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干細(xì)胞有望無(wú)限造血,再也不需要獻(xiàn)血了?

所屬教程:科學(xué)前沿

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2017年05月23日

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日前美國(guó)科學(xué)家宣布成功生產(chǎn)出造血干細(xì)胞,未來(lái)有望利用人體細(xì)胞無(wú)限造血,可能不再需要獻(xiàn)血者了。
干細(xì)胞有望無(wú)限造血,再也不需要獻(xiàn)血了?

Blood donors may no longer be needed in the future after scientists showed it was possible to create blood from stem cells.

科學(xué)家們表明干細(xì)胞有望用于造血,未來(lái)可能不再需要獻(xiàn)血者。

The 20 year project could pave the way for an unlimited number of blood and immune cells for transplants, simply by reprogramming a patient’s own skin cells.

這項(xiàng)研究持續(xù)了20年,為將來(lái)只需改造患者自身的皮膚細(xì)胞就可以獲得移植手術(shù)所需的無(wú)限量血液和免疫細(xì)胞做好了準(zhǔn)備。

The research, reported in the journal Nature, holds out enormous promise for developing personalised treatments for blood disorders, drug-screening and reducing shortages of donated blood.

該研究發(fā)表于《自然》期刊,在為血液疾病提供個(gè)性化治療、藥物篩選和緩解捐獻(xiàn)血液短缺等方面具有重要意義。

Dr Ryohichi Sugimura, of Boston Children's Hospital, said: "This gives us the potential to have a limitless supply of blood stem cells and blood by taking cells from universal donors. This could potentially augment the blood supply for patients who need transfusions.

波士頓兒童醫(yī)院的杉樹(shù)遼一博士表示:“這為我們從萬(wàn)能供血者身上獲取細(xì)胞來(lái)提供無(wú)限造血干細(xì)胞和血液提供了可能,有望進(jìn)一步滿足患者的輸血要求。

“This step opens up an opportunity to take cells from patients with genetic blood disorders, use gene editing to correct their genetic defect and make functional blood cells.”

“這項(xiàng)進(jìn)展為我們提供了機(jī)會(huì),可以從遺傳性血液病患者身上獲取細(xì)胞,然后使用基因編輯技術(shù)來(lái)糾正遺傳缺陷并產(chǎn)生功能性血細(xì)胞。”

For patients receiving treatment for cancer, blood disorders, after accidents or during surgery, or new mums who lose blood in childbirth, blood is an absolutely essential part of healthcare.

對(duì)于接受癌癥治療、血液疾病治療、意外事故創(chuàng)傷治療、接受手術(shù)的患者,或分娩時(shí)失血的母親,血液在醫(yī)療服務(wù)中絕對(duì)是必不可少的部分。

But NHS Blood and Transplant - the service which collects, tests and processes blood for hospitals across England -says that while hospitals have the blood needed to treat patients there is a need for more new donors.

但英國(guó)國(guó)家醫(yī)療服務(wù)體系血液和移植部表示,即使醫(yī)院擁有治療患者所需的血液,仍需要更多的獻(xiàn)血者。該部門(mén)為全英國(guó)的醫(yī)院提供收集、測(cè)試和處理血液的服務(wù)。

In England the number of people becoming donors and giving blood for the first time dropped 24.4 percent in 2015 compared to 2005.

與2005年相比,英國(guó)2015年首次獻(xiàn)血的人數(shù)下降了24.4%。

干細(xì)胞有望無(wú)限造血,再也不需要獻(xiàn)血了?

Since human embryonic stem cells were isolated in 1998, scientists have been trying with little success to use them to make blood-forming stem cells.

自1998年成功分離人類(lèi)胚胎干細(xì)胞后,科學(xué)家一直在嘗試使用它們來(lái)生成造血干細(xì)胞,但進(jìn)展一直不大。

In the new research, the Boston team started with embryonic stem cells and exposed them to a chemical soup which triggered their transformation into a tissue which eventually makes blood stem cells.

在這項(xiàng)新研究中,波士頓團(tuán)隊(duì)首先使用胚胎干細(xì)胞,并將其暴露于化學(xué)試劑中,從而將其轉(zhuǎn)化為最終能夠產(chǎn)生血液干細(xì)胞的組織。

When the tissue was transplanted in mice, new blood cells were created in the animals.

將該組織移植到小鼠體內(nèi)后,小鼠體內(nèi)產(chǎn)生了新的血細(xì)胞。

"This work is the culmination of over 20 years of striving,” said Dr George Daley, who heads a research lab in Boston Children's Hospital's Stem Cell Program and is dean of Harvard Medical School.

波士頓兒童醫(yī)院干細(xì)胞計(jì)劃的研究實(shí)驗(yàn)室負(fù)責(zé)人喬治•達(dá)利博士說(shuō):“這項(xiàng)工作是二十多年努力成果的凝縮。”喬治•達(dá)利博士還是哈佛醫(yī)學(xué)院的院長(zhǎng)。

"We're tantalizingly close to generating bona fide human blood stem cells in a dish."

“離在實(shí)驗(yàn)室中制造出真正人類(lèi)血液干細(xì)胞的目標(biāo)越來(lái)越近,我們感到既心急又激動(dòng)。”

Another team also writing in Nature succeeded in making blood cells using a different technique.

另一個(gè)在《自然》期刊中發(fā)表論文的研究團(tuán)隊(duì)使用另一種方法成功制造出血細(xì)胞。

The scientists, led by Dr Shahin Rafii, from Weill Cornell Medicine in New York City, converted cells lining blood vessels into immature blood stem cells, which then finished developing after being transplanted onto a layer of umbilical cord tissue.

由紐約市威爾康奈爾醫(yī)學(xué)院的沙欣•拉非博士領(lǐng)導(dǎo)的科學(xué)家團(tuán)隊(duì)將血管內(nèi)膜細(xì)胞轉(zhuǎn)化為未成熟的血液干細(xì)胞,然后將其移植到臍帶組織層上完成發(fā)育過(guò)程。
 


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