Saturday, November 15, 2014

楊泮池....英聽好不等於英文能力好

台、交大不看英聽 他校後悔採計 2014/11/07 【聯合報╱記者林秀姿/台北報導】 104學年度大考簡章今起發售,共66校、1802個系組參與招生,較去年增加39個系組。首度有152個系組將英聽成績列為門檻,只占8.4%。台大、交大都沒採計。部分採計英聽的頂大理工科系看到台大未採計,「深感後悔」,擔心招生因此受影響。 大考分發委員會表示,152個系組中,設A級「幾乎完全聽懂」門檻的有31個系組,B級「大致聽懂」有83個系組,C級「約略聽懂」有38個系組。彰化師大採計比率達52.17%,全台最高,其次是陽明大學44.44%、政大35.9%,採計的科系都超過全校科系1/3 大考分發會主任詹錢登分析,明年是採用英聽門檻首屆,不少學校還在觀望,態度比較保守,例如台大擔心數理優秀的學生因為英聽不好而無法入學,私校則擔心英聽門檻太高,學生不來登記。 詹錢登說,看到台大決定所有科系都不採計英聽,不少決定採計的學校都「很後悔」,尤其理工科系,多認為數理優異的學生,通常語文能力不強,一旦採計英聽,「登記分發的機會都沒有。」 台大不採計英聽據了解有三種考量。首先是台大校長楊泮池認為城鄉差距大,偏鄉學校英聽設備、資源都不足,不應設門檻;其次,繁星推薦、個人申請不少學生會附上多益、全民英檢成績,重視英文能力的科系足以參考;更重要的是英聽好不等於英文能力好。 明年大考重大的變革還包括,指考採計科目上限將由6科降為5科。 詹錢登表示,今年124個採計6科的系組中,明年共41個系組不採計物理,33個系組不採計國文,受影響最大為第三類組。第一類組則以不採計數學乙跟地理居多。 第三類組中,11所大學醫學系都將從原先採計6科降為5科。詹錢登表示,台大醫學系等10個醫學系都選擇放棄採計國文,中山醫學大學選擇不採計英文,但台大醫學系雖不採計國文,卻要求學測國文成績須達頂標。  

 

 

蔣丙煌: 黑心油是長久以來的事實 ???!!!

檢驗好毒!綠委控蓄意殺人 蔣丙煌認了:吃頂新油傷身 陳鈞凱 2014 11 06 11:07 記者陳鈞凱/台北報導 頂新黑心油檢驗報告昨曝光,不僅豬、牛油重金屬銅、鉛超標,牛油還有不應存在的鉻,毒透全身,民進黨立委劉建國今(6)天重提總統馬英九去年一番黑心食品「吃了不會傷身,但會傷心」言論,嘲諷總統就是長期吃這些油才「傷腦」,指頂新根本蓄意殺人;衛福部長蔣丙煌也首度直言,依檢驗結果,頂新油品的確傷身。 彰化檢方昨公布頂新屏東廠豬、牛油採樣檢驗報告,發現豬油和牛油的鉛含量超標高達7倍、4倍之多,牛油還有不應存在的鉻。鉛具神經毒性,長期大量暴露恐引發腦病變、周邊神經病變,導致智力、認知異常。 蔣丙煌上午赴立法院社會福利及衛生環境委員會進行專案報告,劉建國質詢時,一一點名,包括總統當初「傷心不傷身」、前食藥署長葉明功「食安燈號維持綠燈」的言論,如今都被檢驗報告狠狠打臉。 劉建國表示,總統、江揆都曾為架上的食品背書保障,根本是離譜的總統、惡質的院長,且頂新黑心油現在被證實這麼「毒」,這不是蓄意殺人,什麼才是蓄意殺人,他並追問蔣丙煌,吃頂新油到底傷不傷身? 蔣丙煌無奈表示,葉明功當時代表食藥署,言論衛福部得概括承受,他坦言,檢驗的是未經過精煉的原料油,但若依現在的報告來看,頂新油品「的確會傷身」;但蔣丙煌強調,目前連環爆的黑心油,是長久以來都有的事實,現在被「發現」處理,對未來民眾的食品安全是有保障的,衛福部也一定會落實源頭管理。  

 

檢舉 蔣丙煌/ 林奏延/ 姜郁美涉包庇頂新 !

包庇頂新?北社告蔣丙煌等3人傷害罪 多個本土社團今(6)日前往監察院檢舉衛福部長蔣丙煌、前代理衛福部長林奏延與食藥署代理署長姜郁美3人包庇頂新。圖:邱珮文/ 新頭殼newtalk2014.11.06 邱珮文/台北報導 對於綠委踢爆衛福部早在10/9日得知大幸福出口為飼料油,卻拖了13天才要求頂新下架相關油品,多個本土社團今(6)天前往監察院檢舉衛福部長蔣丙煌、前代理衛福部長林奏延與食藥署代理署長姜郁美3人涉嫌包庇頂新。隨後更前往台北地檢署按鈴控告3人幫助詐欺、傷害罪,讓全民多吃2週噁油。 台灣北社社長張葉森表示,這3人明知頂新製油公司自越南進口油脂,僅能供飼料用油,不能製成食品用油,依法應於得知事實時,立即下架並查封違法食品。但是,3人早在10/9得知廠商違法,竟仍不作為,縱容廠商繼續銷售至10/22,有包庇之嫌,要求監察院與司法單位介入調查。 台灣北社律師陳達成則指出,檢警雖已開始偵辦黑心油案,但對象只針對黑心廠商。事實上,民眾更有興趣的是,一連串的食安風暴,如果沒有政府官員的包庇,要怎麼發生?因此這次行動,就是要司法、監察單位針對衛福部的官員進行調查。 代表永社的台大學生洪崇晏則質疑,食安問題接二連三發生,引起民眾恐慌,政府竟然沒有任何人出來負責。另外,包括高雄氣爆事件、洪仲丘案、323行政院衝突以來,也都沒有中央官員下台。他指出,台灣是責任政治,「做不好,就走人!」他們今天要求3人負起法律責任,更要用年底選舉,讓政府負起政治責任。 檢舉書中指出,衛福部長蔣丙煌、前代理衛福部長林奏延與食藥署代理署長姜郁美3人涉嫌包庇頂新,違反公務員服務法,要求監察院行使彈劾或糾舉權。 另外,張葉森也在刑事告訴狀中指出,自己在10/910/22之間曾食用有害人體、染頂心黑油的食品,他認為前述3人涉嫌以「不作為」的方式幫助頂新詐欺、傷害等罪,因此決定控告。  

早知頂新「油」問題還瞞? 林奏延、蔣丙煌全遭檢舉 ▲台灣北社、永社等團體6日上午到監察院具狀檢舉衛福部長蔣丙煌、次長林奏延等人。(圖/記者賴于榛攝) 記者賴于榛/台北報導 油安事件延燒引起民眾不滿,本土社團台灣北社、永社等團體6日上午到監察院具狀檢舉衛福部長蔣丙煌、次長林奏延等人早在10月初就得知頂新進口的越南油有問題,卻拖到月底才公布,危害人民健康。台灣北社法政組召集人、律師陳達成還直接指控,「如果沒有政府包庇、協助,這怎麼可能發生?」 民進黨立委段宜康曾指出,衛福部早於今年109日就得知頂新進口的越南油品全部有問題,卻遲至22日才要求下架,要求衛福部解釋;今日數個本土社團健康的油品,有違《公務員服務法》,要求監察院應視情節輕重,分別懲處。 台灣北社社長張葉森指出,衛福部應該保障人民健康,卻接連讓毒澱粉、大統混油、飼料油等事件發生,監察院應立案調查衛福部長蔣丙煌、曾擔任代理部長的次長林奏延,與食藥署代理署長姜郁美。陳達成則說,檢警目前都是調查黑心廠商,質疑政府難道沒有問題?「如果沒有政府包庇、協助,這怎麼可能發生?」表示也將前往北檢控告蔣丙煌、林奏延、姜郁美涉嫌以不作為方式幫助詐欺、傷害等罪。

 

 

基亞 重生二部曲­_德必碁(海滄) 葉金川、康照洲站台 (再建基亞IVD成功模式)

基亞廈門檢驗試劑廠 本周營運【聯合晚報╱記者徐睦鈞/台北報導】

2014.11.12 04:47 pm上櫃生技股基亞(3176)今宣布,100%持有的子公司德必碁生物科技(廈門),位於廈門海滄生物醫藥港的檢驗試劑廠,本周開始營運。隨著基亞在檢驗試劑研發上的深耕,該公司董事長張世忠表示,未來在中國大陸的布局,除了感染性疾病外,將逐步擴展至各式體外檢測領域及傳統的抗原抗體檢測、腫瘤基因檢測等個人化醫療,市場範圍將更為寬廣。2014/11/12 聯合晚報】

基亞廈門檢驗試劑廠開始營運2014-11-12 聯合晚報 記者徐睦鈞╱即時報導  上櫃生技股基亞(3176)今宣布,100%持有之子公司德必碁生物科技 (廈門),位於廈門海滄生物醫藥港之檢驗試劑廠,於本周舉行開業典禮,開始營運。現場出席的台灣貴賓包含宣明智、葉金川、康照洲等台灣科技界及醫藥界先進;廈門當地則有福建省及廈門市等當地省市行政、衛生官員、銀行行長等出席。基亞繼2012年出售上海浩源予美國Perkin Elmer公司實現投資獲利後,經過兩年的評估與準備,重新選定廈門海滄區的生物醫藥港,重啟大中華區的生產及銷售布局。隨著基亞在檢驗試劑研發上的深耕,該公司董事長張世忠表示,未來在中國大陸的布局,除了感染性疾病外,將逐步擴展至各式體外檢測領域及傳統的抗原抗體檢測、腫瘤基因檢測等個人化醫療,市場範圍將更為寬廣。張世忠說,廈門海滄特區提供租金補助、研發獎勵、租稅獎勵等多項吸引廠商進駐的優惠條件。基亞生技赴海滄投資計畫於201311月業經投審會核准。

基亞廈門子公司 啟動營運 【經濟日報╱記者黃文奇╱即時報導】2014.11.10 06:48 pm 基亞生技(3176)今日宣布,公司100%持有之子公司德必碁生物科技,位於廈門海滄生物醫藥港之檢驗試劑廠,正式開始營運。基亞今日舉行子公司德必碁開幕典禮,出席者包括宣捷生技董事長宣明智、前衛生署長葉金川、前食品藥物管理局局長康照洲等;另外,大陸出席官員則包含福建省藥監處副處長黃凌鴻、廈門市促投局局長等當地省市行政、衛生官員、銀行行長等。基亞表示,公司繼2012年出售上海浩源予美國Perkin Elmer公司實現投資獲利後,經過兩年的評估與準備,重新選定廈門海滄區的生物醫藥港,重啓大中華區的生產及銷售佈局。隨著基亞在檢驗試劑研發上的深耕,未來在中國大陸的佈局,除了感染性疾病外,將逐步擴展至各式體外檢測領域及傳統的抗原抗體檢測、腫瘤基因檢測等個人化醫療,市場範圍將更為寬廣。此外,廈門海滄特區提供租金補助、研發奬勵、租稅奬勵等多項吸引廠商進駐的優惠條件。2014/11/10 經濟日報】 

 

JAKAVI(捷可衛 Ruxolitinib) 禿頭人 新希望 ?!

Bone marrow drug could treat alopecia  Patients treated for alopecia with ruxolitinib responded well"Alopecia sufferers given new treatment hope with repurposed drug," The Guardian reports. Alopecia is a type of autoimmune condition where the body's own immune cells start to attack the hair follicles for an unknown reason, leading to hair loss. This new research actually involved two phases, one involving mice and one involving humans. The researchers identified the specific type of immune cell (CD8+NKG2D+ T cells) that is involved in this autoimmune process, and identified the signalling pathways that stimulate the activity of these cells. The researchers then demonstrated that using molecular treatments to block these signalling pathways was effective in preventing and reversing the disease process in mice genetically engineered to develop alopecia. These findings in mice were followed by promising results in three people with moderate to severe alopecia. These people were treated with ruxolitinib, which is currently licensed in the UK to treat certain bone marrow disorders. All three patients demonstrated "near-complete hair regrowth" after three to five months of treatment. This promising research is in very early stages. Ruxolitinib has been tested in only three people with alopecia, which is far too small a number to make any solid conclusions about the effectiveness or the safety of this treatment in people with alopecia. The safety and efficacy would need to be tested in many further studies involving larger numbers of people, and it would also need to be tested against other currently used treatments for alopecia, such as steroids.

Where did the story come from? The study was carried out by researchers from Columbia University in New York. The study received various sources of financial support including US Public Health Service National Institutes of Health, the Columbia University Skin Disease Research Center, the Locks of Love Foundation and the Alopecia Areata Initiative. The study was published in the peer-reviewed scientific journal Nature Medicine. The media gives varied reports of this study. The Mail in particular is overly premature, as the current study is a very long way away in terms of research steps before knowing whether there could be a new "standard treatment for the condition". Also, references to a "baldness pill" are potentially misleading as they could lead people to think that this treatment, or similar, would be effective against the most common type of baldness, male pattern baldness.

What kind of research was this? This was a laboratory and mouse study that aimed to examine the cellular processes that cause alopecia and to try and investigate a treatment to reverse the process. Alopecia is a condition where body hair falls out, ranging from just a patch of hair on the head to the entire body hair. It is understood to be a type of autoimmune condition where the body's own immune cells start to attack the hair follicles. Causes are not completely understood, with associations with stress and genetics speculated. Unfortunately, although various treatments may be tried (most commonly corticosteroids) there is currently no cure for alopecia. The autoimmune process is thought to be driven by T lymphocyte cells (a type of white blood cell). Previous laboratory studies in mouse and human models have shown that transfer of T cells can cause the disease. However, effective treatments are said to be limited by a lack of understanding of the key T cell inflammatory pathways in alopecia. The researchers had previously identified a particular subset of T cells (CD8+NKG2D+ T cells) surrounding hair follicles in alopecia, as well as identifying certain signalling molecules that seem to stimulate them. In this study, the researchers aimed to further investigate the role of these specific T cells using a group of mice genetically engineered to spontaneously develop alopecia, and also human skin samples.

What did the research involve? First of all the researchers examined skin biopsies from genetically engineered mice that had developed alopecia to confirm that these specific CD8+NKG2D+ T cells were infiltrating the hair follicles. They confirmed that there was an increase in numbers of these specific T cells, increase in total number of cells, and also noticed that there was an increase in growth of lymph nodes in the skin. They found that the type of T cell infiltrating the skin and infiltrating the lymph nodes was the same. They examined the genetic profile of these T cells from the lymph nodes. They then looked into the role of these specific T cells in disease development by transferring these specific T cells, or overall cells from the lymph nodes, into thus far healthy genetically engineered mice that had not yet developed alopecia. This was in order to confirm that the CD8+NKG2D+ T cells were the dominant cell type involved in the development of the disease and were sufficient to cause the disease. The researchers then examined the gene activity in skin samples from the genetically engineered mice, and from humans with alopecia. They identified several genes that were overexpressed around the areas of alopecia, as well as several signalling molecules that are drivers of this abnormal T cell activity, including interleukins 2 and 15, and interferon gamma. The researchers therefore then wanted to see whether using drug treatments that could block these signalling molecules would prevent disease development. To do this they grafted skin from mice that had developed alopecia on to the backs of mice who had not yet developed the condition. They then tested the effectiveness of drug treatments that can block the signalling molecules to see if they could prevent or reverse the disease. Finally, they followed their results in mice with tests in three people with alopecia. What were the basic results? When currently healthy mice were grafted with the skin of mice who had developed alopecia, 95-100% of them developed alopecia within 6 to 10 weeks. Giving antibodies to neutralise interferon gamma at the time of grafting prevented alopecia development. Giving antibodies to block interleukins 2 and 15 had a similar effect. However, though the researchers could prevent development if given at the same time, none were able to reverse the process if given after alopecia had developed. They then investigated whether they could block other signalling molecules that are involved in the downstream pathway from interferon gamma (called JAK proteins). Ruxolitinib (currently licensed in the UK to treat certain bone marrow disorders) is a molecule that blocks JAK1/2 proteins. Tofacitinib is another molecular treatment (not currently licensed for any condition in the UK) that blocks another (JAK3). When these two treatments were given at the same time the alopecia skin samples were grafted on to the healthy mice, the mice no longer developed alopecia. The researchers then tested whether giving tofacitinib seven weeks after grafting could reverse alopecia. Treatment did result in "substantial hair regrowth" all over the body and reduced numbers of T cells, which persisted for a few months after stopping treatment. They also tested whether these two JAK inhibitor treatments were effective when topically applied (rubbed into the skin on the back) instead of given by mouth, and found that they were, with hair regrowth occurring within 12 weeks. The human tests involved three people with moderate to severe alopecia who were given 20mg of ruxolitinib by mouth twice daily. All three people demonstrated "near-complete hair regrowth" within three to five months of treatment. No information on whether these people developed side effects was provided in the study.

How did the researchers interpret the results? The researchers conclude that their results demonstrate that CD8+NKG2D+ T cells are the dominant cell type involved in the disease process of alopecia. They say that "the clinical response of a small number of patients with alopecia to treatment with the JAK1/2 inhibitor ruxolitinib suggests future clinical evaluation of this compound or other JAK protein inhibitors currently in clinical development is warranted".

Conclusion This is valuable laboratory research that identifies the specific type of immune cell (CD8+NKG2D+ T cells) that is involved in the disease process of alopecia. It further identifies several signalling molecules that are drivers of this T cell activity. The researchers then demonstrate that giving two molecular treatments to block the signalling molecules – ruxolitinib (currently licensed in the UK to treat certain bone marrow disorders) and tofacitinib (not currently licensed for any condition in the UK) – were effective in preventing and reversing the disease process in mice with alopecia. These findings in mice were followed by promising results in three people with moderate to severe alopecia who were treated with ruxolitinib. All three patients demonstrated "near-complete hair regrowth" after three to five months of ruxolitinib treatment. These are promising results into the study of potential treatments for this devastating autoimmune condition, which currently has no cure. However, it is important to realise that this research is in the very early stages. So far ruxolitinib treatment has been tested in only three people with alopecia, which is far too small a number to make any solid conclusions about the effectiveness or the safety of this treatment in people with alopecia. This drug is currently not licensed for use in this condition. It would need to go through many further clinical trial stages in larger numbers of people with alopecia. It would also need to be tested for safety and efficacy against other currently used treatments for alopecia, such as steroids. Overall there is some way to go before we could know whether ruxolitinib holds real promise as a treatment for alopecia.

 

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