| ²é¿´: 228 | »Ø¸´: 1 | |||
| ¡¾½±Àø¡¿ ±¾Ìû±»ÆÀ¼Û1´Î£¬×÷ÕßԪСѩÔö¼Ó½ð±Ò 1 ¸ö | |||
| µ±Ç°Ö÷ÌâÒѾ´æµµ¡£ | |||
ԪСѩľ³æ (Ö°Òµ×÷¼Ò)
|
[×ÊÔ´]
з½·¨Ê¹ÄÉÃ׿ÅÁ£³É¹¦½øÈëϸ°û!!!!
|
||
|
з½·¨Ê¹ÄÉÃ׿ÅÁ£³É¹¦½øÈëϸ°û µ±½«ÌõÎÆ×´µÄ²»Í¬ÅäºÏ»ùÒԱ˴ËÏà¼äµÄ·½Ê½¸²¸ÇÔÚÄÉÃ׿ÅÁ£±íÃæÊ±£¬ÕâÖÖÄÉÃ׿ÅÁ£¾Í¿ÉÒÔÖ±½Ó´©Èëϸ°û¶ø²»»áÔÚϸ°ûÉÏÁô϶´Ñ¨£¬´Ó¶ø²»»áÒýÆðϸ°ûµÄËÀÍö£¬Ð³ɹûÈÕǰ·¢±íÔÚÔÚÏß³ö°æµÄ¡¶×ÔÈ»¡ª²ÄÁÏѧ¡·£¨Nature Materials£©ÆÚ¿¯ÉÏ¡£ÔÚδÀ´µÄÖÎÁÆÖУ¬¿ÉÒÔÓÃÕâÖÖ·½·¨½«ÉúÎï»îÐԵķÖ×ÓËÍÈëϸ°ûÖС£ ϸ°ûĤ¾ßÓи߶ȵķÀÓùÄÜÁ¦£¬²»»áÈÃÍâ½çÎïÖÊÇáÒ×½øÈë¡£¾¡¹ÜÒ²Óв¿·ÖÉúÎï·Ö×ÓÄÜ´©Ô½Ï¸°ûĤ½øÈëϸ°ûÖ®ÖУ¬µ«¾ßÓÐÀàËÆ´óСµÄÈ˹¤ºÏ³É·Ö×ÓÊÇ·ñÒ²ÄÜ´©Ô½Ï¸°ûÄØ£¿ÔøÓÐÒ»¶Îʱ¼ä£¬Ñ§Êõ½çÔÚÕâ¸öÎÊÌâÉÏÓÐÏ൱µÄÕùÂÛ¡£Í¨³££¬È˹¤ºÏ³É·Ö×ÓÖ»ÄܽøÈëϸ°ûÖÐÒ»¸öÓÐÏÞÖÆµÄÌØ¶¨Ð¡ÇøÓò£¬¶ø²»ÊÇϸ°ûÖÊÈÜÒºÖС£¶ÔÓÚÏñ´øÕýµçºÉµÄÄÉÃ׿ÅÁ£À´Ëµ£¬ËüÃǽøÈëϸ°ûʱ»áÔÚϸ°ûĤÉϲúÉú³öÒ»¸öССµÄ¹ý¶ÉÐÔ¶´Ñ¨£¬¼´Ê¹ÕâÑùÒ²»áʹϸ°ûÄ¤ÆÆÁÑ£¬µ¼ÖÂϸ°ûËÀÍö¡£ Francesco StellacciºÍͬÊ·¢ÏÖ£¬»Æ½ðÄÉÃ׿ÅÁ£Äܹ»´©Ô½Ï¸°ûĤ²»»áµ¼ÖÂϸ°ûÄ¤ÆÆÁÑ£¬¶øÇÒ£¬Èç¹ûÒԱ˴˼ä¸ôµÄÐÎʽÔÚÕâÖÖÄÉÃ׿ÅÁ£±íÃæÍ¿ÉϸºµçºÉÅäºÏ»ùºÍÊèË®ÅäºÏ»ù£¬ÄÇôËüÃÇ»¹ÄܽøÈëϸ°ûÒºÖС£Èç¹ûÕâЩÅäºÏ»ùÔÚÄÉÃ׿ÅÁ£±íÃæÊÇËæÒâÅÅÁеģ¬ÄÇô¼´Ê¹ÊÇÍ¿ÉÏÏàͬÊýÁ¿µÄÅäºÏ»ù£¬ÕâЩ¿ÅÁ£Ò²²»ÄÜÖ±½Ó´©¹ýϸ°ûĤ¡£ ÔÎÄÕªÒª: Surface-structure-regulated cell-membrane penetration by monolayer-protected nanoparticles Ayush Verma1, Oktay Uzun1, Yuhua Hu2, Ying Hu1, Hee-Sun Han3, Nicki Watson4, Suelin Chen1, Darrell J. Irvine1,5 & Francesco Stellacci1 -------------------------------------------------------------------------------- AbstractNanoscale objects are typically internalized by cells into membrane-bounded endosomes and fail to access the cytosolic cell machinery. Whereas some biomacromolecules may penetrate or fuse with cell membranes without overt membrane disruption, no synthetic material of comparable size has shown this property yet. Cationic nano-objects pass through cell membranes by generating transient holes, a process associated with cytotoxicity. Studies aimed at generating cell-penetrating nanomaterials have focused on the effect of size, shape and composition. Here, we compare membrane penetration by two nanoparticle 'isomers' with similar composition (same hydrophobic content), one coated with subnanometre striations of alternating anionic and hydrophobic groups, and the other coated with the same moieties but in a random distribution. We show that the former particles penetrate the plasma membrane without bilayer disruption, whereas the latter are mostly trapped in endosomes. Our results offer a paradigm for analysing the fundamental problem of cell-membrane-penetrating bio- and macro-molecules. ÏÂÔØÁ¬½Ó:http://www.nature.com/nmat/journal/v7/n7/abs/nmat2202.html [search]ÄÉÃ׿ÅÁ£[/search] |
» ÊÕ¼±¾ÌûµÄÌÔÌûר¼ÍƼö
ÄÉÃ×ÉúÎï |
» ²ÂÄãϲ»¶
ѧԺ¹Ù·½Èº-ԺʿÍŶÓÕÐÉú-ѧÉú×ÔÓɶȸß-ÅàÑøÄ£Ê½³ÉÊìÒÑÓÐ10ÓàÃûѧÉú¸°985º£ÍâÉîÔì
ÒѾÓÐ0È˻ظ´
Î人·ÄÖ¯´óѧ»¯¹¤Ñ§Ôº¹Ù·½Èº-ԺʿÍŶÓÕÐÉú-ѧÉú×ÔÓɶȸß-10ÓàÃûѧÉú¸°985º£ÍâÉîÔì
ÒѾÓÐ0È˻ظ´
½ðÊô²ÄÁÏÂÛÎÄÈóÉ«/·ÒëÔõôÊÕ·Ñ?
ÒѾÓÐ287È˻ظ´
Äϲýº½¿Õ´óѧ½¯»ª÷ë½ÌÊÚ¿ÎÌâ×éÕÐÊÕ»¯Ñ§¡¢»·¾³¡¢Ì¼´ï·å̼Öкͼ°Ïà¹Ø×¨ÒµË¶Ê¿ÐÅÏ¢
ÒѾÓÐ0È˻ظ´
ºþ±±Ê¦·¶´óѧ¸´ÊÔµ÷¼Á
ÒѾÓÐ0È˻ظ´
Î人·ÄÖ¯´óѧ_»¯¹¤Ñ§Ôº¹Ù·½µ÷¼ÁȺ-ԺʿÍŶÓÕÐÉú-ѧÉú×ÔÓɶȸß-ÿ½ì·¢Õ¹ºÃ
ÒѾÓÐ0È˻ظ´
ºÓ±±´óѧ²ÄÁÏÓ뻯¹¤×¨ÒµÑо¿Éú£¨×¨Ë¶£©ÕÐÊÕµ÷¼ÁÉú
ÒѾÓÐ0È˻ظ´
ºÓ±±´óѧÎÞ»ú»¯Ñ§×¨ÒµÕÐÊÕµ÷¼ÁÉú
ÒѾÓÐ0È˻ظ´
¼ÃÄÏ´óѧ¹ú¼ÒÓÅÇà¿ÎÌâ×é 2026 µ÷¼ÁÕÐÉúÀ´À²
ÒѾÓÐ0È˻ظ´
Î人·ÄÖ¯´óѧ_»¯Ñ§Ôº¹Ù·½µ÷¼ÁȺ-ԺʿÍŶÓÕÐÉú-ѧÉú×ÔÓɶȸ߷¢Õ¹ºÃ-»¶Ó¸÷λͬѧ
ÒѾÓÐ0È˻ظ´
» ±¾Ö÷ÌâÏà¹ØÉ̼ÒÍÆ¼ö: (ÎÒÒ²ÒªÔÚÕâÀïÍÆ¹ã)
2Â¥2008-09-01 15:56:08














»Ø¸´´ËÂ¥


