Houston, Texas, USA 2010 < Travel 

Houston, Texas 2010

Advances in Tissue Engineering 2010
18th Annual Short Course
August 11 through 14, 2010
Rice University, Houston, Texas

 
Focusing on advances in the science and technology of tissue engineering
and featuring leading scientists from Rice University,
the Texas Medical Center, industry, and other institutions.

The course will survey the latest knowledge and technologies
in the world of patient-specific therapeutics - 
from transplantation of cells and tissues to artificial organs.

 

ÀÏÁ¤ : 2010.8.9 ~ 2010.8.17

Àå¼Ò : Rice University, Houston, Texas

¿©Á¤ Itinerary :

United Airlines

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µµÂø µ§¹ö(DEN) 10AUG 14:58

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µµÂø ÈÞ½ºÅÏ(IAH) 10AUG10 20:33

 

UA771
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µµÂø »÷ÇÁ¶õ½Ã½ºÄÚ(SFO) 09:03

UA893
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µµÂø ¼­¿ï(ICN) 17AUG10 15:05

 

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Çѱ¹ÃÑ¿µ»ç°ü

- ÁÖ¼Ò : 1990 Post Oak Blvd. #1250, Houston, TX 77056
- ÀüÈ­ : (713)961-0186, 0798, 0799
- FAX : (713)961-3340
- ȨÆäÀÌÁö ÁÖ¼Ò : http://www.koreahouston.org

±Ù¹«½Ã°£ : ¿ù-±Ý 09:00-17:00 (Á¡½É½Ã°£ : 12:00-13:30)
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2010.8.9

11:20

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12:30

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»÷ÇÁ¶õ½Ã½ºÄÚ °øÇ×Àº °¢ ¼÷¹Ú È£ÅÚ±îÁö ¸¹Àº ¼ÅƲ¹ö½º°¡ ´Ù´Ï°í ÀÖ¾ú°í ±Ùó¿¡¼­ °ü·ÃµÈ »ç¶÷µéÀÌ ¾îµð¸¦ °¡Áö´Â °è¼Ó ¼³¸í°ú µµ¿òÀ» ÁÖ¾ú´Ù. À̰÷¿¡¼­ ¾î¶»°Ô °¡³ª Çߴµ¥ È£ÅÚ¿¡ ÀüÈ­¸¦ ÇÏ´Ï ±â´Ù¸®¶ó°í ÇÑ´Ù. Cowne Plaza È£ÅÚÀº °øÇ×Âʰú ¶Ç ´Ù¸¥ ÂÊÀÌÀÖ¾î Àß °ñ¶óŸ¾ß Çß´Ù. È£ÅÚ¿¡ ÀüÈ­¸¦ ÇØ¼­ °¡´Â ±æÀ» ´Ù½Ã È®ÀÎÇß´Ù. (ÇöÁö¹ß½Å 350¿ø/ºÐ)

21:00

¸ðµÎµé Crown Plaza Hotel¿¡ µµÂøÇÏ¿© üũÀÎÀ» ÇÏ°í °¢ÀÚÀÇ ¹æ¿¡ ÁüÀ» Ç®°í 1ÃþÀÇ ½Ä´çÀ¸·Î ¸ð¿´´Ù. »ç½Ç 8¸íÀÌ Åýø¦ Ÿ°í ¹Û¿¡ ³ª°¡ Àá±ñ °ü±¤À» ÇØº¸·ÁÇÏ¿´Áö¸¸Á¶±ÝÀº ´ÊÀº ½Ã°£°ú ¾îµÎ¿î ¹Û, ÇǰïÇÏ°í °í»ýÇÑ »ç¶÷µé µîÀÌ ÀÌÀ¯°¡ µÇ¾î ¸ðµÎ 1ÃþÀÇ ½Ä´ç¿¡¼­ Àú³áÀ» ÇØ°áÇß´Ù. ? ¾Ö´ý½º ¸ÆÁÖ¸¦ ¸¶¼Ì´Ù. ¹Ì±¹ º¸½ºÅÏ¿¡¼­ ³ª¿À´Â ¸ÆÁÖ·Î ±èÇØ¿ø ±³¼ö´ÔÀº ¹Ì±¹¿¡ ¿À¸é ÀÌ ¸ÆÁÖ¸¦ ´Ã Áñ±ä´Ù°í ÇÑ´Ù. ¾à°£ °¥»öÀ» ¶è »öÁ¶¿¡ ¾à°£ ¾ËÄÝ µµ¼ö°¡ ³ô¾Ò´Ù. ¿©·¯ »ø·¯µå¿Í Ƽº» ½ºÅ×ÀÌÅ©, ¸³ ÆÄ½ºÅ¸ µîµîÀ» ½ÃŲ ÈÄ ¾ÈÁÖ»ï¾Æ ¸ÆÁÖ¸¦ Áñ°å´Ù.

22:00

½Ä»ç¸¦ ¸¶Ä£ ÈÄ ¸î¸î »ç¶÷µéÀº ÆíÀÇÁ¡À» ã¾Æ °Å¸®·Î ³ª¼¹´Ù. 2±ºµ¥, ÁÖÀ¯¼Ò¿¡ µþ·ÁÀÖ´Â ÆíÀÇÁ¡À» °¬À¸³ª ¾ËÄÝ À½·á¸¦ ÆÈÁö ¾Ê¾Ò´Ù. Á» °É¾î¼­ Seven Eleven¿¡°¡ ¸î¸î À½·á¸¦ »ç µé¾î¿Ô´Ù. ±èÇØ¿ø ±³¼ö´Ô ¹æ¿¡¼­ µÎ·±µÎ·± ÀÌ·±Àú·± ¸»À» ³ª´©¸ç ¸ÆÁÖ¸¦ Áñ°å´Ù. ±¹°¡ÀÇ À̹ÌÁö¶ó´Â °Í°ú ¼¼»ó»ç¶÷µéÀÌ ´À³¢´Â ±â¾÷À» ÅëÇÑ À̹ÌÁöÀÇ Â÷À̶õ °ÍÀÌ Á» ±â¾ï³­´Ù. ´ëÈ­´Â 2½Ã±îÁö À̾îÁö´Ù °¢ÀÚ ¹æÀ¸·Î µ¹¾Æ°¬´Ù.

2010.8.10

05:30

¿ª½Ã ³¸¼± °÷¿¡ ¿À¸é ÀáÀÌ Àß ¿ÀÁö ¾Ê´Â´Ù. 2³âÀü ¹Ì±¹ µ¿ºÎ ¿©ÇàÀ» ÇÒ ¶§, È¥ÀÚ °è¼Ó Æ®À© ·ë¿¡¼­ ¹­´ø »ý°¢ÀÌ ³­´Ù. ÀûÀûÇÏ´ø Ȧ·Î¿©Çà. ÀÏÂï ÀϾ ´º½º¸¦ º¸´Ï Bay Area(»÷ÇÁ¶õ½Ã½ºÄÚ ÁÖº¯À» ÀÏÄÆ´Â µíÇß´Ù.) ³¯¾¾°ú ±³Åë, ½ÇÁ¾µÈ ¾ÆÀ̰¡ ÁÖµÈ °ü½É»çÀÌ´Ù. ÇØ°¡ ¶ß°í ÀÖ´Ù. ÀÎÅͳÝÀ» ÇÏ°í ½ÍÁö¸¸ À̰÷Àº À¯·á´Ù.

09:00

ÀÏÇà ¸ðµÎ ·Îºñ¿¡¼­ ¸¸³ª±â·ÎÇÑ 9½Ã°¡ µÇ¾ú´Ù. ÇÏÁö¸¸ ¹ÌÁÖ¾¾, Á¤ÁÖ¾¾´Â ¾ÆÁ÷ ÀÚ°í ÀÖ´Ù°í ÇÑ´Ù. Á» ´Ê°Ô Ãâ¹ßÇÏ¿© °øÇ×À¸·Î ÇâÇß´Ù. Á» ¹è°¡ °íÆÍ´Âµ¥ Çý¿µ¾¾°¡ °£½ÄÀ» Á༭ Àß ¾ú´Ù.

10:30

°øÇ׿¡ µµÂøÇÏ¿© ¼ö¼ÓÀ» °ÅÄ¡´Â µ¥, Á¤ÁÖ¾¾¿Í ±æ¼ö¾¾°¡ ¼ö¼ÓÀýÂ÷°¡ ÁøÇàµÇÁö ¾Ê¾Æ ´Ù½Ã ÇÑÂü ÁÙÀ» ¼­¾ß Çß´Ù. Âü ¼­·Î°¡ ÈÞ½ºÅÏ °¡±â Èûµé´Ù°í ÇÏ¸ç ½Ã°£À» ±â´Ù·È´Ù. ºñÇà±â´Â ¶§¸¶Ä§ ¿¬ÂøÀ̵Ǿî 12½Ã 30ºÐÀ¸·Î Ãâ¹ß ½Ã°£ÀÌ º¯°æµÇ¾ú´Ù. ¸ðµÎµé ¼ö¼ÓÀ» Àγ»½ÉÀ¸·Î ±â´Ù¸®°í °£´ÜÇÏ°Ô ½Ä»ç¸¦ ÇÏ¿´´Ù.

13:00

ºñÇà±â´Â 1½Ã°¡ µÇ¼­¾ß ȰÁַο¡¼­ °øÁßÀ¸·Î ¿Ã¶ú´Ù. ÇÏ.. ÀÌÁ¦ µ§¹ö¸¦ °ÅÃÄ ÈÞ½ºÅÏÀ¸·Î °¡´Â ±¸³ª. ºñÇà±â ¾È¿¡¼­´Â ÇǰïÇØ¼­ ÀÎÁö ¹Ù·Î Àá¿¡ µé¾ú´Ù.

15:00(San Francisco)->16:00(Denver)

µ§¹ö¿¡ µµÂøÇß´Ù. ºñÇà±â¿¡¼­ ³ª¿À´Ï 3½Ã 30ºÐÀ̾úÁö¸¸, ½Ã°£Â÷ÀÇ º¯°æÀ¸·Î 4½Ã30ºÐÀ̾ú´Ù. ½ÃÂ÷ º¯°æÀ¸·Î 1½Ã°£¾¿ Áö³ª°¡´Ï ªÀº ½Ã°£¿¡ ±Ý»õ ³ªÀ̰¡ µå´Â ´À³¦ÀÌ´Ù.

Denver

µ§¹ö

½Ã°¡´Â ÇØ¹ß°íµµ 1,609m(1¸¶ÀÏ) Á¤µµ¿¡ Àֱ⠶§¹®¿¡ '¿ø¸¶ÀÏ½ÃÆ¼'¶ó°íµµ ÇÑ´Ù. ÄݷζóµµÁÖÀÇ Á߾Ӻο¡¼­ ¾à°£ ºÏÂÊ, ·ÎŰ»ê¸ÆÀÇ µ¿ÂÊ ±â½¾¿¡ ÀÖ´Ù. ±×·¹ÀÌÆ®Ç÷¹Àνº ¹× ¼­ºÎ »êÁö ÀÏ´ë¿¡ °ÉÃÄ ÀÖÀ¸¸ç ü¸®Å©¸®Å©(Cherry Creek)°­(˰)°ú »ç¿ì½ºÇ÷§(South Platte)°­ÀÌ ÇÕ·ùÇÏ´Â ÁöÁ¡¿¡ ÀÖ´Ù. ¾Æ¹Ù´Ù·¿À·Î¶ó·ºê¶óÀÌÅÏ·ºê·ëÇʵå·Ã¼¸®Èú½ººô¸®Áö·Ä¿¸Ó½º½ÃƼ·¿¡Áö¿öÅÍ·¿¨±Û¿ìµå·°ñµ§··¹ÀÌÅ©¿ìµå·¸®Æ²ÅÏ·³ë½º±Û·»·¿þ½ºÆ®¹Î½ºÅÍ·ÈÖÆ®¸®Áö µîÀÇ À§¼ºµµ½Ã¸¦ Æ÷ÇÔÇÑ ´ëµµ½Ã±ÇÀÇ Àα¸°¡ 193¸¸ 8642¸í(1998)¿¡ À̸¥´Ù.

°ñµå·¯½Ã(gold rush) ¶§ÀÎ 1858³â Ç÷¹À̼­Ä·ÇÁ·¼¼ÀÎÆ®Âû½º µî¿¡ Ãë¶ôÀÌ °Ç¼³µÇ¾ú´Ù. ÀÌÈÄ ±Ý±¤ ä±¼ÀÚ¸¦ À§ÇÑ º¸±Þ±âÁö·Î ÀÌ¿ëµÇ¾ú°í, ¼¼ÀÎÆ®Âû½º´Â 1858³â 11¿ù ÄݷζóµµÁØÁÖ(ñÞñ¶)ÀÇ Áö»ç¿´´ø Á¦ÀÓ½º W.µ§¹ö(James W. Denver)ÀÇ À̸§À» µû µ§¹ö·Î Áö¸íÀ» ¹Ù²Ù¾ú´Ù. 1861³â 11¿ù¿¡ ½Ã°¡ µÇ¾úÀ¸¸ç 1867³â ÁÖµµ·Î ÁöÁ¤µÇ¾ú´Ù.

16:50

µü ¸Â°Ô ÈÞ½ºÅÏÀ» ÇâÇÏ´Â ºñÇà±â ž½Â±¸¿¡ µµÂøÇß´Ù. Àá±ñ ±â´Ù¸° ÈÄ ¹Ù·Î ž½ÂÀ» ½ÃÀÛ Çß´Ù. ³Ê¹« ÇǰïÇß¾ú±â ¶§¹®¿¡ ¹Ù·Î ´Ù½Ã Ãëħ ¸ðµå·Î. ºñÇà±â ¾ÈÀº ³Ê¹«³ªµµ Ãß¿ü´Ù.

19:10(Denver)->20:10(Houston)

µåµð¾î ³»·Á´Ù º¸ÀÌ´Â ÈÞ½ºÅÏÀÇ Ç³°æ

µåµð¾î °øÇ׿¡ µµÂøÇß´Ù.

ÃÊÃÖÇÑ ¸ð½ÀÀÇ ³ª

´Ùµé Èûµé¾ú´ø ¿©Á¤¿¡ ´ëÇØ ¸»Çϰí ÀÖ´Ù.

Houston George Bush
Intercontinental Airport (IAH)

ÈÞ½ºÅÏ¿¡´Â µµ½ÉÀÇ ¹Ý´ëÆí¿¡ 2°³ÀÇ ÁÖ¿ä °øÇ×À» °¡Áö°í ÀÖ´Ù. µµ½É ºÏÂÊ Bush Intercontinental Airport(¹®ÀÇ (281) 230-3000 )Àº ´Ù¿îŸ¿î¿¡¼­ ´ë·« 40ºÐ°Å¸®¿¡ À§Ä¡Çϰí ÀÖ´Ù. µµ½É ³²ÂÊ Hobby Airport( ¹®ÀÇ (713) 640-3000)´Â ´Ù¿îŸ¿î¿¡¼­ ´ë·« 20ºÐ °Å¸®¿¡ À§Ä¡. È£ºñ°øÇ×Àº ±¹³» ±Ù°Å¸® Àü¿ë°øÇ×. Through Check-in °æ¿ì Tag¿¡ HouÀ¸·Î ±âÀÔÇÏ´Â °æ¿ì °øÇ×À» ¿ÀÀÎÇÏ°Ô µÇ´Â ¼ö°¡ ÀÚÁÖ ÀÖÀ¸¹Ç·Î ÁÖÀǸ¦ ¿äÇÑ´Ù.

George Bush Intercontinental °øÇ×(IAH) : ¹Ì±¹ Á¦ 10´ë ±¹Á¦°øÇ×À¸·Î, ´Ù¿îŸ¿î¿¡¼­ ÀÚµ¿Â÷·Î ¾à 50ºÐ °Å¸®¿¡ À§Ä¡ÇÏ ¿© ÀÖÀ½.(¾à 35¸¶ÀÏ °Å¸®)

Hobby °øÇ× : ÁÖ·Î ±¹³»¼± °øÇ×À¸·Î »ç¿ëµÇ°í ÀÖÀ¸¸ç, ´Ù¿îŸ¿î¿¡¼­ ÀÚµ¿Â÷·Î ¾à 25ºÐ °Å¸®¿¡ À§Ä¡ÇÏ¿© ÀÖÀ½.(¾à 12¸¶ÀÏ °Å¸®)

IAH Airport. The primary airport is (IAH) Bush Intercontinental with the majority of domestic and all international flight arrivals and departures. This airport is located 35 miles north of the city approximately 45 - 60 minutes from Rice University. Cab fare is approximately $51 - $83 and SuperShuttle, a shared-ride service, is $24 one-way or $23 per trip if roundtrip is purchased. Transportation to and from the airports can be arranged at http://www.supershuttle.com/ or 1-800-BLUE-VAN (258-3826).

Hobby Airport (HOU) is located 25 miles southeast of Houston and is hub to Southwest and other airlines. This airport is approximately 20 - 45 minutes from Rice University. Cab fare is approximately $27 - $59 and SuperShuttle $19 one-way or $18 per trip if roundtrip is urchased. You are encouraged to secure a reservation for SuperShuttle, especially if arriving at Hobby the smaller airport. Service from both airports is 24 hours.

21:00

ÁüÀ» ì±â°í Åýø¦ Àâ¿¡ Èúư È£ÅÚ·Î ÇâÇß´Ù.

Åýúñ·Î 60$¸¦ ³»°í È£ÅÚ¿¡ µµÂø

Hilton Houston Plaza/Medical Center

6633 Travis Street
Houston, Texas
USA 77030-1308
Tel: +1-713-313-4000
Fax: +1-713-313-4660

 

22:00

¼÷¼ÒÀÇ °¢ÀÚÀÇ ¹æ¿¡¼­ ÁüÀ» Ç®¾ú´Ù. ³­ ±èÇØ¿ø ±³¼ö´Ô°ú °°ÀÌ ¹æÀ» ¾²±â·Î Çß´Ù. Á¤ÁÖ, ¹ÌÁÖ, Çý¿µ¾¾°¡ ÇѹæÀ» ¹­°í, Çü¼®, ±æ¼ö, Çå¼ö°¡ °°Àº ¹æÀ» ¾²±â·Î Çß´Ù.

 

2010.8.11 (Wed)

06:00

±â»ó, ³­ °°Àº ¹æÀ» ¾²´Â ±èÇØ¿ø ±³¼ö´ÔÀ» ±ú¿ü´Ù. Á¹·ÁÇÏ´Â Çлýµé¿¡°Ô °¢°¢ ÀüÈ­¸¦ °É¾î 7½Ã¿¡ ·Îºñ¿¡¼­ ¸¸³ªµµ·Ï Çß´Ù.

07:00

È£ÅÚ ·Îºñ¿¡¼­ ¸ðÀÓ. ¾îÁ¦¿Í ´Ù¸£°Ô ¸ðµç ÇлýµéÀÌ ¹Ì¸® ·Îºñ¿¡ ³ª¿ÍÀÖ¾ú´Ù. ÀÏÂïÀÌ µî·ÏÀ» ¸¶Ä¡°í ÇÐȸÀå¿¡ ³ª¿Í °£´ÜÇÏ°Ô ½Ä»ç¸¦ ¸¶ÃÆ´Ù.

Èúư È£ÅÚ ¾Õ¿¡¼­ Á¤¸» ´õ¿ü´Ù.

¶óÀ̽º ´ëÇÐÀ¸·Î ÇâÇÏ´ø ±æ

BioScience Research Collaborative

BioScience Research Collaborative (BRC) Auditorium located on the 1st Floor (ground level).

¿ì¸®ÆÀÀÌ Á¦ÀÏ ¸ÕÀú¿Í¼­ ÀÚ¸®¸¦ Àâ¾Ò´Ù.

 

8:20-8:30 a.m.

Introductory Remarks
Antonios G. Mikos, Ph.D.

Mikos¹Ú»çÀÇ Ãà»ç. ¼Î°èÀÇ ¿©·¯ °÷¿¡¼­ »ç¶÷µéÀÌ Âü¿©ÇÏ°Ô µÇ¾ú´Ù°í ¼³¸í.

8:30-9:30 a.m.

Keynote Lecture: Tissue Engineering Enabled Platforms for Regenerative Medicine
Cato T. Laurencin, M.D., Ph.D.

ÀÚ½ÅÀÇ ·¦À» °£´ÜÇÏ°Ô ¼³¸íÇÑ ÈÄ The regenerative Engineering futureÀÇ Á¦¸ñÀ¸·Î electrospinng, Skin regenerationÀ» ¼³¸íÇÏ¿´´Ù.

ÇÑÇØ¿¡ ¹Ì±¹¿¡¼­´Â 240¸¸¸íÀÇ È­»óȯÀÚ°¡ »ý°Ü³ª°í 7¸¸5õ¸íÀÇ È¯ÀÚ°¡ ÀÔ¿øÇϸç 8õ¿¡¼­ 1¸¸¸íÀÇ È¯ÀÚ°¡ »ç¸ÁÇÏ°Ô µÈ´Ù°í ÇÑ´Ù. ÀÚ°¡ À̽İú allograftÀÇ Â÷À̸¦ ¼³¸íÇϰí Fiber diameterÀÇ Â÷¿¡¿¡ µû¶ó¼­ ¼¼Æ÷Ȱµ¿ÀÇ Â÷À̰¡ ÀÖ´Ù´Â °ÍÀ» ¼³¸íÇÏ¿´´Ù. 500~1100nmÀÇ ¼¶À¯¿¡¼­ fibroblastÀÇ È°¼ºÀÌ ÁÁ¾Ò´Ù´Â ¼³¸í, Stem cell ¼Ò°³.adipose Á¶Á÷ ±â¿ø ¼¼Æ÷°¡ °ñÇü¼º¿¡ ¾²ÀÏ ¼ö ÀÖ´Ù.

Osteoinductive material

BMP-2°¡ Æ÷ÇÔµÈ PLAGA°¡ HA°¡ Àû¿ëµÈ »ç·Ê, HA+BMP-2 -> increased ALP activity º¸ÀÓ, mineralization HA, BMP -> synergy

muller et all 2008 calcium phosphate

Top down approach; Exmaine Larger struture, understand it, and mimic its structure or effects

Bottom up approach, tissues asembled from the cellular scale and ip to produce fully intact tisueu structures. ex) blastema

¿Ü°ú ÀÇ»ç Àεí. ¿©·¯ ÀÓ»ó »çÁøÀ» º¸¿© ÁÖ¾ú´Ù. ¼Õ°¡¶ôÀÌ Åé¿¡ Àß·Á³ª°£ »çÁøÀ» º¸¿©ÁÖ¾ú´Ù. 8ÁÖ°¡ Áö³­ ÈÄ È¸º¹µÈ ¸ð½ÀÀ» º¸¿© ÁÖ¾ú´Ù.

»õ·Î¿î Ä¡·áÀÇ Á¢±ÙÀ» Ãß±¸ÇÒ ¼ö ÀÖ´Ù°í ¼³¸í, 'Harness the Newt in YOU'

Wnt signaling /proteins for bone rengeration "Wnts" ´Ü¹éÁúÀÌ Áß¿äÇÑ ¿ªÇÒÀ» ÇÔÀ» ¼³¸í¸í ¼Õ»óµÈ ºÎÀ§¿¡ Wnts¸¦ Àû¿ëÇÏ¿´À» °æ¿ìÀÇ Â÷À̸¦ º¸°í ÇÏ¿´´Ù.

ÀδëÀÇ Àç»ýÀ» À§ÇØ scaffold¸¦ Àû¿ëÇÏ´Â °ÍÀ» º¸¿©ÁÜ, microsphere°¡ Àû¿ëµÇ´Â »óȲ ¼Ò°³.

½ÃÀÛ¿¡ ¼Ò°³µÈ McrfoFuse (Bone boid filler) Engineered bone matrix¸¦ ¼Ò°³

Bioreactor¿¡ ´ëÇØ ¼³¸í

Organ Engineering, Libm regerneration; sintered microspheres, braided fiber

¹°Áú Ç¥¸éÀÇ Æ¯¼º

´Ù¸¥ »ç¶÷À» À§Çع«¾ùÀ» ÇϽʴϱî? ¶ó´Â ¸¶Æ¾ ·çÅÍ Å· ¸ñ»çÀÇ ¸»·Î ³¡³¿

Fiber diameter size°¡ °¡Àå Áß¿äÇÏ´Ù°í ¼³¸í

±èÇØ¿ø ±³¼ö´Ô ·¦¿¡¼­ ´ë°³ °¡´ÉÇÏ´ø ½ÇÇèµéÀ̾ú´ø °°´Ù.

9:40-10:20 a.m.

Cell Based Therapies for Tissue Engineering and Treatment of Human Diseases
Arnold I. Caplan, Ph.D.

ÃÖ±Ù 20³â°£ Á¶Á÷ °øÇÐÀÌ ¹ß´ÞÇÏ°Ô µÇ¾ú´Ù´Â »ç½ÇÀ» ¼³¸íÇÏ¸ç ½ÃÀ۵Ǿú´Ù. ¸ÅÃÊ ¸¶´Ù 1õ 5¹é¸¸ °³ÀÇ Ç÷¾× ¼¼Æ÷°¡ »ç¶óÁö°í Àç»ýµÈ´Ù. °ñ¼ö¿¡¼­ HSC°¡ ±× Ç÷¾×¼¼Æ÷°¡ µÇ¸ç MSC°¡ ¶ÇÇÑ Á¸ÀçÇÑ´Ù. MSC°¡ »À¿Í bone, marrow stroma, tendon/ligament µîµîÀÇ lineage·Î ¹ß´Þ µÈ´Ù. MSC´Â pericyteÀÌ´Ù. ÁÖº¯ºÎ¿¡ ÀÖ´Ù°¡ ´Ù´Ù´Ù´Ù´Ù .immune reactionÀ» ¸ØÃß°Ô Çϰí anti-apoptotic, anti-scarring, angiogenic, mitotoic. MSC´Â stem cellÀÌ ¾Æ´Ï¶ó Medicinal signalling cell·Î ÀçÁ¤ÀÇ Çß´Ù. ¸ðµç Ç÷°ü ÁÖÀ§¿¡ pericytes°¡ ÀÖ´Ù. cell marker¸¦ ÅëÇØ "all MSCs are PERICYTES"¶ó´Â ÁÖÀåÀ» ÇÏ¿´´Ù.

³ªÀ̰¡ µé¸ç °ñ¼ö³»ÀÇ MSC´Â ±Þ°ÝÈ÷ °¨¼ÒÇÏ°Ô µÈ´Ù. Osiris ȸ»ç¸¦ ¼Ò°³Çß´Ù.

Å©·Ð¾¾º´°ú °ü·ÃÇÑ ³»¿ëÀ» ¼³¸í. Myocardial infarction,

MSC´Â ¾à±¹¿¡ ÇØ´çµÈ´Ù. pericyre¿¡ ºÒ°úÇÏ´Ù°¡ MSC°¡ µÇ°í, Ȱ¼ºÈ­µÇ¸ç Àç»ý°¡´ÉÇÑ MSC·Î¼­ÀÇ ¿ªÇÒÀ» ÇÏ°Ô µÈ´Ù.

 

10:30-11:10 a.m.

Morphogens for Tissue Engineering
A. Hari Reddi, Ph.D.

Stem cell signalling¿¡ ´ëÇØ¼­ ¼³¸íÇÒ °ÍÀ̶ó°í ÇÔ.
°£·«ÇÑ ¿ª»ç¿Í ±âÃÊ¿¡ ´ëÇØ ±æ°Ô ¼³¸íÇÏ¿´´Ù.

morphogene family : BMPs, FGFs, Hhs, Wnts

Organogenesis vs organismogenesis = chamber quartet vs symphony orchestra

±×´ÙÁö ±²ÀåÇÑ ³»¿ëÀº ¾ø¾ú°í °³°ýÀûÀÎ ºÎºÐÀ» ¤¾ú´ø °Í °°´Ù.

 

11:20 a.m.- 12:00 noon

Synthetic Scaffolds for Tissue Engineering
Antonios G. Mikos, Ph.D.

Ã¥µµ ¾²°í ³ª¸§ À̺о߿¡¼­ À¯¸íÇÑ »ç¶÷ÀÎ °Í °°´Ù.

fumarate-based polymer¸¦ ¼³¸íÇÏ¿´´Ù. Flow Perfusion Bio-reactor, In Vitro Generated ECM, Biomimetic Hydrogels, Particulate Polymer Carriers, Ceramic/Polymer Scaffolds, Non-viral Gene Delivery Vectors, Plasma-Vector Complex Carriers, Injectable Cellular Constructs, Cell and Growth Factor Carriers, Injectable growth factor Carriors, Space Maintainers (PMMA polymer, CMC Gel, MMA Monomer, Porous PMMA)

Ti Mesh scaffold vs. Ti/ECM scaffold(high calcium deposition), Injectable cellular constructs,

12:00 noon- 1:30 p.m.

Luncheon

Á¡½É ½Ä»ç¸¦ ¸¶Ä£ÈÄ ±³Á¤À» Àá±ñ µé·¯º¸¾Ò´Ù. °øÀ» ¸¹ÀÌ µéÀÎ ´ëÇÐÀ̶ó´Â »ý°¢ÀÌ µé¾ú´Ù.

Rice University

¶óÀ̽º´ëÇб³

1891³â ¸Å»çÃß¼¼Ã÷ÁÖ Ãâ½ÅÀ¸·Î ÈÞ½ºÅÏ¿¡ ¿Í¼­ ¼º°øÇÑ ½Ç¾÷°¡ Àª¸®¾ö M.¶óÀ̽º°¡ ¼³¸³ÇÑ ÅØ»ç½ºÁÖÀÇ »ç¸³ ¸í¹® ´ëÇб³ÀÌ´Ù. ±×·¯³ª 1900³â 9¿ù 23ÀÏ Àª¸®¾ö M.¶óÀ̽º°¡ Àç»êÀ» ³ë¸° ÀÚ½ÅÀÇ º¯È£»ç¿Í ÇÏÀο¡ ÀÇÇÏ¿© »ìÇØµÈ ÈÄ ¿©·¯ Â÷·ÊÀÇ ÀçÆÇÀ» °ÅÄ¡´Â µî ¿ì¿©°îÀýÀ» °Þ¾úÀ¸¸ç 1912³â¿¡¾ß Á¤½ÄÀ¸·Î °³±³ÇÏ¿´´Ù. 1912³â 10¿ùÀÇ °³±³½Ä¿¡´Â Àü¼¼°èÀÇ Àú¸íÇÑ ÇÐÀÚµéÀÌ ´Ù¼ö Âü¼®ÇÏ¿´´Ù. ´ç½ÃÀÇ Çлý¼ö´Â 77¸í(³²Çлý 48¸í, ¿©Çлý 29¸í)À̾ú´Âµ¥, ÀÌ Áß 75¸íÀÌ ÅØ»ç½ºÁÖ Ãâ½ÅÀ̾ú´Ù. ±³¼ö´Â 10¸íÀ̾ú´Ù. ù ¹Ú»çÇÐÀ§´Â 1918³â¿¡ ¼ö¿©µÇ¾ú´Ù.

¿¬±¸ Á᫐ ´ëÇÐÀ¸·Î ÀûÀº Çлý¼ö, Àú·ÅÇÑ µî·Ï±Ý, ¿ì¼öÇÑ ±³¼öÁøÀ» ÅëÇÑ ¼öÁØ ³ôÀº ±³À°ÀÌ Æ¯Â¡ÀÌ´Ù. 2010³â ±âÁØ °ÇÃà´ëÇÐ, °æ¿µ´ëÇÐ, °øÇдëÇÐ, Àι®´ëÇÐ, À½¾Ç´ëÇÐ, ÀÚ¿¬°úÇдëÇÐ, »çȸ°úÇдëÇÐ, Æò»ý´ëÇÐÀÇ 8°³ ´ëÇп¡¼­ ÇкÎ, ´ëÇпø °úÁ¤À» Á¦°øÇÑ´Ù. °úÇÐ, °øÇÐ, ¿¹¼ú, Àι®ÇÐ, »çȸ°úÇÐ ºÐ¾ßÀÇ ¸í¼ºÀÌ ³ô´Ù. ±×¹Û¿¡ °ø±ºÇÐ, ÀÀ¿ë¹°¸®ÇÁ·Î±×·¥, ÀÎÁö°úÇÐ, ±³À°ÀÎÁõ, ȯ°æÇÁ·Î±×·¥, ±º»çÇÐ, ÇØ±ºÇÐ °°Àº ´Ù¾çÇÑ ÇÐÁ¦ ÇÁ·Î±×·¥°ú ±³À°ÇÁ·Î±×·¥À» ÁøÇàÇÑ´Ù.

Ä·ÆÛ½º´Â ÈÞ½ºÅÏ Á߽ɺÎÀÇ ³ìÁö´ë¿¡ À§Ä¡ÇÏ¸ç ºñÀÜÆ¼¿ò ¾ç½ÄÀÇ °Ç¹°ÀÌ ¸¹ÀÌ ÀÖ´Ù. ¸ÞµðÄü¾ÅÍ, Çã¸ÕÆÄÅ©, ¹Ú¹°°ü, ¶óÀ̽ººô¸®Áö µî ÃÖ±Ù ÁöÀº ÀϺΠ°Ç¹°Àº Ä·ÆÛ½º ¿Ü°û¿¡ À§Ä¡ÇÏÁö¸¸ ÁÖ¿ä °Ç¹° ´ëºÎºÐÀº Ä·ÆÛ½º ¾È¿¡ ÀÖ´Ù.

ºÎ¼³½Ã¼³·Î´Â µµ¼­°ü, ¸°R.·Î¸® ¼ö¸ñ¿ø, ¶óÀ̽º½ºÅ¸µð¿ò, Á¦ÀÓ½ºA.º£ÀÌÄ¿ °ø°øÁ¤Ã¥¿¬±¸¼Ò, ºê¸°È­ÇÐÄÁ¼Ò½Ã¾ö(Brine Chemistry Consortium), ÀÀ¿ë½É¸®½Ã½ºÅÛ¿¬±¸¼Ò, »ý¹°·È¯°æ³ª³ë±â¼ú¿¬±¸¼Ò, ±³À°¿¬±¸¼Ò, ¾ð¾îÇבּ¸¼Ò µîÀÌ ÀÖ´Ù. Á¹¾÷»ý ¶Ç´Â ±³¼ö·Î ³ëº§»óÀ» ¼ö»óÇÑ ´ëÇ¥ÀûÀÎ Àι°Àº ·Î¹öÆ® ¿ìµå·Î Àª½¼(1978, ¹°¸®ÇÐ), ¸®Ã³µå ½º¸ô¸®(1996, È­ÇÐ)À̰í 20¼¼±â Áß¹Ý ¹Ì±¹ ¿µÈ­·Ç×°ø¾÷°èÀÇ Àú¸íÀλç ÇÏ¿öµå ÈÞ½º µîÀÌ Á¹¾÷Çß´Ù.

1:30-2:10 p.m.

Strategic Considerations for Tissue Engineering
Anthony Ratcliffe, Ph.D.

°ü·ÃµÈ ¸¹Àº ¿¬±¸µéÀÌ µ·ÀÌ µÇ¾î¾ß ÇÑ´Ù°í »ý°¢ÇÏ´Â ºÐ.

¿©·¯ »óǰȭµÈ Á¦Ç°µéÀ» ¼Ò°³ÇÏ¿´´Ù. ¶ÇÇÑ ½ÃÀåÀ» º¸°í ¿¬±¸¸¦ ÇØ¾ßÇÑ´Ù°í »ý°¢À» ÇÏ´Â ºÐÀ̾ú´Ù.

ManufacturingÀÇ ¿¹·Î ·Îº¿À» ÀÌ¿ëÇÑ ¼¼Æ÷¹è¾ç, ¾öû³­ ¼öÀÇ bio-reactor µéÀ» ¿¹·Î µé¾ú´Ù.

°¡Àå ÁÖ¸ñÇÏ°Ô ¸¸µé¾ú´ø ºÎºÐÀÌ ÀÖ´Â ´Ù. Åë»óÀûÀÎ ¿¬±¸´Ü°è¸¦ ¼³¸íÀ» µé¾ú´Âµ¥ 510(k), device, biologic/drug¸¦ ¿¹·Î µé¾ú´Âµ¥ ½Ã°£ÀÌ Áö³²¿¡ µû¶ó ½ÃÀåÀ¸·Î Á¦Ç°ÀÌ ³ª¿À°ÔµÇ´Â ½Ã°£°ú ºñ¿ëÀÌ ¸¹ÀÌ µç´Ù´Â ¸»À» ÇÏ¿´´Ù.

Rotator Cuff, Carticel for Articular repar,

2:20-3:00 p.m.

Computational Structural Biology and Systems Biology for Tissue Engineering
Lydia E. Kavraki, Ph.D.

»çÁ¤¿¡ ÀÇÇØ ¼ø¼­°¡ ¹Ù²î°Ô µÇ¾ú´Ù.

Computational Modeling and Analysis¿¡ ´ëÇØ °­¿¬. Genomics, Proteomics, Metabolomics, Interactomics µîÀÌ ÀÖÀ¸¸ç ÀÚµ¿Â÷ÀÇ ¿£ÁøÀÌ ¿©·¯ ºÎǰµéÀÌ ¸ð¿© ±× ±â´ÉÀ» ÇÏµí »ý¹°ÇÐÀ» ÀÌÇØÇÏ·Á´Â ½Ãµµ¶ó ÇÒ ¼ö ÀÖ´Ù. ³ª¹«¿Í ½£À» º¸´Â °úÁ¤ÀÌ ÇÊ¿äÇÏ´Ù. ÀÌ·¯ÇÑ ¿©·¯ ºÐ¾ß¿¡ database°¡ Á¸ÀçÇÑ´Ù. Signaling pathway, Protein interaction data µîÀ» Æ÷ÇÔÇÑ´Ù. ´ëºÎºÐÀÇ ÀÚ·áµéÀº µµÇØ·Î ÀÌ·ç¾îÁ® ÀÖÀ¸³ª ±×¸²ÀÌ Àß ¸ð±×·ÁÁú ¼öµµ ÀÖ°í À籸¼ºÇϴµ¥ ½Ã°£ÀÌ °É¸®°í ³ÐÀº °ø°£À» ÇÊ¿äÇÏ°Ô µÈ´Ù. (¾çÀÌ ¸¹°í º¹ÀâÇϱ⠶§¹®¿¡)

http://www.kavrakilab.org

´Ü¹éÁúÀÇ ±¸Á¶¿Í ±â´ÉÀ» ÀçÇöÇØº¼ ¼ö ÀÖ´Ù. ¶ÇÇÑ ´Ü¹éÁúÀº ÇѰ¡Áö ±¸Á¶ ÇüÅ·θ¸ Á¸ÀçÇÏ´Â °ÍÀÌ ¾Æ´Ï¶ó ±× ÇüŸ¦ ÇѰ¡Áö µµÇطθ¸ ÀÌÇØÇÒ ¼ö ÀÖ´Â °ÍÀÌ ¾Æ´Ï´Ù. Time scaleÀ» ¾ð±Þ ÇÏ¿´´Âµ¥, micro view¿¡¼­´Â femtosecond picosecond nano second¿¡ ÇØ´çµÇ´Â ½Ã°£ÀÌ macro view¿¡¼­´Â ±× º¸´Ù ´ÊÀº ½Ã°£ÀÇ ´ÜÀ§°¡ Àû¿ëµÇ³®. ubiquitinÀÌ 1°¡ÁöÀÇ snap shotÀÌ ÀÖ´Ù¸é ¿©·¯ ºÐÀÚ±¸Á¶ÀÇ degree of freedom¿¡ µû¶ó ¿©·¯ ´Ù¾çÇÑ ÇüŰ¡ Á¸ÀçÇÒ ¼ö ÀÖ´Ù.

ÀÌ·± ¿©·¯ ÇüÅ¿¡ ´ëÇÑ ¿¬±¸¸¦ Çϰí ÀÖÀ¸¸ç ÀÌ·¯ÇÑ ¿¬±¸°¡ ½ÇÇè½Ç ¿¬±¸¿Í ¿µ»óÈ­¿¡ ±â¿©ÇÒ °ÍÀ̶ó°í »ý°¢Çϰí ÀÖ´Ù.

¿¬±¸¿¡ FTIRÀ» »ç¿ëÇÏ´ÂÁö¸¦ Áú¹®ÇÏ¿´À¸³ª »ç¿ëÇÏÁö´Â ¾Ê´Â´Ù°í ÇÑ´Ù. ¾î¶² ¾×ü¿¡ ±â¹ÝÀ» µÐä·Î ¿¬±¸ÇÏ´ÂÁö¸¦ ¹°¾ú´Ù. ´ë´äÀº ¹°.

3:10-3:50 p.m.

Novel Hydrogel Systems Targeted for Dentin Tissue Regeneration
Rena N. D'Souza, DDS, PhD

Big issues about a small tissue¿¡ ´ëÇØ¼­ ¸»ÇϰíÀÚ Çß´Ù. Ä¡¾Æ¿¡ ´ëÇÑ °£´ÜÇÑ ¼³¸íÈÄ, ³­¼Ò¿¡¼­ Çü¼ºµÈ Á¾¾ç¿¡¼­ Ä¡¾Æ°¡ ¹ß°ßµÇ´Â °ÍÀ¸·Î Ä¡¾Æ¸¦ Àç»ý½Ãų ¼ö ÀÖÀ» °ÍÀ̶ó´Â ¼³¸íÀ» ÇÏ¿´´Ù. stem cell¿¡ ´ëÇÑ °£´ÜÇÑ ¼³¸í.

Yamanaka factors : Oct3/4, Sox2,Klf4, c-Myc

HeparinÀ» ÅëÇØ ¼ºÀåÀÎÀÚ¸¦ Á¶±Ý´õ È¿À²ÀûÀ¸·Î Àû¿ë°¡´ÉÇß¾ú´Ù°í ¼³¸í.

D.D.S. ¶ó¼­ ±â´ëÇÏ°í µé¾ú´Âµ¥ Á» ½Ç¸Á½º·¯¿ü´Ù.

4:00-4:40 p.m.

Extracellular Matrix: Structure and Function; Applications to Tissue Engineering
Mary C. Farach-Carson, Ph.D.

ECM, shaper of tissues!!!

focal adhesionÀº anchring°ú... ¸¦ ÀÌ·é´Ù.

basement membraneÀº ¿£Áö´Ï¾î¿¡°Ô´Â ÀçÇöÇϱ⠾î·Á¿î ´ë»ó, »ý¹°ÇÐÀÚ¿¡°Ô´Â ºÐ¼®Çϱ⠾î·Á¿î ´ë»óÀÌ µÈ´Ù,

Äݶó°Õ ¼³¸í, FACIT collagen

neurons love laminin

soluble RGD to disrupt cell-ECM adhesion

 

4:50-5:30 p.m.

Cell Migration and Tissue Growth
Kyriacos Zygourakis, Ph.D.

cells signals scaffollds,,,

¼¼Æ÷°¡ ¸· µ¹¾Æ°¡´Â ¸ð½ÀÀÇ µ¿¿µ»óÀ» º¸¿© ÁÖ¾ú´Ù

½ºÄ³Æúµå ´ë·® Àû¿ëÀÇ ¾î·Á¿ò. ¿µ¾ç Àü´ÞÀÌ ½±Áö ¾ÊÀ½

small Thiele modulus

Large ; cell areg gonit yo bv...totd

5:30 p.m.

Laboratory Tours and Reception

¿¬±¸½Ç ¼³¸íÀÌ ³¡³­ ÈÄ, ¿¬±¸°Ç¹° 9 Ãþ¿¡ ¸¶·ÃµÈ ¸¸ÂùÀå¿¡¼­ ¼­·Î ´Ù°ú À½½ÄÀ» °°ÀÌ Çß´Ù.

8:30 p.m

¸¸Âù¿¡¼­ È£ÅÚ·Î µ¹¾Æ¿È

Èúư È£ÅÚ¿¡ ´Ù´Ù¸£ÀÚ ·Îºñ¿¡¼­ ³×´ú¶õµå¿¡¼­ ¿ÂÄ£±¸µéÀÌ °°ÀÌ pub¿¡¼­ ÇÑÀÜ ÇÏÀÚ°í ÇÔ. ±èÇØ¿ø ±³¼ö´Ô ¼ö¶ô. ¸ðµÎµé rice universityÀÇ ¹ßÇÒ¶ó pubÀ¸·Î ¶°³². ¼úÀÌ ³Ê¹«³ªµµ ½Õ°í, ¿Ü±¹Àεé°ú ³Ê¹«³ª ´ëÈ­°¡ Àß µÇ¾ú´Ù.

12:10 p.m.

È£ÅÚ·Î °É¾î¼­ ±Íȯ

 

2010.8.12 (Thu)

07:00

¸ðµÎµé ·Îºñ¿¡¼­ ¸¸³². °­¿¬ÀåÀ¸·Î ÇâÇßÀ½. ½Ä»ç¸¦ ¸¶Ä§.

08:00

±èÇØ¿ø ±³¼ö´Ô °­¿¬Àå¿¡¼­ ¸®ºä ³í¹®À» ÀÛ¼ºÇØ º¼ °ÍÀ» ±ÇÇϽÉ

8:00-8:40 a.m.

Mesenchymal Stem Cells for Tissue Engineering 
Paul J. Simmons, Ph.D.

 

1825³â Francoi RaspailÀº ¼¼Æ÷µéÀÌ ´Ù¸¥ ¼¼Æ÷µé¿¡ ±â¿øÇÏ¸ç ¸ðµÎ µ¿µîÇÏÁö ¾Ê°í ±× Â÷À̰¡ À¯±âüÀÇ ¼¼Æ÷ ¹è¿­À» ¼³¸íÇÒ ¼ö ÀÖÀ» °Í, À̰ÍÀÌ Stem cellÀ» ¼³¸íÇÏ´Â ±âº»ÀÌ µÇ¾úÀ½. Stem cell¿¡ ´ëÇÑ ±âº»ÀûÀÎ ¼³¸í iPS¿¡ ´ëÇÑ ¼³¸í (Oct3/4, Sox2, c-yMyc, Klf4), Niche¿¡ ´ëÇÑ ¼³¸í. MSC¿¡ ´ëÇÑ Á¤ÀÇ, "Á¶Ç÷ multi potent cellÀÌ ¾Æ´Ñ¸é¼­ Á߹迱 ±â¿øÀÇ Á¶Á÷À¸·Î ºÐÈ­°¡´ÉÇÑ ¼¼Æ÷" ºñ½ÁÇÑ À̸§ÀÇ ¼¼Æ÷°¡ ¸¹´Ù. MSC, osteogenic stem cells, marrow stromal fibroblastic cell, bone marrow stromal cell,
Bone marrow´Â µÎ°¡Áö multipotent stem cellÀ» °®°í ÀÖ´Ù. Çϳª´Â MSC, ¶ÇÇϳª´Â HSC(adipocyte, osteoblast, chondrocyte)
fibroblast colony forming cells (CFU-F);
CFU-F¸¦ ´Ù¸¥ À§Ä¡(½ÅÀåÇ¥¸é)¿¡ À̽ÄÇѰæ¿ì °ñÀ» Çü¼ºÇÏ´Â °æ¿ì°¡ ÀÖ¾ú´Ù.
MSC°¡ colony¸¦ Çü¼ºÇϰí À̰ÍÀÌ bone, fat, cartilage·Î °¡´ÉÇÏ´Ù.
CD105, CD73 ÈçÇÑ ¸¶Ä¿
(HA/TCP¿¡ firbonectinÀ» ÄÚÆÃ) + cell -> bone tissue
chondrogenic ºÐÈ­, TGF-b
adipose differentiation
ÃßÃâÀÇ ¹æ¹ý- STRO-1, HOP-26, NGFR µîµî
Áß¿äÇÑ °üÁ¡, ¼¼Æ÷¸¦ ¾î¶»°Ô È®ÀÎÇÒ °ÍÀΰ¡?, ÇØºÎÇÐÀûÀÎ À§Ä¡(´Ï½¬), Ontogeny?,
Ç÷°ü ÁÖÀ§ ºÎÀ§¿¡¼­ MSC°¡ Á¸Àç CD45, CD146, a-SMA, STRO-1 VCAM
Pericyte°¡ ¸ðµå MSCÀÏ ¼ö ¾ø°í, MSC°¡ ¸ðµÎ pericyte±â¿øÀÌÁö´Â ¾ÊÀ» °Í(»ç°ß)
°ñ¼ö¿¡¼­ MSC¸¦ ÃßÃâÇÏ´Â ´Ü°è¿¡ ´ëÇØ ¼³¸í

MSC°¡ ¿Ü¹è¿°, ³»¹è¿°, Á߹迱 ¸ðµÎ¸¦ ¹ßÇö½ÃŰ´Â °¡?

SHED; ?

STRO1+MSC°¡ °ñÀý¿¡ »ç¿ëµÇ´Â ¿¹¸¦ ¼³¸í

MSC; immunomodulation

*ÁúÀÇÀÀ´ä

ÀÓ»óÀûÀÎ »óȲ¿¡¼­ MSCÀÇ Àû¿ë·®À» Áú¹®¹ÞÀ½; ½ÉÀå¿¡ Àû¿ëµÇ´Â °æ¿ì ´Ù¸¥ °÷¿¡ °®Çô ÁÖÀԽà ´Ù µµ´ÞµÇ´Â Áö´Â ¸ð¸£°Ú´Ù. ÀûÀýÇÑ ¾çÀº ¿¬±¸ÀÇ ´ë»óÀÌ µÉ °ÍÀÌ´Ù.
MSC from bone, MSC from fat : MSC from BoneÀÌ ±ÙÀ°À» Àç»ý½Ãų ¼ö ÀÖÀ» °ÍÀΰ¡? Àç»ýÀÌ °¡´ÉÇÒ ¼öµµ ÀÖ°í torphicÇÑ °¡¼³·Î Áï ¸é¿ªÀ» ¾ïÁ¦ÇÏ°í ºÐÈ­ÀÎÀÚ°¡ Ä¡À¯¿¡ ¿µÇâÀ» ÁÙ¼öµµ ÀÖ°Ú´Ù.

 

8:50-9:30 a.m.

Cell Adhesion and Functions on Synthetic Substrates
Rena Bizios, Ph.D.

Tissue microenvironment Design*¿¡ ´ëÇØ ¼³¸í

anchoring, stabilizing;

F-actin filament rearrangement
¼¼Æ÷°¡ ¾Ë·ç¹Ì´½¿¡ ºÎŹµÇ´Â °Í(serumÀÌ ¾øÀ»‹š)

´Ü¹éÁú¿¡ ºÎÂøÇÏ´Â °¢¼¼Æ÷µéÀÇ ¸®°£µå ¼³¸í

axonal out growth; pathÀÇ Æø¿¡ µû¶ó¼­ Àڶ󳪴 °Å¸®°¡ ´Þ¶óÁø´Ù.

¼¼Æ÷°¡ ÀÚ¶ó´Â ȯ°æÀ» ÆÐÅÏÀ¸·Î Á¦ÀÛ,

Osteoblast´Â Ç¥¸é¿¡ ºÎÂøÇϴ ƯÁ¤ÇÑ sequence°¡ ÀÖ´À³ª fibroblast´Â ƯÁ¤Çϱ⠾ʴÙ.
ÀÌ»óÀûÀÎ osteoblastÀÇ ºÎÂø Àº ¸¹Àº ºÎºÐÀÌ Á¤ÇØÁ® ÀÖ´Ù.

fibroblastÀÇ °æ¿ì RGDS º¯Çü, RDGSÀÇ °æ¿ì Â÷À̰¡ ÀÖÀ½

type of peptide,

¼¼Æ÷¸¦ ºÙÀ̱â À§Çؼ­´Â ¼¼Æ÷ÀÇ specipicity¸¦ È®ÀÎÇÒ Çʿ䰡 ÀÖ´Ù.
º¯°æµÈ ±Û¶ó½º Ç¥¸éÀ¸·Î ¼¼Æ÷ ºÎÂøÀ» Áõ½Å ½Ãų ¼ö ÀÖ´Ù´Â ¿¹¸¦ º¸ÀÓ

nanostructureÀÇ °æ¿ì, ¾Ë·ç¹Ì³ªÀÇ 24nmÀÇ alumina¿¡ ´Ü¹éÁúÀÇ ºÎÂøÀÌ ÁÁ¾Ò´Ù aluminaÀÇ Å©±â¿¡ µû¶ó ´Þ¶óÁö´Â ´Ü¹éÁúÀÇ ºÎÂøÀ². 167nmº¸´Ù 24nm°¡ ´õ ÁÁ¾Ò´Ù.

fibroblastÀÇ ºÎÂøÀ» ÁÙÀ̰í osteoblastÀÇ ºÎÂøÀ» ÁõÁø½Ã۴µ¥ grain size°¡ Àû¿ëµÉ ¼ö ÀÖ°Ú´Ù.

"Protein-Engineerd Biomaterials: Highly tunable tissue engineering scaffolds". Tissue Engineering, Part B 16, 285

ÁúÀÇÀÀ´ä

grain-size, grain boundary? ¾îµð¼­ Á÷Á¢ ºÎÂøÀÌ °ü¿©ÇÏ´Â À§Ä¡Àΰ¡, Ç¥¸éÀÌ ¹®Á¦°¡ µÉ °ÍÀ̶ó´Â »ý°¢À» °®°í ÀÖÁö¸¸ ¾î¶² ÇÐÀÚ´Â boundary°¡ ¹®Á¦ÀÏ °Å¶ó´Â ¸»À» Çß¾ú´Ù.

±èÇØ¿ø ±³¼ö´Ô; Grain boundary°¡ Ç¥¸é¿¡³ÊÁö°¡ ³ôÀ¸´Ï±î ´õ¿í ¿µÇâÀ» ¹ÌÄ¡Áö ¾ÊÀ»±î? grain size°¡ ÀÛ¾ÆÁö¸é boundary°¡ ¸¹¾ÆÁü

Bioglass´Â ºÒ±ÔÄ¢ÇÔ, crystalÇüŰ¡ ¾Æ´Ô, grain size·Î Á¢±ÙÇÏ´Â Àç·á°¡ ¾Æ´Ô, ±¤È­¸¦ ÃËÁø½ÃŰ´Â °Í.
ÇöÀç Lab¿¡´Â sandblastingÀÌ ¾øÀ½

9:40-10:20 a.m.

Bioreactors for Tissue Engineering
Vassilios I. Sikavitsas, Ph.D.

±âÁ¸ÀÇ ¼¼Æ÷¹è¾ç Ç÷¹ÀÌÆ®, ´ë·®»ý»êÀÌ ¾î·Æ°í, Å« Á¶Á÷¿¡ Àû¿ëÀÌ ¾î·Æ°í, 3Â÷¿ø ¹è¾ç½Ã ºñ±ÕÁúÇÑ ¹è¾çÀÌ µÈ´Ù.

3Â÷¿ø ½ºÄ³ÆúµåÀÇ ÇѰè; ¿µ¾çÀÌ ±ÕÁúÇÏ°Ô °ø±ÞµÇÁö ¾Ê´Â´Ù.

Spinner Flask; ´ë·® »ý»êÀÌ ¾î·Æ°í, Å« Á¶Á÷ Çü¼ºÀÌ ¾î·Æ°í.. ex) cartilage

ÇüŸ¦ º¯°æÇÏ¿© ´õ ÀÛ°Ô ¸¸µé ¼ö ÀÖ´Ù. The wavy wall spinner flask in Carilage TE

NASA Rotating Wall Vessel BioReactor; ³ª»ç¿¡¼­ °³¹ßÇÑ ¹«Áß·Â »óŸ¦ À¯¹ßÇÏ´Â ¹ÙÀÌ¿À¸®¾×ÅÍ(RWV)
9¾ÆÁÖ Å« Á¶Á÷ ¾î·Æ´Ù. È¥ÇÕÀÌ ½ºÄ³ÆúµåÀÇ ¿ÜÃø¿¡¼­ ÀϾ´Ù. ÀáÀçÀûÀÎ Ãæµ¹ÀÌ wall¿¡¼­ ÀϾ´Ù.

RWVÀÇ º¯Çü. Ãæµ¹ÀÌ ¼¼Æ÷¿¡ ¿µÇâÀ» Áֱ⠶§¹®¿¡, spinner flask¿Í RWVÀÇ È¥ÇÕ.

ÃÖ±Ù¿¡´Â ´õ¿í º¹ÀâÇÑ µðÀÚÀÎÀ» ¸¸µê

Perfusion Bioreactor; ¸ê±Õ»óŸ¦ ¾ò±â Èûµé´Ù.

¿¬ÀÚ°¡ °í¾ÈÇÚ ¹ÙÀÌ¿À ¸®¾×ÅÍ, oscillating flow¸¦ Àû¿ë 2h ¸¶´Ù.

Cardiovascular Bioreactor; Á¤ÀûÀÎ »óÅ¿¡¼­ ¹è¾çµÈ ¼¼Æ÷¿Í µ¿ÀûÀÎ »óÅ¿¡¼­ ¹è¾çµÈ ¼¼Æ÷¿Í ¾ç»óÀÌ ´Ù¸£´Ù.

Á¤Çü¿Ü°úÇп¡¼­ ¹ÙÀÌ¿À¸®¾×ÅÍÀÇ Àû¿ë, »À, ¿¬°ñ, Àδë. µîµî.

feeding bottle, collecting bottle, multi-channel pump, tendon models, controller & amplifier

¼¼Æ÷ÀÇ Áõ½Ä°ú ´Ü¹éÁúÀÇ Çü¼ºÀÌ »ó´çÇÑ Â÷À̰¡ ³ª°Ô µÈ´Ù.

 

computational approach

scaffold->uCT->3d construction->flow dynamics->mass transport

local shear stress distribution(¾î¶»°Ô?); ½ÇÁ¦ ÃøÁ¤À̾ƴ϶ó ½Ã¹Ä·¹À̼Ç..

sodium chloride (NaCl) as porogen 250~350 um grain size; 8mm diameter 2.3 mm thick discs

nonwoven fiber meshs; 34.8

surface stress? u CT?

ÇâÈÄÀÇ ¹æÇâ
realtiem imaging, real time mechanical testing, realtime shear stress measurement
Scail up

**Perfusion**

 

10:30-11:10 a.m.

Injectable Cellular Constructs Using Biodegradable Hydrogels
Stephanie J. Bryant, Ph.D.

Pre-gel solution containg cells -> encapsulation -> gel cross linking -> Gel degradation

thermogeling polymer

fumarates(?) + divinyl macromer

step growth polymerization of macromolecular polymers : acrylates and thiols, norbornenes and thiols, azide and alkynes

polyethylen glycol;

mode of hydrogel degradation(hydrolytic -> bulk degradation), (enzymatic -> bulk degradation, localized degradation)

Micmicking ECM,

RGD regulate macrophage reaction.

lower cross linking density

11:20 a.m.- 12:00 noon

Construction of Neo-Tissues and Neo-Organs with Patient's Own Cells 
Tim Bertram, D.V.M., Ph.D.

biologist and engineer.

5 biological pattern.

½ÇÁ¦·Î´Â ¸öÀÇ Àç»ý±â´ÉÀ» ±×´ë·Î ȸº¹Çϵµ·Ï ÇÏ´Â °ÍÀÌ °ü°ÇÀÌ´Ù.

12:00 noon- 1:30 p.m.

Luncheon

1:30-2:10 p.m.

Synthetic Extracellular Matrix Mimics for Tissue Engineering
Jeffrey D. Hartgerink, Ph.D.

molecular frustration;

structural organization; Lys-m (Gln-

´Ü¹éÁú Á¶ÇÕÀ¸·Î ¿©·¯ ÇüÅÂÀÇ ±¸Á¶¸¦ ÀçÇöÇÒ ¼ö ÀÖÀ½.

hydrogelÀÌ shear,

MMP2°¡ ÀÚ¸£´Â À§Ä¡ K(SL)....

bottom-up design`

beta-sheet ¸¸µé±â ½±´Ù. resiliantÇÏ´Ù.

 

2:20-3:00 p.m.

Fibrin-Based Matricies for Tissue Engineering 
Bill J. Tawil, Ph.D., M.B.A.

»óó Ä¡À¯ÀÇ ±âÀüÀ» ¼³¸íÇÏ¿´´Ù.

fibrinÀÌ Ç÷°üÇü¼º¿¡ ¿µÇâÀ» ¹ÌÄ£´Ù. ÇǺ기ÀÌ ¾øÀ» ¶§,

fibrin + calcium phosphate

fibroblast , keratinocyte

UV¸¦ ÂØ¸é crosslinking ±âÀüÀº? -> °­¿¬ÀÚµµ Àß ¸ð¸§(?) * ±èÇØ¿ø ±³¼ö´Ô, Äݶó°ÕÀ̵ç fibrinÀ̵ç UV¸¦ ÂØ°Å³ª ¿­À» °¡Çϸé ÀϺΠºØ±«°¡ µÇ¸é¼­ crosslinkingÀÌ ÀϾ.

3:10-3:50 p.m.

Development and Commercialization of Soft Tissue Repair Scaffolds
David J. McQuillan, Ph.D.

regeneration and repair(scar, fibrin)

Ŭ·¡½º¸¦ 3°¡Áö·Î ³ª´©¾úÀ½

È­ÇÐÀû cross-linkingÀÌ integrationÀ» ¸·À½

immunological barrior to xenotransplantation

4:00-4:40 p.m.

Interfacial Tissue Engineering
Johnna S. Temenoff, Ph.D.

°è¸éÀº Áß¿äÇÏ´Ù. load transfer, locomotionÀÇ ¿µÇâ ¶§¹®

OPF

°è¼Ó ÀÚ±ØÀÌ °¡ÇØÁö´Â »óȲ¿¡¼­ ¼¼Æ÷ÀÇ viability´Â ÀÏÁ¤Çß°í collagenÀº ¹ßÇöÀÌ Áõ°¡µÇ¾ú´Ù. Tanacin-Cµµ ¹ßÇöÀÌ Áõ°¡µÇ¾ú´Ù.

 

4:50-5:30 p.m.

Tissue Engineering in Oral and Maxillofacial Surgery
Mark E.K. Wong, D.D.S.

±¸°­¿Ü°ú ÀÇ»çÀÇ °­¿¬. ÀÓ»ó°¡µéÀº ´ë°³ ¾à°£ Çø¿À½º·± »çÁøÀ» º¸¿©ÁÖ´Â ½À¼ºÀ» º¸¿´´Ù. ÀÚ½ÅÀ» Â÷º°È­ÇÏ·Á´Â °ÍÀϱî? ³»¿ëÀº ±×´ÙÁö ½â ÈǸ¢ÇÏÁö´Â ¾Ê¾Ò´Ù. ¼î¸Ç½ÊÀº ´ë´ÜÇß´ø°Í °°´Ù.

2010.8.13 (Fri)

8:00-8:40 a.m.

Vascular Morphogenesis and Regeneration 
Karen K. Hirschi, Ph.D.

Ç÷°üÇü¼ºÀ» À§ÇÑ ¼¼Æ÷´Ü°èÀÇ delineation, °¢°¢ÀÇ ´Ü°è¿¡¼­ ºÐ»ç ȯ°æÀÇ signaling, Àΰ£ Ç÷°ü ¼¼Æ÷ÀÇ ºÐÈ­¿Í Ưȭ(ÀÚ°¡ ½Åü¿¡¼­ÀÇ hES and iPS), ÁöÁö Áٱ⼼Æ÷¿¡¼­ Ç÷°ü°èÀÇ niche¾È¿¡¼­ÀÇ ¿î¸í°ú ±â´ÉÀÇ Á¤ÀÇ

±Þ¼ºÀ̳ª ¸¸¼º Áúȯ¿¡¼­ ½Å°æÀÇ ÅðÇà°ú Ç÷°üÀÇ ÅðÇàÀÌ ÀϾ°Ô µÊ

neurovascular regeneration

hES(human embryonic stem cell), iPS

vascular induction, Yolk sac¿¡¼­ primitive vascular plexus¸¦ Àý´ÜÇØ º¸¸é visceral endodrm+mesodermÀ¸·Î ±¸¼ºµÇ¾î ÀÖ´Ù.

murine endonthelial cll development visceral endoderm-> mesoderm (¿©·µ ½Ã±×³Î, bFGF, FGFR, Ihh, Ptc Smo, BMP-4, VEGF-A, Bmpr1a, Flk-1) 0> primitive endotherlium

adult hES cell-derived, iPS -> plexus

H1 & H9 hES cells

VEGF & bFGF signallingÀº Àΰ£ÀÇ endothelial cell differentiationÀ» À¯µµÇÏÁö ¾ÊÀ½ (H1 & H9 hES)

VEGF ½ÅÈ£´Â Ȧ·Î endothelial cell development¸¦ hES ¼¼Æ÷¿¡¼­ ÀÏÀ¸Å°Áö ¾ÊÀ½

Summary; Ihh°¡ hES ¼¼Æ÷¸¦ endothelial cell·Î ºÐÈ­¸¦ ÃËÁø½ÃŲ´Ù.
hedgehog ½ÅÈ£ÀÇ ¾ïÁ¦´Â endothelial and hematopoietic ¼¼Æ÷ºÐÈ­¸¦ ¼Õ»ó½ÃŲ´Ù.
BMP ½ÅÈ£´Â endothelial cell formationÀ» ÃËÁøÇÏ´Â IhhÀÇ downstreamÀ» ±â´ÉÇÏ°Ô ÇÑ´Ù.

8:50-9:30 a.m.

Designer Materials for Cardiovascular Tissue Engineering
William R. Wagner, Ph.D.

development of turnable polymer system

¿©·¯ È­ÇнĵéÀÌ ³ª¿À¸ç ±â´ÉÀûÀÎ ¼ºÁúÀ» ºÎ¿©Çϱâ À§ÇØ ¸¹Àº ½Ãµµ¸¦ º¸¿©ÁÖ¾ú´Ù.

ex) elastase lability (AAK)¸¦ ºÎ¿©, elastase¿¡ ºÐÇØ°¡ Á»´õ ºü¸£°Ô µÊ

Thermally induced phase separation (TIPS)À» ÅëÇØ ´Ù°ø¼ºÀ» Á¶Àý patch Çü¼º µîµîµîÀÇ ÀÏÀ» ÇÑÈÄ

½ÉÀåÀÇ ventricular À§Ä¡¿¡ Àû¿ëÇÏ¿´´Ù.

Ventricular assist devices(VAD)

PolyurethaneÀ» ÅëÇÑ patch¿Í injection typeÀ» °³¹ßÇÏ¿© ½ÉÀå Áúȯ¿¡ Àû¿ëÇÒ ¼ö ÀÖ´Â ¹°Áú °³¹ßÀ» ´Ü°è´Ü°è Â÷±ÙÈ÷ ¼³¸íÇÔ

9:40-10:20 a.m.

Vascularization of Tissue Engineering Constructs
Laura J. Suggs, Ph.D.

Vasculogenesis; Two process progenitor differentiation vs paracrine induction

Adult stem cell; Bone marrow stromal cells, endothelial progenitor cells, side population cells, adipose derived stem cells

µðÀÚÀÎÀÇ Á¢±Ù : Vascular cell assembly, Angiogenic growth factor delivery, In vivo prevascularization(½Åü¸¦ ¹ÙÀÌ¿À ¸®¾×ÅÍ·Î ÀÌ¿ëÇÏ´Â °Í)

Angiogenic factor: ~5um host cell invasion and angiogenesis

classes of scaffold materials; acellular matrix, cell0seeded porous scaffold, cell-seeded gells

myocardial infarctionÀÇ Ã³Ä¡ : myocardial patch, injectable carrier

Biomatrix implants extract...

Vascular and perivascular specific marker expression; Hoeschst, vWF0Alexa Fluor 488, CD31..,

Differentiation and Tubulogenesis

VEGF È¥ÀÚ¼­´Â È¿°ú¸¦ º¸ÀÌÁö ¾Ê¾Ò´Ù. (physiologic relevance? dosage? duration? single GF?)

Matrigel assay ; 2Â÷¿ø Æò°¡¹ý

Aortic Ring assay;

Assay system, 3Â÷¿øÀ» À§ÇØ ÇüŸ¦ ºÎ¿©(´©¹èÇÔÀÔ)

 

10:30-11:10 a.m.

Tissue Engineering of Heart Valves
K. Jane Grande-Allen, Ph.D.

½ÉÀåÀÇ ÆÇ¸·À» Àç»ýÇϱâ À§ÇÑ Á¶Á÷°øÇÐ

½ÉÀå ÆÇ¸·¿¡ ´ëÇÑ ±âº»ÀûÀÎ ¼³¸í

µÅÁö ÆÇ¸·ÀÇ ¹°¼º¿¡ ´ëÇÑ º¸°í ¼Ò°³

Valvular endothilal cells, Decelluarized valve scffold ¼Ò°³

»õ·Î¿î ½ºÄ³ÆúµåÀÇ °³¹ß

PVA with modified PLA
PEG-DA with hyaluronan
PEG-DA with cell adhesive ligands
PEG-DA tailored with variable material properties

¾î¸¥°ú´Â ¾ÆÀ̵éÀÇ »óȲ¿¡ ´ëÇÑ Á¢±Ù

11:20 a.m.-12:00 noon

Pediatric Cardiac Tissue Engineering
Jeffrey G. Jacot, Ph.D.

½ÉÀåÁúȯ¿¡ ´ëÇÑ °³°ýÀûÀÎ ¼³¸í

state of art in cardiac patching

Amnionic derived stem cells

primary AFSC from amniotic fluid; fast growing cell (dobuling time 34.6 hour)

AFSC; keryotypically stable over 4 passages, genetically matched to the fetus,

Cardiogenic media can induce epxression of mesodermal, myogenic and cardiac markers.

Neonatal rat venticular myocytes as a model of myocyte

12:00 noon- 1:30 p.m.

Luncheon

1:30-2:10 p.m.

Controlled Growth Factor Delivery for Tissue Engineering
David J. Mooney, Ph.D.

dose? duration? distance?

myocardial infarction, stroke, peripheral vascular disease -> therapeutic angiogenesis(proteolysis->migration,proliferation->maturation,differentiation)

VEGF(vascular endothelial frowth factor)

¾î¶»°Ô ¼ºÀåÀÎÀÚ¸¦ ÇãÇ÷¼º Á¶Á÷¿¡ Àü´ÞÇÒ °ÍÀΰ¡? (±¹¼ÒÀûÀÎ perfusionÀ» ÁõÁø½Ã۱â À§ÇÏ¿©)

drug delivery using polymers

VEGF Àû¿ëÈÄ PDGF Àû¿ë

tumor¿¡¼­ Ç÷°üÀÌ ´õ permeableÇÏ°Ô µÈ´Ù. EPR

2:20-3:00 p.m.

Clinical Experiences with Drug Delivery Systems for Regenerative Medicine Applications
Yasuhiko Tabata, Ph.D., D.Med.Sci., D.Pharm.

¸»ÀÌ Á¤¸» »¡¶ú´ø ÀϺ»ÀÎ, ±³Åä ´ëÇп¡¼­ ¿Ô´Ù°í Çß´Ù.

DDSÀÇ 4°¡Áö ÁßÁ¡; (1) controlled release of drug, (2) prolongation of drug life-time, (3) acceleration of drug absorption, (4) drug targeting

DDS óġ¸¦ ÅëÇØ¼­ ÇØ°áµÈ µå¶ó¸¶Æ½ÇÑ °á°úµéÀ» °è¼Ó º¸¿©ÁÖ¾ú´Âµ¥ ¾à°£ ¾àÀå¼ö °°Àº ´À³¦À̾ú´Ù.

ƯÈ÷ DDS¸¦ ÅëÇØ Ä¡¾Æ¸¦ óġÇÑ °æ¿ì¸¦ º¸¿©ÁÖ¾ú´Âµ¥ ÀÌ °æ¿ì´Â DDSóġ¸¦ ÅëÇØ¼­ ÀÌ·ç¾îÁø °ÍÀÌ ¾Æ´Ï¶ó ±×³É º¸Åë óġ¸¦ ÅëÇØ¼­µµ ÀÌ·ç¾îÁú ¼ö ÀÖ´Â °æ¿ì¿´´Ù.

3:10-3:50 p.m.

Emerging Approaches for Engineering Composite Tissues
James J. Yoo, M.D., Ph.D.

¼¼Æ÷´Â 3mm^3 ÀÌ»óÀÇ Ã¼ÀûÀ¸·Î ÀÌ½ÄµÉ ¼ö ¾ø´Ù. ; vasculrity.

oxygen generating particle; Á¶Á÷ÀÇ ±«»ç¸¦ ¾ø¿¤ ¼ö ÀÖ¾ú´Ù.

±ÙÀ°ÀÌ Àç»ýµÈ ÀÌÈÄ¿¡´Â ½Å°æÀÇ Àç»ýÀÌ Áß¿äÇÑ °ü°ÇÀÌ µÈ´Ù.

4:00-4:40 p.m.

Tissue Engineering in Orthopaedic Surgery 
George Muschler, M.D.

Connective tissue progenitor¶ó´Â Ç¥ÇöÀÌ ¸ÂÀ½; ³ª¸ÓÁö Ç¥ÇöÀº Ʋ¸° °ÍÀ̶ó°í ÁÖÀå. mechanocyte CFU-F(not only fibroblastic?), mesenchymal stem cell(assymmetric division? pleufipotent? undifferentiated homogeneous?), marrow stromal cell(supperot hematopoesis?)

Bone marrow harvest at hip bone(illiac crest), aspiration ÈO÷¸¦ ´Ù½Ã ¹è¾çÇÔ

¸¹Àº ¼¼Æ÷°¡ ´õ¿í ÁÁÀº °ÍÀΰ¡? ±×·¸Áö ¾ÊÀ½

Scaling laws; ½ÇÁ¦ °ñ¼ö¿¡¼­ Â÷ÁöÇÏ´Â ¾ç¸¸Å­ÀÌ ÁÁÀ» °Í; °è»ê½ÄÀ» ¼¼¿îµÚ Àû¿ë

**CTP selection based on ECM Niche Markers** ; magnetic bead¸¦ ¼¼Æ÷¿¡ ´Þ¾Æ¼­ ´Ù¾çÇÑ ÀÚÀå(hexapole)À» ¸¸µé°í scaffold ÇüÅ ¸¦ Çü¼º??
molecular surface design
tethered EGF on composite polymer/TCP scaffolds
local oxygen delivery.

ÁúÀÇÀÀ´ä; ÇüŸ¦ Á¤È®È÷ ¿¹Ãø ÇϱⰡ ¾î·Á¿ò? ; ¼¼Æ÷¿¡µµ ÀþÀº ´ÄÀº ¼¼Æ÷°¡ ÀÖÀ½. Á¶Á÷ À̽ÄÀº Å©±â°¡ ¹®Á¦,

4:50-5:30 p.m.

Development of Biomedical Technologies and Products for Tissue Engineering
James Parakka, Ph.D.

DSM biomedical.

cricket jump?

¿©·¯ ÇÕ¼º Àç·á¸¦ Ư¡º°·Î ¼Ò°³ÇÏ¿´À½

5:30 p.m.

Dinner

Àú³á ½Ã°£Àº 9½Ã±îÁö À̾îÁ³´Ù. Âü ±¦Âú´Ù°í »ý°¢µÇ´Â °ÍÀº ¾ÆÄ§ Á¡½É Àú³áÀ» ¸ðµÎ ÇØ°áÇÒ ¼ö ÀÖµµ·Ï ÁÖÃÖÃø¿¡¼­ ÁغñÇß´Ù´Â °ÍÀÌ´Ù.

¿¬¼öȸ¸¦ ÁÖÃÖÇÑ ¹ÌÄÚ ±³¼ö¿Í ÇÔ²² »çÁø ÃÔ¿µ

 

µð³Ê°¡ ³¡³­ ÈÄ, ³×´ú¶õµå Ä£±¸µéÀÌ Àú³á ½Ã°£À» °°ÀÌ ÇÏÀÚ°í Á¦¾ÈÇß´Ù. ¿ì¸®´Â ¹ßÇÒ¶ó¶ó´Â ¶óÀ̽º ´ëÇг»ÀÇ Æà¿¡¼­ ¸¸³µ´Ù.

±èÇØ¿ø ±³¼ö´ÔÀº ´ç½Ã ¿¬ÀÚ¿´´ø Çѱ¹ÀÎ ±³¼ö´ÔÀÇ ·¦ ºÐµé°ú ¸ÆÁÖÇÑÀÜÀ» ÇÏ´Â ÀÚ¸®¸¦ ¸¶·ÃÇϼ̴Ù.

Çü¼®ÀÎ ÇüÀº À̳¯ Á¤¸» ±ä½Ã°£µ¿¾È ³×´ú¶õµå ¾ÆÀ̵é°ú ¾î¿ï·È´Ù.

¹ßÇÒ¶ó Æà ÀÔ±¸

È£ÅÚ±îÁö µ¿ÇàÇß´ø ³×´ú¶õµå Ä£±¸µé, Çü¼®ÀÌÇü µ¥¸®°í ¿À´Âµ¥ Á¶±Ý Èûµé¾ú´Ù. ¤¾

2010.8.14 (Sat)

8:00-8:40 a.m.

Strategic Directions in Tissue Engineering
Peter C. Johnson, M.D.

¹ÌÄÚ½º ±³¼ö¿¡ ´ëÇÑ Á¶Å©·Î ½ÃÀ۵Ǿú´Ù.

¿¬±¸¸¦ ½ÃÀÛÇÏ´Â »ç¶÷, ¿¬±¸È¯°æÀ» È®¸³ÇÑ »ç¶÷, ±â¾÷À» ½ÃÀÛÇÑ »ç¶÷, ±â¾÷À» ½ÃÀÛÇØ¼­ ±â¹ÝÀ» ÀâÀº »ç¶÷

8:50-9:30 a.m.

Carbon-Based Nanomaterials for Drug Delivery and Tissue Engineering
James M. Tour, Ph.D. 

Permanent Anioxidant "Therapy"

TBI Model

9:40-10:20 a.m.

Incorporation of Biological Molecules into Ceramic Materials
John A. Jansen, D.D.S., Ph.D.

Surface acoustic wave (SAW) atomizer +ESD
DNA coating

³×´ú¶õµå¿¡¼­ ¿Â ¾á¼¾±³¼ö

10:30-11:10 a.m.

Nanocomposite Scaffolds for Tissue Engineering
F. Kurtis Kasper, Ph.D.

fumarate-based polymers, Poly(propylene fumarate) porocity

alumoxane nanoparticles

nanodispersion

nanoreinforcement

"alumoxane nanoparticles" degradationÀ» ´ÊÃßÁö ¾Ê´Â´Ù.

 

11:20 a.m.- 12:00 noon

Design and Delivery of Nanotherapeutics for Tissue Engineering
Junghae Suh, Ph.D.

AAV (adeno-associated virus) 25nm,

self assembled monolyaers(SAMs) ´Ù¾çÇÑ ¸»´Ü±â, Ç¥¸éÀÌ º¯È­µÊ.

À̰͵éÀº -CH3, -COOH, -NH3, -OH·Î º¯È­½ÃÅ´, ¼¼Æ÷¿¡ Àû¿ëµÉ °æ¿ì -OH¿¡¼­ ´õ¿í ¸¹Àº ¼Õ»óÀÌ È®ÀεÊ

Created versatile AAV capsid gene library prototype
- insert any epptide of choice
- easy cloning
- help identify optimal ligand insertion sites

Micropattern AAV using microcontact printing
- Robust reverse transduction on several surfaces
- Next step: identify AAV variants able to transduce stem cells efficaiently

12:00 noon- 1:30 p.m.

Luncheon

1:30-2:10 p.m.

Regeneration-Inspired Tissue Engineering 
Panagiotis A. Tsonis, Ph.D.

 

2:20-3:00 p.m.

Commercialization of Live Cell Products: Failures and Successes 
Chris Gemmiti, Ph.D.

3:10-3:50 p.m.

Metabolic Challenges for Tissue Engineering 
Deepak Nagrath, Ph.D.

°­ÀÇ¿¡ ÁýÁßÀÌ ¾î·Á¿ö ¿¬ÀÚ¿¡°Ô´Â ¹Ì¾ÈÇÏÁö¸¸ Àá±ñ ¹Û¿¡³ª¿Í ÈÞ½ÄÀ» ÃëÇß´Ù. Àü³¯ ³×´ú¶õµå ¾á¼¾ ±³¼ö´Ô ·¦ÀÇ ¾ÆÀ̵é°ú °°ÀÌ Çß´ø ½Ã°£µéÀÌ Á» ¹«¸®¿´´ø °Í °°´Ù. ³ª¿Í¼­ ¿¬±¸½Ç¿¡ ÀÖ´Â Çý¿µ¾¾¿Í ´ëÈ­¸¦ Á» ³ª´©¾ú´Âµ¥, ±èÇØ¿ø ±³¼ö´Ô ·¦ÀÇ ¾î·Á »ç¼ÒÇÒ ¼öµµ ÀÖ°í Áß¿äÇÒ ¼öµµ ÀÖ´Â ±×·± À̾߱⸦ µé¾ú´Ù. ±× À̾߱⸦ µè°í º¸´Ï Á» ÇѼûÀÌ ³ª¿Ô´Ù. ¾î¸° ÇлýµéÀÌ¶ó¼­ ±×·²±î? ¾Æ´Ï¸é ±èÇØ¿ø ±³¼ö´ÔÀÇ Æ¯Â¡ ¶§¹®À̶ó ±×·²±î? ·¦¿¡ ǮŸÀÓÀ¸·Î µé¾î°¡¸é ³ª´Â ¾î¶»°Ô µÇ¾úÀ»±î »ý°¢ÇÏ°Ô µÇ´ø ÇÏ·ç¿´´Ù.

 

4:00-4:40 p.m.

High Resolution Imaging Techniques for Evaluation of Tissue Engineering Constructs
Mary E. Dickinson, Ph.D.

 

4:50-5:30 p.m.

Animal Models for Evaluation of Tissue-Engineered Devices
Michael J. Yaszemski, M.D., Ph.D.

µåµð¾î ±æ°í±æ´ø ¸±·¹ÀÌ °­Àǰ¡ ³¡³µ´Ù. Á¤¸» ¸¶Áö¸· °­ÀÇ¿¡¼­´Â ÁýÁßÀÌ ¾î·Á¿ö ÇÁ¸®Á¨Å×À̼ÇÀ» Áñ±â´Â ¸¶À½À¸·Î µé¾ú´Ù. À̼öÁõÀº ¿ìÆíÀ¸·Î º¸³»Áشٰí ÇÑ´Ù. °­ÀÇ¿¡ ³ª¼¹´ø ¸¹Àº ºÐµé Á¤¸» °í»ýÇß´Ù. ³ª¿¡°Ôµµ ¾î¶² ÀÌÁ¤Ç¥°¡ µÉ ¸¸ÇÑ ÁÁÀº °­ÀÇ¿´°í, ±âȸ¿´´Ù.

Minute Maid Park

¹Ì´Ö¸ÞÀÌµå ÆÄÅ©

ÈÞ½ºÅÏ ¾Ö½ºÆ®·Î½ºÀÇ È¨±¸Àå, 4¸¸ 2000¸í ¼ö¿ë±Ô¸ð·Î 2000³â °³ÀåÇÏ¿´´Ù. ƼÄϱ¸¸Å

ƼÄÏ 9¸íÄ¡¸¦ ±¸ÀÔ, ÀÌÈ­¿©´ë Ãâ½Å ±³¼ö´ÔÀº ¾îµð·Ð°¡ ¶°³ª º¸ÀÌÁö ¾Ê¾Ò´Ù. ¾Ö²àÀº ƼÄÏ ÇÑÀåÀÌ ³¯¾Æ°¬´Ù. (¿©Çà¿¡¼­ ÀÌ·±ºÐµéÀº ²À È®ÀÎÀ» ¹Þ¾Æ¾ß ÇÑ´Ù!)

°æ±â´Â ÈÞ½ºÅÏ ¾Ö½ºÆ®·Î½º°¡ À̰å´Ù. »ó´ëÆíÀÎ ÇÇÃ÷¹ö±×¿¡ ¹ÚÂùÈ£°¡ ÀÌÀûÀ» ÇØ¼­ ³ª¿Ã±î ±â´ë¸¦ Çß¾ú´Âµ¥ ³ª¿ÀÁö´Â ¾Ê¾Ò´Ù.

Ȩ °æ±â¿¡¼­ À̱âÀÚ °æ±âÀå ÇÑÂÊÆíÀÇ ±âÂ÷°¡ ±âÀû ¼Ò¸®¿Í ÇÔ²² ´Þ¸®±â ½ÃÀÛÇÑ´Ù.

ÈÆÈÆÇÑ ¹ã°ø±â¸¦ ´À³¢¸ç Àú³á½Ä»ç¸¦ ÇÏ·¯°¡´ø ¸ð½À. ¾ß¿À À½½ÄÁ¡ Á÷ÀüÀÇ °ñ¸ñ

¾ß¿À¶ó´Â Áß±¹À½½ÄÁ¡¿¡ °¬´Ù. Áß±¹ ³ó±¸¼±¼ö ¾ß¿À¹ÖÀÇ ¼ÒÀ¯¶ó°í ÇÑ´Ù. À½½ÄÀº ¸ÀÀÖ±â´Â Çߴµ¥ ±×¸¸Å­ ºñ½Õ´Ù. ³Ê¹« ÇǰïÇØ¼­ ÀÎÁö ¹ä¸ÔÀ¸¸é¼­ ½¬°í ½ÍÀº »ý°¢ »ÓÀ̾ú´Ù. ½Ã°£ÀÌ Èê·¯ ´Ù½Ã ¼÷¼Ò ÈúưȣÅÚ·Î µ¹¾Æ¿Ô°í ±×´ë·Î ±âÀýÇϵí ÀÚ¹ö·È´Ù.

2010.8.15 (Sun)

07:00 am

»õº®.. ÇǰïÇÏ´Ù. µÚôÀ̸ç ÀÚ´Ù°¡ ÀϾ°Ô µÇ¾ú´Ù.

08:30 am

¾ÆÄ§ NANA ·Î ¶°³¯ Åýø¦ ¿¹¾àÇÏ°í ±èÇØ¿ø ±³¼ö´Ô°ú Àá±ñ Çй®ÀÇ ¹æÇâ¿¡ ´ëÇÑ ´ëÈ­¸¦ ³ª´©¾ú´Ù.

09:00 am

È£Åڷκñ¿¡¼­ ¸¸³­ Çü¼®ÀÌÇü°ú Çå¼ö

Èúư È£ÅÚ¾Õ¿¡¼­ ³ª»ç·Î °¡´Â Åýø¦ ±â´Ù¸®¸ç

10:00 am

NASA Space Center, Houston

¹ÌÇ×°ø¿ìÁÖ¼¾ÅÍ

 

³ª»ç ÀÔ±¸¿¡ µµÂøÇß´Ù.

°üÀç½Ç

°ú°Å ¿ìÁÖ¼± ¹ß»ç ½ÇÆÐ½Ã ¸ñ¼ûÀ» ÀÒ¾ú´ø ½Â¹«¿øµéÀ» ±â¸®´Â ³ª¹«µé.

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Kemah Boardwalk

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Swimming Pool in Hilton Hotel

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2010.8.16 (Mon)

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2010.8.17 (Tue)

 

03:00 pm

µåµð¾î Çѱ¹, ÀÎõ °øÇ׿¡ µµÂøÇß´Ù. ½ÃÂ÷ °è»ê °°Àº °Ç ´õÀÌ»ó ÇÏ°í ½ÍÁö ¾Ê´Ù. ºñÁ¼Àº °ø°£¿¡¼­ ¼·Ãë¿Í ¼ö¸é¸¸À» ÃëÇÏ´Ùº¸´Ï Àá±ñ '³ª´Â »ý°¢ÇÑ´Ù, °í·Î ³ª´Â Á¸ÀçÇÑ´Ù'´Â µ¥Ä«¸£Æ®ÀÇ ¸íÁ¦°¡ ¶°¿Ã¶ú´Âµ¥, ³­ Àá±ñ µ¿¾È ºñÇà±â ¾È¿¡¼­ Á¸ÀçÇÏÁö ¾Ê¾Ò´Ù.
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