Literature DB >> 22920950

Synthesis, characterization, and biocompatibility of biodegradable hyperbranched polyglycerols from acid-cleavable ketal group functionalized initiators.

Rajesh A Shenoi1, Benjamin F L Lai, Jayachandran N Kizhakkedathu.   

Abstract

Herein we report the synthesis of biodegradable hyperbranched polyglycerols (BHPGs) having acid-cleavable core structure by anionic ring-opening multibranching polymerization (ROMBP) of glycidol using initiators bearing dimethyl and cyclohexyl ketal groups. Five different multifunctional initiators carrying one to four ketal groups and two to four hydroxyl groups per molecule were synthesized. The hydroxyl carrying initiators containing one ketal group per molecule were synthesized from ethylene glycol. An alkyne-azide click reaction was used for synthesizing initiators containing multiple cyclohexyl ketal linkages and hydroxyl groups. The synthesized BHPGs exhibited monomodal molecular weight distributions and polydispersity in the range of 1.2 to 1.6, indicating the controlled nature of the polymerizations. The polymers were relatively stable at physiological pH but degraded at acidic pH values. The polymer degradation was dependent on the type of ketal structure present in the BHPG; polymers with cyclohexyl ketal groups degraded at much slower rates than those with dimethyl ketal groups at a given pH. Good control of polymer degradation was achieved under mild acidic conditions by changing the structure of ketal linkages. A precise control of the molecular weight of the degraded HPG was achieved by controlling the number of ketal groups within the core, as revealed from the gel permeation chromatography (GPC) analyses. The decrease in the polymer molecular weights upon degradation was correlated well with the number of ketal groups in their core structure. Our data support the suggestion that glycidol was polymerized uniformly from all hydroxyl groups of the initiators. BHPGs and their degradation products were highly biocompatible, as measured by blood coagulation, complement activation, platelet activation, and cell viability assays. The controlled degradation profiles of these polymers together with their excellent biocompatibility make them suitable for drug delivery and bioconjugation applications.

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Year:  2012        PMID: 22920950     DOI: 10.1021/bm300959h

Source DB:  PubMed          Journal:  Biomacromolecules        ISSN: 1525-7797            Impact factor:   6.988


  3 in total

1.  Synthetic Enantiopure Carbohydrate Polymers that are Highly Soluble in Water and Noncytotoxic.

Authors:  Eric L Dane; Stacy L Chin; Mark W Grinstaff
Journal:  ACS Macro Lett       Date:  2013-10-15       Impact factor: 6.903

2.  Quantitative SPECT imaging and biodistribution point to molecular weight independent tumor uptake for some long-circulating polymer nanocarriers.

Authors:  V Schmitt; C Rodríguez-Rodríguez; J L Hamilton; R A Shenoi; P Schaffer; V Sossi; J N Kizhakkedathu; K Saatchi; U O Häfeli
Journal:  RSC Adv       Date:  2018-02-01       Impact factor: 4.036

Review 3.  Modification of carbon-based nanomaterials by polyglycerol: recent advances and applications.

Authors:  Zeinab Rafiee; Sakineh Omidi
Journal:  RSC Adv       Date:  2021-12-20       Impact factor: 3.361

  3 in total

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