6.
Sampaio F, Pereira-Sampaio M, Favorito L
. The pig kidney as an endourologic model: anatomic contribution. J Endourol. 1998; 12(1):45-50.
DOI: 10.1089/end.1998.12.45.
View
7.
Pereira-Sampaio M, Favorito L, Henry R, Sampaio F
. Proportional analysis of pig kidney arterial segments: differences from the human kidney. J Endourol. 2007; 21(7):784-8.
DOI: 10.1089/end.2006.0318.
View
8.
Garcia-Gareta E, Abduldaiem Y, Sawadkar P, Kyriakidis C, Lali F, Greco K
. Decellularised scaffolds: just a framework? Current knowledge and future directions. J Tissue Eng. 2020; 11:2041731420942903.
PMC: 7376382.
DOI: 10.1177/2041731420942903.
View
9.
Daryabari S, Kajbafzadeh A, Fendereski K, Ghorbani F, Dehnavi M, Rostami M
. Development of an efficient perfusion-based protocol for whole-organ decellularization of the ovine uterus as a human-sized model and in vivo application of the bioscaffolds. J Assist Reprod Genet. 2019; 36(6):1211-1223.
PMC: 6603122.
DOI: 10.1007/s10815-019-01463-4.
View
10.
Caralt M, Uzarski J, Iacob S, Obergfell K, Berg N, Bijonowski B
. Optimization and critical evaluation of decellularization strategies to develop renal extracellular matrix scaffolds as biological templates for organ engineering and transplantation. Am J Transplant. 2014; 15(1):64-75.
PMC: 4276475.
DOI: 10.1111/ajt.12999.
View
11.
Taylor D, Kren S, Rhett K, Robertson M, Morrissey J, Rodriguez O
. Characterization of perfusion decellularized whole animal body, isolated organs, and multi-organ systems for tissue engineering applications. Physiol Rep. 2021; 9(12):e14817.
PMC: 8239446.
DOI: 10.14814/phy2.14817.
View
12.
Fischer I, Westphal M, Rossbach B, Bethke N, Hariharan K, Ullah I
. Comparative characterization of decellularized renal scaffolds for tissue engineering. Biomed Mater. 2017; 12(4):045005.
DOI: 10.1088/1748-605X/aa6c6d.
View
13.
Ghorbani F, Ekhtiari M, Moeini Chaghervand B, Moradi L, Mohammadi B, Kajbafzadeh A
. Detection of the residual concentration of sodium dodecyl sulfate in the decellularized whole rabbit kidney extracellular matrix. Cell Tissue Bank. 2021; 23(1):119-128.
DOI: 10.1007/s10561-021-09921-z.
View
14.
Bearak J, Popinchalk A, Ganatra B, Moller A, Tuncalp O, Beavin C
. Unintended pregnancy and abortion by income, region, and the legal status of abortion: estimates from a comprehensive model for 1990-2019. Lancet Glob Health. 2020; 8(9):e1152-e1161.
DOI: 10.1016/S2214-109X(20)30315-6.
View
15.
Dijkman P, Fioretta E, Frese L, Pasqualini F, Hoerstrup S
. Heart Valve Replacements with Regenerative Capacity. Transfus Med Hemother. 2016; 43(4):282-290.
PMC: 5040925.
DOI: 10.1159/000448181.
View
16.
Dieckmann C, Renner R, Milkova L, Simon J
. Regenerative medicine in dermatology: biomaterials, tissue engineering, stem cells, gene transfer and beyond. Exp Dermatol. 2010; 19(8):697-706.
DOI: 10.1111/j.1600-0625.2010.01087.x.
View
17.
Serrano-Aroca A, Vera-Donoso C, Moreno-Manzano V
. Bioengineering Approaches for Bladder Regeneration. Int J Mol Sci. 2018; 19(6).
PMC: 6032229.
DOI: 10.3390/ijms19061796.
View
18.
Jungebluth P, Moll G, Baiguera S, Macchiarini P
. Tissue-engineered airway: a regenerative solution. Clin Pharmacol Ther. 2011; 91(1):81-93.
DOI: 10.1038/clpt.2011.270.
View
19.
Rodriguez M
. Congenital Anomalies of the Kidney and the Urinary Tract (CAKUT). Fetal Pediatr Pathol. 2014; 33(5-6):293-320.
PMC: 4266037.
DOI: 10.3109/15513815.2014.959678.
View
20.
Turner C, Fauza D
. Fetal tissue engineering. Clin Perinatol. 2009; 36(2):473-88, xii.
DOI: 10.1016/j.clp.2009.03.005.
View