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zadetkov: 35
1.
  • Mesenchymal stem cells inhi... Mesenchymal stem cells inhibit both endogenous and exogenous MMPs via secreted TIMPs
    Lozito, Thomas P.; Tuan, Rocky S. Journal of cellular physiology, February 2011, Letnik: 226, Številka: 2
    Journal Article
    Recenzirano

    Mesenchymal stem cells (MSCs) have been shown to be perivascular, occupying a prime location for regulating vessel stability. Here, we focused on the MSC‐contribution of key regulators of the ...
Celotno besedilo
Dostopno za: BFBNIB, FZAB, GIS, IJS, KILJ, NLZOH, NUK, OILJ, SAZU, SBCE, SBMB, UL, UM, UPUK
2.
  • Lizard tail regeneration as... Lizard tail regeneration as an instructive model of enhanced healing capabilities in an adult amniote
    Lozito, Thomas P.; Tuan, Rocky S. Connective tissue research, 03/2017, Letnik: 58, Številka: 2
    Journal Article
    Recenzirano
    Odprti dostop

    The ability to regenerate damaged or lost tissues has remained the lofty goal of regenerative medicine. Unfortunately, humans, like most mammals, suffer from very minimal natural regenerative ...
Celotno besedilo
Dostopno za: BFBNIB, DOBA, GIS, IJS, IZUM, KILJ, KISLJ, NUK, PILJ, PNG, SAZU, UILJ, UKNU, UL, UM, UPUK

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3.
  • Lizard tail skeletal regene... Lizard tail skeletal regeneration combines aspects of fracture healing and blastema-based regeneration
    Lozito, Thomas P; Tuan, Rocky S Development, 08/2016, Letnik: 143, Številka: 16
    Journal Article
    Recenzirano
    Odprti dostop

    Lizards are amniotes with the remarkable ability to regenerate amputated tails. The early regenerated lizard tail forms a blastema, and the regenerated skeleton consists of a cartilage tube (CT) ...
Celotno besedilo
Dostopno za: CMK, NUK, UL, UM, UPUK

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4.
  • Introducing dorsoventral pa... Introducing dorsoventral patterning in adult regenerating lizard tails with gene-edited embryonic neural stem cells
    Lozito, Thomas P.; Londono, Ricardo; Sun, Aaron X. ... Nature communications, 10/2021, Letnik: 12, Številka: 1
    Journal Article
    Recenzirano
    Odprti dostop

    Abstract Lizards regenerate amputated tails but fail to recapitulate the dorsoventral patterning achieved during embryonic development. Regenerated lizard tails form ependymal tubes (ETs) that, like ...
Celotno besedilo
Dostopno za: NUK, UL, UM, UPUK

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5.
  • Efficient in vivo bone form... Efficient in vivo bone formation by BMP-2 engineered human mesenchymal stem cells encapsulated in a projection stereolithographically fabricated hydrogel scaffold
    Lin, Hang; Tang, Ying; Lozito, Thomas P ... Stem cell research & therapy, 08/2019, Letnik: 10, Številka: 1
    Journal Article
    Recenzirano
    Odprti dostop

    Stem cell-based bone tissue engineering shows promise for bone repair but faces some challenges, such as insufficient osteogenesis and limited architecture flexibility of the cell-delivery scaffold. ...
Celotno besedilo
Dostopno za: IZUM, KILJ, NUK, PILJ, PNG, SAZU, UL, UM, UPUK

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6.
  • Lizard tail regeneration: r... Lizard tail regeneration: regulation of two distinct cartilage regions by Indian hedgehog
    Lozito, Thomas P.; Tuan, Rocky S. Developmental biology, 03/2015, Letnik: 399, Številka: 2
    Journal Article
    Recenzirano
    Odprti dostop

    Lizards capable of caudal autotomy exhibit the remarkable ability to “drop” and then regenerate their tails. However, the regenerated lizard tail (RLT) is known as an “imperfect replicate” due to ...
Celotno besedilo
Dostopno za: GEOZS, IJS, IMTLJ, KILJ, KISLJ, NLZOH, NUK, OILJ, PNG, SAZU, SBCE, SBJE, UILJ, UL, UM, UPCLJ, UPUK, ZAGLJ, ZRSKP

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7.
  • Differences in neural stem ... Differences in neural stem cell identity and differentiation capacity drive divergent regenerative outcomes in lizards and salamanders
    Sun, Aaron X.; Londono, Ricardo; Hudnall, Megan L. ... Proceedings of the National Academy of Sciences - PNAS, 08/2018, Letnik: 115, Številka: 35
    Journal Article
    Recenzirano
    Odprti dostop

    While lizards and salamanders both exhibit the ability to regenerate amputated tails, the outcomes achieved by each are markedly different. Salamanders, such as Ambystoma mexicanum, regenerate nearly ...
Celotno besedilo
Dostopno za: BFBNIB, NMLJ, NUK, PNG, SAZU, UL, UM, UPUK

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8.
  • Wdpcp, a PCP protein requir... Wdpcp, a PCP protein required for ciliogenesis, regulates directional cell migration and cell polarity by direct modulation of the actin cytoskeleton
    Cui, Cheng; Chatterjee, Bishwanath; Lozito, Thomas P ... PLoS biology, 11/2013, Letnik: 11, Številka: 11
    Journal Article
    Recenzirano
    Odprti dostop

    Planar cell polarity (PCP) regulates cell alignment required for collective cell movement during embryonic development. This requires PCP/PCP effector proteins, some of which also play essential ...
Celotno besedilo
Dostopno za: DOBA, IZUM, KILJ, NUK, PILJ, PNG, SAZU, SIK, UILJ, UKNU, UL, UM, UPUK

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9.
  • Human mesenchymal stem cell... Human mesenchymal stem cells generate a distinct pericellular zone of MMP activities via binding of MMPs and secretion of high levels of TIMPs
    Lozito, Thomas P.; Jackson, Wesley M.; Nesti, Leon J. ... Matrix biology, 02/2014, Letnik: 34
    Journal Article
    Recenzirano
    Odprti dostop

    Mesenchymal stem cells (MSCs) are attractive candidates for inclusion in cell-based therapies by virtue of their abilities to home to wound sites. However, in-depth characterization of the specific ...
Celotno besedilo
Dostopno za: GEOZS, IJS, IMTLJ, KILJ, KISLJ, NUK, OILJ, PNG, SAZU, SBCE, SBJE, UL, UM, UPCLJ, UPUK

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10.
  • Stem Cell-Based Microphysio... Stem Cell-Based Microphysiological Osteochondral System to Model Tissue Response to Interleukin-1β
    Lin, Hang; Lozito, Thomas P; Alexander, Peter G ... Molecular pharmaceutics, 07/2014, Letnik: 11, Številka: 7
    Journal Article
    Recenzirano
    Odprti dostop

    Osteoarthritis (OA) is a chronic degenerative disease of the articular joint that involves both bone and cartilage degenerative changes. An engineered osteochondral tissue within physiological ...
Celotno besedilo
Dostopno za: IJS, KILJ, NUK, PNG, UL, UM

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zadetkov: 35

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