Cellular responses of bioabsorbable polymeric material and Guglielmi detachable coil in experimental aneurysms.
نویسندگان
چکیده
BACKGROUND AND PURPOSE Acceleration of healing mechanisms is a promising approach to improve current limitations of endovascular aneurysm therapy with the use of platinum coils. We evaluated a new endovascular therapeutic, bioabsorbable polymeric material (BPM), which may promote cellular reaction in the aneurysms. METHODS Four different concentrations of lactide/glycolic acid copolymer [poly(D-L-lactic-co-glycolic acid)] (PLGA), 85/15, 75/25, 65/35, and 50/50, were used as BPMs. Sixteen experimental aneurysms were created in 8 swine. Eight-millimeter-long spiral-shaped BPMs were surgically implanted in the aneurysms without tight packing (n=3 for each BPM). Guglielmi detachable coils (GDCs) were used as control (n=4). The animals were killed 14 days after embolization, and angiographic, histological, and immunohistochemical analyses were performed. RESULTS Despite loose packing of aneurysms with BPMs, faster BPMs such as 50/50 or 65/35 PLGA demonstrated more mature collagen formation and fibrosis in the sac and neck of the aneurysm. One aneurysm treated with 65/35 PLGA, 1 treated with 75/25 PLGA, and all 3 treated with 85/15 PLGA showed a neck remnant on angiography. There was a linear relationship between collagen levels and polymer degradation properties (r=-0.9513). CONCLUSIONS This preliminary animal study indicates that acceleration of aneurysm healing with the use of BPM is feasible. This concept can be applied to decrease and perhaps prevent aneurysmal recanalization after endovascular treatment of cerebral aneurysms.
منابع مشابه
Matrix and bioabsorbable polymeric coils accelerate healing of intracranial aneurysms: long-term experimental study.
BACKGROUND AND PURPOSE Acceleration of intra-aneurysmal clot organization and fibrosis may be a solution to preventing aneurysm recanalization after endovascular treatment. The purpose of this study was to evaluate the short-term efficacy and long-term safety of the new Matrix coil system. METHODS Matrix coils consist of thin platinum coils covered with a bioabsorbable, polymeric material (po...
متن کاملTopic review: surface modifications enhancing biological activity of guglielmi detachable coils in treating intracranial aneurysms.
BACKGROUND Endovascular therapy with Guglielmi detachable coils is an accepted treatment option for patients with intracranial aneurysms. However, an emerging technology in the realm of endovascular tools is the use of traditional Guglielmi detachable coils with biologically active substances complexed to the coil surface to enhance aneurysm occlusion. METHODS We review the literature and cur...
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1. Kallmes DF, Fujiwara NH, Yuen D, et al. A collagen-based coil for embolization of saccular aneurysms in a New Zealand White rabbit model. AJNR Am J Neuroradiol 2003;24:591–96 2. Dawson RC 3rd, Shengelaia GG, Krisht AF, et al. Histologic effects of collagenfilled interlocking detachable coils in the ablation of experimental aneurysms in swine. AJNR Am J Neuroradiol 1996;17:853–58 3. Murayama ...
متن کاملThrombosis in giant basilar tip aneurysms during coil embolization.
Two patients with giant basilar tip aneurysms underwent coil embolization, one with both platinum fiber and platinum Guglielmi detachable coils and the other with Guglielmi detachable coils only. In both cases, spontaneous intraaneurysmal thrombosis occurred outside the coil mass, presumably a result of disruption of the intraaneurysmal flow pattern.
متن کاملUse of three-dimensional Guglielmi detachable coils in the treatment of wide-necked cerebral aneurysms.
A three-dimensional Guglielmi detachable coil (3D-GDC) has been developed that is designed specifically to bridge the neck of an aneurysm with coil loops, thereby facilitating retention of additional coils placed within the aneurysm. Nine wide-necked cerebral aneurysms were successfully embolized using the 3D-GDC, provided that the dome-to-neck ratio was 1.5 or greater.
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عنوان ژورنال:
- Stroke
دوره 33 4 شماره
صفحات -
تاریخ انتشار 2002