Sunday, July 17, 2016

史丹福大學 (Stanford University School of Medicine) MSC幹細胞 植入腦部 治中風 成效顯著

幹細胞治中風 一晚就見效 2016-06-05 03:02:59 世界日報 編譯宋凌蘭/綜合3日電 醫生扭轉中風病人的症狀,取得重大醫學突破。幹細胞療法只需局部麻醉和住院一晚,病人就可恢復走路、說話,享有正常的家庭生活。更特別的是,幹細胞治療被證明即使在中風三年後進行也有效,意味成千上萬的病患將可受益於該療法。在史丹福大學科學家進行的初步實驗中,年齡介於33歲到75歲的18名病人接受幹細胞療法,成效驚人。由於只有局部麻醉,病人在過程中神智清醒,他們的頭骨被鑽一個小洞,接著把幹細胞注射進大腦受損的區域。儘管中風和治療之間隔了很長時間(六個月到三年),但是所有18名病人接受幹細胞療法的12個月內,都有顯著進步。近半數顯示「臨床上重要」的結果,也就是說該療法對病患的生活有重大影響。一名坐輪椅的病人,原本無法使用雙腿,但是現在已能慢跑。還有一名病人除了可以動左手大姆指外,原本全身癱瘓,後來恢復走路。另一個名為索妮亞.昆茲(Sonia Coontz)的病人,31歲中風後失去行動能力,迫她依賴輪椅,說話也不清楚。但是接受治療後,馬上肩膀的疼痛消失,且可轉動右臂,從那時起,她就不再坐輪椅。昆茲去年6月走過紅毯,現在待產。幹細胞療法被視為非常有效,因為它啟動中風受損的大腦迴路快速再生。但是科學家強調,讓所有中風病人接受這種療法還要多年時間,因為實驗只證明該療法安全,但是18名病人不足以證明對所有病人都有效。不過,史丹福團隊已開始準備以較大規模複製研究結果,如果成功,這種療法將有巨大潛力來改變中風病患的生活。

Stem cells shown safe, beneficial for chronic stroke patients JUN 2 2016  People disabled by a stroke demonstrated substantial recovery long after the event when modified adult stem cells were injected into their brains.  Sonia Olea Coontz had a stroke in 2011 that affected the movement of her right arm and leg. After modified stem cells were injected into her brain as part of a clinical trial, she says her limbs "woke up." Mark Rightmire Injecting modified, human, adult stem cells directly into the brains of chronic stroke patients proved not only safe but effective in restoring motor function, according to the findings of a small clinical trial led by Stanford University School of Medicine investigators. The patients, all of whom had suffered their first and only stroke between six months and three years before receiving the injections, remained conscious under light anesthesia throughout the procedure, which involved drilling a small hole through their skulls. The next day they all went home. Although more than three-quarters of them suffered from transient headaches afterward — probably due to the surgical procedure and the physical constraints employed to ensure its precision — there were no side effects attributable to the stem cells themselves, and no life-threatening adverse effects linked to the procedure used to administer them, according to a paper, published online June 2 in Stroke, that details the trial's results. Sonia Olea Coontz, of Long Beach, California, was one of those patients. Now 36, Coontz had a stroke in May 2011. She enrolled in the Stanford trial after finding out about it during an online search."My right arm wasn't working at all," said Coontz. "It felt like it was almost dead. My right leg worked, but not well." She walked with a noticeable limp. "I used a wheelchair a lot."  The promising results set the stage for an expanded trial of the procedure now getting underway. They also call for new thinking regarding the permanence of brain damage, said Gary Steinberg, MD, PhD, professor and chair of neurosurgery. Steinberg, who has more than 15 years' worth of experience in work with stem cell therapies for neurological indications, is the paper's lead and senior author.  

'Clinically meaningful' results"This was just a single trial, and a small one," cautioned Steinberg, who led the 18-patient trial and conducted 12 of the procedures himself. (The rest were performed at the University of Pittsburgh.) "It was designed primarily to test the procedure's safety. But patients improved by several standard measures, and their improvement was not only statistically significant, but clinically meaningful. Their ability to move around has recovered visibly. That's unprecedented. At six months out from a stroke, you don't expect to see any further recovery."  Their ability to move around has recovered visibly. That's unprecedented. Some 800,000 people suffer a stroke each year in the United States alone. About 85 percent of all strokes are ischemic: They occur when a clot forms in a blood vessel supplying blood to part of the brain, with subsequent intensive damage to the affected area. The specific loss of function incurred depends on exactly where within the brain the stroke occurs, and on its magnitude.  Although approved therapies for ischemic stroke exist, to be effective they must be applied within a few hours of the event — a time frame that often is exceeded by the amount of time it takes for a stroke patient to arrive at a treatment center. 

Disabling effects of stroke Consequently, only a small fraction of patients benefit from treatment during the stroke's acute phase. The great majority of survivors end up with enduring disabilities. Some lost functionality often returns, but it's typically limited. And the prevailing consensus among neurologists is that virtually all recovery that's going to occur comes within the first six months after the stroke."There are close to 7 million chronic stroke patients in the United States," Steinberg said. "If this treatment really works for that huge population, it has great potential."  For the trial, the investigators screened 379 patients and selected 18, whose average age was 61. For most patients, at least a full year had passed since their stroke — well past the time when further recovery might be hoped for.  In each case, the stroke had taken place beneath the brain's outermost layer, or cortex, and had severely affected motor function."Some patients couldn't walk," Steinberg said. "Others couldn't move their arm."  Into these patients' brains the neurosurgeons injected so-called SB623 cells —mesenchymal stem cells derived from the bone marrow of two donors and then modified to beneficially alter the cells' ability to restore neurologic function. 

No immune rejection  Mesenchymal stem cells are the naturally occurring precursors of muscle, fat, bone and tendon tissues. In preclinical studies, though, they've not been found to cause problems by differentiating into unwanted tissues or forming tumors. Easily harvested from bone marrow, they appear to trigger no strong immune reaction in recipients even when they come from an unrelated donor. In fact, they may actively suppress the immune system. For this trial, unlike the great majority of transplantation procedures, the stem cell recipients received no immunosuppressant drugs. During the procedure, patients' heads were held in fixed positions while a hole was drilled through their skulls to allow for the injection of SB623 cells, accomplished with a syringe, into a number of spots at the periphery of the stroke-damaged area, which varied from patient to patient. Afterward, patients were monitored via blood tests, clinical evaluations and brain imaging. Interestingly, the implanted stem cells themselves do not appear to survive very long in the brain. Preclinical studies have shown that these cells begin to disappear about one month after the procedure and are gone by two months. Yet, patients showed significant recovery by a number of measures within a month's time, and they continued improving for several months afterward, sustaining these improvements at six and 12 months after surgery. Steinberg said it's likely that factors secreted by the mesenchymal cells during their early postoperative presence near the stroke site stimulates lasting regeneration or reactivation of nearby nervous tissue.  No relevant blood abnormalities were observed. Some patients experienced transient nausea and vomiting, and 78 percent had temporary headaches related to the transplant procedure. 

Motor-function improvements Substantial improvements were seen in patients' scores on several widely accepted metrics of stroke recovery. Perhaps most notably, there was an overall 11.4-point improvement on the motor-function component of the Fugl-Meyer test, which specifically gauges patients' movement deficits."This wasn't just, 'They couldn't move their thumb, and now they can.' Patients who were in wheelchairs are walking now," said Steinberg, who is the Bernard and Ronni Lacroute-William Randolph Hearst Professor in Neurosurgery and Neurosciences.  "We know these cells don't survive for more than a month or so in the brain," he added. "Yet we see that patients' recovery is sustained for greater than one year and, in some cases now, more than two years." We thought those brain circuits were dead. And we've learned that they're not. Importantly, the stroke patients' postoperative improvement was independent of their age or their condition's severity at the onset of the trial. "Older people tend not to respond to treatment as well, but here we see 70-year-olds recovering substantially," Steinberg said. "This could revolutionize our concept of what happens after not only stroke, but traumatic brain injury and even neurodegenerative disorders. The notion was that once the brain is injured, it doesn't recover — you're stuck with it. But if we can figure out how to jump-start these damaged brain circuits, we can change the whole effect. A new randomized, double-blinded multicenter phase-2b trial aiming to enroll 156 chronic stroke patients is now actively recruiting patients.

Steinberg is the principal investigator of that trial. For more information, please e-mail stemcellstudy@stanford.edu. The ongoing work is an example of Stanford Medicine's focus on precision health, the goal of which is to anticipate and prevent disease in the healthy and precisely diagnose and treat disease in the ill.  Other Stanford co-authors of the study are Neil Schwartz, MD, PhD, clinical associate professor of neurology and neurological sciences and of neurosurgery; and former neurosurgery fellow Jeremiah Johnson, MD, now at the University of Texas Health Science Center in San Antonio.  The SB623 cells were provided by SanBio Inc., a biotechnology company based in Mountain View, California. SanBio also funded and helped in designing the trial, but did not participate in its execution.  Stanford's Department of Neurosurgery also supported the work.

Source: https://med.stanford.edu/news/all-news/2016/06/stem-cells-shown-safe-beneficial-for-chronic-stroke-patients.html

京冠生技: 2017年泰國設廠/ 布局飼料添加劑 (綠豆篁/ 綠酚麴)

京冠生技展現「古為今用」研發成果 成全球最大生物科技盛會2016北美生技展亮點 全球最大的生物科技盛會--今年第23屆北美生技展(2016 BIO International Convention) 日前在美國舊金山舉行,為世界大型藥廠、生技業者及學術機構展示年度重要研發成果,並尋求策略合作夥伴的重要媒合平台,世界各國也以國家形象館形式帶領業者參展。2016 BIO 北美生技展中,以想像為主題規劃,京冠生技立足在農業生技基礎,展現「古為今用」的研發成果,實踐循環經濟。京冠生技以「挖掘大地寶藏的夢想家」為出發,與2016 BIO北美生技展的主題不謀而合。京冠生技一直以來的研發主軸就是「無廢與再生」,也就是全世界正夯循環經濟概念,成為本次2016 BIO北美生技展亮點。資源能否重新再利用,是台灣政府近幾年,不斷在推動的政策,因此由上到下都興起了一股「循環經濟」風。這是相較於線性經濟中產品「壽終正寢」的概念,循環經濟講求的是「再生恢復」。但不僅僅在於資源回收,而是能「向上循環」(upcycling)把收集來的素材,發展成高附加價值的商品。歐洲荷蘭獨立研究機構TNO即預估,因荷蘭全國投入循環經濟,每年將有高達74億歐元的獲利並將創造54千個新的工作機會,還減少17億噸二氧化碳排放量。此外;在台灣的畜牧業和水產養殖業者,常會在飼料中添加低劑量的抗生素,來預防動物生病、減少經濟損失,然而這些抗生素和一般人使用的成分相同,引起許多消費者團體關切,擔心會因攝食畜產動物而在體內累積抗生素,引發無法控制的超級細菌。根據國際消費者協會估計,20102030年間全球將有超過5萬公噸的抗生素會用於畜、水產養殖中;而國衛院感染研究組特聘研究員蘇益仁亦推估,用於畜牧的抗生素量是人體的8倍,他在去年接受訪問時表示,畜牧業濫用抗生素所引發的肉品安全會是繼黑心油後,台灣尚未爆發的重大食安問題。古老傳統的綠豆篁製作,需要將綠豆放置於竹筒中加上童子尿封存,歷時九個月後,才能發酵完成。此次北美生技展中以「古為今用」的研發成果表現亮眼的台灣廠商京冠生技,以中華老祖宗的智慧進行研發出,將一般作為廢料的綠豆殼,透過科學化的方法找到特殊有效成分「綠酚麴」。京冠生技將此成分發展運用在動物飼料添加劑的產品,有明確的數據證實能提升家禽家畜的免疫能力,達到預防疾病的效果,進而減少農友對抗生素的依賴。根據農委會資料,台灣一年約產生800萬噸農業廢料(包括稻殼、蔗渣、木屑、魚內臟等);及67萬噸果菜市場廢料;根據環保署資料,食品加工環節每年則約產生23萬噸廚餘;京冠生技在北美生技發表的生物科技成果只是一個起點,未來更將透過寬廣的運用,將農業廢料、食品加工廢料等,透過京冠生技獨特的柵欄技術,將原料透過各式的生物分析以及檢驗,解析出各原料的有效成份後,藉由漩渦效應(Vortex Ring Effect, VR)的動態吸拉,包含生物技術、商務模式等思維與實際手法,逐步聚焦於更有成效的產品與應用,運用到飼料添加劑、妝品、醫藥、食品等領域,不但可以降低台灣相關廢料量,更賦予這些原本是廢棄物的原料有新出處,資源重新再利用。京冠生技的生物技術,將這些看似廢料的資源經過與藥用真菌的結合,發酵產生出有藥用價值的成分,落實循環經濟講求的「再生恢復」理念。京冠生物科技專利技術再下一城。日前與食品工業發展研究所進行「台灣本土分離菌株及專利授權」簽約,未來京冠運用食品所專利技術及菌株,加上自身擁有的專利,將在綠豆發酵及應用上獲得更完整的專利保護與布局,也為其發展保健食品、粧品及植物新藥開發奠定利基。同時京冠生技更將於2017年完成在泰國設廠生產的目標。以泰國為亞太地區生產及銷售基地,瞄準亞太地區幾十億美元的動物飼料添加物市場,更藉此深耕東協市場。依據Grand View Research研究顯示,2012年亞太地區飼料添加物市值為47億美元,至2020年預估為65億美元。京冠生技的此項投資計畫,將在亞洲創造動物飼料添加劑市場,取代預防用抗生素300億台幣市場之機會。

6000億健保 知多少?? (政策研擬、制定過程、實施與成效)

醫療暴力再現 到底誰在擺爛? 2016/07/14 20:56江慧珺 / 報導 急診壅塞已是老問題,衛福部健保署每年砸下上億元預算推行急診品質提升方案,紓解急診人潮成效不彰,發放獎勵金卻沒有實際進到醫護人員口袋,但健保署面對醫界反彈與媒體質疑不思檢討,一味拖延擺爛,進而衍生出的醫護過勞、醫療暴力等情況恐更加嚴峻。台灣健保制度推行超過20年,如今掌握每年6000億元的健保總額預算分配大餅,用的是被保險人的民膏民脂,無論是政策研擬、制定過程、實施與成效,都應受到監督,但每當媒體詢問各類健保統計資料,卻處處受阻,常以個資、媒體解讀錯誤等理由拖延搪塞,可見健保署對外溝通的態度消極。細看健保署推行的諸多方案,無論是急診品質提升或替醫護加薪,不僅讓基層醫護人員「無感」,急診塞爆、醫護過勞的狀況依舊,落實分級醫療仍是原地踏步。今年初以來,從健保強推DRGs制度、醫療費用匿名核刪,都引起醫界群起強烈反彈,說明健保署躲在象牙塔內的決策,無法解決醫療第一線狀況,甚至長期擺爛的態度引爆醫界民怨被,壓榨的醫護人員直言「健保不倒,台灣醫療不會好」。今年520新執政團隊上台,外界將其視為推動各項改革的契機,但近2個月過去,光是衛福部與所屬單位和外界的溝通狀況就屢亮紅燈,實質的正向改革卻無寥寥無幾,號稱「最會溝通的政府」,如今看來更顯諷刺

(景澤生技 謝惠景) 長庚生技 經銷商 變身

景澤生技擴產 搶建植物工廠 20160715 04:10 劉朱松/台中報導 食安風暴之後,台灣已掀起植物工廠籌設風,將大搶農金財。繼金仁寶集團旗下金寶生技等多家科技大廠的植物工廠之後,中部的景澤生技,也已完成旗下台灣11處,及大陸3處的植物工廠建置案。另景澤也剛獲長榮空廚訂單,預計今年再蓋3座大型植物工廠因應。為搶食植物工廠商機,台灣多家科技大廠也已布局植物工廠建置與推廣。其中,金仁寶集團創立金寶生物科技,並在新北市深坑區建立植物工廠,從事技術開發並量產無毒蔬菜,現在更積極導入高端中草藥作物。欣興電子已成立植物科技事業處,並在桃園市龜山區山鶯路設置植物工廠複合式餐廳;台達電內湖總部的2樓,也有1座小型植物工廠。據了解,全球2022年智慧農業市場(含硬體、網路平台及服務)產值,可望由今年的90.2億美元,再增至184.5億美元,年平均複合成長率達13.8%。景澤生物科技總經理謝惠景,原本只是長庚生技保健食品的台灣醫療通路唯一指定經銷商,但在經營中,他看到自然安全的有機蔬菜商機,就一頭栽進入建置封閉型全空調LED燈植物工廠,且規模愈做愈大。目前除了建置兩岸植物工廠外,並建立「三合一複合餐廳」示範店,以期做到「店產店銷」效果。謝惠景表示,剛承接的長榮空廚訂單,主要供應17種蔬菜,今年客戶需求量目標,每個品項平均每月需求量1,000公斤,合計每月達17公噸。為滿足長榮空廚的訂單需求,謝惠景透露,景澤將兵分兩路,增加供應量,一是增加契作的植物工廠數量與種植面積;另將增加自有的植物工廠家數。景澤目前旗下自有的植物工廠,包括西屯展示場、北屯12廠,預計今年再蓋3座大型植物工廠。謝惠景希望公司將以每月增加1,000公斤為目標,預計今年底前,達成每月17公噸的供應量,以保證足額供應長榮空廚的訂單需求。景澤未來將以長榮空廚的檢驗室為範本,在公司自設檢驗室,以確保供貨品質。謝惠景在創業的同時,也不藏私地培育植物工廠業界所需的人才,由景澤與勞動部雲嘉南分署合作開設的「植物工廠技術人員訓練班」,共同訓練台灣農業生技科技產業的人才新血,以利各植物工廠的安心蔬菜營運與管理,更期許將台灣的農業科技,再推向國際。謝惠景自今年起也積極籌設產銷合作平台,試圖讓台灣植物工廠業界能走出產銷不均的困境,以期業者未來有個「共存共榮」的發展空間。(工商時報)

3D生醫金屬列印布局: 新竹生醫園區 搶佔一條龍式服務PK 高雄

產官學研醫總動員展現台灣生醫科技實力國研院儀科中心於 7  14 日以電影首映會方式,結合新竹縣在地文化,舉行「台灣生醫科技進軍國際市場啟用儀式」暨「國研院 / 東台 / 中鋼 / 鑫科材料之 3D 列印聯合實驗室揭牌儀式」。科技部蔡明祺政務次長、新竹縣邱鏡淳縣長、國研院佘日新營運長、新竹科學園區管理局杜啟祥局長、主辦單位國研院儀科中心及策略聯盟夥伴包含東台精機、中鋼、鑫科材料、鐿鈦科技、高雄醫學大學附設醫院、麥德凱生科、UL 優力國際安全認證及逾 80 位生醫公司代表齊聚一堂,以行動支持並見證台灣生醫科技的重要里程碑。科技部蔡明祺政務次長在致詞中指出,全球高齡議題持續發酵,其中生技、醫療、健康照護產業需求增加,驅使醫療器材產業產值不斷上升。科技部了解國內醫材發展快速,將盡力協助銜接上游學研界與下游產業,建立完善的補助辦法,挹注資金缺口,提升台灣生醫科技產業的創新動能。新竹縣邱鏡淳縣長表示,「希望、亮麗、科技城」一直是新竹縣政府致力打造的目標,透過各界人士的殷切需求,及新竹縣政府極力爭取,促使新竹生物醫學園區落腳在新竹縣竹北市。相信未來經由科技部、國研院、廠商及新竹縣政府的努力,定能形成生醫產業聚落效應,創造經濟效益,帶動新竹縣的蓬勃發展。新竹科學園區管理局杜啟祥局長指出,政府為帶動台灣新一波的產業經濟價值、加速國內生技產業發展,透過國家政策與法令調整,成立以「新藥研發」和「高階醫療器材」為主的新竹生醫園區,希望能建立完整的生醫產業聚落。今日以 3D 積層製造技術為主的系統構裝實驗室落成,成為國內最完整之生醫材料積層列印平台,提供醫材產業一條龍式的服務,做為業者在研發上的堅強後盾,發展成功必是指日可待。國研院佘日新營運長表示,生醫科技應用日趨廣泛,所帶動的商機與產值不容忽視。國研院為支援我國生醫科技發展將建構完整的生醫研發技術服務平台,包括生醫服務平台與實驗動物試驗房,有效縮短生技醫材產品原型開發時程,達到產品上市的目標。

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