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RNAi therapy has undergone two stages of development, direct injection of synthetic siRNAs and delivery with artificial vehicles or conjugated ligands; both have not solved the problem of efficient in vivo siRNA delivery. Here, we present a proof-of-principle strategy that reprogrammes host liver with genetic circuits to direct the synthesis and self-assembly of siRNAs into secretory exosomes and facilitate the in vivo delivery of siRNAs through circulating exosomes. By combination of different genetic circuit modules, in vivo assembled siRNAs are systematically distributed to multiple tissues or targeted to specific tissues (e.g., brain), inducing potent target gene silencing in these tissues. The therapeutic value of our strategy is demonstrated by programmed silencing of critical targets associated with various diseases, including EGFR/KRAS in lung cancer, EGFR/TNC in glioblastoma and PTP1B in obesity. Overall, our strategy represents a next generation RNAi therapeutics, which makes RNAi therapy feasible.Subject terms: RNAi, siRNAs  相似文献   
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Conjugation by UDP-Glucuronosyltransferase (UGT) is the major pathway of androgen metabolism and elimination in the human. High concentrations of glucuronide conjugates of androsterone (ADT) and androstane-3alpha,17beta-diol (3alpha-diol) are present in circulation and several studies over the last 30 years have concluded that the serum levels of these metabolites might reflect the androgen metabolism in several tissues, including the liver and androgen target tissues. Three UGT2B enzymes are responsible for the conjugation of DHT and its metabolites ADT and 3alpha-diol: UGT2B7, B15 and B17. UGT2B7 is expressed in the liver and skin whereas UGT2B15 and B17 were found in the liver, prostate and skin. Very specific antibodies against each UGT2B enzyme have been obtained and used for immunohistochemical studies in the human prostate. It was shown that UGT2B17 is expressed in basal cells whereas UGT2B15 is only localized in luminal cells, where it inactivates DHT. By using LNCaP cells, we have also demonstrated that the expression and activity of UGT2B15 and B17 are modulated by several endogenous prostate factors including androgen. Finally, to study the physiological role of UGT2B enzymes, transgenic mice bearing the human UGT2B15 gene were recently obtained. A decrease in reproductive tissue weight from transgenic animals compared to those from control animals was observed. In conclusion, the conjugation by UGT2B7, B15 and B17, which represents a non-reversible step in androgen metabolism, is an important means by which androgens are regulated locally. It is also postulated that UGT enzymes protect the tissue from deleteriously high concentrations of active androgen.  相似文献   
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Alveolar epithelial cell (AEC) necroptosis is critical to disrupt the alveolar barrier and provoke acute lung injury (ALI). Here, we define calcitonin gene-related peptide (CGRP), the most abundant endogenous neuropeptide in the lung, as a novel modulator of AEC necroptosis in lipopolysaccharide (LPS)-induced ALI. Upon LPS-induced ALI, overexpression of Cgrp significantly mitigates the inflammatory response, alleviates lung tissue damage, and decreases AEC necroptosis. Similarly, CGRP alleviated AEC necroptosis under the LPS challenge in vitro. Previously, we identified that long optic atrophy 1 (L-OPA1) deficiency mediates mitochondrial fragmentation, leading to AEC necroptosis. In this study, we discovered that CGRP positively regulated mitochondrial fusion through stabilizing L-OPA1. Mechanistically, we elucidate that CGRP activates AMP-activated protein kinase (AMPK). Furthermore, the blockade of AMPK compromised the protective effect of CGRP against AEC necroptosis following the LPS challenge. Our study suggests that CRGP-mediated activation of the AMPK/L-OPA1 axis may have potent therapeutic benefits for patients with ALI or other diseases with necroptosis.  相似文献   
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Inorganic mercury ion (Hg2+) has been shown to coordinate to DNA duplexes that feature thymine–thymine (T–T) base pair mismatches. This observation suggests that an Hg2+-induced conformational change in a single-stranded DNA molecule can be used to detect aqueous Hg2+. Here, we have developed an analytical method using surface plasmon resonance (SPR) to develop a highly selective and sensitive detection technique for Hg2+ that takes advantage of T–Hg2+–T coordination chemistry. The general concept used in this approach is that the “turn-on” reaction of a hairpin probe via coordination of Hg2+ by the T–T base pair results in a substantial increase in the SPR response, followed by specific hybridization with a gold nanoparticle probe to amplify the sensor performance. Meanwhile, the limit of detection is 1 nM, which is lower than other recently developed techniques. A linear correlation is observed between the measured SPR reflectivity and the logarithm of the Hg2+ concentration over the concentration range of 5–5000 nM. Additionally, the SPR system provides high selectivity for Hg2+ in the presence of other divalent metal ions up to micromolar concentration levels. The proposed approach is also successfully utilized for the determination of Hg2+ in water samples.  相似文献   
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纹状体神经通路与运动调控   总被引:1,自引:0,他引:1  
纹状体(striatum)是机体运动中枢的关键组成部分,对机体随意运动、非意识性运动、肌张力、身体姿态、精细运动等调节均发挥重要作用。纹状体功能异常导致运动失调:一类为运动减少,肌张力亢进,如帕金森病;另一类为运动过多,肌张力不足,如舞蹈病。一般认为,纹状体接收大脑运动皮层传来的运动相关信号,经其加工处理后,经丘脑返传回运动皮层,最终由运动皮层发出运动执行信号,经锥体系完成运动。可见,纹状体的运动调控功能有赖于复杂的神经通路系统。本文综述近几年来有关纹状体神经通路与运动调控的研究进展,以期更深入理解纹状体运动调控神经机制及其与临床疾病的关系。  相似文献   
57.
Treatment of methyl β-D-ribofuranoside with thionyl chloride in hexamethyl-phosphoric triamide gives two diastereoisomeric methyl 5-chloro-5-deoxy-β-D-ribo-furanoside 2,3-cyclic sulfites. Similar cyclic sulfites are formed from benzyl β-D-ribofuranoside and 1,4-anhydro-DL-ribitol. If acetonitrile is substituted for hexa-methylphosphoric triamide, the cyclic sulfites are the main products, and only traces of the chlorinated sugars are formed. 1H- and 13C-n.m.r.-spectral analysis of these reactions demonstrated that one of the diastereomers preponderates. The structure of these cyclic sulfites was established by comparison of the 1H-n.m.r. spectra with those of the propylene sulfites. Treatment of 1,2-O-isopropylidene-α-D-glucofuranose (14) with thionyl chloride in hexamethylphosphoric triamide yields 3-chloro-3-deoxy-1,2-O-isopropylidene-α-D-allofuranose 5,6-cyclic suffite. In contrast to the 2,3-cyclic suffites, which are stable, the cyclic sulfites derived from 14 slowly decompose at room temperature.  相似文献   
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