Mobilization of intracellular Ca2+ stores is involved inmany diverse cell functions, including: cell proliferation;differentiation; fertilization; muscle contraction; secre-tion of neurotransmitters, hormones and enzy...Mobilization of intracellular Ca2+ stores is involved inmany diverse cell functions, including: cell proliferation;differentiation; fertilization; muscle contraction; secre-tion of neurotransmitters, hormones and enzymes;and lymphocyte activation and proliferation. Cyclic ad-enosine diphosphate ribose(cADPR) is an endogenousCa2+ mobilizing nucleotide present in many cell typesand species, from plants to animals. cADPR is formedby ADP-ribosyl cyclases from nicotinamide adenine di-nucleotide. The main ADP-ribosyl cyclase in mammalsis CD38, a multi-functional enzyme and a type Ⅱ mem-brane protein. It has been shown that many extracel-lular stimuli can induce cADPR production that leadsto calcium release or influx, establishing cADPR as asecond messenger. cADPR has been linked to a widevariety of cellular processes, but the molecular mecha-nisms regarding cADPR signaling remain elusive. Theaim of this review is to summarize the CD38/cADPR/Ca2+ signaling pathway, focusing on the recent advanc-es involving the mechanism and physiological functionsof cADPR-mediated Ca2+ mobilization.展开更多
The electrochemical behavior of the adenosine5diphosphate(ADP) was studied in 005 molL-1 MES buffer solution(pH 585) at mercury electrode. There are no reduction and oxidation waves for the adenosine5diphosphate in th...The electrochemical behavior of the adenosine5diphosphate(ADP) was studied in 005 molL-1 MES buffer solution(pH 585) at mercury electrode. There are no reduction and oxidation waves for the adenosine5diphosphate in the range of -04-14 V(vs. Ag/AgCl). In a mixture solution of Eu3+ and ADP(Eu3+ADP=14), a reduction peak is obtained at -078 V. Comparing with the cyclic voltammograms of Eu3+ ions under the same experimental conditions, it is found that the complex of Eu3+ADP can be produced in above solutions between Eu3+ion and ADP. The complex is strongly adsorbed at mercury electrode and has the following electrode reaction mechanism: Eu3++ADPEu3+ADP+e-Eu2+-ADP.展开更多
The development of colorectal cancer(CRC)can result from changes in a variety of cellular systems within the tumor microenvironment.Particularly,it is primarily associated with genomic instability that is the gradual ...The development of colorectal cancer(CRC)can result from changes in a variety of cellular systems within the tumor microenvironment.Particularly,it is primarily associated with genomic instability that is the gradual accumulation of genetic and epigenetic changes consisting of a characteristic set of mutations crucial for pathways in CRC progression.Based on this background,the potential to focus on poly[adenosine diphosphate(ADP)-ribose]polymerase(PARP)-1 and poly-ADP ribosylation(PARylation)as the main causes of malignant formation of CRC may be considered.One of the important functions of PARP-1 and PARylation is its deoxyribonucleic acid(DNA)repair function,which plays a pivotal role in the DNA damage response and prevention of DNA damage maintaining the redox homeostasis involved in the regulation of oxidation and superoxide.PARP-1 and PARylation can also alter epigenetic markers and chromatin structure involved in transcriptional regulation for the oncogenes or tumor suppressor genes by remodeling histone and chromatin enzymes.Given the high importance of these processes in CRC,it can be considered that PARP-1 and PARylation are at the forefront of the pathological changes required for CRC progression.Therefore,this review addresses the current molecular biological features for understanding the multifactorial function of PARP-1 and PARylation in CRC related to the aforementioned roles;furthermore,it presents a summary of recent approaches with PARP-1 inhibition in non-clinical and clinical studies targeting CRC.This understanding could help embrace the importance of targeting PARP-1 and PARylation in the treatment of CRC,which may present the potential to identify various research topics that can be challenged both nonclinically and clinically.展开更多
Turbidimetry and radioimmunoassay were used to study the effects of procainamide (PA ) onadenosine diphosphate (ADP)-induced rabbit platelet aggregation and thromboxane B2 (TXB2) production invitro. PA 8. 5--544. 0 μ...Turbidimetry and radioimmunoassay were used to study the effects of procainamide (PA ) onadenosine diphosphate (ADP)-induced rabbit platelet aggregation and thromboxane B2 (TXB2) production invitro. PA 8. 5--544. 0 μmol L-1 inhibited ADP-induced platelet aggregation and TXB2 production, and theinhibition rates were 26. 7% -- 66. 7 % and 21. 4 % -- 70. 1 %, respectively. There was positive correlation between PA concentration and its efficiency in inhibiting the platelet aggregation and TXB2 production, and alsobetween the inhibition rates of platelet aggregation and that of TXB2 production. The three linear equationsand main parameters were The results indicate that PA could significantly inhibit ADP--induced platelet aggregation and TXB2 production in rabbits.展开更多
目的:系统评价PARPi治疗转移性去势抵抗性前列腺癌(mCRPC)的有效性及安全性,以期为临床决策供循证医学证据。方法:依据纳入和排除标准,网络检索2015年1月~2023年6月PubMed、Web of Science、Embace、Clinicial.gov中有关PARPi治疗mCRPC...目的:系统评价PARPi治疗转移性去势抵抗性前列腺癌(mCRPC)的有效性及安全性,以期为临床决策供循证医学证据。方法:依据纳入和排除标准,网络检索2015年1月~2023年6月PubMed、Web of Science、Embace、Clinicial.gov中有关PARPi治疗mCRPC的随机对照试验文献,使用RevMan5.4及Stata17.0软件对数据进行Meta分析。结果:纳入7篇随机对照试验文献,共1888例患者。Meta分析结果表明,与非PARPi组比较,PARPi组(PARPi联合或不联合抗激素治疗)可提高mCRPC的放射学无进展生存期(HR=0.52,95%CI=0.34~0.78)和总生存期(HR=0.72,95%CI=0.60~0.86),差异均有统计学意义(P<0.05)。在安全性方面,PARPi组1~2级骨痛、背痛、贫血、中性粒细胞减少、恶心、呕吐、腹泻、乏力不良反应发生率明显高于非PARPi组,差异均有统计学意义(P<0.05);≥3级上述不良反应中与非PARPi组比较,PARPi组中只有恶心和贫血不良反应发生率较高,差异均有统计学意义(P<0.05),而骨痛、背痛、中性粒细胞减少、呕吐、腹泻、乏力两组间比较差异均无统计学意义(P>0.05)。结论:与非PARPi比较,PARPi联合或不联合抗激素治疗可提高mCRPC的放射学无进展生存期和总生存期,3级及以上不良反应发生率低,值得在临床上推广应用。展开更多
基金Supported by Research Grant Council grants,No.782709M,No.785911M,No.769912M and No.785213M
文摘Mobilization of intracellular Ca2+ stores is involved inmany diverse cell functions, including: cell proliferation;differentiation; fertilization; muscle contraction; secre-tion of neurotransmitters, hormones and enzymes;and lymphocyte activation and proliferation. Cyclic ad-enosine diphosphate ribose(cADPR) is an endogenousCa2+ mobilizing nucleotide present in many cell typesand species, from plants to animals. cADPR is formedby ADP-ribosyl cyclases from nicotinamide adenine di-nucleotide. The main ADP-ribosyl cyclase in mammalsis CD38, a multi-functional enzyme and a type Ⅱ mem-brane protein. It has been shown that many extracel-lular stimuli can induce cADPR production that leadsto calcium release or influx, establishing cADPR as asecond messenger. cADPR has been linked to a widevariety of cellular processes, but the molecular mecha-nisms regarding cADPR signaling remain elusive. Theaim of this review is to summarize the CD38/cADPR/Ca2+ signaling pathway, focusing on the recent advanc-es involving the mechanism and physiological functionsof cADPR-mediated Ca2+ mobilization.
文摘The electrochemical behavior of the adenosine5diphosphate(ADP) was studied in 005 molL-1 MES buffer solution(pH 585) at mercury electrode. There are no reduction and oxidation waves for the adenosine5diphosphate in the range of -04-14 V(vs. Ag/AgCl). In a mixture solution of Eu3+ and ADP(Eu3+ADP=14), a reduction peak is obtained at -078 V. Comparing with the cyclic voltammograms of Eu3+ ions under the same experimental conditions, it is found that the complex of Eu3+ADP can be produced in above solutions between Eu3+ion and ADP. The complex is strongly adsorbed at mercury electrode and has the following electrode reaction mechanism: Eu3++ADPEu3+ADP+e-Eu2+-ADP.
文摘The development of colorectal cancer(CRC)can result from changes in a variety of cellular systems within the tumor microenvironment.Particularly,it is primarily associated with genomic instability that is the gradual accumulation of genetic and epigenetic changes consisting of a characteristic set of mutations crucial for pathways in CRC progression.Based on this background,the potential to focus on poly[adenosine diphosphate(ADP)-ribose]polymerase(PARP)-1 and poly-ADP ribosylation(PARylation)as the main causes of malignant formation of CRC may be considered.One of the important functions of PARP-1 and PARylation is its deoxyribonucleic acid(DNA)repair function,which plays a pivotal role in the DNA damage response and prevention of DNA damage maintaining the redox homeostasis involved in the regulation of oxidation and superoxide.PARP-1 and PARylation can also alter epigenetic markers and chromatin structure involved in transcriptional regulation for the oncogenes or tumor suppressor genes by remodeling histone and chromatin enzymes.Given the high importance of these processes in CRC,it can be considered that PARP-1 and PARylation are at the forefront of the pathological changes required for CRC progression.Therefore,this review addresses the current molecular biological features for understanding the multifactorial function of PARP-1 and PARylation in CRC related to the aforementioned roles;furthermore,it presents a summary of recent approaches with PARP-1 inhibition in non-clinical and clinical studies targeting CRC.This understanding could help embrace the importance of targeting PARP-1 and PARylation in the treatment of CRC,which may present the potential to identify various research topics that can be challenged both nonclinically and clinically.
文摘Turbidimetry and radioimmunoassay were used to study the effects of procainamide (PA ) onadenosine diphosphate (ADP)-induced rabbit platelet aggregation and thromboxane B2 (TXB2) production invitro. PA 8. 5--544. 0 μmol L-1 inhibited ADP-induced platelet aggregation and TXB2 production, and theinhibition rates were 26. 7% -- 66. 7 % and 21. 4 % -- 70. 1 %, respectively. There was positive correlation between PA concentration and its efficiency in inhibiting the platelet aggregation and TXB2 production, and alsobetween the inhibition rates of platelet aggregation and that of TXB2 production. The three linear equationsand main parameters were The results indicate that PA could significantly inhibit ADP--induced platelet aggregation and TXB2 production in rabbits.
文摘目的:系统评价PARPi治疗转移性去势抵抗性前列腺癌(mCRPC)的有效性及安全性,以期为临床决策供循证医学证据。方法:依据纳入和排除标准,网络检索2015年1月~2023年6月PubMed、Web of Science、Embace、Clinicial.gov中有关PARPi治疗mCRPC的随机对照试验文献,使用RevMan5.4及Stata17.0软件对数据进行Meta分析。结果:纳入7篇随机对照试验文献,共1888例患者。Meta分析结果表明,与非PARPi组比较,PARPi组(PARPi联合或不联合抗激素治疗)可提高mCRPC的放射学无进展生存期(HR=0.52,95%CI=0.34~0.78)和总生存期(HR=0.72,95%CI=0.60~0.86),差异均有统计学意义(P<0.05)。在安全性方面,PARPi组1~2级骨痛、背痛、贫血、中性粒细胞减少、恶心、呕吐、腹泻、乏力不良反应发生率明显高于非PARPi组,差异均有统计学意义(P<0.05);≥3级上述不良反应中与非PARPi组比较,PARPi组中只有恶心和贫血不良反应发生率较高,差异均有统计学意义(P<0.05),而骨痛、背痛、中性粒细胞减少、呕吐、腹泻、乏力两组间比较差异均无统计学意义(P>0.05)。结论:与非PARPi比较,PARPi联合或不联合抗激素治疗可提高mCRPC的放射学无进展生存期和总生存期,3级及以上不良反应发生率低,值得在临床上推广应用。