1 |
Nimbekar A A, Bhatia P G, Deshmukh R R. Ammonia sensors manufactured by plasma enhanced grafting of conducting polymers on nylon-6 fabrics[J]. Synthetic Metals, 2021, 279:116840.
|
2 |
Shakiba M, Ghomi E R, Khosravi F, et al. Nylon—a material introduction and overview for biomedical applications[J]. Polymers for Advanced Technologies, 2021, 32 (9):3 368⁃3 383.
|
3 |
Spitz P H. Primed for success: the story of scientific design company[M]. Cham: Springer, 2019:33⁃34.
|
4 |
Turk S C, Kloosterman W P, Ninaber D K, et al. Metabolic engineering toward sustainable production of nylon-6[J]. ACS Synthetic Biology, 2016, 5 (1):65⁃73.
|
5 |
Ojijo V, Sinha R S. Processing nanocomposites based on engineering polymers: polyamides and polyimides[M]. In Processing of Polymer⁃Based Nanocomposites: Processing⁃Structure⁃Property⁃Performance Relationships. Cham: Springer, 2018:27⁃73.
|
6 |
Dynek Pty Ltd. Nylene® flyer[EB/OL]. [2023⁃08⁃03]. .
|
7 |
DSM. DSM expands new engineering materials portfolio to improve medical care[EB/OL]. (2022⁃04⁃08)[2023⁃08⁃03]. .
|
8 |
Valplast International Corp. Homepage[EB/OL]. [2023⁃08⁃03]. .
|
9 |
Lian J, Chen J, Luan S, et al. Organocatalytic copolymerization of cyclic lysine derivative and Ε⁃caprolactam toward antibacterial nylon-6 polymers[J]. ACS Macro Letters, 2021, 11 (1):46⁃52.
|
10 |
Zhang L, Wang W, Xie B, et al. PLGA nanoparticle rapamycin⁃or necrostatin-1⁃coated sutures inhibit inflammatory reactions after arterial closure in rats[J]. ACS Applied Bio Materials, 2022, 5 (4):1 501⁃1 507.
|
11 |
Pant H R, Kim C S. Electrospun gelatin/nylon‐6 composite nanofibers for biomedical applications[J]. Polymer International, 2013, 62 (7):1 008⁃1 013.
|
12 |
Jackson R J, Patrick P S, Page K, et al. Chemically treated 3D printed polymer scaffolds for biomineral formation[J]. ACS Omega, 2018, 3 (4):4 342⁃4 351.
|
13 |
Smith & Nephew Medical Ltd. Biobrane temporary biosynthetic skin dressing[EB/OL]. [2023⁃08⁃03]. .
|
14 |
Dennis C, Sethu S, Nayak S, et al. Suture materials—current and emerging trends[J]. Journal of Biomedical Materials Research Part A, 2016, 104 (6):1 544⁃1 559.
|
15 |
Afewerki S, Harb S V, Stocco T D, et al. Advanced technologies and polymer materials for surgical sutures[M]. In Advanced Technologies and Polymer Materials for Surgical Sutures. Amsterdam: Elsevier, 2023:95⁃128.
|
16 |
Byrne M, Aly A. The surgical suture[J]. Aesthetic Surgery Journal, 2019, 39 (S2):67⁃72.
|
17 |
Millbourn D, Cengiz Y, Israelsson L A. Effect of stitch length on wound complications after closure of midline incisions: a randomized controlled trial[J]. Archives of Surgery, 2009, 144(11): 1 056⁃1 059.
|
18 |
Fathullah M, Shayfull Z, Shuaib N, et al. Investigation on nylon PA 66 side arms using taguchi and anova analysis in reducing cost of producing urinary catheters[J]. International Review of Mechanical Engineering, 2011, 5 (7):1 278⁃1 286.
|
19 |
Sullivan M V, Dennison S R, Archontis G, et al. Toward rational design of selective molecularly imprinted polymers (MIPs) for proteins: computational and experimental studies of acrylamide based polymers for myoglobin[J]. The Journal of Physical Chemistry B, 2019, 123 (26):5 432⁃5 443.
|
20 |
Singh R, Kumar R, Ranjan N, et al. On the recyclability of polyamide for sustainable composite structures in civil engineering[J]. Composite Structures, 2018, 184:704⁃713.
|
21 |
Boman E, Paterson D, Huang J, et al. Treatment plan dosimetric impact after catheter stretch during multi⁃catheter interstitial breast brachytherapy[J]. Journal of Contemporary Brachytherapy, 2017, 9(5): 418⁃423.
|
22 |
Geith M A, Eckmann J D, Haspinger D C, et al. Experimental and mathematical characterization of coronary polyamide-12 balloon catheter membranes[J]. Plos One, 2020, 15(6): e0234340.
|
23 |
Vojdani M, Giti R. Polyamide as a denture base material: a literature review[J]. Journal of Dentistry, 2015, 16 (S1):1⁃9.
|
24 |
Lin J, Winkelman C, Worley S. Antimicrobial treatment of nylon[J]. Journal of Applied Polymer Science, 2001, 81 (4): 943⁃947.
|
25 |
Ryšánek P, Malý M, Čapková P, et al. Antibacterial modification of nylon-6 nanofibers: structure, properties and antibacterial activity[J]. Journal of Polymer Research, 2017, 24:1⁃10.
|
26 |
Haji A, Mousavi Shoushtari A, Mirafshar M. Natural dyeing and antibacterial activity of atmospheric‐plasma‐treated nylon 6 fabric[J]. Coloration Technology, 2014, 130 (1):37⁃42.
|
27 |
Mohammadkhodaei Z, Mokhtari J, Nouri M. Novel anti‐bacterial acid dyes derived from naphthalimide: synthesis, characterisation and evaluation of their technical properties on nylon 6[J]. Coloration Technology, 2010, 126 (2):81⁃85.
|
28 |
Shi Q, Vitchuli N, Nowak J, et al. One⁃step synthesis of silver nanoparticle⁃filled nylon 6 nanofibers and their antibacterial properties[J]. Journal of Materials Chemistry, 2011, 21 (28):10 330⁃10 335.
|
29 |
Pant H R, Bajgai M P, Nam K T, et al. Electrospun nylon-6 spider⁃net like nanofiber mat containing TiO2 nanoparticles: a multifunctional nanocomposite textile material[J]. Journal of Hazardous Materials, 2011, 185 (1):124⁃130.
|
30 |
Panthi G, Barakat N A, Al‐Deyab S S, et al. Interior synthesizing of ZnO nanoflakes inside nylon‐6 electrospun nanofibers[J]. Journal of Applied Polymer Science, 2013, 127 (3):2 025⁃2 032.
|
31 |
Haley R M, Qian V R, Learn G D, et al. Use of affinity allows anti‐inflammatory and anti‐microbial dual release that matches suture wound resolution[J]. Journal of Biomedical Materials Research Part A, 2019, 107 (7):1 434⁃1 442.
|
32 |
O'Neill B J, Hirpara K M, Kaar T K. Successful treatment of chronic osteomyelitis of the radius[J]. International Scholarly Research Notices, 2011, 2011:154878.
|
33 |
Rossi F, Zaltieri M, Sacchetti A, et al. Functionalization of nylon-6, 6 with polyetheramine improves wettability and antibacterial properties[J]. Industrial & Engineering Chemistry Research, 2021, 60 (29):10 666⁃10 673.
|
34 |
Boparai K, Singh R, Singh H. Comparison of tribological behaviour for nylon6⁃Al⁃Al2O3 and ABS parts fabricated by fused deposition modelling[J]. Virtual and Physical Prototyping, 2015, 10 (2):59⁃66.
|
35 |
Thomas D J. 3D printing durable patient specific knee implants[J]. Journal of Orthopaedics, 2017, 14 (1):182⁃183.
|
36 |
Al⁃Takhayneh O, Warren H, Panhuis M I H. 3D printing of surgical staples[J]. MRS Advances, 2022, 7:489⁃494.
|
37 |
Abdal⁃hay A, Sheikh F A, Lim J K. Air jet spinning of hydroxyapatite/poly (lactic acid) hybrid nanocomposite membrane mats for bone tissue engineering[J]. Colloids and Surfaces B: Biointerfaces, 2013, 102:635⁃643.
|
38 |
Ali M G, Mousa H M, Blaudez F, et al. Dual nanofiber scaffolds composed of polyurethane⁃gelatin/nylon 6⁃gelatin for bone tissue engineering[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2020, 597:124817.
|
39 |
Abdal⁃hay A, Tijing L D, Lim J K. Characterization of the surface biocompatibility of an electrospun nylon 6/cap nanofiber scaffold using osteoblasts[J]. Chemical Engineering Journal, 2013, 215:57⁃64.
|
40 |
Olaniran O, Garcia C, Li W, et al. Amylase loading on a commercial nylon bandage intended for the control delivery of drug in treating localized wounds[J]. Materials Today: Proceedings, 2021, 38:499⁃502.
|
41 |
El⁃Newehy M H, Al⁃Deyab S S, Kenawy E R, et al. Nanospider technology for the production of nylon-6 nanofibers for biomedical applications[J]. Journal of Nanomaterials, 2011, 2011:626589.
|
42 |
Thakkar S, Misra M. Electrospun polymeric nanofibers: new horizons in drug delivery[J]. European Journal of Pharmaceutical Sciences, 2017, 107:148⁃167.
|
43 |
Lee J E, Park S, Park M, et al. Surgical suture assembled with polymeric drug⁃delivery sheet for sustained, local pain relief[J]. Acta Biomaterialia, 2013, 9 (9):8 318⁃8 327.
|
44 |
Parikh K S, Josyula A, Inoue T, et al. Nanofiber⁃coated, tacrolimus⁃eluting sutures inhibit post⁃operative neointimal hyperplasia in rats[J]. Journal of Controlled Release, 2023, 353:96⁃104.
|
45 |
Lesher A P, Curry R H, Evans J, et al. Effectiveness of biobrane for treatment of partial⁃thickness burns in children[J]. Journal of Pediatric Surgery, 2011, 46 (9):1 759⁃1 763.
|
46 |
Varkey M, Ding J, Tredget E E, et al. Advances in skin substitutes—potential of tissue engineered skin for facilitating anti⁃fibrotic healing[J]. Journal of Functional Biomaterials, 2015, 6 (3):547⁃563.
|
47 |
Keirouz A, Radacsi N, Ren Q, et al. Nylon-6/chitosan core/shell antimicrobial nanofibers for the prevention of mesh⁃associated surgical site infection[J]. Journal of Nanobiotechnology, 2020, 18:1⁃17.
|
48 |
Nur P F, Pınar T, Uğur P, et al. Fabrication of polyamide 6/honey/boric acid mats by electrohydrodynamic processes for wound healing applications[J]. Materials Today Communications, 2021, 29:102921.
|