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  1. Selective depletion of vascular EC-SOD augments chronic hypoxic pulmonary hypertension. Nozik-Grayck E, Woods C, Taylor JM, Benninger RK, Johnson RD, Villegas LR, Stenmark KR, Harrison DG, Majka SM, Irwin D, Farrow KN (2014) Am J Physiol Lung Cell Mol Physiol 307(11): L868-76
    › Primary publication · 25326578 (PubMed) · PMC4254965 (PubMed Central)
  2. Identification of a common Wnt-associated genetic signature across multiple cell types in pulmonary arterial hypertension. West JD, Austin ED, Gaskill C, Marriott S, Baskir R, Bilousova G, Jean JC, Hemnes AR, Menon S, Bloodworth NC, Fessel JP, Kropski JA, Irwin D, Ware LB, Wheeler L, Hong CC, Meyrick B, Loyd JE, Bowman AB, Ess KC, Klemm DJ, Young PP, Merryman WD, Kotton D, Majka SM (2014) Am J Physiol Cell Physiol 307(5): C415-30
    › Primary publication · 24871858 (PubMed) · PMC4154073 (PubMed Central)
  3. Analysis and isolation of adipocytes by flow cytometry. Majka SM, Miller HL, Helm KM, Acosta AS, Childs CR, Kong R, Klemm DJ (2014) Methods Enzymol : 281-96
    › Primary publication · 24480352 (PubMed) · PMC4143162 (PubMed Central)
  4. ABCG2pos lung mesenchymal stem cells are a novel pericyte subpopulation that contributes to fibrotic remodeling. Marriott S, Baskir RS, Gaskill C, Menon S, Carrier EJ, Williams J, Talati M, Helm K, Alford CE, Kropski JA, Loyd J, Wheeler L, Johnson J, Austin E, Nozik-Grayck E, Meyrick B, West JD, Klemm DJ, Majka SM (2014) Am J Physiol Cell Physiol 307(8): C684-98
    › Primary publication · 25122876 (PubMed) · PMC4200000 (PubMed Central)
  5. Dysfunctional resident lung mesenchymal stem cells contribute to pulmonary microvascular remodeling. Chow K, Fessel JP, Kaoriihida-Stansbury , Schmidt EP, Gaskill C, Alvarez D, Graham B, Harrison DG, Wagner DH, Nozik-Grayck E, West JD, Klemm DJ, Majka SM (2013) Pulm Circ 3(1): 31-49
    › Primary publication · 23662173 (PubMed) · PMC3641738 (PubMed Central)
  6. Critical role for the advanced glycation end-products receptor in pulmonary arterial hypertension etiology. Meloche J, Courchesne A, Barrier M, Carter S, Bisserier M, Paulin R, Lauzon-Joset JF, Breuils-Bonnet S, Tremblay É, Biardel S, Racine C, Courture C, Bonnet P, Majka SM, Deshaies Y, Picard F, Provencher S, Bonnet S (2013) J Am Heart Assoc 2(1): e005157
    › Primary publication · 23525442 (PubMed) · PMC3603259 (PubMed Central)
  7. The potential for resident lung mesenchymal stem cells to promote functional tissue regeneration: understanding microenvironmental cues. Foronjy RF, Majka SM (2012) Cells 1(4): 874
    › Primary publication · 23626909 (PubMed) · PMC3634590 (PubMed Central)
  8. Free hemoglobin induction of pulmonary vascular disease: evidence for an inflammatory mechanism. Buehler PW, Baek JH, Lisk C, Connor I, Sullivan T, Kominsky D, Majka S, Stenmark KR, Nozik-Grayck E, Bonaventura J, Irwin DC (2012) Am J Physiol Lung Cell Mol Physiol 303(4): L312-26
    › Primary publication · 22728465 (PubMed) · PMC3423829 (PubMed Central)
  9. Attenuated Pik3r1 expression prevents insulin resistance and adipose tissue macrophage accumulation in diet-induced obese mice. McCurdy CE, Schenk S, Holliday MJ, Philp A, Houck JA, Patsouris D, MacLean PS, Majka SM, Klemm DJ, Friedman JE (2012) Diabetes 61(10): 2495-505
    › Primary publication · 22698915 (PubMed) · PMC3447911 (PubMed Central)
  10. Adipose lineage specification of bone marrow-derived myeloid cells. Majka SM, Miller HL, Sullivan T, Erickson PF, Kong R, Weiser-Evans M, Nemenoff R, Moldovan R, Morandi SA, Davis JA, Klemm DJ (2012) Adipocyte 1(4): 215-229
    › Primary publication · 23700536 (PubMed) · PMC3609111 (PubMed Central)