs to society. New technologies could change that, and the MHLW is committed to promoting the development of new approaches that could provide more effective solutions for conditions like stroke, heart disease, and a range of other areas. One area in particular, regenerative medicine, may have a dramatic impact. However, despite some exciting technological achievements in recent years, there has been only modest clinical trial activity in Japan over the past decade. This has threatened to impede the development and delivery of new therapies into the Japanese healthcare system. Last year, policy makers announced an important new initiative that could change all that. Last spring, the MHLW and PMDA (the equivalent of the U.S. FDA in Japan) announced the concept of a new framework designed to dramatically accelerate the development of new regenerative medicine therapies that could help address areas of significant unmet medical need. In November 2013, the National Diet passed the legislation that revised Japan's Pharmaceutical Affairs Law and also established the new Regenerative Medicine Law that could help establish Japan as a global leader in regenerative medicine in the years ahead. This important legislation was passed with the primary goal of expediting the development path and commercialization of regenerative medicine therapies, while continuing to ensure and protect patient safety. The legislation passed with overwhelming support in both the lower and upper houses of the Diet. The rest of the world is watching and should be cheering the visionary move. In a recent keynote speech at the World Economic Forum in Davos, Switzerland, Prime Minister Shinzo Abe reiterated Japan's national commitment to leadership in regenerative medicine, saying, "We will make it possible to generate cells (i.e. cell based medicines) at private sector factories." Clearly Japan is looking to benefit from the initiative in terms of helping its citizens obtain access to better medicines, but also because of the economic development activity it might drive. First, let's take a look at the changes in Japan and why the country is in the global spotlight with their initiatives. Then we'll briefly take a look at three regenerative medicine companies that may ultimately benefit from the new initiative: Athersys, Inc. ATHX +0.55%, Mesoblast Limited (asx:MSB), and Cytori Therapeutics CYTX +3.53%, that are each showing an active interest in Japan and well-positioned to be a part of the regenerative medicine revolution there. Historically, Japan has not been typically viewed as sitting at the forefront of innovation, particularly in biotechnology; they are, however, a country that has shown an acute ability to research, optimize and effectively industrialize emerging technologies. That dynamic in the area of biotechnology is changing, though, fueled in part by the national interest resulting from the paradigm bending discovery of 2012 Nobel Prize co-winner Shinya Yamanaka that had a positive impact on the country's psyche. Addressing the thorny ethical issues surrounding embryonic stem cells, Yamanaka and his colleagues ascertained, then demonstrated that induced pluripotent stem cells (iPSC's) could be derived from normal adult cells, potentially eliminating the need to harvest embryonic tissue, representing a truly landmark breakthrough in the field. Japan's new Regenerative Medicine Law serves to shepherd new cell therapies, and contemplates a range of such technologies, including iPSC based and other approaches. This new framework could create a more efficient path for medicines to reach patients, and the market. In the broadest view, the Regenerative Medicine Law realigns the thinking and process of clinical trials for stem cell technologies. Currently, most developed countries are quite rigid in requiring three stages of clinical trials, including lengthy mid- and late-stage trials before new therapies are even considered for approval. With that structure, it's not uncommon for a drug to take a decade to reach commercialization. Japan's new policy requires an early stage clinical trial (call it a Phase I or small Phase II) at the minimum to confirm safety of the therapy and provide some plausible evidence of efficacy. Rather than requiring that the therapy then be evaluated in subsequent trials before making it available to patients, Japan's new law will allow for a "conditional approval" enabling the product to be brought to market, and for the product to obtain reimbursement in an accelerated manner. Conditional approval by no means implies that regulatory approval process is over. It simply allows the therapy to be made available to patients earlier in the process, and for the sponsor company to begin commercialization and obtain reimbursement. Following conditional approval the sponsor company will continue to monitor and evaluate the clinical performance of the therapy for additional safety and efficacy data. Upon completion of the necessary post-conditional approval studies, the owner may file for a final approval, in a manner similar to the traditional approval pathway. Which companies may benefit from this new regulatory framework? There are several logical possibilities. To identify the potential winners, it helps to know where the largest areas of significant unmet medical need are in Japan and who might be well positioned to address them. Second, it's worth examining which regenerative medicine companies are already active in Japan, as that may provide such companies with something of an advantage.At the top of the healthcare priority list is stroke, which represents the leading cause of death, and the leading cause of serious disability in Japan, and is a major challenge for the national healthcare system. Current standard of care for ischemic stroke patients relies on administration of the anti-clotting factor tPA, but the drug must be given to the patient within the first several hours after a stroke and most stroke victims don't get to the hospital in time. Many strokes experience what physicians refer to as "wake-up" strokes, meaning the stroke happened sometime in the evening, but the patient wasn't aware of it until the next morning, effectively missing the window for potential treatment with tPA. Currently it's estimated that only 5 - 8% of stroke patients actually get treated with tPA, unquestionably ranking it as one of the largest areas of unmet need in medicine today. The standard of care for stroke patients may soon change however. One prominent regenerative medicine company that is visibly active and leading in the stroke area is Athersys ATHX +0.55%. Athersys is developing MultiStem(R), a proprietary "off-the-shelf" stem cell medicine that is distinctive among stem cell medicines, since the product can be manufactured on a commercial scale, kept conveniently on site at the hospital and is administered to the patient like a traditional biologic (via IV or local injection), without the need for any tissue matching or immune suppression. These characteristics have the potential to take stem cell medicine out of the "procedure" category, and put it squarely in the scalable "biotech drug" category. In contrast to the narrow window for tPA, the company has published data from preclinical studies with independent labs that has demonstrated that administration of MultiStem even a few days after a stroke enabled virtually complete recovery. The company is currently engaged in an international Phase 2 clinical trial at leading stroke centers in the United States and the United Kingdom that involves treating patients 1 - 2 days after a stroke has occurred. By extending the window out to something that is far more practical than tPA, and by offering up the potential to accelerate recovery and healing in some powerful ways, the company could redefine stroke medicine as we know it and provide help to many more patients. It could also make Athersys a household name - both in Japan and elsewhere.In addition to stroke, the company has other clinical programs of note, including a Phase 2 program exploring the potential for MultiStem to help patients suffering from ulcerative colitis that have previously failed other forms of treatment. This program is part of a partnership with Pfizer Inc. PFE -0.34%, which is running the Phase 2 trial. Pfizer has extensive experience in the Inflammatory Bowel Disease area, a disease class including ulcerative colitis and Crohn's Disease. The partners expect to have data in late April or May from the trial, which could provide some important clues to the potential for treating IBD. Athersys also has other clinical stage programs that could also be relevant under the new framework in Japan, such as a planned Phase 2 involving the treatment of patients that have suffered a serious myocardial infarction (heart attack) and a Phase 2/3 for preventing Graft versus Host Disease in patients being treated for leukemia or related conditions.Chairman and CEO at the company, Dr. Gil Van Bokkelen has spoken publicly about the importance of the new initiative in Japan, recently commenting, "Japan is showing tremendous international leadership in an area that they recognize has transformational potential. This new framework could enable medicines to reach patients in a more rapid and efficient manner, and also helps address some of the most significant challenges facing the national healthcare system in Japan, and we believe it represents a game changer. I think it's already having a positive impact on investor views, since it could dramatically accelerate development of therapies like MultiStem, and by regulatory complexity and shortening the development path, it translates into tangible value creation."Athersys shareholders clearly agree. Since the passage of the new regenerative medicine framework in November, the stock has risen almost 170%, on sizeable volume, and has seen some noteworthy institutional shareholders recently added to its list. There are other players that also appear poised to capitalize on the opportunity in Japan. Industry giant Mesoblast (asx:MSB) has a strategic partnership in Japan with JCR Pharmaceuticals for its allogeneic mesenchymal stem cell (MSC) product to treat steroid refractory graft-versus-host disease (GvHD), a side affect associated with bone marrow and transplant surgeries. Mesoblast's move to acquire a portfolio of stem cell therapies in 2013 from Osiris Therapeutics OSIR -1.54%opened the doors to Japanese markets. JCR is expected to file its application this quarter to market the MSC product in Japan, which sets the stage for it to possibly become the first company to benefit from the accelerated pathway under the new Japanese law.Cytori Therapeutics CYTX +3.53%has been investing in Japan for more than 10 years and has a well-established presence with its Tokyo-based medical subsidiary Cytori Therapeutics K.K. Cytori is engaged in development of therapies centered on autologous adipose (fat)-derived regenerative cells for treating cardiovascular disease and other conditions. The company has already conducted several clinical trials in Japan with more underway that have shown a consistent safety profile for Cytori's technologies. Cytori also offers StemSource(R), a cell bank product line, that could see an uptick in use as stem cell research increases in Japan. Regenerative medicine on the whole appears to have gotten some wind behind its sails, thanks to advances on multiple fronts, including the progress being achieved by leading companies, and the regulatory progress in Japan, as well as in other countries. Spearheaded by so-called Abenomics, the country has charted a course for change that includes planting its ensign as a pioneer in regenerative medicine and the clinical process, one that can inspire investment for the benefit of its country and the world over.

Natco強制授權Nexavar(就是要降價時…又能何 )

打造生醫台灣品牌 兩「張」王牌按讚 工商時報 記者杜蕙蓉/台北報導 20140306 04:09 打造生醫業台灣品牌,生技業「兩張」王牌—浩鼎董事長張念慈、基亞董事長張世忠同步看好,認為台灣已具備實力;不過,隨著「藥價經濟學」的興起,如何創造藥品價值和創新研發能量,將是未來業界最大考驗。張世忠表示,目前包括中國、歐美、日本等先進國家都積極進行醫改,例如拜耳藥廠生產用於治療末期肝癌的雷莎瓦,原本病患每月的花費是5,500美元,但印度政府為了降低病患的成本,就強制要求拜耳藥廠須把該藥授權印度藥廠,讓印度病患每月的花費能降低至167美元,足見藥價經濟學將是未來新藥廠商開發新藥時,必須面對的問題。張念慈認為,以台灣來看,國內廠商已具備研發、生產能量,目前食藥署(TFDA)也慢慢有了新藥審查的能力,產官學的資源整合有機會開創「台灣品牌」。不過,他也表示,要打進國際市場,那麼標的選擇不僅要獨特創新,也要比別人都快,都要有效率,這樣才能出奇制勝。隨著產業大老看好生醫產業將成為台灣下一波的「新兆元產業」,張念慈表示,能夠打進國際競技場的新藥領域較有利基,但對學名藥、生物相似藥的看法相對保守。張世忠認為,生物相似藥由於法令尚不夠完善,且資料數據都掌握在大廠手中,廠商若要投入此領域,難度較高,可能要透過政府的力量才有機會給大藥廠壓力。因此,他認為其發展性恐不如學名藥快速,尤其是國內學名藥廠在PIC/S光環加持中,有機會打進中國和全球市場,是支撐兆元產業的重要力道。張世忠表示,藥價經濟學將是未來藥廠面臨的最大考驗,投入新藥開發時,要以成本為分母、獲利為分子,來考量價值。由於新藥開發時程長達10年以上,花費金額龐大,成功率約只有3成,因此,張念慈認為,除了選擇標的、研發、生產、銷售之外,智財專利的設計也是一門學問,如果是在要申請新藥藥證時才申請專利,那麼新藥的專利保護就可達17-20年,對藥廠來說,就是大大的保障。

Monday, March 24, 2014

Merck強化主攻(diabetes) ,聯盟Samsung 進入phase III (insulin glargine)

Merck, Samsung Bioepis to develop insulin glargine candidate for diabetes  PBR Staff Writer Published 12 February 2014  Merck and Samsung Bioepis have expanded their collaboration with an agreement to develop, manufacture and commercialize MK-1293, an insulin glargine candidate, to treat patients with type 1 and type 2 diabetes.The company said that Phase III clinical trials in type 1 and type 2 diabetes will commence soon. Merck senior vice president of Diabetes, Global Human Health Matt Strasburger said the company seeks to collaborate with Samsung Bioepis on this insulin glargine candidate, as diabetes is a top priority for the company. "Merck is strengthening its leadership in diabetes through our own work and in collaboration with others, and this agreement will help build our portfolio across the spectrum of the disease," Strasburger said.Samsung Bioepis CEO Christopher Hansung Ko said, "This collaboration will bring better access to patients with diabetes worldwide."As part of the deal, the companies will collaborate on clinical development, regulatory filings and manufacturing. The deal builds on the agreement made by the two companies in February 2013 to develop and commercialize multiple biosimilar candidates. Samsung Bioepis is a joint venture between Samsung Biologics and Biogen, and it aims to develop affordable and high-quality biopharmaceutical and biosimilar products.

 

Biosimilars年成長率近50% 拚產率/臨床/COG/Branding !!!!

Biosimilars Market Worth $1,954 Million by 2018 - New Report by MarketsandMarkets Key Players in the market are Celltrion, Inc., Cipla Ltd. Lg Life Sciences Ltd., Merck Kgaa, Mylan, Inc., Ranbaxy Laboratories LtdStada Arzneimittel Ag, Synthon, Teva Pharmaceutical Industries Ltd. (PRWEB) February 17, 2014The "Biosimilars Market Product [Recombinant Non-Glycosylated Proteins (Insulin, Filgrastim, Somatropin), Glycosylated (Monoclonal Antibodies, Erythropoietin), Peptides (Glucagon, Calcitonin)] & Application (Oncology, Blood Disorders) - Global Forecast to 2018", provides a detailed overview of the major drivers, restraints, challenges, opportunities, current market trends, and strategies impacting the global biosimilars market along with the estimates and forecasts of the revenue and share analysis. The global biosimilars market is segmented on the basis of products, applications, and services. By product, the global biosimilars market is further segmented into recombinant non-glycosylated proteins (insulin, granulocyte colony-stimulating factor (G-CSF), interferon, and human growth hormone), recombinant glycosylated proteins (erythropoietin, monoclonal antibodies, and follitropin), and recombinant peptides (glucagon and calcitonin). The recombinant glycosylated proteins segment is the largest segment and accounts for a share of 40% of the global biosimilars market in 2013 at an estimated $314.2 million and is expected to grow at a CAGR of 17.5% from 2013 to 2018. The biggest factor behind the growth of this segment is the increasing demand for second-wave biosimilar products, such as insulin and interferon, for the treatment of diabetes and infectious disorders. Of all segments under the product category, the monoclonal antibodies segment is the fastest-growing segment at an estimated CAGR of more than 40% from 2013 to 2018. By application, oncology is the largest and fastest-growing segment and accounts for a share of 25%of the global biosimilars market. This is attributed to the increasing prevalence of oncology along with the rise in aging population and the changing lifestyle. Europe dominates the global biosimilars market with around 40% share in 2013. The factors driving the European market are its well-defined regulatory guidelines; presence of various biosimilar drugs such as omnitrope, tevagrastim, and binocrits; numerous pipeline products; and more than 15 biologics going off-patent in the coming years. Although the penetration of biosimilars varies by country, it also depends on various other factors, including local pricing and reimbursement policies, stakeholder influence, and attitudes towards the adoption and use of biosimilars. Currently, Germany commands the highest share in the European market due to the presence of a reference pricing system. The U.S., on the other hand, has a very restricted biosimilars market owing to the stringent regulatory environment in North America. The Asia-Pacific market is estimated to be the fastest-growing market. Asia-Pacific accounts for an overall share of 29% of the global biosimilars market. This large share of the market is mainly due to the semi-regulatory environment of the region that easily approves similar biologics in the market. In addition, low manufacturing costs and the presence of highly skilled expertise at low costs are also factors that make Asia-Pacific a lucrative destination for the biosimilars market. The factors restricting the growth of the market are high manufacturing complexities and costs, stringent regulatory environment in the U.S. and Europe, innovative strategies used by biologic drug manufacturers to protect their intellectual property, costly purification process, arrival of biobetters, and the presence of low-priced biogenerics that compete with biosimilars in the market. The key players in the biosimilars market are Sandoz (Germany), Hospira (U.S.), Teva (Israel), Dr. Reddy's Laboratories (India), Biocon Ltd. (India), Mylan (U.S.), Biopartners (Switzerland), Amgen (U.S.), Intas Biopharmaceultical Ltd. (India), and Innovent Biologics, Inc. (U.S.). In 2013, Sandoz is the highest contributor (50%) to the global biosimilars market.

 

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