1. Shina VR, Bansal K, Kaushik R, Kumria R, Trehan A, Poly-ε-caprlactone microspheres and nanospheres: an overview, Intern. J. Pharmaceutics, 2004,278,1-23
  2. Hutmacher D, Hűrzeler MB, Schliephake H, A review of material properties of biodegradable and bioresorbable polymers and devices for GTR and GBR applications. Int. J. Oral Maxillofac. Implants. 1996, 11, 667-678
  3. Chen DR, Bei JZ, Wang SG, Polycaprolactone microspheres and their biodegradation. Polymer Degradation and Stability, 2000, 67, 455-459
  4. Middleton JC, Tipton AJ, Synthetic biodegradable polymers as orthopedic devices., Biomat. 2000, 21, 2335-2346
  5. Pitt CG, Chasalow FI, Hibionada DM, Klimas DM, Schindler A, Aliphatic polyesters I The degradation of poly (ε-caprolactone) in vivo. J. Appl. Polym. Sci.,1981, 26, 3779-3787
  6. Pitt CG, Gratzel MM, Kimmel GL, Surles J, Schindler A, Aliphatic polyesters II. The degradation of poly (DL-lactide), poly (ε-caprolactone), and their copolymers in vivo. Biomaterials, 1981, 2, 215-220
  7. Woodward SC, Brewer PS, Moatamed F, Schindler A, Pitt CG, The intracellular degradation of poly(ε-caprolactone), J. Biomed. Mater. Res, 1985, 19, 437-444
  8. Pitt CG, Poly (ε-caprolactone) and its copolymers. In: Chassin M, Langer R, editors. Biodegradable polymers as drug delivery systems. New York: Dekker: 1990. p. 71-119
  9. Cha Y, Pitt CG, The biodegradability of polyester blends. Biomat., 1990, 11, 108-112
  10. Shindler A, Jeffcoat R, Kimmel GL, Pitt CG, Wall ME, Zweidinger R, Biodegradable polymers for sustained drug delivery, Contemp. Top. Polym. Sci., 1977, 2, 251-289
  11. Duan L, Xu Z, Sun K, Zhao X, Fang J, Qin X, Gong Z., Preparation and biological evaluation of Chitin short fiber reinforced polycaprolactone composite., Sheng Wu Yi Xue Gong Cheng Xue Za Zhi, 2006, 23, 565-8 (article in Chinese)
  12. Rutledge B, Huyette D, Day D, Anglen J., Treatment of Osteomyelitis with local antibiotics delivered via bioabsorbable polymer. Clin. Orthop. Relat. Res., 2003, 411, 280-287
  13. Ma G, Song C, Sun H, Yang J, Leng X., A biodegradable levorgestrel-releasing implant made of PCL/F68 compound as tested in rats an dogs., Contracept., 2006, 74, 141-147
  14. Sun H, Mei L, Song C, Cui X, Wang P., The in vivo degradation, absorption and excretion of PCL-based implant., Biomater. 2006, 27, 1735-1740
  15. Falcone SJ, Doerfler AM, Berg RA, Novel synthetic dermal fillers based on sodium carboxymethylcellulose: Comparison with crosslinked hyaluronic acid-based dermal fillers., Dermatol. Surg., 2007, 33, S136-S143
  16. Laeschke K, Biocompatibility of microspheres into soft tissue fillers, Sem. Cut. Med. Surg., 2004, 23, 214-217
  17. The science and art of dermal fillers for soft-tissue augmentation, Journal of Drugs in Dermatology, April, 2009 by Jean Carruthers, Steven R. Cohen, John H. Joseph, Rhoda S. Narins, Mark Rubin