基于減毒和滅活病毒的疫苗
病毒疫苗包括滅活的病毒疫苗和減毒活病毒疫苗。這兩種疫苗均依賴于傳統(tǒng)的方法生產(chǎn),即該致病病毒已經(jīng)被發(fā)現(xiàn)并在生物反應(yīng)器中進(jìn)行了生產(chǎn)及純化。這種類型的策略已經(jīng)成功用于預(yù)防多種疾病,目前大多數(shù)預(yù)防病毒性疾病的疫苗均使用該策略生產(chǎn)。然而,該方法也有它需要克服的挑戰(zhàn):?
- ??? 確保病毒能夠在生物反應(yīng)器中生產(chǎn)
- ??? 尋找到正確的宿主細(xì)胞
- ??? 設(shè)計對每種疾病定制工藝
- ??? 符合高生物安全水平下的生產(chǎn)要求,以保護(hù)操作員和環(huán)境
我們,賽多利斯,理解疫苗研發(fā)者以及病毒疫苗生產(chǎn)者的需求,并已經(jīng)開發(fā)了專門的解決方案工具箱。
滅活病毒疫苗
滅活病毒疫苗在疫苗市場中占有重要的地位,其中以流感和脊髓灰質(zhì)炎疫苗為主。除了新疫苗開發(fā),工藝轉(zhuǎn)移、產(chǎn)能擴大和連續(xù)改善也能在這一領(lǐng)域帶來積極的改變,采用技術(shù)開發(fā)更安全、更高效的工藝,有助于降低總體成本。
我們邀請您發(fā)現(xiàn)賽多利斯專用于滅活病毒疫苗生產(chǎn)和純化的技術(shù)工具箱。在您探索包膜病毒(例如SARS-CoV-2)、非包膜病毒和特定病毒(例如流感和脊髓灰質(zhì)炎疫苗)的通用工藝概覽時,您可點擊每個步驟查看制造商在滅活病毒疫苗工作中面臨的挑戰(zhàn)——并發(fā)現(xiàn)賽多利斯如何提供獨特的解決方案來滿足這些需求。您還將看到有關(guān)工藝步驟可用技術(shù)的相關(guān)文獻(xiàn)。
通用滅活病毒
細(xì)胞系/菌株選擇?
種子擴增
病毒增殖
澄清
生物負(fù)載減低
濃縮/透析
病毒捕獲層析
精純層析
滅活/裂解
濃縮/透析
除菌過濾
其他技術(shù)
病毒定量,即在規(guī)定體積內(nèi)測量病毒顆粒濃度,是開發(fā)病毒載體時所需要的寶貴信息,要求盡可能地實現(xiàn)實時測量?,F(xiàn)有的技術(shù)均有局限性,因此需要采用互補性的新技術(shù)來確??焖偾覝?zhǔn)確的定量。
Need | Solution |
---|---|
Virus infectivity tests can take days or weeks to get results – rapid detection analytics are needed to address that critical issue ELISA and PCR methods are faster than infectivity tests, but there is a higher incidence of error variability since they measure virus building blocks and derive total titers from these numbers, leading to a need for alternative, reliable analytics Situations often demand ready-to-use analytics, but ELISA and PCR need development and validation time to ensure method robustness A lot of virus samples are generated during process development and manufacturing of viral based vaccines, highlighting the need for an easier workflow allowing rapid quantification of virus samples | The Virus Counter? Platform, a unique and rapid virus quantification method, is the only system able to directly quantify assembled viruses (protein and nucleic acids) for real-time insight
|
先進(jìn)的化學(xué)計量學(xué)方法,例如實驗設(shè)計(DOE)和多變量數(shù)據(jù)分析(MVDA),最大限度可視化數(shù)據(jù),不僅能節(jié)約成本外,同時還能提高工藝的可靠性和穩(wěn)健性。
需求 | 解決方案 |
---|---|
質(zhì)量源于設(shè)計(QbD)依賴于DoE來了解關(guān)鍵工藝參數(shù),而后者取決于很多實驗的實施——這個工具可幫助設(shè)計和規(guī)劃實驗,以幫助減輕負(fù)擔(dān) 工藝分析技術(shù)產(chǎn)生了大量難以分析的數(shù)據(jù),因此對評價歷史數(shù)據(jù)的工具的需求巨大,以便識別相關(guān)性、進(jìn)行故障排除并獲得工藝?yán)斫? ? 大多數(shù)疫苗開發(fā)商和制造商并不是統(tǒng)計學(xué)家,而是依賴于用戶友好型界面和軟件 | Umetrics?套件包括三種為工藝開發(fā)人員和制造商設(shè)計的用戶友好型直觀軟件解決方案,以支持獨特的數(shù)據(jù)可視化、廣泛的向?qū)Чδ芎涂啥ㄖ评L圖期間的數(shù)據(jù)分析,從而最大限度地提高可用性和多功能性
These software solutions are fully integrated in most Sartorius systems and are available as stand-alone programs |
采用日益發(fā)展且集成一次性傳感器的一次性技術(shù),不僅能實時收集和分析數(shù)據(jù),還能提高工藝效率、降低污染風(fēng)險、提高操作人員的安全性并提高總體產(chǎn)品產(chǎn)量。
需求 | 解決方案 |
---|---|
Vaccine manufacturers want to better understand and control their processes, which are very complex and highly regulated, but to do so requires real-time measurement of critical process parameters to allow process monitoring, set-point control (feed control and bleed control), event time point predictions (harvest and infection) and timely identification of process deviations ? A range of PAT sensors would be required to effectively apply QbD principles and ensure consistency in product quality and quantity, quickly identifying and correcting process deviations to reduce the risk of lost batches The ability to integrate PAT into single-use systems would mitigate risk of spillages and contamination during sampling | BioPAT? toolbox, an expending range of fully qualified single-use sensors, are integrated across the Sartorius portfolio making Sartorius the market leader for PAT
|
Application Data:
減毒活病毒疫苗
由于分子生物學(xué)和基因工程領(lǐng)域的快速發(fā)展,新一代的減毒活病毒疫苗也即將問世。針對流感等病毒的疫苗,以及登革熱或呼吸道合胞病毒(RSV)等較新的應(yīng)用,都在這一前景廣闊的研究領(lǐng)域范圍內(nèi)??焖侔l(fā)展領(lǐng)域通常需要創(chuàng)新技術(shù)來跟上新的工藝,以不斷提高安全性和生產(chǎn)率。?
我們邀請您發(fā)現(xiàn)賽多利斯專用于滅活病毒疫苗生產(chǎn)和純化的技術(shù)工具箱。在您探索包膜病毒(例如SARS-CoV-2)、非包膜病毒和特定病毒(例如流感和脊髓灰質(zhì)炎疫苗)的通用工藝概覽時,您可點擊每個步驟查看制造商在滅活病毒疫苗工作中面臨的挑戰(zhàn)——并發(fā)現(xiàn)賽多利斯如何提供獨特的解決方案來滿足這些需求。您還將看到有關(guān)工藝步驟可用技術(shù)的相關(guān)文獻(xiàn)。
通用減毒病毒
細(xì)胞系/菌株選擇?
種子擴增
病毒增殖
澄清
生物負(fù)載減低
濃縮/透析
病毒捕獲層析
精純層析
濃縮/透析
除菌過濾
其他技術(shù)
病毒定量,即在規(guī)定體積內(nèi)測量病毒顆粒濃度,是開發(fā)病毒載體時所需要的寶貴信息,要求盡可能地實現(xiàn)實時測量?,F(xiàn)有的技術(shù)均有局限性,因此需要采用互補性的新技術(shù)來確保快速且準(zhǔn)確的定量。
Need | Solution |
---|---|
Virus infectivity tests can take days or weeks to get results – rapid detection analytics are needed to address that critical issue ELISA and PCR methods are faster than infectivity tests, but there is a higher incidence of error variability since they measure virus building blocks and derive total titers from these numbers, leading to a need for alternative, reliable analytics Situations often demand ready-to-use analytics, but ELISA and PCR need development and validation time to ensure method robustness A lot of virus samples are generated during process development and manufacturing of viral based vaccines, highlighting the need for an easier workflow allowing rapid quantification of virus samples | The Virus Counter? Platform, a unique and rapid virus quantification method, is the only system able to directly quantify assembled viruses (protein and nucleic acids) for real-time insight
|
先進(jìn)的化學(xué)計量學(xué)方法,例如實驗設(shè)計(DOE)和多變量數(shù)據(jù)分析(MVDA),最大限度可視化數(shù)據(jù),不僅能節(jié)約成本外,同時還能提高工藝的可靠性和穩(wěn)健性。
需求 | 解決方案 |
---|---|
質(zhì)量源于設(shè)計(QbD)依賴于DoE來了解關(guān)鍵工藝參數(shù),而后者取決于很多實驗的實施——這個工具可幫助設(shè)計和規(guī)劃實驗,以幫助減輕負(fù)擔(dān) 工藝分析技術(shù)產(chǎn)生了大量難以分析的數(shù)據(jù),因此對評價歷史數(shù)據(jù)的工具的需求巨大,以便識別相關(guān)性、進(jìn)行故障排除并獲得工藝?yán)斫? ? 大多數(shù)疫苗開發(fā)商和制造商并不是統(tǒng)計學(xué)家,而是依賴于用戶友好型界面和軟件 | Umetrics?套件包括三種為工藝開發(fā)人員和制造商設(shè)計的用戶友好型直觀軟件解決方案,以支持獨特的數(shù)據(jù)可視化、廣泛的向?qū)Чδ芎涂啥ㄖ评L圖期間的數(shù)據(jù)分析,從而最大限度地提高可用性和多功能性
These software solutions are fully integrated in most Sartorius systems and are available as stand-alone programs |
采用日益發(fā)展且集成一次性傳感器的一次性技術(shù),不僅能實時收集和分析數(shù)據(jù),還能提高工藝效率、降低污染風(fēng)險、提高操作人員的安全性并提高總體產(chǎn)品產(chǎn)量。
需求 | 解決方案 |
---|---|
Vaccine manufacturers want to better understand and control their processes, which are very complex and highly regulated, but to do so requires real-time measurement of critical process parameters to allow process monitoring, set-point control (feed control and bleed control), event time point predictions (harvest and infection) and timely identification of process deviations ? A range of PAT sensors would be required to effectively apply QbD principles and ensure consistency in product quality and quantity, quickly identifying and correcting process deviations to reduce the risk of lost batches The ability to integrate PAT into single-use systems would mitigate risk of spillages and contamination during sampling | BioPAT? toolbox, an expending range of fully qualified single-use sensors, are integrated across the Sartorius portfolio making Sartorius the market leader for PAT
|
Application Data: