贝投体育8059

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贝投体育8059: 缁胯尪涓殑鎶楁哀鍖栧墏鍙府鍔㏑NA鑽墿杩涘叆缁嗚優
鏉ユ簮锛銆夾CS涓ぎ绉戝銆 浣滆€咃細Wanwan Shen绛 鏃堕棿锛2018-10-08

 

 

鏃ュ墠锛屾潵鑷腑鍥界殑鐮旂┒浜哄憳鎴愬姛鍦板湪缁胯尪涓殑绾崇背绮掑瓙锛green nanoparticle锛夊府鍔╀笅锛岄『鍒╁湴鍒╃敤灏忓共鎵RNAsmall interfering RNAsiRNA锛夎浇浣撴笭閬撳皢鑽墿绌块€忎簡缁嗚優鑶溿€傝鐗╄川寰楀悕鐨勫師鍥犳槸鍏跺唴鍚湁缁胯尪澶╃劧褰㈡垚鐨勪唬璋㈢墿锛屽叿鏈夋姉姘у寲鏁堟灉銆傜豢鑼朵腑鐨勭撼绫崇矑瀛愭瘨鎬у緢浣庯紝瀹冨彲浠ヤ笌鎶楁哀鍖栧墏澶嶅悎褰㈡垚涓€绉嶇嫭鐗圭殑鑽墿浼犻€掕浇浣擄紝鍙互鏈夋晥鍦般€佸畨鍏ㄥ湴鎼哄甫绮剧粏鐨RNA鑽墿绌胯繃鐗瑰畾鐨勭粏鑳炶啘銆

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涓轰簡鍏嬫湇杩欎簺闂锛屼竴浜涚爺绌朵汉鍛樺皾璇曠敤鍚勭鑱氬悎鐗╂秱瑕siRNA锛屼互渚胯揪鍒颁繚鎶や綔鐢ㄣ€傜劧鑰岋紝澶у鏁板皬鑱氬悎鐗╀笉鑳戒娇寰siRNA鑷敱鍦扮┛姊埌缁嗚優涓紝鑰屼笖鍒嗗瓙閲忚緝澶х殑鑱氬悎鐗╁彲鑳芥槸鏈夋晥浣嗛€氬父閮藉叿鏈変竴瀹氱殑姣掓€с€傚湪鏈熸湜鐨勯澏缁勭粐涓疄鐜颁复搴婃湁鏁堢殑鍩哄洜娌夐粯锛屽悓鏃堕伩鍏嶅厤鐤縺娲诲拰姣掓€ц繕杩滆繙娌℃湁鍋氬埌銆傜梾姣掑彲浠ラ€氳繃灏shRNA琛ㄨ揪鍩哄洜鏁村悎鍒板熀鍥犵粍涓潵浠嬪闀挎湡鐨勫熀鍥犳矇榛橈紝骞朵笖鍙互閫氳繃璁捐浣垮叾鍏锋湁鐗瑰畾鐨勭粍缁囧€惧悜鎬э紝浣嗘槸瀹冧滑鍏锋湁寰堝閲嶅ぇ缂虹偣銆傚湪琛€娑蹭腑锛岀梾姣掑彲鑳戒細琚凡瀛樺湪鐨勬姉浣撴竻闄わ紝骞朵笖浼氭縺娲昏ˉ浣撴垨鍑濊鍥犲瓙銆

siRNA鍙互浠庡熀鍥犲眰闈笂闃绘柇铔嬬櫧鍔熻兘锛岃揪鍒板緢澶氬皬鍒嗗瓙鍖栧鑽棤娉曚紒鍙婄殑鑽悊鏁堟灉銆RNA骞叉壈2006骞磋幏寰楄璐濆皵濂栵紝浣嗘槸siRNA鐨勫尰瀛﹀簲鐢ㄧ幇鐘朵粎闄愪簬鏈夐檺鐨勫眬閮ㄩ€掗€侊紝鍥犱负缂轰箯鏈夋晥鐨勯€掗€佽浇浣撱€傜洰鍓嶏紝siRNA鐨勯€掗€佷富瑕侀€氳繃闃崇瀛愯浇浣撴潗鏂欏拰siRNA褰㈡垚鐨勭撼绫冲鍚堢墿鏉ュ疄鐜拌嵂鐗╅€掗€併€傞槼绂诲瓙杞戒綋鏃㈠彲浠ラ€氳繃姝h礋鐢电浉浜掍綔鐢ㄨ杞siRNA鑽墿锛屼篃鏈夊姪浜庨€掗€佺郴缁熼€冪婧堕叾浣撻檷瑙c€

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鐮旂┒浜哄憳鎬荤粨閬擄紝楂樻晥绾崇背绮掑瓙閫傜敤浜庡悇绉嶇被鍨嬬殑銆佸叿鏈変笉鍚屾嫇鎵戠粨鏋勫拰鍖栧鎴愬垎鐨勮仛鍚堢墿锛屽畠涔熸彁渚涗簡涓€绉嶅鍔熻兘鎶€鏈潵鎵撶牬闃崇瀛愯仛鍚堢墿鐨勬晥鐜/姣掓€х浉鍏虫€э紝鏈爺绌朵腑鎻愬嚭鐨勭瓥鐣ュ厑璁稿紑鍙戜竴涓湁娼滃姏銆佺殑鐢ㄤ簬鑱氬悎鐗╀粙瀵肩殑siRNA閫掗€佸钩鍙般€锛堟潵婧愶細鐢熺墿璋Bioon.com

 

Green Tea Catechin Dramatically Promotes RNAi Mediated by Low-Molecular-Weight Polymers

 

Abstract  Cytosolic delivery is the major challenge that limits the clinical translation of siRNA-based therapeutics. Although thousands of polymers have been developed for siRNA delivery, the efficiency鈥搕oxicity correlation is unsatisfactory. Here, we report a facile strategy to fabricate core鈥搒hell-structured nanoparticles with robust siRNA delivery efficiency. The nanoparticle is prepared by entropy-driven complexation of siRNA with a green tea catechin to yield a negatively charged core, followed by coating low-molecular-weight polymers to form the shell. This supramolecular strategy facilitates the polymers condensing siRNA into uniform nanoparticles. The nanoparticle specifically down-regulates target genes in vitro and in vivo, and efficiently attenuates chronic intestinal inflammation in an inflammatory bowel disease model. Notably, the highly efficient nanoparticles are applicable for various polymers with different topologies and chemical compositions, providing a versatile technique to break down the efficiency鈥搕oxicity correlation of cationic polymers. The proposed strategy in this study permits the development of a promising platform for polymer-mediated siRNA delivery.

 

鍘熸枃閾炬帴锛https://pubs.acs.org/doi/pdfplus/10.1021/acscentsci.8b00363

 

 

闄勪欢锛