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<title cf:type="text"><![CDATA[Progress in Biochemistry and Biophysics -->Academic Discussion]]></title>
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<title xmlns:cf="http://www.microsoft.com/schemas/rss/core/2005" cf:type="text"><![CDATA[化学进化和生命起源——简谈《模拟实验》及其在生命起源研究中的地位]]></title>
<link><![CDATA[http://www.pibb.ac.cn/pibben/article/abstract/19770512]]></link>
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<pubDate></pubDate>
<category><![CDATA[Academic Discussion]]></category>
<author><![CDATA[静国忠]]></author>
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<atom:name>静国忠</atom:name>
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<guid><![CDATA[http://www.pibb.ac.cn/pibben/article/abstract/19770512]]></guid><cfi:id>6</cfi:id><cfi:read>true</cfi:read></item>
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<title xmlns:cf="http://www.microsoft.com/schemas/rss/core/2005" cf:type="text"><![CDATA[有关Mitchell化学渗透假说的一些争议]]></title>
<link><![CDATA[http://www.pibb.ac.cn/pibben/article/abstract/19850201]]></link>
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<pubDate></pubDate>
<category><![CDATA[Academic Discussion]]></category>
<author><![CDATA[杨福愉]]></author>
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<atom:name>杨福愉</atom:name>
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<title xmlns:cf="http://www.microsoft.com/schemas/rss/core/2005" cf:type="text"><![CDATA[How are the Prospects for Xenotransplantation?]]></title>
<link><![CDATA[http://www.pibb.ac.cn/pibben/article/abstract/20010437]]></link>
<description xmlns:cf="http://www.microsoft.com/schemas/rss/core/2005" cf:type="html"><![CDATA[There are two major hurdles on the way of xenotransplantation entering the clinic. The first is the technical issue of being able to overcome the human immune response that leads to rejection of transplanted organs from other species. The second concerns the potential risk of inadvertent transfer of animal viruses such as the much discussed porcine endogenous retroviruses (PERV) which might cross the species barrier and cause disease in human hosts. Many closely monitored clinical trials are needed as an approach to assess the safety and efficacy of using porcine cells, tissues, or organs therapeutically in humans.]]></description>
<pubDate></pubDate>
<category><![CDATA[Academic Discussion]]></category>
<author><![CDATA[CHEN Qiu and QIAN Kai-Xian]]></author>
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<atom:name>CHEN Qiu and QIAN Kai-Xian</atom:name>
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<title xmlns:cf="http://www.microsoft.com/schemas/rss/core/2005" cf:type="text"><![CDATA[Irreversible Thermodynamic Theory for Protein Folding and Protein Thermodynamic Structures]]></title>
<link><![CDATA[http://www.pibb.ac.cn/pibben/article/abstract/20010336]]></link>
<description xmlns:cf="http://www.microsoft.com/schemas/rss/core/2005" cf:type="html"><![CDATA[The interpretation of protein physical properties at the most fundamental mechanistic and thermodynamic level plays a key role in physical and molecular understanding of biology. The protein thermodynamic structure (potherse) is generated through irreversible thermodynamic possesses. Protein folding is a specific physical mechanism for the origin of natural order. It was shown that pothersal change is the basic (molecular) thermodynamic unit of any physiological reaction which acts as a molecular switch. The Weiss equation is re-derived using protein mechanics theory. Some protein physical properties are also discussed.]]></description>
<pubDate></pubDate>
<category><![CDATA[Academic Discussion]]></category>
<author><![CDATA[ZHAO Qin-Yi]]></author>
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<atom:name>ZHAO Qin-Yi</atom:name>
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<title xmlns:cf="http://www.microsoft.com/schemas/rss/core/2005" cf:type="text"><![CDATA[Properties of Electron Transfer in Cytochrome c Oxidase Thin Solid Film and Erasable Byte Nanostorage]]></title>
<link><![CDATA[http://www.pibb.ac.cn/pibben/article/abstract/20020334]]></link>
<description xmlns:cf="http://www.microsoft.com/schemas/rss/core/2005" cf:type="html"><![CDATA[Activity of electron transfer in cytochrome c oxidase remains in its thin solid film. The characteristic metal active sites and their structural cycle during catalytic reaction, characteristic spectra, physical electron donor or donor-physically controlled, and switch property, which make the oxidase a candidate for study of molecular electronics and design of nanodevices, for example, erasable byte nanostorage.]]></description>
<pubDate></pubDate>
<category><![CDATA[Academic Discussion]]></category>
<author><![CDATA[WANG Ao-Jin and XU Jian-Xing]]></author>
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<atom:name>WANG Ao-Jin and XU Jian-Xing</atom:name>
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<title xmlns:cf="http://www.microsoft.com/schemas/rss/core/2005" cf:type="text"><![CDATA[Terms Related to The Study of Biomacromolecular Condensates]]></title>
<link><![CDATA[http://www.pibb.ac.cn/pibben/article/abstract/20240537]]></link>
<description xmlns:cf="http://www.microsoft.com/schemas/rss/core/2005" cf:type="html"><![CDATA[Biomolecular condensates are formed through phase separation of biomacromolecules such as proteins and RNAs. These condensates exhibit liquid-like properties that can futher transition into more stable material states. They form complex internal structures <i>via</i> multivalent weak interactions, enabling precise spatiotemporal regulations. However, the use of inconsistent and non-standardized terminology has become increasingly problematic, hindering academic exchange and the dissemination of scientific knowledge. Therefore, it is necessary to discuss the terminology related to biomolecular condensates in order to clarify concepts, promote interdisciplinary cooperation, enhance research efficiency, and support the healthy development of this field.]]></description>
<pubDate>2025/3/21 16:10:35</pubDate>
<category><![CDATA[Academic Discussion]]></category>
<author><![CDATA[RUAN Ke,FANG Xiao-Feng,LI Dan,LI Pi-Long,LIN Yi,WANG Zheng,SHI Yun-Yu,ZHANG Ming-Jie,ZHANG Hong and LIU Cong]]></author>
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<atom:name>RUAN Ke,FANG Xiao-Feng,LI Dan,LI Pi-Long,LIN Yi,WANG Zheng,SHI Yun-Yu,ZHANG Ming-Jie,ZHANG Hong and LIU Cong</atom:name>
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