صفحه 1:
Dendrimer
تراسا
ل لك
صفحه 2:
Random hyperbranch
Dendrigraft
Dendron
Dendrimer
Megamer
6 ۵ ۵ 6 6
Classical Megamers
صفحه 3:
Reactive terminal groups,
‘Template polymerization region
‘ranch ce amplification موی
[ molecular information region
| Size, shape, directionality et.
صفحه 4:
صفحه 5:
صفحه 6:
and protein size وعم اعد
1
صفحه 7:
۹ er =
0 Convergent Growth Method
0 Divergent Growth Method
ريع رش نز Ae “ee زو بوک و
ae یت > کم
هسته كرودهاي اتهابى »ا واحدهای ساغهای
6 كرو ممامدي a
صفحه 8:
صفحه 9:
صفحه 10:
DENS J jn یت شده بر روی میک DENS
هه مهصهي
قعال سازى
(4.02, H:)
صفحه 11:
صفحه 12:
ig |
2 ۱
=
85
3
fo
۳
Bu
E
5
io
8
o
2۵
صفحه 13:
صفحه 14:
Ugand: ‘ef
لامعاو او
SIRNA:
Peptides @
PEG- ححا
Antibody: >
Antioxidant. @
otasmids- C)
صفحه 15:
صفحه 16:
صفحه 17:
صفحه 18:
صفحه 19:
صفحه 20:
Reference ms
* Chauhan AS. Dendrimers 7 drug رن Molecules. 2018
Apr;23(4):938.
+ Kesharwani P Jain K, Jain NK. Dendrimer as nanocarrier for drug
delivery. Progress in Polymer Science. 2014 Feb 1;39(2):268-307.
* Mignani §, El Kazzouli S, Bousmina M, Majoral JP. Expand
classical drug administration ways by emerging routes using
dendrimer drug delivery systems: a concise overview. Advanced
drug delivery reviews. 2013 Oct 15;65(10):1316-30.
* Fana M, Gallien J, Srinageshwar B, Dunbar GL, Rossignol J.
PAMAM dendrimer nanomolecules utilized as drug delivery
systems for potential treatment of glioblastoma: a systematic
review. International journal of nanomedicine. 2020;15:2789.
* Garg T, Singh O, Arora S, Murthy R. Dendrimer-a novel scaffold
for drug delivery. Int J Pharm Sci Rev Res. 2011;7(2):211-0.
+ Zhu J, Shi X. Dendrimer-based nanodevices for targeted drug
ع journal of Materials ميد عت