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Marsela Jorgolli Phones & Addresses

  • Lombard, IL
  • 1545 Eucalyptus Cir, Thousand Oaks, CA 91360
  • Arlington, MA
  • Villa Park, IL

Work

Company: Harvard university May 2008 Position: Research assistant

Education

School / High School: Harvard University 2007 to 2012

Skills

Nanotechnology • Biotechnology • Microscopy • Physics • Materials Science • Mems • Microfluidics • Characterization • Teaching • Electrophysiology • Tissue Culture • Tissue Engineering • Immunohistochemistry • Elisa • Scanning Electron Microscopy • Confocal Microscopy • Electron Microscopy • Neuroscience • Cell Culture • Nanofabrication • Photolithography • Fluorescence Microscopy • Xps • Statistics • Mathematica • Electron Beam Lithography • Chemistry • Microfabrication • Afm • Spectroscopy • Tem • Science • R&D • Experimentation • Nanomaterials • Numerical Analysis • Cad • Matlab • Ftir • Lab on A Chip • Modeling • Simulations

Languages

English • Italian • Albanian

Industries

Research

Resumes

Resumes

Marsela Jorgolli Photo 1

Scientist

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Location:
Thousand Oaks, CA
Industry:
Research
Work:
Harvard University since May 2008
Research Assistant

Harvard University since Sep 2007
PhD Candidate

Harvard University 2010 - 2010
Head Teaching Fellow
Education:
Harvard University 2007 - 2012
University of Chicago
Skills:
Nanotechnology
Biotechnology
Microscopy
Physics
Materials Science
Mems
Microfluidics
Characterization
Teaching
Electrophysiology
Tissue Culture
Tissue Engineering
Immunohistochemistry
Elisa
Scanning Electron Microscopy
Confocal Microscopy
Electron Microscopy
Neuroscience
Cell Culture
Nanofabrication
Photolithography
Fluorescence Microscopy
Xps
Statistics
Mathematica
Electron Beam Lithography
Chemistry
Microfabrication
Afm
Spectroscopy
Tem
Science
R&D
Experimentation
Nanomaterials
Numerical Analysis
Cad
Matlab
Ftir
Lab on A Chip
Modeling
Simulations
Languages:
English
Italian
Albanian

Publications

Us Patents

Molecular Delivery With Nanowires

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US Patent:
20120094382, Apr 19, 2012
Filed:
Apr 16, 2010
Appl. No.:
13/264587
Inventors:
Hongkun Park - Cambridge MA, US
EunGyeong Yang - Seoul, KR
Alexander K. Shalek - Cambridge MA, US
JinSeok Lee - Seoul, KR
Jacob Robinson - Somerville MA, US
Amy Sutton - Cambridge MA, US
Myung-Han Yoon - Gwangju, KR
Marsela Jorgolli - Arlington MA, US
Assignee:
President and Fellows of Harvard College - Cambridge MA
International Classification:
C12N 5/071
C12N 5/0781
C07H 23/00
C07F 7/02
B32B 3/02
C12N 5/078
C12N 5/0784
B82Y 5/00
US Classification:
4353722, 435375, 536 231, 5361231, 530402, 556429, 556413, 428 85, 977762, 977902
Abstract:
A molecular delivery system including a plurality of nanowires (e.g., Si NWs), each of the nanowires having a surface layer formed of a silicon-containing material and a covalently bound linker (e.g., silane linker) attached to the surface layer and optionally including a substrate to which the nanowires are adhered or a molecule to be delivered attached to the linker. Also disclosed is a method of delivering into a cell an exogenous molecule.

Molecular Delivery With Nanowires

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US Patent:
20130260467, Oct 3, 2013
Filed:
Sep 28, 2011
Appl. No.:
13/876066
Inventors:
Hongkun Park - Lexington MA, US
Jacob Robinson - Somerville MA, US
Amy Sutton - Cambridge MA, US
Marsela Jorgolli - Arlington MA, US
Alexander K. Shalek - Cambridge MA, US
Assignee:
President and Fellows of Harvard - Cambridge MA
International Classification:
C12N 13/00
US Classification:
435455, 4351736, 4352831, 4352852
Abstract:
A molecular delivery device including a plurality of nanowires (e.g., Si NWs) coated with an electrically conductive layer. Also disclosed are methods for delivering a molecule by nanowire-mediated electroporation.

Nanowires For Electrophysiological Applications

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US Patent:
20130284612, Oct 31, 2013
Filed:
Sep 28, 2011
Appl. No.:
13/876054
Inventors:
Hongkun Park - Lexington MA, US
Jacob Robinson - Somerville MA, US
Marsela Jorgolli - Arlington MA, US
Alexander k. Shalek - Cambridge MA, US
Assignee:
PRESIDENT AND FELLOWS OF HARVARD COLLEGE - Cambridge MA
International Classification:
G01N 27/26
US Classification:
205792, 20440301
Abstract:
An electrical device including a substrate that has a surface and a plurality of electrically conductive nanowires, each of which has a first end and a second end. Each of the nanowires is formed of a semiconductor, a compound semiconductor, a metal, as or a combination thereof and is coated with an electrically insulating layer except for its first and second ends, the first end being attacked to the surface and the second end being coated with an electrically conductive layer. Also disclosed is a method of sending or receiving an electrical signal to or from a biological cell using the above-described device.

Method For Live-Cell Activity Assay

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US Patent:
20110165587, Jul 7, 2011
Filed:
Oct 8, 2010
Appl. No.:
12/900561
Inventors:
Eun-Gyeong YANG - Seoul, KR
Yu-Ran Na - Seoul, KR
Marsela Jorgolli - Arlington MA, US
Assignee:
Korea Institute of Science and Technology - Seoul
International Classification:
C12Q 1/02
G01N 33/566
C12M 1/34
B82Y 5/00
US Classification:
435 71, 435 29, 4352871, 977762, 977920
Abstract:
Provided are technologies capable of direct measurement of activity of a bioactive substance in cell using nanowires, more particularly, a method for measuring intracellular activity of a bioactive substance using a nanowire support to which cells are immobilized and a nanowire support to which target substances for the subject bioactive substance are immobilized, and a chip for measuring intracellular activity of a bioactive substance including nanowires to which cells are immobilized and nanowires to which a target substance for the subject bioactive substance is immobilized.

Molecular Delivery With Nanowires

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US Patent:
20180119172, May 3, 2018
Filed:
Oct 27, 2017
Appl. No.:
15/795654
Inventors:
- Cambridge MA, US
EunGyeong Yang - Seoul, KR
Alexander K. Shalek - Lexington MA, US
JinSeok Lee - Cambridge MA, US
Jacob Robinson - Somerville MA, US
Amy Sutton - Cambridge MA, US
Myung-Han Yoon - Cambridge MA, US
Marsela Jorgolli - Arlington MA, US
International Classification:
C12N 15/89
G01N 33/50
C12Q 1/68
G01N 33/543
C12N 5/00
Abstract:
A molecular delivery system including a plurality of nanowires (e.g., Si NWs), each of the nanowires having a surface layer formed of a silicon-containing material and a covalently bound linker (e.g., silane linker) attached to the surface layer and optionally including a substrate to which the nanowires are adhered or a molecule to be delivered attached to the linker. Also disclosed is a method of delivering into a cell an exogenous molecule.

Molecular Delivery With Nanowires

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US Patent:
20160281110, Sep 29, 2016
Filed:
Feb 23, 2016
Appl. No.:
15/051418
Inventors:
- Cambridge MA, US
EunGyeong Yang - Seoul, KR
Alexander K. Shalek - Cambridge MA, US
JinSeok Lee - Cambridge MA, US
Jacob Robinson - Somerville MA, US
Amy Sutton - Cambridge MA, US
Myung-Han Yoon - Cambridge MA, US
Marsela Jorgolli - Arlington MA, US
International Classification:
C12N 15/89
G01N 33/50
C12Q 1/68
C12N 5/00
Abstract:
A molecular delivery system including a plurality of nanowires (e.g., Si NWs), each of the nanowires having a surface layer formed of a silicon-containing material and a covalently bound linker (e.g., silane linker) attached to the surface layer and optionally including a substrate to which the nanowires are adhered or a molecule to be delivered attached to the linker. Also disclosed is a method of delivering into a cell an exogenous molecule.

Fabrication Of Nanowire Arrays

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US Patent:
20150203348, Jul 23, 2015
Filed:
Mar 15, 2013
Appl. No.:
14/422527
Inventors:
- Cambridge MA, US
Alexander K. Shalek - Cambridge MA, US
Marsela Jorgolli - Arlington MA, US
International Classification:
B81C 1/00
B01L 99/00
B81B 7/04
Abstract:
The present invention generally relates to nanowire arrays and methods of fabricating such arrays. In certain embodiments, the fabrication methods can consistently form NW arrays with reproducible configurations at nanoscale sites and produce NWs of specified heights, diameters, and densities. In some cases, the methods also allow formation of NW arrays containing barriers between regions, which would be prohibitively expensive if prepared by other methods.
Marsela Jorgolli from Lombard, IL, age ~40 Get Report