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Resistance to receptor-blocking therapies primes tumors as targets for HER3-homing nanobiologics.
Sims, Jessica D; Taguiam, Jan Michael; Alonso-Valenteen, Felix; Markman, Janet; Agadjanian, Hasmik; Chu, David; Lubow, Jay; Abrol, Ravinder; Srinivas, Dustin; Jain, Anjali; Han, Bingchen; Qu, Ying; Mirzadehgan, Parisa; Hwang, Jae-Youn; Rentsendorj, Altan; Chung, Alice; Lester, Jenny; Karlan, Beth Y; Gray, Harry B; Gross, Zeev; Giuliano, Armando; Cui, Xiaojiang; Medina-Kauwe, Lali K.
Afiliación
  • Sims JD; Cedars-Sinai Medical Center, Los Angeles, CA, USA.
  • Taguiam JM; Cedars-Sinai Medical Center, Los Angeles, CA, USA.
  • Alonso-Valenteen F; Cedars-Sinai Medical Center, Los Angeles, CA, USA.
  • Markman J; Cedars-Sinai Medical Center, Los Angeles, CA, USA.
  • Agadjanian H; Cedars-Sinai Medical Center, Los Angeles, CA, USA.
  • Chu D; Cedars-Sinai Medical Center, Los Angeles, CA, USA.
  • Lubow J; Cedars-Sinai Medical Center, Los Angeles, CA, USA.
  • Abrol R; Cedars-Sinai Medical Center, Los Angeles, CA, USA.
  • Srinivas D; Cedars-Sinai Medical Center, Los Angeles, CA, USA.
  • Jain A; Cedars-Sinai Medical Center, Los Angeles, CA, USA.
  • Han B; Cedars-Sinai Medical Center, Los Angeles, CA, USA.
  • Qu Y; Cedars-Sinai Medical Center, Los Angeles, CA, USA.
  • Mirzadehgan P; Cedars-Sinai Medical Center, Los Angeles, CA, USA.
  • Hwang JY; Cedars-Sinai Medical Center, Los Angeles, CA, USA.
  • Rentsendorj A; Cedars-Sinai Medical Center, Los Angeles, CA, USA.
  • Chung A; Cedars-Sinai Medical Center, Los Angeles, CA, USA.
  • Lester J; Cedars-Sinai Medical Center, Los Angeles, CA, USA.
  • Karlan BY; Cedars-Sinai Medical Center, Los Angeles, CA, USA.
  • Gray HB; California Institute of Technology, Pasadena, CA, USA.
  • Gross Z; Technion-Israel Institute, Haifa, Israel.
  • Giuliano A; Cedars-Sinai Medical Center, Los Angeles, CA, USA.
  • Cui X; Cedars-Sinai Medical Center, Los Angeles, CA, USA.
  • Medina-Kauwe LK; Cedars-Sinai Medical Center, Los Angeles, CA, USA; University of California, Los Angeles, CA, USA. Electronic address: MedinaL@cshs.org.
J Control Release ; 271: 127-138, 2018 02 10.
Article en En | MEDLINE | ID: mdl-29288681
Resistance to anti-tumor therapeutics is an important clinical problem. Tumor-targeted therapies currently used in the clinic are derived from antibodies or small molecules that mitigate growth factor activity. These have improved therapeutic efficacy and safety compared to traditional treatment modalities but resistance arises in the majority of clinical cases. Targeting such resistance could improve tumor abatement and patient survival. A growing number of such tumors are characterized by prominent expression of the human epidermal growth factor receptor 3 (HER3) on the cell surface. This study presents a "Trojan-Horse" approach to combating these tumors by using a receptor-targeted biocarrier that exploits the HER3 cell surface protein as a portal to sneak therapeutics into tumor cells by mimicking an essential ligand. The biocarrier used here combines several functions within a single fusion protein for mediating targeted cell penetration and non-covalent self-assembly with therapeutic cargo, forming HER3-homing nanobiologics. Importantly, we demonstrate here that these nanobiologics are therapeutically effective in several scenarios of resistance to clinically approved targeted inhibitors of the human EGF receptor family. We also show that such inhibitors heighten efficacy of our nanobiologics on naïve tumors by augmenting HER3 expression. This approach takes advantage of a current clinical problem (i.e. resistance to growth factor inhibition) and uses it to make tumors more susceptible to HER3 nanobiologic treatment. Moreover, we demonstrate a novel approach in addressing drug resistance by taking inhibitors against which resistance arises and re-introducing these as adjuvants, sensitizing tumors to the HER3 nanobiologics described here.
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Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Péptidos / Productos Biológicos / Portadores de Fármacos / Resistencia a Antineoplásicos / Receptor ErbB-3 / Nanopartículas / Antineoplásicos Límite: Animals / Female / Humans Idioma: En Revista: J Control Release Asunto de la revista: FARMACOLOGIA Año: 2018 Tipo del documento: Article País de afiliación: Estados Unidos

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Péptidos / Productos Biológicos / Portadores de Fármacos / Resistencia a Antineoplásicos / Receptor ErbB-3 / Nanopartículas / Antineoplásicos Límite: Animals / Female / Humans Idioma: En Revista: J Control Release Asunto de la revista: FARMACOLOGIA Año: 2018 Tipo del documento: Article País de afiliación: Estados Unidos